Machine nozzle with needle shut-off type HP pneumatically or hydraulically controlled. Needle shut-off

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Machine nozzle with needle shut-off type HP pneumatically or hydraulically controlled Needle shut-off Applications: Thermoplastics (not applicable for PVC) Shut-off mechanism: Needle shut-off with integrated 2-way actuator pneumatically or hydraulically operated Index of contents Chapter Page Technical description... 2 Arguments / for & against... 2 What speaks for Herzog... 2 Integrated actuator... 3 Machine-side actuator... 3 Assembly alignment... 3 Risk of collision by diving into the mold... 4 Tip types... 4 Optional Extras... 5-6 Data sheet... 7 Dimension sheet for inquiries or orders... 8 1

Technical description The pneumatically or hydraulically actuated machine needle shut-off nozzles type HP are used in processing of thermoplastics, principally with low viscosity materials such as: PA, PPS, PE, POM,PP. In this nozzle s favour are: Cycle time reduction, shut-off at the nozzle orifice, withdrawal while dosing Finds application in: Packaging, automobile and leisure industries, medicinal and electronic equipment. Operation: The assembly integrated actuator (pneumatically or hydraulically activated) controls a nozzle-axis positioned needle via a lever mechanism. The melt flow is therefore process dependently separated at the nozzle orifice. The needle mechanism is constructed in such a way, that with over-pressure an automatic opening of the nozzle is ensured. Modules for filters, mixers and GAIM-applications complete the range of shut-off nozzle products. Note: Values and measurements in this documentation refer to standard applications. Arguments for needle shut-off type HP Prevents: Filamentation Material leakage when dosing with a withdrawn injection unit Material leakage while vertically injecting For & Against For: Opening and closing occurs independent of melt pressure Melt flow separation at nozzle orifice Operating pressure: 3000bar at 400 C Proven shut-off with high-speed units Robust, reliable separation Special application applicable Compact, interchangeable design Against: Integrated actuator requires space on the machine Installation must follow instruction manual Applicable for special applications such as: Physical foaming Pre-compressing the melt Hot-runner injection molding (e.g.. containers, pots) Supported process control: Actuator piston position sensors (indicates if nozzle is open or closed ). Productivity factors: Controlled, clean shut-off of the melt stream Shorter cycle times - increase in productivity Increased process reliability and repeatability Usability with increased back pressure - improved homogenization Add-on capability (on tool side) Options: Filter module Mixer GIT Process monitoring with piston position sensors on the actuator 2

What speaks for Herzog Nozzle activity is the core business Many years market presence Design and assemblies matching today s requirements Development of special applications Fast delivery Service performance Integrated Actuator Specially manufactured two-way piston cylinders with temperature resistant seals (up to 180 C) are applied for the pneumatic and hydraulic actuators. The actuator together with the nozzle assembly froms a compact unit. The cylinders are operated from input data on the machine control unit. Advantages on an integrated actuator: No installation errors Adjustments such as; stroke, force, etc. on the control unit are eliminated No alignment between nozzle and cylinder is required Note! Use a flexible cylinder supply Air connection G1/8 Oil connection G1/4 Water connection G1/8 Control cylinder contruction (acc. to usual energy sources): Pnuematic: 5-10 bar Hydraulic: 40-70 bar Water cooling on the hydraulic cylinder Heat conduction from the nozzle warms the cylinder. To ensure the hydraulic oil does not degenerate, the cylinder temperature should remain between 20-60 C. (More information under: Optiona Extras for shut-off nozzles) Machine-side actuator If a machine-side actuator is to be applied, the leverage installation and connection (range, force and alignment) with the nozzle must be carefully carried out. For a smooth, trouble-free operation, the following requirements must be met: Two-way actuator Max. force on lever: HP0 = 800N, HP1 = 900N, HP2 = 2000N Min. cylinder range: HP0 = 18mm, HP1 = 20mm, HP2 = 26mm 360 Assembly alignment The actuator position is rotational within 360. Proven and tested between 4 and 8 o clock. 8:00 4:00 3

Risk of collision by diving into the mold The stars in the graphic represent exposed areas of the nozzle. The required area should be checked in the machine plate. (mm) P 70 77 Q 51 64 S 84 95 HP 0 HP 1 HP 2 96 92 124 T 87 117 173 Tip length variable to immersion depth (see Tip types) S P Q T In certain circumstances a longer tip can ensure the collision avoidance. In this case the tip dimension would be adjusted. For standard sizes see Tip types. Tip types One-piece tip: two lengths HP 0 HP 1 HP 2 length in mm 24 * 40 32 * 50 50 * 80 Heater band (ø x width in mm) Ø26 x 16 Ø35 x 18 Ø50 x 30 * Standard tip (included in the base model) Two-piece tip HP 0 HP 1 HP 2 length in mm 60, 80, 100, 130, 160 80, 100, 130, 160, 190 100, 130, 160, 190 Heater band ø Heater band Ø35 x -40mm Ø40 x -55mm Ø60 x -70mm Option: In between lengths are custom manufactured Extensions require an adjustable heating system The star represents an exposed area tip cap Heater band tip base For restricted spaces there exist different heating possibilites, see Alternative tip heating systems on page 6. (See Optional Extras, Heating Systems) 4

