NEW. Cone Clamping Elements Trantorque Keyless Locking Devices for very small diameters from 3 mm. E03.050e
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1 Cone Clamping Elements Trantorque Keyless Locking Devices for very small diameters from 3 mm NEW E03.050e Backlash free positioning Excellent concentricity Quick mounting by central clamping nut Issue 10/014 Technical details subject to change without notice. RINGSPANN Registered Trademark of RINGSPANN GmbH, Bad Homburg
2 Cone Clamping Elements Trantorque Mini - metric for smallest shaft diameters excellent concentricity Features For smallest shaft diameters between 3 mm and 16 mm Excellent concentricity and transmission of bending moments -1 Application example Cone Clamping Element Trantorque Mini provides a solution for mounting components in tight spaces on very small shafts, such as for a belt pulley. - Transmissible torques and axial forces The transmissible torques or axial forces listed on page 3 are subject to the following tolerances, surface characteristics and material requirements. Please contact us in the case of deviations. Tolerances for shaft diameter d ± 0,04 mm for hub bore D ± 0,04 mm Surfaces Average surface roughness at the contact surfaces between the shaft and the hub bore: R a 3, μm. Materials The following apply to the shaft and the hub: E-module 170 kn/mm During selection of the shaft material the contact pressure P W of the particular size has to be observed. Installation Please request our installation and operating instructions for Trantorque Mini. Simultaneous transmission of torque and axial force The transmissible torques M which are shown in the tables apply for axial forces F = 0 kn and con versely, the indicated axial forces F apply to torques M = 0 Nm. If torque and axial force are to be transmitted simultaneously, the transmissible torque and the transmissible axial force are reduced. Please refer to the technical points on pages 6 and 7. Example for ordering Cone Clamping Element Trantorque Mini for shaft diameter d = 15 mm: Trantorque Mini, size 15 x 6 Article number
3 Cone Clamping Elements Trantorque Mini - metric for smallest shaft diameters excellent concentricity B C L 1 ø d ø D SW Dimensions Technical Data Article number Max. transmissible torque or Tightening torque of Contact pressure at Weight Size axial force clamping nut Shaft Hub d D B C L 1 SW M F M S P W P N mm mm mm mm mm mm Nm kn Nm N/mm N/mm kg , , , , , , , , , , , , ,
4 Cone Clamping Elements Trantorque OE - metric for small shaft diameters excellent concentricity Features For small shaft diameters between 17 mm and 35 mm Excellent concentricity and transmission of bending moments Radial flat height 4-1 Application example Backlash free mounting of a belt pulley with a Cone Clamping Element Trantorque OE. 4- Transmissible torques and axial forces The transmissible torques or axial forces listed on page 5 are subject to the following tolerances, surface characteristics and material requirements. Please contact us in the case of deviations. Tolerances for shaft diameter d ± 0,08 mm for hub bore D ± 0,08 mm Surfaces Average surface roughness at the contact surfaces between the shaft and the hub bore: R a 3, μm. Materials The following apply to the shaft and the hub: E-module 170 kn/mm Installation Please request our installation and operating instructions for Trantorque OE. Simultaneous transmission of torque and axial force The transmissible torques M which are shown in the tables apply for axial forces F = 0 kn and con versely, the indicated axial forces F apply to torques M = 0 Nm. If torque and axial force are to be transmitted simultaneously, the transmissible torque and the transmissible axial force are reduced. Please refer to the technical points on pages 6 and 7. Example for ordering Cone Clamping Element Trantorque OE for shaft diameter d = 3 mm: Trantorque OE, size 3 x 50 Article number
5 Cone Clamping Elements Trantorque OE - metric for small shaft diameters excellent concentricity B C L 1 ø d ø D SW Dimensions Technical Data Article number Max. transmissible torque or Tightening torque of Contact pressure at Weight Size axial force clamping nut Shaft Hub d D B C L 1 SW M F M S P W P N mm mm mm mm mm mm Nm kn Nm N/mm N/mm kg , , , , , , , , , , ,
