PLUMBING PIPING SYSTEMS

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1 PLUMBING PIPING SYSTEMS 7-8

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3 COMPANY PROFILE CPVC PIPES & FITTINGS ASTM (UPVC) PIPES & FITTINGS SWR PIPES & FITTINGS AGRICULTURE PVC PIPES & FITTINGS TECHNICAL INFORMATION

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5 03 Company Profile With four decades behind us, today we manage to channelise a great deal of experience, innovation and performance with the indispensible products offered at Precision Plastic Industries Pvt. Ltd. Pioneers of this business, we have come a long way in gathering the trust and preferences of the customers, worldwide. Since its interception in 978, Precision has confirmed to changing customer perceptions by adapting and serving the market with products that have been channelising lifestyles among other things. Customers should feel the need and it is our job to create that need before they even realise it, and thus be ahead of time, always. This insight has driven us to new levels of customer satisfaction and new spaces in the market share. Excellence comes not with achievement, but in this case through consistency. A constant keenness to upgrade and expand our product range and a proactive stance with respect to growing market demand for quality, ergonomics, safety and aesthetics, gives us an edge. Precision lives up to its name by delivering ace customer service and also supreme product quality. This excellence is not just limited to a nationwide distribution network, but also an international distribution network that channelises our products and services across the globe, delivering Precision to the Middle East, African countries, European markets and many Asian nations. Our national and international standards remain unmatched, assured by our ISO 900:08, ISO 0:0, OHSAS 0:07 certificate and our headship in the industry, unconquered. Kunal S. Kadakia

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7 0 Precision Chlorinated Poly Vinyl Chloride (CPVC) Pipes and Fittings are manufactured from a specially formulated compound in accordance with Indian Standard IS 778 and ASTM D 8 specifications. These pipes and fittings are a perfect choice, having many advantages over the conventional systems as they are corrosion free and resistant to most acids, bases, salts and halogens. Applications Channelising hot and cold water supply and potable water in homes, apartments, hotels, commercial complex and hospitals, gas and solar applications. Features Various diameters and grades to suit different applications and conditions. Time tested operational life of years. Economical, maintenance free and easy to install. Heat efficient and lower installation cost. Corrosion free and chemical resistant. Fire retardant. Hot and cold water compatible. Low thermal expansion. Hygienic and environment friendly. Service temperature upto 90ºC. Colour Tan.

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9 CPVC PIPES IS 778 & ASTM D 8 07 NOMINAL SIZE (mm) (inch) (3mtr / mtr) CPVC PIPES - SDR 3 CPVC CPVC CPVC CPVC 3 CPVC CPVC 3 ¼ 70 / 70 / 30 / 30 / / / CPVC PIPES - SCH CPVC CPVC CPVC / 3 / 3 / SDR - Red Stripe NOMINAL SIZE (mm) (inch) (3mtr / mtr) CPVC PIPES - SDR 3. 3 CPVC 3 CPVC 3 CPVC 3 CPVC 33 CPVC 3 CPVC 3 3 ¼ 70 / 70 / 30 / 30 / / / CPVC PIPES - SCH 7 8 CPVC CPVC CPVC / 3 / 3 / SDR 3. - Brown Stripe

10 CPVC FITTINGS SDR ASTM D 8 08 COUPLER CPVC C CPVC C CPVC C CPVC 3C CPVC C CPVC C CPVC C CPVC C CPVC 0C 3 0 ¼ ELBOW CPVC E CPVC E CPVC E CPVC 3E CPVC E CPVC E CPVC E CPVC E CPVC 0E 3 0 ¼ TEE CPVC T CPVC T CPVC T CPVC 3T CPVC T CPVC T CPVC T CPVC T CPVC 0T 3 0 ¼ ELBOW CPVC E CPVC E CPVC E CPVC 3E CPVC E CPVC E 3 ¼

11 CPVC FITTINGS SDR ASTM D 8 MALE THREAD ADAPTOR CPVC M CPVC M CPVC M CPVC 3M CPVC M CPVC M 3 ¼ FEMALE THREAD ADAPTOR CPVC F CPVC F CPVC F CPVC 3F CPVC F CPVC F 3 ¼ END CAP CPVC EC CPVC EC CPVC EC CPVC 3EC CPVC EC CPVC EC CPVC EC CPVC EC CPVC 0EC 3 0 ¼ REDUCER COUPLER CPVC RC CPVC RC CPVC RC CPVC 3RC CPVC 3RC CPVC 3RC CPVC RC CPVC RC CPVC RC CPVC 3RC CPVC RC CPVC RC CPVC RC CPVC 3RC CPVC RC x x x 3 x 3 x 3 x x x x x 3 x x x x 3 x x x x ¼ x ¼ x ¼ x x x x x ¼ x x x x ¼ x

12 CPVC FITTINGS SDR ASTM D 8 REDUCER TEE CPVC RT CPVC RT CPVC RT CPVC 3RT CPVC 3RT CPVC 3RT CPVC RT CPVC RT CPVC RT CPVC 3RT CPVC RT CPVC RT CPVC RT CPVC 3RT CPVC RT x x x x x x x x x x x x 3 x 3 x ¼ x ¼ x 3 x 3 x ¼ x ¼ x 3 x 3 x ¼ x ¼ x x x x x x x x x x x x x x x 3 x x ¼ x x x x x x x x x x x x x x 3 x x ¼ x x x x REDUCER ELBOW 3 CPVC RE CPVC RE x x x x 0 0 REDUCER MTA 7 CPVC RM CPVC RM CPVC RM x x x x x x REDUCER BUSHING CPVC RB CPVC RB CPVC RB CPVC 3RB CPVC 3RB CPVC 3RB CPVC RB CPVC RB CPVC RB CPVC 3RB CPVC RB CPVC RB CPVC RB CPVC 3RB CPVC RB x x x 3 x 3 x 3 x x x x x 3 x x x x 3 x x x x ¼ x ¼ x ¼ x x x x x ¼ x x x x ¼ x

