EP2178678B1 - Serre-joint et procédé de fabrication d'un serre-joint - Google Patents

Serre-joint et procédé de fabrication d'un serre-joint Download PDF

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Publication number
EP2178678B1
EP2178678B1 EP08802962.4A EP08802962A EP2178678B1 EP 2178678 B1 EP2178678 B1 EP 2178678B1 EP 08802962 A EP08802962 A EP 08802962A EP 2178678 B1 EP2178678 B1 EP 2178678B1
Authority
EP
European Patent Office
Prior art keywords
slide rail
housing
housing part
bearing means
holding element
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP08802962.4A
Other languages
German (de)
English (en)
Other versions
EP2178678A2 (fr
Inventor
Thomas Klein
Hans Rösch
Gerhard KLÖPFER
Karl Philipp
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Bessey Tool GmbH and Co KG
Original Assignee
Bessey Tool GmbH and Co KG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Bessey Tool GmbH and Co KG filed Critical Bessey Tool GmbH and Co KG
Publication of EP2178678A2 publication Critical patent/EP2178678A2/fr
Application granted granted Critical
Publication of EP2178678B1 publication Critical patent/EP2178678B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B5/00Clamps
    • B25B5/06Arrangements for positively actuating jaws
    • B25B5/068Arrangements for positively actuating jaws with at least one jaw sliding along a bar
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B5/00Clamps
    • B25B5/06Arrangements for positively actuating jaws
    • B25B5/10Arrangements for positively actuating jaws using screws
    • B25B5/102Arrangements for positively actuating jaws using screws with at least one jaw sliding along a bar
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B5/00Clamps
    • B25B5/16Details, e.g. jaws, jaw attachments
    • B25B5/163Jaws or jaw attachments
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49826Assembling or joining

Definitions

  • the invention relates to a ferrule comprising a slide rail, a fixed bracket, which is fixed to the slide rail and on which a first contact surface is arranged for a workpiece, a sliding bracket, which is displaceable on the slide rail, a housing device, to which a first bearing means and a second bearing device spaced apart from the first bearing device is held, via which the housing device is displaceably guided on the slide rail, wherein the slide bracket is positioned between the first bearing device and the second bearing device, and wherein a second contact surface for a workpiece is arranged on the housing device, which faces the first abutment surface, and a force applying means, which is held on the sliding bar and which acts on a pressure piece, which is held on the housing means.
  • the invention further relates to a method for producing a ferrule.
  • a box-shaped mounting element for the sliding bar which provides a substantially flat contact surface for a workpiece and which is designed such that it can be pushed onto the pressure piece of the sliding bar to hold the Aufsetzelement on the sliding bar and by the Aufsetzelement on a Workpiece on a Druckbeetzungsspindel a compressive force is exercised.
  • the attachment element has at least two spaced guide recesses over which it is displaceably mounted on the guide rail.
  • An initially mentioned ferrule is also referred to as a body clamp.
  • the housing device is held on the pressure piece on the slide bracket.
  • the sliding bar can be tilted with the slide rail. It can then exert a compressive force on a workpiece via the housing device with the second contact surface, so that one or more workpieces can be clamped between the first contact surface and the second contact surface.
  • the invention has for its object to provide a ferrule of the type mentioned, which can be produced in a simple manner.
  • the housing device has a first housing part with a housing interior, which has an opening which faces the first contact surface and can be brought into the housing interior via the in the manufacture of the ferrule of the slide and that a second housing part is fixed to the closure of the opening on the housing means.
  • the ferrule according to the invention can be produced in a simple and cost-effective manner, since it can be mounted in a simple and cost-effective manner.
  • the sliding bar In the open first housing part, the sliding bar can be from the front (on the side which faces the first contact surface).
  • the interior of the housing is closed by the second housing part and an element is provided on which the second contact surface is formed or on which it can be positioned.
  • the second housing part is designed as a housing cover. As a result, the housing interior can be closed in a simple manner.
  • the second housing part is latched to the housing device and advantageously latched to the first housing part. This makes it easy to produce the ferrule. Just a few simple steps are required to position the housing device with its entire "inner life" on the slide rail.
  • the second housing part is at least partially fixed to the first housing part.
  • the clamp according to the invention can be mounted in a simple manner.
  • a contact element, on which the second contact surface is formed is held at least partially on the second housing part. This allows the ferrule to be mounted easily.
  • the housing device can be mounted and closed on the slide rail and the contact element with the second contact surface can then be pushed onto the housing device, for example.
  • the first housing part and / or the second housing part are made of a plastic material.
  • the ferrule can be formed with relatively low weight.
  • the production is simplified. For example, injection-molded parts can be used which are designed such that only a small number of further parts have to be fixed.
  • the first housing part has a cross-section of an L-shaped configuration with a longitudinal region which extends along the slide rail and with a transverse region which extends transversely to the slide rail.
  • This makes it possible to realize a displaceability of the sliding bracket between the first bearing device and the second bearing device in the longitudinal region.
  • a fixation area for the pressure piece is provided via the transverse area.
  • first bearing device and the second bearing device are arranged at the longitudinal region.
  • the slide rail is made through the longitudinal area.
  • the pressure piece is arranged at the transverse region.
  • it can be positioned at a distance from the slide rail, so that a compressive force can be exerted on the slide bracket via the force application device and the slide bracket can thereby tilt relative to the slide rail.
  • a holding element for holding the first bearing device, the second bearing device and the pressure piece is arranged in the housing interior.
  • the use of such a retaining element results in a stable design of the ferrule, so that it works reliably.
  • the production of the ferrule can be made simple, as a pre-assembly is possible on the holding element and / or individual components can be secured in position without complex fixation operations are necessary.
  • the retaining element holds rollers of the first bearing device and the second bearing device.
