. Dimensions of the Machine Spindle Heads in Compliance with DIN The most recent editions of the DIN standards are binding.

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1 Clamping technology. Dimensions of the Machine Spindle Heads in Compliance with DIN The most recent editions of the DIN standards are binding. DIN Taper sizes 4 and above with drive tang. Spindle No. of holes aut. F1 (outer No. of holes int. F2 (in. head C1 C2 D circle (F1) circle) circle (F2) circle) size mm mm mm mm mm E1 mm mm E2 mm mm , x M10 70, , x M10 82, , , x M10 104,8 8 x M10 61, , , x M12 133,4 8 x M12 82, , , x M16 171,4 8 x M16 111, , , x M20 235,0 8 x M20 165, , , x M24 330,2 11 x M24 247, , , x M24 463,6 11 x M24 368,3 D C 1 E1 D C 2 E1 Shape : Threaded holes in back plate (outer hole circle) without inner hole circle. F1 7 7" 30" F1 7 7" 30" E2 F2 Shape : Threaded holes in back plate (outer hole circle) and inner hole circle. E1 E1 DIN and ayonet plate attachment (ISO 702/III) Mounted with llen screws on spindle head Spindle head C D No. of holes F size mm mm mm mm x E mm mm , x 21 75, , x 21 85, , x , , x , , x , , x , , x , , x ,6 Mounted with stud bolts and flange nuts DIN and S 5.9 D 1 Camlock attachment (ISO 702/II) Spindle head C D E F size mm mm mm mm mm mm 3 92,1 53,985 11,1 31,8 3 x 15,1 70, ,5 63,525 11,1 33,3 3 x 16,7 82, ,0 82,575 12,7 38,1 6 x 19,8 104, ,0 106,390 14,3 44,5 6 x 23,0 133, ,4 139,735 15,9 50,8 6 x 26,2 171, ,5 196,885 17,5 60,3 6 x 31,0 235, ,0 285,800 19,0 69,9 6 x 35,7 330, ,0 412,800 21,0 82,5 6 x 42,1 463,6 Mounted with camlock stud bolts

2 Unfinished backplates Lathe chuck flanges Three-jaw lathe chucks Unfinished ackplates Cast, untreated. pplication For mounting lathe chucks and face plates with mounting recess in compliance with DIN 6350 onto spindle heads with thread in compliance with DIN ackplate For chuck d 3 l 2 d 2 l approx. mm d1 mm mm mm mm mm / l 2 l 1 d 3 d 2 d Cast iron body, finished on machine side, face-turned on chuck side. pplication For mounting lathe chucks and face plates with mounting recess in compliance with DIN Lathe Chuck Flanges Flanges for long tapers and made of steel available on request Short-taper mount in compliance with DIN (DIN bayonet plate attachment) with stud bolts and flange nut Short-taper mount in compliance with DIN and S 5.9 D1 with stud bolts for Camlock For chuck Ø Short taper mm size For chuck Ø Short taper mm size Geared Scroll Chucks Cushman system Universal use. With the aid of the scroll thread, the jaws can be infinitely adjusted over the entire gripping range. Recommended speeds, gripping forces, accuracy, unbalance etc. are in compliance with DIN 6386 part 1, class 1. Steel body drop forged. Cast iron body made of special cast iron. Scroll drop-forged, balanced, hardened. Thread flanks ground on both sides. Lubrication by means of grease nipples Three-Jaw Lathe Chucks with Cylindrical Mount DIN With cylindrical mounting recess in compliance with DIN 6350, wrench and fastening screws. Spare jaws and additional jaws cat.-no With 1 set of centre turning jaws stepped down towards centre and 1 set of boring jaws stepped down towards rim With one set of reversible jaws: for inside and Mounting recess in compliance with DIN 6350 (fastening screws from the rear) outside. Cast iron body Steel body Steel body Size C Hole Max. permissible speed rpm Ø mm mm mm E mm no no / , E C