13 CPVC FITTINGS SDR ASTM D 8 TRANSITION BUSHING CPVC TB CPVC TB CPVC TB CPVC 3TB CPVC TB CPVC TB x x x 3 x 3 x x x x x ¼ x ¼ x x UNION CPVC U CPVC U CPVC U CPVC 3U CPVC U CPVC U 3 ¼ CROSS TEE CPVC CT CPVC CT CPVC CT CPVC 3CT CPVC CT CPVC CT 3 ¼ STEP OVER END 3 CPVC SB CPVC SB CPVC SB 0 30 ELBOW (BRASS) CPVC BE CPVC BE CPVC BE x x x x x x 0

14 CPVC FITTINGS SDR ASTM D 8 ELBOW (BRASS) - WALL MOUNTING CPVC BEW CPVC BEW CPVC BEW x x x x x x TEE (BRASS) CPVC BT CPVC BT CPVC BT x x x x x x x x x x x x 0 0 MTA (BRASS) CPVC BM CPVC BM CPVC BM CPVC 3BM CPVC BM CPVC BM 3 ¼ FTA (BRASS) CPVC BF CPVC BF CPVC BF CPVC 3BF CPVC BF CPVC BF 3 ¼ R - ELBOW (BRASS) 7 CPVC RBE CPVC RBE CPVC RBE x x x x x x 0

15 CPVC FITTINGS SDR ASTM D 8 R - ELBOW (BRASS) - WALL MOUNTING 3 8 CPVC RBEW x x R - TEE (BRASS) CPVC RBT CPVC RBT CPVC RBT x x x x x x R - MTA (BRASS) CPVC RBM CPVC RBM CPVC RBM CPVC RBM x x x x x x x x R - FTA (BRASS) CPVC RBF CPVC RBF CPVC RBF CPVC RBF x x x x x x x x TANK NIPPLE CPVC TN CPVC TN CPVC TN CPVC 3TN CPVC TN CPVC TN 3 ¼

16 CPVC FITTINGS SDR ASTM D 8 END PLUG Pc/Bag 8 CPVC EP 0 BALL VALVE CPVC BVI CPVC BVI CPVC BVI CPVC 3BVI CPVC BVI CPVC BVI 3 ¼ 0 POWDER COATED METAL STRAP CPVC MS CPVC MS CPVC MS CPVC 3MS CPVC MS CPVC MS 3 ¼ VAN STONE FLANGE Pc/Bag 99 0 CPVC VF CPVC VF CPVC 0VF 0 3 CPVC SOLVENT CEMENT (TIN PACKING) - ml Pc/Box 3 CPVC SL9 CPVC SL8 CPVC SL37 CPVC SL

17 We Do Difficult Things Immediately, Impossible Takes A Little Longer. Sunil P. Kadakia

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19 7 Precision ASTM (UPVC) Pipes and Fittings are manufactured from a specially formulated unplasticised polyvinyl chloride compound. These pipes and fittings are tough and durable with high tensile and impact strength and are manufactured in accordance to ASTM (UPVC) D 78 / SCH and SCH and fittings to ASTM (UPVC) D 7 / SCH. Applications Channelising potable water supply in homes, apartments, hotels, commercial complex and hospitals. Features Various diameters and grades to suit different applications and conditions. Time tested operational life of years. Economical, maintenance free and easy to install. Heat efficient and lower installation cost. Corrosion free and chemical resistant. Fire retardant. Low thermal expansion. Hygienic and environment friendly. Service temperature upto 0 C. UV stabilized. Colour White.

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21 ASTM (UPVC) D 78 PIPES 9 NOMINAL SIZE (mm) (inch) (3mtr / mtr) ASTM (UPVC) D 78 / SCH PIPES ASTM ASTM ASTM ASTM 3 ASTM ASTM ASTM ASTM ASTM ¼ 3 / 30 / 30 / / / / / 3 / 3 / SCH - Blue Stripe NOMINAL SIZE (mm) (inch) (3mtr / mtr) ASTM (UPVC) D 78 / SCH PIPES ASTM ASTM ASTM ASTM 3 ASTM ASTM ASTM ASTM ASTM ¼ 3 / 30 / 30 / / / / / 3 / 3 / SCH - Green Stripe

22 ASTM (UPVC) D 7 / SCH FITTINGS COUPLER ASTM C ASTM C ASTM C ASTM 3C ASTM C ASTM C ASTM C ASTM C ASTM 0C 3 0 ¼ ELBOW ASTM E ASTM E ASTM E ASTM 3E ASTM E ASTM E ASTM E ASTM E ASTM 0E 3 0 ¼ TEE ASTM T ASTM T ASTM T ASTM 3T ASTM T ASTM T ASTM T ASTM T ASTM 0T 3 0 ¼ ELBOW ASTM E ASTM E ASTM E ASTM 3E ASTM E ASTM E 3 ¼

23 ASTM (UPVC) D 7 / SCH FITTINGS MALE THREAD ADAPTOR 3 7 ASTM M ASTM M ASTM M ASTM 3M ASTM M ASTM M 3 ¼ FEMALE THREAD ADAPTOR ASTM F ASTM F ASTM F ASTM 3F ASTM F ASTM F 3 ¼ 0 70 REDUCER COUPLER ASTM RC ASTM RC ASTM RC ASTM 3RC ASTM 3RC ASTM 3RC ASTM RC ASTM RC ASTM RC ASTM 3RC ASTM RC ASTM RC ASTM RC ASTM 3RC ASTM RC x x x 3 x 3 x 3 x x x x x 3 x x x x 3 x x x x ¼ x ¼ x ¼ x x x x x ¼ x x x x ¼ x END CAP ASTM EC ASTM EC ASTM EC ASTM 3EC ASTM EC ASTM EC ASTM EC ASTM EC ASTM 0EC 3 0 ¼