  • the slide is guided displaceably.
  • the slide rail is slidably guided, it being possible that one or more rollers are rotatable, so that here the displacement guide is a roller slide bearing.
  • the holding element has recess pairs each with a first recess and an opposite second recess, on each of which a pin is seated. It can thereby fix bearing components on the support member in a simple manner.
  • the pen itself forms a role or he is a carrier for a role.
  • the second housing part has opposite lugs with recesses into which pins of the second bearing device are at least partially immersed. As a result, the second housing part can be securely held on the housing device to close the opening.
  • the holding element is made of a metallic material. It then has the necessary stability and it can be produced in a simple manner.
  • the holding element comprises a first leg, a second leg spaced parallel, and at one end face at least one connecting web between the first leg and the second leg.
  • a gap between the first leg and the second leg is provided, which can accommodate roles of the first bearing means and the second bearing means and through which the slide rail is performed.
  • such a holding element can be inserted via the slide bar in the housing interior.
  • elements can be preassembled on the holding element.
  • first leg and the second leg are each L-shaped and adapted to the shape of the housing device.
  • the at least one connecting web is positioned in the region of the opening of the first housing part. When a workpiece is clamped, then acts in this area a high force, which is received by the at least one connecting web.
  • the holding element has an open end face, which faces the end face with the at least one connecting web.
  • the holding element can be pushed with the open end face onto a roller holding element. This allows a simple manufacturability of the clamp according to the invention.
  • a roller holding element for holding rollers of the first bearing device is arranged in the housing interior.
  • the role holding member serves as an assembly aid during the manufacture of the ferrule.
  • the rollers can be inserted into the roller holding element and positioned correctly in the housing interior via the roller holding element.
  • the sliding bar can be inserted during assembly of the clamp and then the holding element can be inserted.
  • the first bearing device can be produced and positioned in a simple manner in the housing interior.
  • the roller holding element is arranged in the region of a first end face of the first housing part, which faces away from the fixed yoke.
  • the roller holding element contacts the corresponding end wall. This results in a simple positioning of the rollers.
  • the holding element can be aligned with respect to the rollers in a simple manner, so that they can be fixed to the holding element, for example by means of pins.
  • the role holding element can serve as a positioning aid with the task of a spacer in the housing interior for the holding element. If the retaining element is inserted into the housing interior and pushed onto the roller holding element, then it has automatically reached its correct position in the housing interior.
  • the first housing part comprises recesses into which at least partially pins of the first bearing device are immersed.
  • rollers can be fixed to the housing device in a simple manner.
  • the pins can be dipped from the outside during the manufacture of the ferrule to allow easy manufacture.
  • the first bearing device is securely held on the housing device.
  • first contact surface and the second contact surface are aligned substantially parallel to one another.
  • one or more workpieces can be clamped between the first contact surface and the second contact surface, wherein the clamping force acts substantially perpendicular to the first contact surface and the second contact surface.
  • first contact surface and the second contact surface are oriented substantially perpendicular to a longitudinal direction of the slide rail. This results in extensive application possibilities for the clamp according to the invention.
  • the slide rail is performed by the first abutment surface and the second abutment surface (or an aligned continuation thereof).
  • the first contact surface and the second contact surface have a closed contact region which extends (at least) as far as the slide rail.
  • the interior of the housing is closed on an end face opposite the second contact surface except for a recess through which the slide rail has penetrated. As a result, the housing interior is protected from dirt and the like.
  • the housing interior is closed on a lower side and / or an upper side of the housing device.
  • the fixed bracket is slidably mounted lockable on the slide rail. Its position on the slide rail can be adjusted, with each corresponding position being a fixed position.
  • the pressure piece has a holding head receiving space for a holding head of the force application device and at least one locking element for fixing the holding head in the holding head receiving space
  • the at least one blocking element is arranged in a blocking element receiving space and from the retaining head must be immersed, and wherein the at least one blocking element and the locking element receiving space are formed so that the force required to penetrate the at least one locking element in a direction of insertion of the holding head into the holding head receiving space is smaller than the force required to penetrate in a direction of execution of the holding head out of the holding head receiving space.
  • the pressure piece on the housing device (for example, a holding element) can be fixed and then easily inserted during manufacture of the holding head, which sits on the Kraftbeierschlagungs announced. Furthermore, the pressure piece is then firmly and securely fixed to the Kraftbeierschlagungs announced.
  • the invention is further based on the object to provide a ferrule of the type mentioned, which has variable uses.
  • the fixed bracket has at least one blocking element which blocks in a locking position, the mobility of the fixed bracket relative to the slide in at least one direction, and that a loading device is provided by the inclination of at least a blocking element is variable so that the fixed bracket is displaceable on the slide rail for adjusting its position on the slide rail.
  • a fixed bracket which is lockable displaceable on the slide rail.
  • About the at least one blocking element (brake element) of the fixed bracket is fixed to the slide rail.
  • This fixing position can be canceled by actuation of the loading device.
  • the fixation is released and the fixed bracket can be brought to the slide rail in a desired position by the operator. An operator can thereby easily determine the position of the fixed bracket on the slide.
  • the fixed bracket does not need to be solved by loosening screws or the like, but by canceling the blocking position (blocking position) of the at least one blocking element can be realized in a simple manner adjustability.
  • the at least one blocking element is in particular a plate (preferably metallic plate) with a recess through which the slide rail is guided.
  • a plate preferably metallic plate
  • the at least one blocking element can be achieved by the at least one blocking element in a simple manner, a canting on the slide, which blocks the mobility of the fixed bracket.
  • a first blocking element which blocks the displaceability of the fixed strap on the slide rail in a first direction in a first blocking direction
  • a second blocking element is provided, which in a second blocking position the displaceability of the fixed strap on the slide rail locks in a second direction, which is the opposite direction to the first direction.