Optional Extras Filter preventive strategy eeping free feed openings in the hot runner requires the use of a filter. We offer the screen or sieve filter. (More information under Optional Extras, Melt filter) Mixer improved quality on injection molded parts A homogenized melt (in colour and temperature) reduces the reject rate and produces a considerable improvement in the quality of the injection-molded parts. The installation of the mixer takes place before the nozzle. We favour the X-Mixer technology. (More information under Open machine nozzles, type,m) GIT (Gas Injection Technology) cycle time, quality on injection molded parts With the shut-off nozzle the gas is injected through the gate core. To use the nozzle for the GIT process, the tip is changed. A special valve seals the gas feed area to make it completely polymer-seal. The robust, maintenance free gas module ensures a safe process. Optimally the module is used in combination with the shut-off nozzle, but for certain processes the module can also be used without the shut-off nozzle. (More information under Open machine nozzles, type GM) 5

Alternative tip heating systems Note: requires adjustable heating Space saving external heating system A standard heater band requires space in the nozzle immersion area (machine plate - mold). Possibility for restricted spaces: Heater band with flat cap connection and wedge clamping or cylindrical heat cartridges. (More information under Optional Extras, Heating systems) Integrated tip heating system Tip mounted haterbands have exposed areas. When injecting out the problem of over injecting can arise. This requires time consuming cleaning which can result in damage to the heater band. An alternative to this is a tip with integrated heat cartridges. Tip with heat conduction jacket Heat conduction tips are applied in situations of tight tool clearance. These enable heat distribution until the end of the tip in the immersion area without extra heating. (More information under Open machine nozzle, type W) Position sensor for actuator process control A temperature resistant cylinder houses the sensor which detects the position of the piston ensuring that the nozzle is in an open or closed position. (More information under Optional Extras for shut-off nozzles) Needle monitoring Process control, safety feature The needle closes the nozzle opening with contact force in the needle fitting, inside the nozzle tip. This contact sends a signal indicating the open / closed situation of the nozzle. (More information under Optional Extras for shut-off nozzles) 6

Data sheet - machine needle shut-off nozzle, type HP pneumatically / hydraulically controlled Operating data HP0 HP1 HP2 max. injection rate cm 3 / s based on Polystyrol (PS) 500 1600 3500 approx. screw diameter (mm) bis 50 50 120 ab 120 flow channel cm 3 20 50 130 max. contact force (kn) 70 120 180 smallest nozzle orifice (mm) M at max. injection rate Ø 3 Ø 5 Ø 8 max. back pressure (closed nozzle) 1000 bar 1000 bar 1000 bar For higher back pressure (melt precompression) or closing against solid melt pressure (physical foaming) please contact us for more information. max. injection pressure / temperature 3000 bar / 400 C 3000 bar / 400 C 3000 bar / 400 C Two-piece tip Standard dimensions (mm) ey Description HP0 HP1 HP2 tip length; one-piece tip length; two-piece 24*, 40** (60, 80, 100, 130, 160)** Technical modifications reserved. For orders or enquiries please fill out the Dimension sheet. 32*, 50** (80, 100, 130, 160, 190)** *Standard tip included in base model. **Optional tip dimensions. Other tip dimensions custom manufactured. 50*, 80** (100, 130, 160, 190)** M max. orifice (cylindrical) 6 8 11 N body length 138 176 244 I temperature sensor Typ J (FeCuNi) Typ J (FeCuNi) Typ J (FeCuNi) J J heater band (manufactured acc. to drawing ) heater band dimensions one-piece tip; two-piece tip; ø60*80 special 600W / 230V ø80*100 special 1250W / 230V Ø26 x 16 Ø35 x -40 Ø35 x 18 Ø40 x -55 ø115*140 special 2000W / 230V Ø50 x 30 Ø60 x -70 P 70 77 96 Q 51 64 95 R pneumatic G1/8 G1/8 G1/8 hydraulic / water cooling G1/4 / G1/8 G1/4 / G1/8 G1/4 / G1/4 S 84 95 124 7

Dimension Sheet for enquiry or order Shut-off nozzle type HP, pneu. / hydr. operated Company: Street: City / Zip: Land: Contact person: Tel.: Fax: E-Mail: Standard dimensions, see Datasheet. Measurements in mm. Thread length (incl. centering) Temperature sensor bore (thread ø, thread pitch) Connection thread (thread ø, thread pitch) Tip length (check standard dimensions) Temperature sensor bore (ø x depth) Incl. Heater band Centering length Orifice Centering ø Tip contour (radius or angle) Immersion depth (screw tip / angle) Inlet ø Nozzle size Actuation Machine type (when known) HP0 (up to 500 cm³/s with PS) pneumatic (integrated) HP1 (up to 1600 cm³/s with PS) hydraulic (integrated) HP2 (up to 3500 cm³/s with PS) none (machine side) Options Temperature sensor - Type J (FeCuNi), Cable length 2m Tip with abrasion protection (above 30% fillers) Yes Yes Optional Extras: Filter, mixer,git (Gas Injections Technology), alternative tip heating, position sensor for actuator, needle monitoring Special applications: Physical foaming, melt precompression If optional extras are required or when processing with the above special applications, please enter here: Note: Technical modifications reserved. We need additional information for requirements, which vary from our standard range e.g. drawing sample. Our customer services will be pleased to help you. 8