3 Three-Jaw Lathe Chucks with Short-Taper Mounting DIN Clamping technology With short-taper mount in compliance with DIN (bayonet plate attachment) with wrench, stud bolts and flange nut. pplication For direct mounting on machine spindle With 1 set of jaws for turning, stepped down towards centre and 1 set of jaws for boring, stepped down towards rim, wrench, stud bolts and flange nut With one set of reversible jaws: Can be turned to step in either direction. No flange required. Spare jaws and additional jaws cat.-no Short-taper mounting in compliance with DIN (stud bolts and flanged nuts) or in compliance with DIN (stud bolts for Camlock system) E Cast iron body Steel body Steel body Size Short taper Hole Max. Permissible speed rpm Ø mm mm Size E mm no no / , , , , , , , , With short-taper mount in compliance with DIN With 1 set stepped down towards centre turning- and 1 set stepped down towards rim boring jaws, wrench, stud bolts for Camlock. pplication For Camlock system: For direct mounting on machine spindle. Three-Jaw Lathe Chucks with Short-Taper Mounting DIN No flange required. Spare jaws and additional jaws cat.-no Short-taper mount in compliance with DIN (stud bolts and flanged nuts) or in compliance with DIN (stud bolts for Camlock system) E Cast iron body Steel body Size Short taper Hole Max. Permissible speed rpm Ø mm mm Size E mm no no , , , , , , , , , Impressive brand. Impressive tools

4 Spare jaws Four-jaw lathe chucks Sets of Jaws for Three-Jaw Lathe Chucks Set = 3 pcs. Exchangeable, assuming that jaw guideways are not worn out Spare boring jaws Hard, stepped down towards rim. Replacement hard jaws should have their bearing surfaces ground in with a grinding head on the lathe, in order to achieve the original true-running accuracy Spare turning jaws Hard, stepped down towards centre lank jaws Unstepped, soft, hardenable Reversible jaws Can be turned to step in either direction ase jaws Hard. pplication For mounting soft top jaws cat.-no Soft top Soft, hardenable. pplication For mounting on base jaws For size mm / With straight mounting recess in compliance with DIN With scroll, Cushman System. With 1 set of jaws for turning, stepped down towards centre, and 1 set of jaws for boring, stepped down towards rim, wrench and fastening screws. Four-Jaw Lathe Chucks with Cylindrical Mount DIN 6350 E Spare jaws and additional jaws cat.-no C Mounting recess in compliance with DIN 6350 (fastening screws from the rear) Cast iron body Steel body Size C Hole Max. permissible speed rpm Ø mm mm mm E mm no no

5 With short taper mounting recess in compliance with DIN (bayonet plate attachment). With 1 set of jaws for turning, stepped down towards centre, and 1 set of jaws for boring, stepped down towards rim, wrench and fastening screws. pplication For direct mounting on machine spindle. Four-Jaw Lathe Chucks with Short-Taper Mounting DIN Spare jaws and additional jaws cat.-no Short-taper mounting in compliance with DIN (stud bolts and flanged nuts) or in compliance with DIN (stud bolts for Camlock system) Clamping technology E Cast iron body Steel body Size Short taper Hole Max. permissible speed rpm Ø mm mm Size E mm no no , , , , , , , , With short taper mounting recess in compliance with DIN 55029, S 5.9 D 1, including stud bolts. With 1 set of jaws for turning, stepped down towards centre, and 1 set of jaws for boring, stepped down towards rim, wrench and fastening screws. Four-Jaw Lathe Chucks with Short-Taper Mounting DIN pplication For Camlock system: For direct mounting on machine spindle. Spare jaws and additional jaws cat.-no Cast iron body Steel body Size Short taper Hole Max. permissible speed rpm Ø mm mm Size E mm no no , , , , , , , Set = pcs. 4. Exchangeable, assuming that jaw guideways are not worn out. Replacement hard jaws should have their bearing surfaces ground in with a grinding head on the lathe, in order to achieve the original true-running accuracy Spare boring jaws Hard, stepped down towards rim. Sets of Jaws for Four-Jaw Lathe Chucks Spare turning jaws Hard, stepped down towards centre lank jaws Unstepped, soft, hardenable Soft top Soft, hardenable ase jaws hard. pplication For mounting soft top jaws cat.-no For size mm