  • an angular position of the first blocking element in the first blocking position is opposite to an angular position of the second blocking element in the second blocking position, that is to say the corresponding angles have opposite signs.
  • the angle is preferably measured starting from a pivot axis to a longitudinal direction of the slide rail. If there are two blocking elements, then it is possible that pivot axes of the first blocking element and the second blocking element lie on the same side to the slide rail or lie on different sides to the slide rail. In the first case, if the Swivel axes are on the same side of the slide, then preferably the first blocking element and the second blocking element are mirror images of each other, that is in the blocking position, they have the same amount angle with different signs to the longitudinal direction of the slide on.
  • first blocking element and the second blocking element are preferably aligned parallel to each other in the respective blocking position.
  • the respective pivot axes are preferably arranged point-symmetrically to a mirror axis. Again, the angles are equal in magnitude and have different signs when the angle is measured from the pivot axis.
  • the at least one blocking element is spring-loaded, wherein the spring force presses the at least one blocking element into its locking position. If the loading device does not act, the at least one blocking element is blocked in its blocking position. By a force against the spring force, the locking position can be canceled.
  • the at least one blocking element is arranged pivotably relative to the slide rail on the fixed bracket.
  • the blocking position can be achieved in a simple manner, for example by a spring which presses the at least one blocking element into the corresponding inclination position (tilting position).
  • This blocking position can be canceled by pivoting in the opposite direction in a simple way.
  • the application device has a pressure element which can be displaced linearly on the fixed bracket.
  • This pressure element is by appropriate displacement on the at least one Locking element acting.
  • the action of the pressure element the at least one blocking element is pivoted out of a blocking position, so that the displaceability of the fixed bracket is released on the slide rail.
  • the pressure element is spring-loaded, wherein for the action of the pressure element on the at least one blocking element, a force must be exerted against the spring force.
  • the pressure element In a normal position, the pressure element does not act on the at least one blocking element.
  • the spring force positions the pressure element in this normal position.
  • the spring force When a force is exerted on the pressure element, then the spring force must be overcome in order to act on the at least one blocking element can.
  • the fixed bracket can be "operated” in a simple manner to change its position on the slide rail.
  • the pressure element can be actuated from an upper side or lower side of the fixed bracket. This results in a simple structural design and operability. In particular, contact surfaces of the fixed bracket are kept free.
  • the invention is further based on the object to provide a ferrule of the type mentioned, which is used in a simple and safe manner.
  • At least one slide rail contact element is seated on the slide, which has at least one contact surface, which is oriented transversely to the first contact surface and transversely to the second contact surface.
  • the clamp By way of such a contact surface of the slide rail contact element ("cover surface"), which is provided by a slide rail contact element, the clamp can be placed on a workpiece on an upper side of the workpiece.
  • a slide rail abutment also has a surface.
  • the ferrule can also be placed on a pad, so that this area is a contact surface ("Thatsetz resolution"). If the housing device does not protrude beyond this essay end, then can be moved with the ferrule the housing device with the sliding bar.
  • the ferrule can be fixed on the at least one slide-contact element on a base such as a table. If the corresponding contact element has an opening, it can be fixed to a table-like base with a clamp with pin (bolt), such as the table clamp TK6 of BESSEY Tool GmbH & Co. KG, and thus also the clamp itself can be fixed.
  • a clamp with pin such as the table clamp TK6 of BESSEY Tool GmbH & Co. KG
  • the workpiece is protected from contact with the slide rail.
  • the at least one slide rail contact element is held detachably on the slide rail. It can thus be easily positioned on the slide and, if necessary, remove it again.
  • the at least one slide rail contact element is clipped onto the slide rail. This makes it easy to set up and remove again.
  • the at least one slide rail contact element is displaceable on the slide rail. This makes it easy to position.
  • the at least one slide rail contact element is held in a force-locking manner with respect to a direction parallel to the longitudinal direction of the slide rail. If a correspondingly high force is used to overcome the frictional force, the slide rail contact element can be positioned.
  • the at least one slide-contact element is made of a plastic material and is preferably formed in one piece. This results in a cost-effective production and ease of use. Furthermore, there is an optimized workpiece protection.
  • the at least one slide-contact element has a contact region, a first leg and a second leg. At the investment area a contact surface is formed.
  • the slide can be brought between the first leg and the second leg in order to fix the at least one slide-contact element on the slide can. At the ends of the legs may be formed another contact surface.
  • a recess adapted to the slide rail is formed on the first leg and / or on the second leg.
  • the slide can be inserted and thereby can achieve a form fit, on which the at least one slide rail contact element can be captively secured to the slide.
  • first leg and the second leg are designed to be elastic and / or are held resiliently on the contact area.
  • the at least one slide rail contact element can be placed on the slide rail by spreading apart the first leg and the second leg and also positively fixed with respect to a longitudinal direction of the slide rail and, for example, transversely to this longitudinal direction.
  • a contact surface is conveniently below the slide rail on a side on which the Kraftbeaufschlagungs Rhein is positioned. It lies on the side on which also the first contact surface and the second contact surface lie. This allows a workpiece to be protected from contact with the slide rail.
  • the at least one contact surface has a greater width than the slide rail.
  • the at least one contact surface has a width corresponding to the first contact surface of the fixed bracket and / or the second contact surface of the housing device. This makes it difficult to tilt the clamp when it is put on.
  • the at least one slide-contact element does not protrude beyond the fixed bracket on one end of a contact surface for a workpiece (which sits between the first contact surface and the second contact surface). As a result, the clamp can be placed at the appropriate place on the fixed bracket.
  • the at least one slide-contact element projects beyond the housing device at an end opposite a contact surface for a workpiece.
