KIPP Catalog Operating Elements & Standard Elements Seite 1151
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K1070 Sliding clamps for slotted holes Material: Housing die-cast zinc. Knob thermoplastic PA (polyamide). T +0,2 10 4,5 24 28 Pins and wedge stainless steel. Thrust pad POM. 10 -0,05 1 Version: Housing chromed. Knob black or orange, glass-bead reinforced. 50 40 Sample order: K1070.32 30 Ø5,5 (2x) Installation dimensions counterpart T2 h9 2 6,3 6,3 Accessories: Base plates K1071. Functional principle: The sliding clamps have 2 different operating principles. 10 +0,2 ≥30 6,3 6,3 Operating principle 1: The sliding clamp is movable. The sliding clamp is bolted onto a loose plate or block placed under a fixated slotted plate. The sliding clamp together with the plate or block can be slid up and down the fixated slotted plate. Displacement on static load from one direction Displa Displacement mm 1,0 ceme 0,8 nt 0,6 0,4 0,2 0 Note: Sliding clamps for slotted holes are inserted into an upper plate with an 10-mm-wide slotted hole and then fixed to the base plate. The knob must be turned to the “OFF” position while the component is being installed. The sliding clamps are used for precision plates with a thickness of 3 mm or 6 mm. For other thicknesses shim plates K1071 must be used. By turning the knob, the pins mounted in the bottom section of sliding clamp are drawn together by the springs and forced downwards. The two pins press against the surface and clamp the sliding clamp. Two spring plungers lift the sliding clamp in the “ON” position allowing easier movement. Static 100 200 300 400 500 600 700 800 Retaining force N load Operating principle 2: The sliding clamp is fixated. The sliding clamp is bolted onto a fixated plate or block placed under a loose slotted plate. The sliding clamp cannot move but the slotted plate can be slid up and down over the fixated plate or block. Drawing reference: 1) Spring plungers (2x) 2) Chamfer ~0,3 The forces apply to steel or stainless steel plates KIPP Sliding clamps for slotted holes 1150 Order No. black Order No. Orange T T2 Holding force N Temp. resistance up to K1070.31 K1070.32 3 3 500 90 °C K1070.61 K1070.62 6 6 500 90 °C
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