24 ASTM (UPVC) D 7 / SCH FITTINGS REDUCER TEE ASTM RT ASTM RT ASTM RT ASTM 3RT ASTM 3RT ASTM 3RT ASTM RT ASTM RT ASTM RT ASTM 3RT ASTM RT ASTM RT ASTM RT ASTM 3RT ASTM RT x x x x x x x x x x x x 3 x 3 x ¼ x ¼ x 3 x 3 x ¼ x ¼ x 3 x 3 x ¼ x ¼ x x x x x x x x x x x x x x x 3 x x ¼ x x x x x x x x x x x x x x 3 x x ¼ x x x x REDUCER BUSHING ASTM RB ASTM RB ASTM RB ASTM 3RB ASTM RB ASTM RB ASTM RB ASTM 3RB ASTM RB ASTM RB ASTM RB ASTM 3RB ASTM RB ASTM RB ASTM 0RB x x x 3 x x x x x 3 x x x x 3 x x 0 x x x x ¼ x x x x x ¼ x x x x ¼ x 3 x x REDUCER ELBOW 8 9 ASTM RE ASTM RE ASTM RE x x x x x x 0 0 REDUCER MTA 3 ASTM RM ASTM RM ASTM RM x x x x x x 00

25 ASTM (UPVC) D 7 / SCH FITTINGS UNION ASTM U ASTM U ASTM U ASTM 3U ASTM U ASTM U 3 ¼ CROSS TEE ASTM CT ASTM CT ASTM CT ASTM 3CT ASTM CT ASTM CT 3 ¼ 0 30 STEP OVER BEND ASTM SB ASTM SB ASTM SB ELBOW (BRASS) 39 ASTM BE ASTM BE ASTM BE x x x x x x 0 TEE (BRASS) 3 ASTM BT ASTM BT ASTM BT x x x x x x x x x x x x 0 MTA (BRASS) ASTM BM ASTM BM ASTM BM ASTM 3BM ASTM BM ASTM BM 3 ¼ 0

26 ASTM (UPVC) D 7 / SCH FITTINGS FTA (BRASS) 3 ASTM BF ASTM BF ASTM BF ASTM 3BF ASTM BF ASTM BF 3 ¼ 0 3 R - ELBOW (BRASS) ASTM RBE ASTM RBE ASTM RBE x x x x x x 0 R - TEE (BRASS) 0 ASTM RBT ASTM RBT ASTM RBT x x x x x x x x x x x x 70 R - MTA (BRASS) 3 ASTM RBM ASTM RBM x x x x 0 R - FTA (BRASS) 7 8 ASTM RBF ASTM RBF ASTM RBF ASTM RBF x x x x x x x x 0

27 ASTM (UPVC) D 7 / SCH FITTINGS TANK NIPPLE ASTM TN ASTM TN ASTM TN ASTM 3TN ASTM TN ASTM TN 3 ¼ 0 0 BALL VALVE ASTM BVI ASTM BVI ASTM BVI ASTM 3BVI ASTM BVI ASTM BVI ASTM BVI ASTM BVI 3 ¼ VAN STONE FLANGE ASTM VF ASTM VF ASTM 0VF Pc/Bag 0 3 POWDER COATED METAL STRAP ASTM MS ASTM MS ASTM MS ASTM 3MS ASTM MS ASTM MS 3 ¼ ASTM (UPVC) SOLVENT CEMENT (TIN PACKING) - ml Pc/Box ASTM SL9 ASTM SL8 ASTM SL37 ASTM SL73 ASTM SL

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29 7 Precision Sewerage Waste Rainwater (SWR) Pipes and Fittings are manufactured from a specially formulated unplasticised polyvinyl chloride compound. These pipes and fittings are tough and durable with high tensile and impact strength, manufactured in accordance to IS and fittings to IS Rubber ring conforms to IS Applications Precision Sewerage Waste Rainwater (SWR) Pipes and Fittings are available with O ring joint for quick, efficient and leak waste discharge systems for homes, apartments, hotels, commercial complex and hospitals. Type A For rain water discharge. Type B For soil and waste discharge. Features High quality. Time tested operational life of years Economical low maintenance, quick and easy installation. UV stabilized weather proof. Corrosion and chemical resistance. Easy flow due to smooth inner surface. Hygienic and environment friendly. Easy access for cleaning and clearing obstructions. Colour Grey.

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31 RING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) PIPES 9 NOMINAL SIZE (mm) STANDARD LENGTH (feet) TYPE - A SWR ASS SWR ADS SWR ASS SWR ADS SWR ADS SWR A3DS SWR ADS SWR ASS SWR ADS SWR ASS SWR ADS SWR ADS SWR A3DS SWR ADS SWR 0ASS SWR 0ADS SWERAGE PIPES (. kgf/cm ) 7 8 SEW SS SEW SS TYPE - B SWR BSS SWR BDS SWR BSS SWR BDS SWR BDS SWR B3DS SWR BDS SWR BSS SWR BDS SWR BSS SWR BDS SWR BDS SWR B3DS SWR BDS SWR 0BSS SWR 0BDS

32 RING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS 30 COUPLER - mm SWR C SWR C SWR 0C 0 7 REPAIR COUPLER - mm SWR CR SWR CR 7 REDUCER COUPLER - mm SWR RC x 0 CLEANSING PIPE - mm SWR CLP SWR CP BEND mm (pc/carton) 3 SWR B SWR B SWR 0B 0 8

33 RING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS BEND 87. (DOOR) 3 - mm 7 SWR BD SWR BD SHOE BEND - mm 8 9 SWR SB SWR SB SWR 0SB 0 30 SINGLE TEE - mm 3 SWR T SWR T SWR 0T SINGLE TEE (DOOR) - mm SWR TD SWR TD REDUCING SINGLE TEE - mm 7 SWR RT SWR 0RT x 0 x

34 RING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS 3 REDUCING SINGLE TEE (DOOR) - mm 8 SWR RTD x DOUBLE TEE - mm 9 0 SWR TT SWR TT DOUBLE TEE (DOOR) - mm SWR TTD SWR TTD SINGLE Y - mm 3 SWR Y SWR Y SWR 0Y 0 3 REDUCING SINGLE Y - mm SWR 0RY 0 x

35 RING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS SINGLE Y (DOOR) 33 - mm 7 8 SWR YD SWR YD 3 3 DOUBLE Y - mm 9 70 SWR YY SWR YY 9 9 DOUBLE Y (DOOR) - mm 7 7 SWR YYD SWR YYD 8 8 PIPE CLIP - mm 73 7 SWR PC SWR PC 3 0 VENT COWL - mm 7 SWR VC SWR VC 9