  • the housing device is set back relative to this end.
  • the slightly recessed housing device can be moved to the slide rail.
  • a typical order of protrusion is 1 mm or less.
  • the at least one slide-contact element between the housing device and the fixed bracket is arranged so as to protect one or more workpieces, which lie between the first contact surface and the second contact surface, from contact with the slide rail.
  • the invention is further based on the object to provide a simple method for producing a ferrule of the type mentioned.
  • This object is achieved in that is inserted in the clamp according to the invention in the first housing part of the opening during the manufacture of the ferrule of the slide.
  • a holding element is inserted into the first housing part.
  • the holding member serves to hold the first bearing means, the second bearing means and the pressure piece. It can be carried out a pre-assembly, for example, by the second bearing device is pre-assembled on the holding element and the pressure piece is fixed to the holding element.
  • the second housing part is then placed after insertion of the retaining element on the first housing part, thereby closing the opening.
  • rollers of the second bearing device are fixed to the retaining element before or after insertion of the retaining element.
  • roller holding element is inserted into the first housing parts before inserting the sliding bar, which holds rollers of the first bearing device.
  • This roller holding element serves as an auxiliary element during assembly of the clamp. It ensures that rollers of the first bearing device are positioned correctly aligned in the housing interior.
  • rollers of the first bearing device are held on the first housing part and / or a holding element by pins which are inserted from an outer side of the housing device ago. As a result, the effort for the production and fixing and assembly of the first bearing device is minimized to the housing device.
  • a first embodiment of a clamp according to the invention which in the FIGS. 1 and 2 shown and designated therein by 10, comprises a slide rail 12.
  • the slide rail 12 is made of a metallic material. It extends in a longitudinal direction 13. It has an upper side 14 and a lower side 16. The top 14 and / or the bottom 16 may be corrugated. Furthermore, the slide rail 12 has opposite side surfaces 18a, 18b.
  • the slide rail 12 is profiled.
  • An envelope in cross section is substantially rectangular.
  • the slide rail 12 has a first end 20a and an opposite second end 20b.
  • a fixed bracket 22 is arranged at or in the vicinity of the second end 20b.
  • the fixed bracket 22 can be determined slidably on the slide rail 12, that is, its position relative to the longitudinal direction 13 may be adjustable, or the fixed bracket 22 may be fixed to the slide immovably 12 be fixed.
  • the fixed bracket 22 is slidably lockable on the slide rail 12, it may be provided that at or in the vicinity of the second end 20b of the slide rail 12, an example, pin-shaped elevation 24 is arranged, can be prevented by the fact that the fixed bracket 22nd can be deducted from the slide rail 12 in the direction of the second end 20b.
  • the fixed bracket 22 has a first contact surface 26 for a workpiece.
  • This first abutment surface 26 is substantially planar and extends substantially perpendicular to the longitudinal direction 13 of the slide rail 12.
  • the first abutment surface 26 points from a side which extends beyond the underside 16 to a side which extends beyond the upper side 14, that is, the first abutment surface 26 extends beyond the slide rail 12.
  • a recess 30 is formed, through which the slide rail 12 has penetrated, in order to fix the fixed bracket 22 to the slide rail 12 can.
  • the fixed bracket 22 has a further contact surface 32, which faces away from the first contact surface 26.
  • This further contact surface 32 is likewise preferably flat and, in particular, parallel to its first contact surface 26.
  • the ferrule 10 is designed in particular as a body clamp. It comprises a housing device 34 (body) through which the slide rail 12 has penetrated and which is slidably guided on the slide rail 12. For this purpose, a first bearing means 36 for the slidable mounting on the slide rail 12 and a second bearing means 38 is arranged on the housing means 34. The first bearing device 36 and the second bearing device 38 are spaced from one another in the longitudinal direction 13.
  • first bearing means 36 and the second bearing means 38 will be described below in connection with the exploded view according to FIG. 3 explained in more detail.
  • the housing device 34 has a first housing part 40 which has a longitudinal region 42 which extends in the longitudinal direction 13 and has a transverse region 44 which extends transversely to the longitudinal direction 13 and in particular perpendicularly thereto.
  • the first housing part 40 is preferably made of a plastic material and formed in one piece or, for example, in two pieces with two housing shells.
  • the first bearing device 36 and the second bearing device 38 are arranged on the longitudinal region 42. Accordingly, the slide rail 12 penetrates the longitudinal region 42.
  • the housing device 34 has a housing interior 46, which is defined in particular by the first housing part 40.
  • a slide bracket 48 is arranged, which is positioned between the first bearing means 36 and the second bearing means 38.
  • the slide bar 48 is guided displaceably on the slide rail 12. He has for this purpose a recess through which the slide rail 12 is immersed.
  • the slide bracket 48 extends in a transverse direction to the longitudinal direction 13.
  • a hollow-cylindrical element 52 which has an internal thread 54, is arranged on the slide bar 48, which is produced in particular from a metallic material.
  • the hollow cylindrical element 52 is in particular integrally formed on the slide bracket 48. It is spaced from the slide rail 12.
  • a spindle 56 is guided with an external thread.
  • a handle 60 On the spindle 56 sits a handle 60, via which a rotational movement of the spindle 56 in the hollow cylindrical member 52 is actuated.
  • the spindle 56 has at its end remote from the handle 60 on a holding head (not shown in the drawings), on which a pressure piece 62 is held. Via the pressure piece 62, a force can be exerted on the housing device 34 by the force application device 50.
  • the pressure piece 62 has a holding head receiving space 64.
  • the spherical holding head of the spindle 56 is immersed.