6 Three-jaw key bar lathe chucks Spare jaws Four-jaw lathe chucks. Key-ar Chucks with jaw safety feature, self-centring > Higher speeds > Higher gripping force > Larger through-hole > Steel body, jaw guideways hardened and ground The chuck is recommended for applications requiring extremely high gripping forces, high concentricity and very reliable, repeatable long-term accuracy. For turning machines. In conjunction with a base plate stationary use on milling machines, indexing attachments and machining centres Duro With straight mounting recess in compliance with DIN With base jaws and hard top jaws, reversible for use as turning or boring jaws. With safety locking slides for jaws. Forged steel chuck body, self-centring. ll parts involved in movement are hardened and ground. The force is transmitted by a screw spindle and a key bar, via a slide to a thrust ring. High chucking power without excessive effort. Short resetting times by simple shifting or exchanging complete sets of jaws. High true-running accuracy. Key-ar Three-Jaw Lathe Chucks Spare jaws see cat.-no Size Chucking range Hole Jaw travel without Permissible speed D mm outside mm inside mm mm shifting mm rpm mm , , , , , , Duro With short-taper mounting in compliance with DIN (bayonet plate attachment), stud bolts and flanged nuts. With base jaws and hard top jaws, reversible for use as turning or boring jaws. With safety locking slides for jaws. Forged steel chuck body, self-centring. ll parts involved in movement are hardened and ground. The force is transmitted by a screw spindle and a key bar, via a slide to a thrust ring. High chucking power without excessive Key-ar Three-Jaw Lathe Chucks with Short-Taper Mounting DIN effort. Short resetting times by simple shifting or exchanging complete sets of jaws. High true-running accuracy. Spare jaws see cat.-no Short-taper mounting in compliance with DIN 55027, DIN 55022, ISO 702/III with stud bolts and flange nut Size Short taper Chucking range Hole Jaw travel without Permissible D Outer mm size mm outside mm inside mm mm shifting mm speed mm circle F mm , , , , , , , , , , , , , , ,

7 26410 Duro With short taper mounting recess in compliance with DIN 55029, S 5.9 D 1, including stud bolts. With base jaws and hard top jaws, reversible for use as turning or boring jaws. With safety locking slides for jaws. Forged steel chuck body, self-centring. ll parts involved in movement are hardened and ground. The force is transmitted by a screw spindle and a key bar, via a slide to a thrust ring. Clamping technology Key-ar Three-Jaw Lathe Chucks with Short-Taper Mounting DIN High chucking power without excessive effort. Short resetting times by simple shifting or exchanging complete sets of jaws. High true-running accuracy. pplication For Camlock system. For direct mounting on machine spindle. Spare jaws see cat.-no Short-taper mounting in compliance with DIN 55029, S 5.9 type D 1 with stud bolts for Camlock Size Short taper Chucking range Hole Jaw travel without Permissible speed D Outer mm size mm outside mm mm shifting mm rpm mm circle F mm , ,5 82, , , , , , , , , Spare Jaws Set = 3 pcs. pplication For key-bar three-jaw lathe chucks cat.-no Replacement hard top jaws or solid hard stepped jaws are not ground for true-running on the clamped surfaces. They must be ground in the chuck (clamping pressure applied) while running Stepped jaws Hard, single piece, reversible, as turning and drilling jaws ase jaws Hard Top jaws Hard, reversible for use as turning or boring jaws Top jaws Soft for Size Cast iron body. With scroll, Wescott system (combined lathe chuck). Reversible jaws self-centring or single, adjustable independently of each other, with cylindrical mounting recess in compliance with DIN 6351 for mounting on back plate. Thread flanks ground on both sides, both on the jaws and on the scroll, which is hardened throughout. ssembly with 1 set of hard base jaws and 1 set of reversible top jaws, wrench, adjustment wrench and fastening screws. Four-Jaw Lathe Chucks Safety square-stud key with automatic ejector pin see cat.-no Reversible jaws and blank jaws available on request Size Hole mm mm