36 RING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS 3 NAHANI TRAP (W/O JALI) - mm SWR NT SWR 90NT SWR NT x x 90 x MULTI FLOOR TRAP (W/O SQ JALI) - mm SWR MFT ROUND JALI - mm 8 SWR NTJ SQUARE JALI - mm 8 SWR MTJ x P - TRAP - mm 83 8 SWR PT SWR PT x x

37 RING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS Q - TRAP 3 - mm 8 8 SWR QT SWR QT x x S - TRAP - mm SWR ST SWR ST x x DOOR CAP - mm SWR DC SWR DC 0 SOCKET PLUG - mm 9 9 SWR SP SWR SP W.C. CONNECTOR WITH LIP RING (FABRICATED) - mm Pc/Bag 93 SWR WCF

38 RING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) PIPES 3 LIP RING - mm Pc/Bag 9 SWR LR RUBBER RING - mm Pc/Bag SWR RR SWR RR SWR 0RR 0 RUBBER LUBRICANT (JAR) - gm SWR RL0 SWR RL0 SWR RL0 SWR RL

39 PASTING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) PIPES NOMINAL SIZE (mm) STANDARD LENGTH (feet) 37 TYPE - A SWR ASSP SWR ASSP SWR ADSP SWR ASSP SWR ADSP SWR ADSP SWR A3DSP SWR ADSP SWR ASP SWR ASP SWR ADP SWR ASSP SWR ADSP SWR ADSP SWR A3DSP SWR ADSP SWR 0ASP SWR 0ASP SWR 0ADP SWERAGE PIPES (. kgf/cm ) SEW SSP SEW SSP TYPE - B SWR BSSP SWR BSSP SWR BDSP SWR BSSP SWR BDSP SWR BDSP SWR B3DSP SWR BDSP SWR BSP SWR BSP SWR BDP SWR BSSP SWR BDSP SWR BDSP SWR B3DSP SWR BDSP SWR 0BSP SWR 0BSP SWR 0BDP SELFIT PIPES ( kgf/cm ) 3 SWR SSP SWR SSP SWR SSP SWR SSP

40 PASTING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS 38 COUPLER - mm 7 SWR CP SWR CRP 33 REPAIR COUPLER - mm 8 9 SWR CRP SWR CRPP 33 BEND mm SWR BP SWR BP 3 BEND 87. (DOOR) - mm 3 SWR BDP SWR BDP 30 SHOE BEND - mm SWR SBP SWR SBP 8 3

41 PASTING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS SINGLE TEE 39 - mm 7 SWR TP SWR TP SINGLE TEE (DOOR) - mm 8 9 SWR TDP SWR TDP DOUBLE TEE - mm 0 SWR TTP SWR TTP DOUBLE TEE (DOOR) - mm 3 SWR TTDP SWR TTDP SINGLE Y - mm SWR YP SWR YP

42 PASTING TYPE - SWR (SEWERAGE, WASTE & RAINWATER) FITTINGS SINGLE Y (DOOR) - mm 7 SWR YDP SWR YDP REDUCER COUPLER - mm 8 SWR RCP x 0 REDUCING SINGLE TEE - mm 9 SWR RTP x REDUCING SINGLE TEE (DOOR) - mm 70 SWR TDP x CLEANSING PIPE - mm 7 7 SWR CPP SWR CPP 3

43 YOU SEE PIPE. WE SEE LIFE. At Precision, we take immense pride in the quality and durability of our pipes and fittings which we believe brings life to every home in the form of electricity and water. This motivates us daily, to bring the best to you.

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45 3 Precision Agriculture PVC Pipes and Fittings are manufactured from high impact unplasticised polyvinyl chloride compound that is capable of withstanding the most rigorous on-site conditions and exceeding the most stringent requirements as per Indian standards. The product range is manufactured in accordance with Indian Standards IS and moulded fittings to IS These pipes and fittings are a perfect choice for potable water supply, where ease of installation, maintenance and zero leakages are a priority. Applications Agriculture and irrigation, potable water supply, construction, industrial and chemical effluent disposal, tube well casing, telecom and power cable / ducting. Features Economical. Easy installation. Corrosion resistant. Flexibility. Perfect dimensional standards. Fire resistant. Chemical resistant. Hygienic. High flow characteristic. Low thermal conductivity. Colour Grey.

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47 AGRICULTURE PVC SELFIT PIPE (mm) STD. LENGTH (mtr) CLASS /. kg/cm 3 7 SELF 90CL SELF CL SELF CL SELF 0CL SELF CL SELF 0CL SELF CL CLASS / kg/cm SELF 3CL SELF CL SELF 90CL SELF CL SELF CL SELF 0CL SELF CL SELF 0CL SELF CL SELF 0CL CLASS 3/ kgf/cm SELF CL3 SELF CL3 SELF 3CL3 SELF CL3 SELF 90CL3 SELF CL3 SELF CL3 SELF 0CL3 SELF CL3 SELF 0CL3 SELF CL3 SELF 0CL CLASS / kgf/cm SELF CL SELF CL SELF 3CL SELF 3CL SELF CL SELF 90CL SELF CL SELF CL SELF 0CL SELF CL SELF 0CL SELF CL SELF 0CL

48 AGRICULTURE PVC FABRICATED FITTINGS COUPLER Kg/cm - mm Pc/Bag FABR 3C FABR C FABR 90C FABR C FABR C FABR 0C FABR 0C COUPLER Kg/cm - mm Pc/Bag 3 FABR 3C FABR C FABR 90C FABR C FABR C FABR 0C BEND 90 /Kg/cm - mm Pc/Bag FABR 3B90 FABR B90 FABR 90B90 FABR B90 FABR B90 FABR 0B90 FABR 0B BEND 90 /Kg/cm - mm Pc/Bag FABR 3B90D FABR B90D FABR 90B90D FABR B90D FABR B90D FABR 0B90D

49 AGRICULTURE PVC MOULDED FITTINGS COUPLER 7 - mm PMIC PMIC PMIC 3 PMIC PMIC PMIC 3 PMIC PMIC 90 PMIC Pc/Bag ELBOW - mm Pc/Bag PMIE PMIE PMIE 3 PMIE PMIE PMIE 3 PMIE PMIE 90 PMIE PMIE PMIE ELBOW - mm Pc/Bag PMIE PMIE 0 TEE - mm Pc/Bag PMIT PMIT PMIT3 PMIT PMIT PMIT3 PMIT PMIT90 PMIT PMIT PMIT