  • the pressure piece is designed as a workpiece-pressurizing device, as in the not pre-published DE 10 2006 008 871 B3 described. Accordingly, at least one blocking element for fixing the holding head in the holding head receiving space 64 is then arranged on the pressure piece 62. This blocking element is positioned in a blocking element receiving space and must be penetrated by the holding head.
  • the at least one locking element and the locking element receiving space are formed so that the force required to penetrate the at least one locking element in an insertion direction of the holding head into the holding head receiving space is smaller than the force required to penetrate in a direction of execution of the holding head from the holding head receiving space. This facilitates the manufacture of the ferrule 10, as described in more detail below.
  • the sliding bar 48 can be tilted on the slide rail 12. About him, by means of the pressure piece 62, a force on the housing means 34 exercisable to produce a clamping force. By Verkanthus the Gleitbügels 48 a corresponding clamping position is secured.
  • the housing device 34 serves to receive the Gleitbügels 48 and the introduction of force.
  • a holding element 66 (FIG. FIG. 3 ), which serves to hold the first bearing means 36, the second bearing means 38 and the pressure piece 62.
  • the holding element 66 comprises for this purpose a first leg 68a and a second leg 68b spaced parallel thereto.
  • the first leg 68a and the second leg 68b have an L-shaped configuration, wherein the two legs 68a and 68b are basically the same.
  • the two legs 68a and 68b are connected to each other at a front end by a connecting web 70.
  • the holding element 66 is in particular formed in one piece and preferably made of a metallic material. Due to the connection with the connecting web 70, the holding element 66 has seen from above or from below a U-shaped configuration. (Due to the L-shaped configuration of the first leg 68a and the second leg 68b, it has an L-shaped shape from the side.)
  • the holding element 66 has, adapted to the first housing part 40, a longitudinal region 72 and a transverse region 74, wherein the transverse region 74 is oriented transversely to the longitudinal region 72 and transversely to the longitudinal direction 13 of the slide rail 12.
  • the holding element 66 has in the transverse region 74 opposite slots into which the pressure piece 62 is immersed with a pressure plate 78.
  • the pressure plate 78 is locked with respect to a displacement direction 80 of the housing device 34 on the slide rail 12 in its mobility with respect to the housing device 34.
  • the displacement direction 80 comprises an advancing direction of the housing device 34 on the fixed bracket 22 and a backward direction of the housing device 34 away from the fixed bracket 22.
  • the slots 76a, 76b are preferably open at the top, so that the pressure piece 62 can be used with its pressure plate 78 in a simple manner from above.
  • the holding element 66 is open at its further front end, which is opposite the connecting web 70, so that it can be pushed over the sliding bar 48 during the production of the clamp 10.
  • recess pairs 82a, 82b are arranged on the transverse region 74 of the retaining element 66 in the region of the front-side end which faces away from the connecting web 70.
  • a pair of recesses 82a, 82b in each case comprises a recess 84a, 84b or 86a, 86b.
  • These recesses 84a, 84b are in particular formed as through-recesses in the holding element 66, wherein the recesses 84a and 86a are formed in the second leg 68b and the recesses 84b and 86b are formed in the first leg 68a.
  • the recesses of a pair of recesses 82a, 82b are aligned with each other.
  • the recesses 84a, 84b of the pair of recesses 82a lie above the recesses 86a, 86b of the pair of recesses 82b.
  • a pin 88 is guided.
  • a pin 92 is guided by the recesses 86a, 86b of the pair of recesses 82b, which holds a roller 94 between the first leg 68a and the second leg 68b, said roller 94 is rotatable.
  • the first housing part 40 has through openings 96a, 96b, 98a, 98b, which are aligned with the recesses 84a, 84b and the recesses 86a, 86b, when the holding element 66 is positioned in the housing interior 46.
  • the pin 88 having a head 100 can penetrate through the opening 96a, the recess 84a, the space between the first leg 68a and the second leg 68b, the recess 84b and the opening 96b.
  • a counter-head 102 it is secured to the housing device 34.
  • the pin 92 can then penetrate through the opening 96a, the recess 86a, the space between the first leg 68a and the second leg 68b, the recess 86b and the opening 98b, being secured by a counter head corresponding to the counterhead 102.
  • rollers 90, 94 are fixed, that is not rotatable, so that the slide rail 12 is slidably mounted alone. If the rollers 90, 94, between which the slide 12 is located, are rotatable, then there is also a roller bearing. It is also possible that the rollers 90, 94 are formed directly over the pins 88 and 92.
  • Ausappelare 104a, 104b are formed with through recesses.
  • the recess pair 104a lies on the same height as the recess pair 82a, and the recess pair 104b is at the same height as the recess pair 82b.
  • the first housing part has an end wall 110, which faces the first end 20a of the slide rail 12. This end wall 110 is closed except for a recess 112, through which the slide rail 12 passes.
  • first housing part 40 has opposite side walls 114a, 114b, which are closed. Further, the first housing part 40 on a bottom 116 and on a top 118 each have a closed wall.
  • the first housing part 40 On a rear side of the first housing part 40, which faces away from the fixed bracket 22, the first housing part 40 has a through opening 120, through which the spindle 56 or the sliding bracket 48 can pass. It can then be exercised via the force application device 50, a force on the pressure piece 62 which sits on the retaining element 66.
  • first housing part 40 on the longitudinal region 42 on an upper side an opening 122, which allows a relative movement of the slide bracket 48 in the housing interior 46 to the housing means 34 between the first bearing means 36 and the second bearing means 38.
  • roller holding element 124 serves to simplify the manufacturability of the clamp 10. It comprises a recess 126 through which the slide rail 12 can dip. It also has recesses 128a and 128b into which the rollers 90 and 94 can be inserted. As a result, during production, the rollers 90 and 94 can be temporarily held in a correct position prior to insertion of the retaining element 66.