8 Three-jaw lathe chucks ccessories Stop ring systems Workpiece stops Universal face plates ZG HI-Tru, with fine radial adjustment for extremely high true-running accuracy, self-centring. Thread flanks ground on both sides, both on the jaws and on the scroll, which is hardened throughout. Cast iron body with cylindrical mounting recess in compliance with DIN 6350, true-running less than 0,005 mm. Repeat clamping accuracy 0,015 mm, assembly with 1 set of jaws for turning, stepped down towards centre, and 1 set of jaws for boring, stepped down towards rim, wrench and fastening screws. Three-Jaw Lathe Chucks Safety square-stud key with automatic ejector pin see cat.-no Lathe chuck with short taper mounting in compliance with DIN (55 022), DIN (with stud bolts and nut) or Camlock DIN (S 5.9) available on request. Jaw sets see cat.-no Size Hole mm Inch mm / / Jaws reversible and infinitely adjustable. Lathe Chuck Jaw Recessing ttachments pplication For three-jaw lathe chucks. For facing and boring of unhardened and grinding of hardened lathe chuckjaws Outside Ø Inside Ø Ranges For chuck Ø Size mm mm Inside Ø mm Outside Ø mm up to mm Set of Stop Ring Systems 0 Delivery in storage box 590 x 480 mm. pplication For three and/or four-jaw lathe chucks for positioning and mounting. s length stop and for securing the workpiece against movement during drilling and turning and in stationary chucks during milling. The stop rings are positioned in the flutes of the boring jaws. dvantages: - Quick exchange of the stop rings = short cycle time. - Contact surface of the workpiece does not move. - Large centrical through-hole Set of 320 rings, for workpiece-ø 7,5-109 mm Set of 163 rings, for workpiece-ø mm Easy handling - measure workpiece, look for suitable stop rings. Insert ring into the corresponding flute. Mounting, clamping and machining of the workpiece (the corresponding grooves can easily be worked into the jaws). Setup time approx. 20 seconds. It is not possible for the workpiece to be moved into the chuck, even when drilling.therefore, considerably higher feeds are possible, especially when drilling. Enables exact compliance with dimensions as well as effortless internal machining of large centrical through holes Number of For workpiece rings Ø mm RS , RS

9 Workpiece Locator for Lathe Chuck Clamping technology Made of aluminium, supports precision ground. The material stop is easily mounted to the lathe chuck by means of 3 magnets, which are built into the stop. Clamping of turning parts from mm Ø. Suitable for three-jaw lathe chucks with jaw width up to 56 mm. pplication For chucking short turning parts into three-jaw lathe chucks Set 5-part, in wood case, stop height 15 / 20 / 25 / 30 / 35 mm Workpiece locator, single. 1) Material Stop Example of application Set Stop height (thickness) mm Set single Stop height (thickness) mm merican, cast iron body. 4 one-part, threestep ground reversible jaws are adjusted by means of screw spindle, independent of each other. Universal Face Plates Spindle type In compliance with DIN for bayonet plate attachment, with stud bolts and flanged nuts mm Ø with 4 T-slots. Large chucking capacity, hard base jaws, reversible jaws, top jaws available on request Spindle type In compliance with DIN 55029, with stud bolts for Camlock. Ø Short taper Chucking range Recess Ø Hole mm mm mm mm mm Safety Square-Stud Wrench With ejector pin in the face of the square end. pplication For lathe chucks. The wrench must be firmly pressed into the lathe chuck drive and held there until the tightening operation has been completed. When the pressure is relaxed, the wrench is automatically ejected Wrench mm Wrench mm