50 AGRICULTURE PVC MOULDED FITTINGS 8 ELBOW (L.W.) - mm 3 PMIE 3 PMIE PMIE 90 PMIE TEE (L.W.) - mm PMIT3 PMIT PMIT90 PMIT MALE THREAD ADAPTOR - mm Pc/Bag PMTA PMTA PMTA 3 PMTA PMTA PMTA 3 PMTA PMTA 90 PMTA FEMALE THREAD ADAPTOR - mm Pc/Bag PFTA PFTA PFTA 3 PFTA PFTA PFTA 3 PFTA PFTA 90 PFTA TAIL PIECE - mm Pc/Bag PMTP 3 PMTP PMTP 90 PMTP PMTP PMTP

51 AGRICULTURE PVC MOULDED FITTINGS THREADED END CAP 9 - mm PTEC PTEC PTEC 3 PTEC PTEC 90 PTEC 3 90 Pc/Bag END CAP - mm Pc/Bag PMEC PMEC PMEC 3 PMEC PMEC PMEC 3 PMEC PMEC 90 PMEC REDUCER BUSH - mm Pc/Bag PMRB PMRB 3 PMRB 3 PMRB 3 PMRB 3 PMRB 903 PMRB 90 PMRB PMRB 90 x 3 x 3 x 3 x 3 x 90 x 3 90 x x x REDUCER TEE - mm Pc/Bag PMRT PMRT 3 PMRT 3 PMRT 3 PMRT PMRT 90 x x 3 x 3 x 3 x 3 x 3 x 3 x x x x x

52 AGRICULTURE PVC MOULDED FITTINGS REDUCER COUPLER - mm Pc/Bag PMIR PMIR 3 PMIR 3 PMIR PMIR 3 PMIR 3 PMIR PMIR 33 PMIR 3 PMIR 3 PMIR PMIR PMIR 3 PMIR 903 PMIR 90 PMIR 3 PMIR PMIR 90 x 3 x 3 x x x 3 x 3 x 3 x 3 3 x 3 x x x x 3 90 x 3 90 x x 3 x x SERVICE SADDLE - mm Pc/Bag PMIS 3 PMIS 3 PMIS 33 PMIS PMIS PMIS 3 PMIS 90 PMIS 90 PMIS 903 PMIS PMIS PMIS 3 PMIS PMIS PMIS 3 PMIS PMIS PMIS 3 PMIS 0 PMIS 0 PMIS 03 PMIS 0 PMIS 0 PMIS 03 3 x 3 x 3 x 3 x x x 3 90 x 90 x 90 x 3 x x x 3 x x x 3 x x x 3 0 x 0 x 0 x 3 0 x 0 x 0 x 3 PVC SOLVENT CEMENT (TIN PACKING) - ml Pc/Box 7 8 AGRI B0 AGRI B0 AGRI BL 0 ml 0 ml L 9 8

53 YOU SEE PIPE. WE SEE LIFE. At Precision, we take immense pride in the quality and durability of our pipes and fittings which we believe brings life to every home in the form of electricity and water. This motivates us daily, to bring the best to you. Visit to Explore our Electrical Piping Systems

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56 ASTM (UPVC) & CPVC PIPES & FITTINGS (ASTM D 78) Precision ASTM (UPVC) pipes are recommended for conveyance of Liquids up to 0ºC. An increase in temperature tends to reduce the pressure sustaining capacity of pipe. The working pressure rating corresponds to temperature at 3ºC. For service temperatures above 3ºC a de - rating factor is applied. To calculate this reduction in pressure multiply the operating pressure with correction factors shown below at an operating temperature of system. De Rating factors for ASTM (UPVC): Operating temperature 3ºC 73ºF 7ºC ºF 33ºC 90ºF 38ºC 0ºF 3ºC ºF 9ºC ºF ºC 30ºF 0ºC ºF De-Rating Factor Precision CPVC pipes are recommended for conveyance of Liquids for a maximum continuous service temperature up to 83 C at rated working pressure. An increase in temperature tends to reduce the pressure sustaining capacity of pipe. The working pressure rating corresponds to temperature at 3ºC. For service temperatures above 3ºC a derating factor is applied. De Rating factors for CPVC: Working Temperature F C Pipe Derating Factor Valves, unions and specialty products have different elevated temperature rating than pipes. Pressure rating as per determined by The Plastic Pipe & Fittings Association (PPFA). * C = /9 (F-3) F = 9/ C+3 * kgf/cm =. PSI

57 Thermal expansion and contraction of the System: All Thermoplastic piping systems expand and contract when subjected to temperature change. To absorb the stresses generated from the movement must be compensated to minimize the damage to the piping system by providing expansion loops, offsets or by installing suitable expansion joints. These effects must be considered during the designing phase particularly for the systems involving long runs, hot water lines and piping systems exposed to extreme climatic and environmental temperatures extremes. Calculation of linear movement caused by thermal expansion: L: Length of pipe in mm (at ambient temperature) Delta L: Change in length Alfa: Coefficient of linear expansion for UPVC.x dt: Difference in ambient temperature and maximum operating temperature. ASTM (UPVC) PIPE: Example: Pipe dia: " (mm), length 30m, normal water temperature at C and maximum water temperature C Delta L = L alfa dt Delta L =.x x x Delta L =. mm The expansion is 0. cm/30m length for C temperature change. CPVC PIPE: Formula: For calculation in change in pipeline length due to thermal expansion: L: Length of pipe in mm (at ambient temperature) Delta L: Change in length Alfa: Coefficient of linear expansion for CPVC.3 x T: Difference in ambient temperature and maximum operating temperature. Example: Pipe dia: ", length 30 m, normal water temperature at C max, water temperature 0 C Delta L = Alfa L. dt Delta L =.3x x x Delta L =. mm The expansion is 7. cm/30 m length for C temperature change. Compensating Method: Developed length=lb= (3EDdL/S ) / E = Modulus of elasticity, Mpa D = OD of pipe in mm dl = Thermal expansion of pipe in mm S = Allowable fiber stress in Mpa at maximum temperature. Example: Calculate minimum offset required for a 30 m run of CPVC pipe for a temperature increase from C to 0 C L = (3 x 7 x 33. x./ x.89) / L = mm =. cm