  • the roller holding element 124 has on opposite sides a recessed area 129, to which the holding element 66 in the region of its front end, which is the connecting web 70 opposite, is pushed.
  • the housing device 34 furthermore has a second housing part 130, via which an opening 132 of the first housing part 40 is closed.
  • the opening 132 extends between the upper side 118 and the lower side 116 and between the side walls 114a, 114b of the first housing part 40.
  • the opening 132 serves to insert the roller holding element 124, the sliding bar 48 and the holding element 66 into the housing interior 46 of the first housing part 40th
  • the opening 132 has a substantially rectangular cross-section.
  • the second housing part 130 is latched to the first housing part 40. It has opposing tabs 134a, 134b, which in particular tongue-shaped, and which are immersed in fixed to the first housing part 40 second housing part 130 in the housing interior 46 and provide a locking fixation.
  • the tabs 134a, 134b are assigned to the upper side 118 and the lower side 116 of the first housing part 40.
  • the second housing part 130 has laterally opposite tabs 136a, 136b, by means of which the second housing part 130 can be fixed to the first housing part 40 and in particular latched.
  • the tabs 136a, 136b have, for example, a wave-shaped structure 138.
  • oppositely adapted wave-shaped structures 140 are formed, which serve to receive the wave-shaped structure 138.
  • the wave-shaped structure 140 on the second housing part 40 is formed so that it does not protrude into the housing interior 46 in which the holding element 66 is arranged. As a result, the wave-shaped structure 138 can be positioned laterally past the holding element 66.
  • the tabs 136a, 136b extend to a lower side of the second housing part 130 and thereby have recesses 142a, 142b and 144a, 144b.
  • Recesses 142a and 142b which are designed in particular as through-openings, are adapted to the recesses of the pair of recesses 104a.
  • the recesses 144a, 144b which are designed in particular as through-openings, are adapted to the recesses of the pair of recesses 104b.
  • the pins 106 and 108 which are seated on the support member 66 project laterally beyond the first leg 68a and the second leg 68b.
  • the second housing part 130 can then be placed on the holding element 66, wherein the pin 106 protrudes at least partially into the recesses 142a, 142b and the pin 108 is at least partially immersed in the recesses 144a and 144b.
  • the second housing part 130 can be fixed to the holding element 66 and thus in addition to the latching with the second housing part 130 via the tabs 134a, 134b and the latch on the tabs 136a, 136b (or under positive connection via the tabs 136a, 136b) hold.
  • the second housing part 130 is in particular made in one piece from a plastic material.
  • a contact element 146 On the second housing part 130 sits a contact element 146, which is in particular pushed.
  • the abutment element 146 is preferably made of a plastic material.
  • a second contact surface 148 is formed for a workpiece. This second contact surface 148 is aligned essentially flat and substantially parallel to the first contact surface 28 of the fixed bracket 22. Furthermore, the second contact surface 148, which is arranged on the housing device 34, substantially perpendicular to the longitudinal direction 13 of the slide rail 12th
  • the second contact surface 148 extends beyond the slide rail 12 from an upper side (relative to the slide rail 12) to an underside.
  • the second housing part 130 has a recess 150, which is formed as a passage opening. This is aligned with a recess 152 in the contact element 146. Through the recesses 150 and 152, the slide rail 12 is immersed.
  • the roller holding element 124 is in particular designed so that when it contacts the inside of the end wall 110, the aligned alignment is achieved, wherein correspondingly the roller holding element. 124 has a height which corresponds to the internal height of the housing interior 46 on the inside of the end wall 110.
  • the slide rail 12 has either been previously pushed through the recess 112 or it is pushed through after positioning of the roller holding member 124.
  • the force-applying device 50 can already be arranged without pressure piece 62 on the sliding bracket or it can be subsequently fixed.
  • the pressure piece 62 is fixed in the slots 76a, 76b.
  • pins 106 and 108 are fixed to form the second bearing means 38.
  • the suitably prepared holding element 66 is then pushed with its open front end over the opening 132 in the housing interior 46. It is possible that the second housing part 130 is already mounted on the holding element 66, wherein in particular the pins 106 and 108 are immersed in corresponding recesses 142a, 142b and 144a, 144b of the second housing part 130.
  • the holding element 66 is displaced until the first leg 68a and the second leg 68b overlap the corresponding abutment region 129 of the roller holding element 124. Thereby, the rollers 90 and 94 are correctly positioned with respect to the pair of recesses 82a and 82b.
  • the retaining element 66 to the first housing part 40, the correct alignment is achieved when the first housing part 40 with the second housing part 130 is closed.
  • the closure is achieved by latching, wherein, as mentioned above, the second housing part 130 is displaced with the holding element 66 or the second housing part 130 is placed later.
  • the contact element 146 is placed and pushed in particular from one side. Accordingly, the recess 152 is slot-shaped.
  • the housing device 34 is produced with a slide bar 48 arranged therein, wherein the second contact surface 148 is also provided. Furthermore, the first bearing device 36 and the second bearing device 38 are formed for the slide rail 12.
  • the spindle 56 is rotated so that its holding head enters the holding head receiving space 64 of the pressure piece 62. As a result, the pressure piece 62 is then fixed to the force application device 50.
  • the slide rail 12 is provided with a protrusion 24 (or grove pins, as described in more detail below with reference to a second embodiment)
  • the individual parts of the housing means 34 first on the slide rail 12 of the end 20 a of the slide rail 12 are threaded on this before it is assembled;
  • the contact element 146, the second housing part 130, the holding element 66, the roller holding element 124 and the first housing part 40 are threaded in this order.
  • the roller holding element 124 is then positioned in the housing interior 46, the holding element 66 is placed, the housing interior 46 is closed by the second housing part 130 and the contact element 146 is attached. After positioning the retainer 66, the pins 88 and 92 are positioned and secured.