6 Technical Points for Cone Clamping Elements Tightening torque The tightening torque M S listed in the tables must be achieved during assembly and must not be exceeded by more than 10%. If the indicated tightening torque M S is not achieved, the transmissible torque or axial force, as well as the contact pressures at the shaft and at the hub will be proportionally reduced compared to the values listed in the tables for M or F as well as for P W and P N. When the indicated tightening torque M S is undercut by more than 30%, please contact us. Simultaneous transmission of torque and axial force The transmissible torques M which are shown in the tables apply for axial forces F = 0 kn and con versely, the indicated axial forces F apply to torques M = 0 Nm. If torque and axial force are to be transmitted simultaneously, the transmissible torque and the transmissible axial force are reduced compared to the values listed in the tables for M and F. For a given axial force F A, the reduced torque M red is calculated as: ßßßßßß M red =! M - (F A d ) For a given torque M A, the reduced axial force F red is calculated as: F red = d! ßßßß M - M A Bending moments Where there are bending moments in addition to the torque M A or the axial force F A, the transmissible torque or transmissible axial force is reduced compared to the values for M or F as listed in the tables. Please contact us. Hollow shafts When clamping hubs on hollow shafts with Cone Clamping Elements, the tangential stress s twi must not exceed the yield strength R e of the hollow shaft material. s twi = 1,7 P W C W = d Wi d 1 - C W with 6
7 Hub Design For the different Cone Clamping Element series, the tables list the required hub width N min and the required hub outer diameter K min for three exemplary yield strengths R e of the hub. Thereby, the hub is to be arranged as seen in figure 7-1 for Cone Clamping Elements with a fixed backstop point. For Cone Clamping Elements without a fixed backstop point, the hub is to be arranged according to figure 7-. For this, we practically assume that the clamping nuts of the Cone Clamping Element are flush with the hub on one side. When the actual load-bearing hub width N A is smaller than the required hub width N min and the yield strengths R e of the hub material is known, the required hub outer diameter K min can be calculated approximately as follows: K min = 1, D R H = ( ) e with When the hub width N A is known and the hub outer diameter K A is known, the hub material yield strength R e must be higher than the equivalent stress s v in the hub. 4 L s v = 1,7 P N 1!ßßßß 3 + C N with 1 - C N C N = H - 1,5 H - 3 1,7 P N N A D K A N A L 1 The load-bearing hub width N A in the application must not be smaller than the loadbearing width L 1. Load-supporting hub width 6,5 6,5 Required hub width N min Load-bearing width L 1 Hub arrangement for Cone Clamping Elements with a fixed backstop point Load-supporting hub width Required hub width N min Load-bearing width L 1 6,5 Load-supporting hub width Hub arrangement for Cone Clamping Elements without a fixed backstop point Required hub outer diameter K min Required hub outer diameter K min Formula symbols d = Shaft diameter [mm] d Wi = Inner hollow shaft diameter [mm] D = Hub bore [mm] F = Transmissible axial force according to table [kn] F A = Maximum actual application axial force [kn] F red = Reduced axial force [kn] K A = Hub outer diameter in the application [mm] K min = Required hub outer diameter according to table or calculation [mm] L 1 = Load-bearing axial width according to table [mm] M = Transmissible torque according to table [Nm] M A = Maximum actual application torque [Nm] M red = Reduced torque [Nm] M S = Tightening torque of clamping nut according to table [Nm] N A = Load-bearing hub width in the application [mm] N min = Required hub width according to table [mm] P N = Contact pressure at the hub according to table [N/mm ] P W = Contact pressure at the shaft according to table [N/mm ] R e = Hub material yield strength [N/mm ] s twi = Tangential stress in the hollow shaft [N/mm ] s v = Equivalent stress in the hub [N/mm ] C N, C W and H are reference values without units. 7
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