58 Modulus of elasticity and working stress for CPVC Temperature C / F 7/73 3/90 3/ 9/ 0/ 7/0 8/ Modulus, E (psi) 3,000 3,000 37,000 3,000 33,000 9,000 9,000 Working stress(psi) * kgf/cm =. PSI * kgf/cm = MPA * kgf/cm = / MPA psi ~ 0.07 kg/cm ~ 0.007MPa. F = C x *CPVC has a much higher strength/modulus than other thermoplastics used in plumbing applications. *Lower thermal conductivity (reduced heat loss) Chart for Long straight run offset/ loop: Calculated expansion loop length for CPVC piping with dt of ºF/ºC. CPVC PIPES: Nominal Size Length of run in mtrs/feet Loop Length ( L) in inches " " " ¼" " " Recommended distance between Support SPACING FOR CPVC Pipes HORIZONTAL & VERTICAL SUPPORT Nominal WATER TEMPERATURE Size C/70 F 9 C/ F 7 C/0 F 8 C/ F ft cm ft cm ft cm ft cm " " " ¼" " " SPACING FOR ASTM (UPVC) Pipes Nominal Size Length of run in mtrs / feet SCH : Temperature C SCH : Temperature C cm cm cm cm cm cm cm cm cm cm " " " ¼" " "

59 Sunlight Exposure of Plastics: Precision pipes and fittings are capable of withstanding the most rigorous onsite conditions but intense and prolonged exposure to sunlight may cause degradation of pipes. To protect from the ultra violet radiation A heavily pigmented, exterior water base latex paint can be applied preferably light colored and thick coated to reduce the pipe temperature to make them last longer. 7 Negative Pressure Application: The maximum allowable pressure Critical Collapse Pressure that can be applied and is directly related to the wall thickness of the pipe. The external pressure conditions occur when the pipes are subjected to: Soil load (buried pipes) Underwater application Vaccum It is recommended to use solvent cement joint connections for vacuum service applications otherwise there is greater potential for leakage when used in negative pressure applications. Head - Loss Characteristics: Head loss or friction loss in UPVC or CPVC calculation based on Hazzen William formulae. Head Loss HL/L =.3 x x Q.8 / D.87 x C.8 HL-Headloss, liter of water/meter L Length of pipe in mtrs. Q Flow rate litre/sec. D Internal diameter of pipe in mm. C Surface constant for pipe (for UPVC/C-PVC the acceptable value of C=) (% of total friction loss is considered for valves and accessories.) Material Properties: Sr. Property Test Method Unit UPVC Value CPVC Value Specific gravity ASTM D 79 g/cc Water absorption ( Hrs at 3 C) ASTM D 70 % Ultimate tensile strength ASTM D 38 kgf/cm Elongation at break -- % Modulus of elasticity ASTM D 38 kgf/cm 3.03 x.3 x Modulus of rigidity -- kgf/cm -. x -- 7 Compressive strength ASTM D 9 kgf/cm Flexural strength ASTM D 790 kgf/cm Impact strength at 3 C of notch ASTM D ft-lb/in. Maximum bending stress -- kgf/cm -- Durometer hardness ASTM D Rockwell hardness ASTM D Softening point -- C 7 - Hydrostatic design stress ASTM D 98 kgf/cm -- Coefficient of linear expansion ASTM D 9 mm/mm/ C. x.3 x Coefficient of thermal conductivity ASTM D 77 cal/cmsec C 3.0 x 3.3 x 7 Specific heat ASTM D 7 Cal / C Heat deflection temperature at 8. kg./cm ASTM D 8 C 9 Limiting oxygen index ASTM D 83 % 3 0 Hazen Williams constant Cole Brook coefficient Dielectric strength ASTM D 9 V/mil Dielectric constant ASTM D 0 Hz * The above data is based upon information provided by the raw material manufacturers and should be used only as a guide line. We do not guarantee its performance. -

60 8 Standards and Specifications: ASTM-D-78 IS UPVC/CPVC COMPOUNDS CPVC PIPE SDR-&3. ASTM D 8 CPVC SDR FITTINGS 3 ASTM-F 93 CPVC SOLVENT CEMENT ASTM-D-78 SCH- & SCH- UPVC ASTM WHITE PIPE ( to mm) ASTM-D-7 UPVC SCH- SOCKET TYPE FITTINGS ASTM-D- UPVC SOLVENT CEMENT CPVC /ASTM FITTINGS:. COUPLER: To join two Lengths of pipes.. ELBOW: 90 & : To change direction. 3. ELBOW (BRASS): To connect male threaded CP/Metal fittings like Taps, shower etc. to a pipeline.. REDUCER ELBOW: To change direction and diameter of pipe.. TEE: For branching of equal size from mainline.. REDUCING TEE: Tee is used for branching from mainline. 7. TEE (BRASS): To connect male threaded CP/Metal fittings like taps, shower etc to a pipeline. 8. MTA (BRASS): For transition from metal to plastic as proper joining to female threads of metal / GI fittings. 9. FTA (BRASS): For transition from plastic to metal as proper joining to male threads of metal / GI pipes.. END CAP: To temporarily close pipe/fitting end as extension of the laid pipeline in future is possible.. UNION: To allow quick and convenient disconnection of pipes/fittings for maintenance or fixture replacement. SOLVENT CEMENT : Plastic pipes and fittings are joined together with a process known as solvent welding. Liquid cement actually melts the surface layer of the plastic and fuses the pipe and fitting together. Proper jointing as per manufacturer s guidelines for solvent cementing, the solvent-welded joints are watertight and have more strength than the pipe itself. Different plastics have different solvent cements that are specifically formulated for use with that material. The cements come in different consistencies - as a general rule of thumb use regular (thin) cements for pipes up to inches in diameter, and medium cement for pipes up to inches. Some of the components in solvent cement are designed to penetrate, melt and/or swell the material and then evaporate completely thus allowing the substrates to regain crystallinity and with it all of their physical properties. It is necessary to have radial pressure in order for the solvent weld to happen as desired. The pipe OD is slightly larger than the ID of the bottom /3 of the fitting socket called as Interference Fit and is the ideal fit which will provide the best and the most consistent results. While solvent cementing two aspects as to set and cure time are vital for the performance of piping system. "Set" time is the initial period of swelling required to give the joint enough mechanical strength to be gently handled. "Cure" time is the total time period of required swelling for the joint to acquire enough strength that it can perform its job transporting materials through it at whatever pressure and temperature required without coming apart or leaking. Procedure for solvent cementing: Remove any dirt, moisture, or grease from pipe end and fitting sockets with a clean dry rag. Before starting to make any joints, the pipe and fittings should be visually inspected for any damage or defects. The fittings should be exposed to the same temperature conditions as the pipe for at least one hour prior to installation, so that the pipe and fittings are basically at the same temperature when joined.