10 Hollow spindle stops Top jaws Tenons Hollow Spindle Stops With spreader wrench. pplication For lathes for series and single-part production. The hollow spindle stop is clamped at the desired point in the machine spindle using the spreader wrench For spindle Size hole mm For spindle Size hole mm Power Chucks DURO-NCES For straight-toothed jaws Quick-action jaw exchange system with single unlocking system Securing of the position of the base jaws The special design (key bars are positioned tangentially) has a positive effect on the manner in which the chuck reacts to centrifugal forces. This means: higher possible rpm (with large through-hole) and gripping power losses are reduced. The single unlocking system simplifies the handling of large special top jaws, which have to used in dependence of the work piece. Further power chucks for higher rpm KFD-HS Power chucks with two, three and four jaws, with large through-hole, high remaining clamping force without centrifugal force balancers DURO-NC Power chuck with quick-action jaw change system, central jaw unlocking, large through-hole, universal draw-bar connection KFD-HE Power chuck with large through-hole, high radial and axial true-running capacity KFD-N Holding down power chuck for outside clamping, high clamping accuracy LVE ir-operated self-contained chuck, high gripping force even at 6 bar

11 Soft Top Jaws with Serration 1/16 inch x 90 Clamping technology Set = 3 pcs. pplication Suitable for power chucks of the following brands: erg, Forkardt, Gamet, Geiger & Haag, Pratt urnerd, Röhm, Schunk, SMW and utoblock Standard version Long version evelled, for small chucking diameters For setting the jaws to the chuck, please compare serration, groove width (N) und hole distance (a,b). Standard For chuck Ø Dimensions a b Groove N Thread Weight mm L x W x H mm mm mm mm DIN 912 approx. kg x 40 x M 12 3, x 40 x M 12 4, / x 50 x M 16 9, /500/ x 60 x ,5 M 20 16, Long version For chuck Ø Dimensions a b Groove N Thread Weight mm L x W x H mm mm mm mm DIN 912 approx. kg x 35 x M 12 1, x 35 x M 12 2, x 50 x M 16 5, x 50 x M 16 6, Tenons for Power Chucks with Serration With cheese head screws DIN Precision ground and tempered. pplication Suitable for all standard power chucks of the following brands: Schunk, Forkardt, Röhm and SMW Groove width H x h Max. torque Thread Suitable for S g6 mm mm Nm DIN 912 brands/type x 9 70 M 12 Forkardt: NH , NHF x 9 70 M 12 Schunk: TH , THF x M 12 SMW: HFKS , HFK x 9 70 M 12 Röhm: KFD , KFH x M 16 Forkardt: NH , NHF x M 16 Schunk: TH , THF x M 16 SMW: HFKS , HFK ,5 x M 16 Röhm: KFD , KFH ,5 29 x M 20 Forkardt: NH , NHF ,5 29 x M 20 Schunk: TH , THF ,5 29 x M 20 SMW: HFKS 400, HFK ,5 33,7 x 15,5 220 M 20 Röhm: KFD , KFH Soft Top Jaws with Serration 1,5 mm x 60 evelled, for small chucking diameters. Set = 3 pcs. pplication Suitable for lathe chuck brands Kitagawa and Matsumoto. For setting the jaws to the chuck, please compare serration, groove width (N) und hole distance (a,b) Standard version Long version Standard For chuck Ø Dimensions a b Groove N Thread Weight mm L x W x H mm mm mm mm DIN 912 approx. kg x 31 x M 10 1, x 35 x M 12 2, x 40 x M 12 3, x 50 x M 14 6, / x M 16 7, Long version For chuck Ø Dimensions a b Groove N Thread Weight mm L x W x H mm mm mm mm DIN 912 approx. kg x 31 x M 10 1, x 35 x M 12 2, x 40 x M 12 4, x 50 x M 14 7,

12 Tenons stud bolts Nuts for T-slots Tenons Suitable For Kitagawa-Chucks With cheese head screws DIN Precision ground and tempered. pplication For Japanese chucks with a serration of Slot width H/h b Max. torque Thread Suitable for S g6 mm mm mm Nm DIN 912 Kitagawa 12 18,5/7, M / ,5/8, M / ,5/8, M / ,5/13, M 14 12/N /11, M / High-quality brand to satisfy highest requirements Innovative tools High availability Vast range of products Strict quality control 0 Impressive brand. Impressive tools

. Dimensions of Machine Spindle Heads in Compliance with DIN The most recent editions of the DIN standards are binding

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