  • the fixed bracket 22 of the ferrule 10 is lockable slidably. It is fixed to the slide rail 12, that is, in the use of the ferrule 10, when one or more workpieces between the first bearing surface 26 of the fixed bracket 22 and the second bearing surface 148 of the housing device 34 are to be clamped, it is immovably fixed with respect to the slide rail 12 , Its position on the slide rail 12 relative to the first end 20a and the second end 20b, however, is adjustable.
  • the fixed bracket 22 comprises a housing 154.
  • This housing 154 is made for example of a plastic material and in one or more parts educated.
  • the housing 154 has at least approximately a cuboid shape.
  • a first opening 156 is arranged on a first housing wall 158.
  • On one of the first housing wall opposite the second housing wall 116 a to the first opening 156 aligned opening is provided (not visible in the drawings). Through these openings, the slide rail 12 is passed.
  • first housing wall 158 and the second housing wall 160 are opposite side walls 162a and 162b.
  • a holding element 166 is arranged in a housing interior 164 of the housing 154.
  • the holding member 166 serves to hold a mechanism for releasably fixing the fixed bracket 22 to the slide rail 12, and is particularly made of a metallic material.
  • the support member 166 includes aligned mutually facing through openings 168a, 168b which, when positioned in the housing interior 164, are aligned with the openings of the housing 154 for the slide rail 12; the slide rail 12 has passed through the openings 168a, 168b through the support member 166.
  • the opening 168a is formed on a wall 170a
  • the opening 168b is formed on a wall 170b of the support member 166.
  • the walls 170a and 170b are spaced from each other.
  • the wall 170a is aligned substantially parallel to the first housing wall 158a and the wall 170b is aligned substantially parallel to the second housing wall 160.
  • a first blocking element 172 (brake element), which is in particular plate-shaped with a slot 174 through which the slide rail 12 is guided.
  • the first blocking element 172 is pivotally mounted, so that its inclination position is variable relative to the slide rail 12.
  • a pin 176 spaced from the wall 170b in the vicinity of this is arranged on the holding element 166.
  • the pin 176 provides a virtual pivot axis for the pivotability of the first blocking element 172 on the holding element 166.
  • This virtual pivot axis lies in a line of contact between the holding member 166 and the pin 176. Between this pin 176 and the wall 170b, the first blocking element 172 is inserted.
  • the pin 176 lies on one side.
  • a further spring 180 which acts on the first blocking element 172 at or near an end facing away from the end which lies in the vicinity of the pin 176.
  • the spring 180 is a compression spring having a spring force in a direction 182 which is substantially parallel to the longitudinal direction 13 of the slide rail 12.
  • the spring 180 urges the first blocking element 172 into a tilted position relative to the slide rail 12, which is a locked position; in this blocking position, the fixed bracket 22 is at least in one direction not displaceable on the slide rail 12 and thereby fixed thereto.
  • the first blocking element 172 is at an angle 184 to the longitudinal direction 13 of the slide rail 12. This angle is for example in the order of 80 °.
  • the first blocking element 172 can be pivoted against the spring force of the spring 180 in the direction of the wall 170b by exerting force. This can be a blocking position cancel.
  • a second blocking element 186 is further arranged pivotably.
  • a pin 188 is provided which is spaced from the Wall 170a adjacent to this. The pin 188 is at the same distance from the slide rail 12 as the pin 176 and at the same distance from the wall 170a as the pin 176 to the wall 170b.
  • a spring 192 which has the same function as the spring 180.
  • a spring force of the spring 192 which is also a compression spring, acts in a direction 194 which is an opposite direction to the direction 182.
  • the second blocking element 186 is arranged mirror-symmetrically (to a mirror plane 187) to the first blocking element 172 with a mirror axis perpendicular to the slide rail 12.
  • first blocking member 172 has a locking position with the angle 184
  • second blocking member 186 has a locking position with an angle to the longitudinal direction 13 of the slide rail 12, which has the opposite sign to the angle 184.
  • the first blocking element 172 By the first blocking element 172, the mobility of the fixed bracket 22 is locked to the slide rail 12 in a first direction.
  • the second blocking element 186 blocks the mobility in the opposite direction.
  • the first blocking element 172 locks the mobility of the fixed bracket 22 on the slide rail in the direction 194.
  • the second blocking element 186 blocks the mobility of the fixed bracket 22 on the slide rail 12 in the direction 182.
  • In the locked position of the first blocking element 172 and the second blocking element 186 these are tilted with the slide rail 12 and the movement relative to the slide rail 12 in the corresponding direction is locked.
  • the tilting can be supported by the above-mentioned corrugation of the slide rail 12.
  • pins 176 and 188 are (virtual) pivot axes for the pivotability of the first blocking element 172 and the second blocking element 186 provided on the holding member 166.
  • the pins 186 and 188 are located on the same side relative to the slide rail 12; so that the pivot axes are also on the same page. It is also possible in principle that the corresponding pivot axes lie on different sides.
  • the first blocking element and the second blocking element are then preferably aligned parallel, wherein the arrangement is such that the first blocking element and the second blocking element can pivot in different pivoting directions.
  • walls 170a and 170b Between the walls 170a and 170b, opposite walls 196a, 196b extend. These walls have recesses 198a, 198b to which the pins 190 and 176 are fixed. Between the walls 170a, 170b, 196a and 196b, an inner space 200 is formed, in which the first blocking element 172 and the second blocking element 186 together with the associated locking mechanism are arranged.
  • a pressure element 202 is arranged, which in a direction 204 which is transversely and in particular perpendicular to the longitudinal direction 13 of the slide rail 12, is guided displaceably.