61 Check dry fit of pipe and fitting by inserting pipe into fitting. With light pressure, pipe should easily go at least /3 of the way in. If it bottoms, it should be snug. It is essential to cut the pipe square since only a square cut will provide the maximum surface area in the fusion part of the joint. 9 Burrs and filings can prevent proper contact between pipe and fitting during assembly and must be removed from the outside and the inside of the pipe. Also a slight bevel/chamfer of 0 needs to be placed at the end of the pipe or the sharp edge will scrape off the cement from the fusion area as the pipe is inserted. Removal of the cement will eliminate the necessary lubrication in the fusion area. This can result in partial insertion of pipe in the fitting socket than required thus missing the ail-important fusion area. Removal of the cement will also eliminate/shorten the exposure of the fitting wall to the softening agent which together with the radial pressure generated by the proper interference is the only reasons why fusion between pipe and fittings occur. A shortened exposure to the softening agents in the cement will result in a more superficial fusion, the consequence of which will vary greatly from decreased safety factor to shorter life expectancy. When the sharp edges of the pipe remove the cement, it goes down into the waterway and makes that portion weak. After selecting the right cement, the size of the applicator plays an important role. If too big, there is too much cement is deposited in the socket; if too small, the time to coat the pipe and fitting will be longer than the set time. Use permanent marker to mark on the pipe equal to the socket depth of the fitting. This will indicate the area of the pipe to apply the primer and cement. It will also indicate when the pipe has fully bottomed in the fitting socket. Apply appropriate amount of solvent cement to the pipe, so that whatever gap we will have it will be filled, and a thin coating on the fitting socket so that desired softening is achieved. Whatever excessive solvent cement deposited on the pipe will be pushed out during pipe insertion as it will indicate that it has not entered the waterway and an indicator that all gaps have been filled. The excess of cement on the outside of the pipe, to be wiped off. It is critical and important to assemble pipe and fittings while solvent cement is fluid. Push pipe fully into fitting, using a turning motion, if possible, of /8 to / turn, until it bottoms. Hold them together for -30 seconds to offset tendency of pipe to move out of fittings. Wipe off excess bead of cement from juncture of pipe & fitting with a clean piece of cloth. Average Initial Set Schedule for PVC/CPVC Solvent Cements Temp Range Pipe Sizes " to ¼" " to " " to 8" " to " "+ 0-0 F min min 30 min hr hr - 0 F min min hr 8 hr hr 0 - F min min hr hr 8 hr Note : Initial set schedule is the necessary time to allow before the joint can be carefully handled. In damp or humid weather allow % more set time.

62 0 Average Joint Cure Schedule for PVC/CPVC Solvent Cements Relative Humidity 0% or Less Temperature range during assemblyand cure periods Pipe Sizes /" to -/" -/" to " -/" to 8" " to " "+ up to 0 psi above 0 to 370 psi up to 0 psi above 0 to 3 psi F min hrs 30 min hrs up to 0 psi -/ hrs above 0 to 3 psi up to 0 psi up to 0 psi hrs 8 hrs 7 hrs F min hrs min hrs hrs 8 hrs 9 hrs days PVC /CPVC piping system is not recommended for compressed air application as air is much more compressible than are liquids and could therefore cause a violent explosion. Installing a PVC/CPVC valve Before installation, make sure the valve is in the "open" position and all cemented surfaces are clean and dry. Install the valve following the standard guidelines from the manufacturer. A suitable support should be placed under the valve body to hold the weight of the valve. Be sure to adhere to proper curing times, and wipe off any excess cement that might have accumulated at the joint head. Residential : Central vacuum, drain/waste/vent, irrigation, rain harvesting, reclaimed water, septic system, sewer swimming pool, water distribution, well casing. Commercial : Building service lines, chilled water, condensate drain, condenser water, drain/waste/vent, irrigation rain harvesting, reclaimed water, refrigeration, sewer, site utilities, swimming pool, water distribution, water towers, well casing. Solvent Cementing : Push pipe fully into fitting, using a turning motion, if possible, of /8 to / turn until it bottoms. Hold them together for-3o seconds to offset tendency of pipe to move out off fittings. Wipe off excess bead of cement from juncture of pipe & fitting with a clean piece of cloth. The joint should not be pressure tested until it has cured. The exact curing time varies with temperature, humidity, and pipe size. Please refer chart for curing time. Please note for pipe sizes ¼" & above a second coat of solvent cement is recommended. First apply cement on the pipe end, then in the fitting socket, and, finally, on the pipe end again. It is must to use a first coat of primer for CPVC as well as UPVC (ASTM) pipes and fittings for size above " followed by solvent cement. Points to remember: Pipe joint compounds, pastes, or other thread lubricants are not recommended for use with PVC and CPVC pipe. For threaded joints always use Teflon tape. Avoid over tightening as this may cause thread or fitting damage. While joining plastic piping system to metal piping, always use standard accessories. Never transition from metal to plastic with male metal to female plastic threads. Male metal threads will split female plastic threads. Threaded pipe and threaded fittings should not be used in high pressure systems. The process of making threads reduces the wall thickness of the pipe. The wall thickness in the threaded portion is only % of the pipe wall. Due to this, systems that use threaded pipe or threaded fittings must have at least a % reduction in pressure for equivalent pipe size. For systems where dismantling is required, flanging is a convenient joining method. It is also an easy way to join plastic and metallic systems.

63 Pressure Test Pressure test is vital for ensuring leak proof and trouble free performance of the installed system. The normal average parameters for pressure testing have been. times of the operating pressure of the system for duration of to hours. Procedures for the Hydrostatic Pressure Test The pressure test is done after solvent-cemented piping systems is fully cured (please refer chart for curing time) The test is run from the lowest accessible elevation point in the test section. The pressure in the pipe is because of line pressure (dynamic pressure) generated by the attached test pump and also the static pressure generated from changes in height. Testing from the lowest point is done to gain some advantage in purging the entrapped air in the pipe. Air in the line during the pressure test is problematic and a safety concern. Air is very compressible. As it compresses, it stores energy, that when released can create a serious safety hazard. Air changes in volume with changes in temperature. It takes considerably longer to reach test pressure by compressing air than it does water. Air is removed from the test section by venting and involves tapping into the PVC line to relieve air at high points. It is a common practice to carry out testing for the skid (room internal plumbing) by isolating from the balance of the system. The pressure test should be done with clean potable water for water supply lines. Do not test with non-potable water. This could contaminate the system making disinfection harder and more costly. Determination of Test Pressure Test pressure is normally based upon the working pressure of the piping system. Working pressure is the long term pressure at which the system is expected to operate. The test pressure applied should not exceed: (a) the designed maximum operating pressure, (b) the designed pressure rating of the pipe, (c) the designed pressure rating of any system component, whichever is lowest. Steps of the Hydrostatic Pressure Test Please follow: Complete installation of the pipe line as per the manufacturer s guidelines. Determine the test pressure. Removing all of the air prior to a pressure test. Fill line with water. Vent line at all available and necessary locations. Use flushing technique to remove air if venting alone does not remove air. Connect positive displacement pressure test pump to the system. Apply pressure with test pump to the predetermined test pressure. Isolate pump from pipe for duration of test. The reading of a regular pressure gauge over a period of several hours will reveal any small leaks. Chemicals Recommended The following information is provided as a general guide for the selection of piping systems subjected to various chemical substances. PVC arid CPVC pipes and fittings exhibit exceptional chemical resistance to a wide variety of corrosive reagents and mixtures found in the chemical processing industries. Factors such as percentage of chemical concentration, combinations of chemical substances, temperature, pressure, external system stress, and product quality can affect chemical resistance. You are requested to contact manufacturer for further details and suitability of piping system to specific chemical.

64 CPVC PIPES & FITTINGS DIMENSIONS OF SDR (CLASS ) CPVC PIPES IS 778 Nominal Size Nominal Wall Working Pressure/kg/cm Inch mm OD Thickness 7ºC 8ºC ¼ DIMENSIONS OF SCH CPVC PIPES - ASTM F DIMENSION OF SDR 3. (CLASS ) CPVC PIPES-IS 778 Nominal Size Nominal Wall Working Pressure/kg/cm Inch mm OD Thickness 7ºC 8ºC ¼ DIMENSIONS OF SCH CPVC PIPES - ASTM F Inch ¼ Minimum Dimensions from center to end of socket (Laying Length) SDR Fittings mm 3 Inch mm Inch mm Inch mm Nom Size Inch ¼ 3 A Aver Socket Entrance Diameter mm A Aver A Tole A Tole Dimensions for Tapered Socket of CPVC SDR Pipe Fittings Socket Bottom Socket Entrance ID Diameter mm B Aver B Aver B Tole B Tole Inch C min mm C min Inch D min mm D min EA min Wall Thickness Socket Socket Bottom Entrance EA min EB min EB min F F

65 ASTM (UPVC) PIPES & FITTINGS 3 Nominal Size Inch mm ¼ ASTM (UPVC) D 78 / SCH PIPES Nominal OD mm Wall Thickness Min Max Pressure Rating at 3ºC kg/cm Nominal Size Inch mm / 3/ / / / ASTM (UPVC) D 78 / SCH PIPES Nominal OD Wall Thickness Min Max Pressure Rating at 3ºC kg/cm Inch ¼ Minimum Dimensions from center to end of socket (Laying Length) SCH Fittings mm 3 Inch / 9/ / 7/8 / mm Inch / / / /8 7/ /8 mm Inch 3/3 3/3 3/3 3/3 3/3 3/3 mm Nom Size Inch ¼ 3 Dia Socket Entrance Diameter inch/ mm Dia A Tole A Tole Dimensions for Tapered Socket of UPVC SCH Pipe Fittings Socket Bottom Socket Entrance ID Diameter inch/ mm B Aver B Aver B Tole B Tole Inch C min mm C min Inch D min mm D min EA min Wall Thickness Socket Socket Bottom Entrance EA min EB min EB min F F

66 SWR PIPES & FITTINGS Nominal Diameter DN mm mm 0 mm Mean Outside Diameter Min Max DIMENSIONS FOR SWR PIPES Outside Diameter at any Point Type A Min Max Min.. 3. Max Wall Thickness Min Type B Max AGRICULTURE PVC PIPES & FITTINGS Nominal Outside Diameter (Nominal Size) DIMENSION OF UNPLASTICISED UPVC PIPES IS (All dimension in mm) Mean Outside Diameter Class 0. Mpa Class 0. Mpa Working Pressure, Mpa Class 3 0. Mpa Class 0.8 Mpa Class.0 Mpa Min Max Min Max Min Max Min Max Min Max Min Max The content of all the technical information are for guidance only, if you have any doubt as to the interpretation of the information contained therein, please refer to the standard itself or contact Precision Plastic Industries Pvt. Ltd. In accordance with our policy of continual improvement, Precision Plastic Industries Pvt.Ltd. reserve the right to change specifications and designs without notice.

67 NOTES

68 Precision Plastic Industries Pvt. Ltd. 9/D, Nand Jyot Industrial Estate, Safed Pool, Andheri-Kurla Road, Andheri (East), Mumbai 007, India T E electrical@precisionpipes.com plumbing@precisionpipes.com W

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