  • the pressure element 204 has an actuating end 206 (push button), which lies on an upper side of the fixed bracket 22.
  • This upper side is the side which has the greatest distance to the sliding bar or which is at least approximately at the same height as the upper side 118 of the first housing part 40.
  • the pressing member 202 is disposed in the inner space 200 of the holding member 166, wherein the holding member 166 on the wall 196 a and the wall 196 b provides a guide means for the sliding guide (sliding) of the pressure member 202.
  • the pressure element 202 has a first leg pair with legs 208a, 208b and a second leg pair with legs 210a, 210b.
  • the legs 208a, 208b are located on the same side with respect to the mirror plane of the first blocking element 172 and the second blocking element 186.
  • the legs 208a and 208b are spaced from one another with a gap 212 therebetween. They basically have the same mobility.
  • the legs 210a, 210b of the second leg pair lie on the other side of this mirror plane. They are spaced from each other with a gap 214 between them. They have the same mobility. The gaps 212 and 214 serve to dip the slide rail so that the pressure member 202 does not come into contact with the slide rail.
  • the legs 208a, 208b and 210a, 210b are elastically disposed on a base body 216 of the pressing member 202 so that they are bendable outwardly and can return to their original position.
  • the legs 208a, 208b, 210a, 210b are integrally formed on the base body 16, so that the pressure element 202 is in one piece.
  • a web element 218 is arranged in the interior 200.
  • a spring 220 is supported.
  • a cylindrical elevation 222 is arranged on the web element 18, on which the spring 220, which is in particular a compression spring, is placed.
  • the spring 220 is supported on the base 216 of the pressure element 202 from. This has to the central cylindrical elevation 224, on which the spring 220 is placed.
  • the survey 224 lies on the mirror plane for the first Blocking element 172 and the second blocking element 186.
  • the spring 224 is designed so that it exerts no spring force on the pressure element 202, when this is in its "normal position", in which the mobility of the fixed bracket 22 is blocked on the slide rail 12.
  • FIG. 6 the interaction of the pressure element 202 with the blocking elements 172 and 186 is shown.
  • a pin 228 is positioned, which lies between the first leg pair and the second leg pair.
  • the legs 208a, 208b, 210a, 210b do not act on the blocking elements 172 and 186.
  • the pressure element 202 in the direction 204 in the interior 200 continues to be pressed, while pressed against the spring force of the spring 220, then moves an inner side of the legs 208 a, 208 b and 210 a, 210 b along the pin 28.
  • the inner side is formed, that is formed with such a slope, that by the displacement of the pressure element 202 and thus the legs 208a, 208b, 210a, 210b in the direction 204, the legs of the first pair of legs and the second pair of legs are pushed apart. This is in FIG. 6 indicated by the arrows with the reference numerals 230a and 230b.
  • the legs 208a, 208b act on the second blocking element 186 and the legs 210a, 210b act on the first blocking element 172 and pivot them in opposite directions. This is in FIG. 6 also indicated by the arrows 230a and 230b.
  • the inclination position of the first blocking element 172 and of the second blocking element 186 is changed by the pressure element 202, that is to say the angle to the longitudinal direction 13 of the slide rail 12 is increased in the direction 90 °, and the blocking is thereby released.
  • the fixed bracket 22 can be moved to the slide rail 12 and brought into the desired position.
  • the spring 220 pushes the pressure member 202 in the opposite direction to the direction 204 and the loading of the locking members 172 and 186 by the first leg pair and the second leg pair is released.
  • the first blocking element 172 and the second blocking element 186 transition into their inclined locking position, in which the mobility of the fixed bracket 22 to the slide rail 12 is blocked.
  • the contact element 28 is arranged and in particular pushed. This is in particular pushed onto the first housing wall 158.
  • a further contact element 232 is pushed, which is also provided with a slot-shaped recess 234 for the slide rail 12. At this contact element 232, the further contact surface 32 is formed.
  • the housing 154 is closed by a cover element 236.
  • the interior 200 is thereby closed except for the openings for the slide rail 12.
  • the housing means is basically the same design as in the ferrule 10. It is therefore used the same reference numerals.
  • the housing device 34 is guided on a slide rail 240, which is basically the same design as the slide rail 12.
  • pins 242a, 242b fixed.
  • These pins 242a, 242b are in particular designed as grooved pins. They protrude perpendicular to Longitudinal direction 13 of the slide rail 240 addition. They protrude to both opposite sides. It is basically possible that a continuous pin 242a or 242b protrudes on both sides, in which case the slide rail 240 is provided with corresponding openings, in which then the pins 242a and 242b are fixed and in particular pressed.
  • pens are fixed semi-protruding. If then two pins are arranged on one side, a total of four pins are needed.
  • the pins 242a, 242b are used for fixing a fixed bracket 244, which in FIG. 8 shown in exploded view.
  • the fixed bracket 244 comprises a housing 246 with a first housing part 248 and a second housing part 250.
  • the first housing part 248 has a peripheral edge region 252. Within this edge region 252, a first tab 254 and a second tab 256 are arranged, which protrude perpendicularly via a bottom 258 of the first housing part 248.
  • first tab 254 and the second tab 256 are aligned openings 260a, 260b for receiving the pin 242b and openings 262a, 262b for receiving the pin 242a arranged.
  • openings 264 are arranged, which are aligned with the openings 262a, through which the pin 242a can also penetrate.
  • spaced-apart holding elements 266 are arranged on the bottom 258 within the edge region 252. These protrude above. They have slot-shaped recesses 268, wherein a plurality of holding elements 266 are provided and the recesses 268 are aligned with each other. In the exemplary embodiment shown, a holding element 266 has four recesses 268.
  • the recesses 268 are arranged so that in each case two recesses 268 of the first tab 254 are assigned and two recesses 268 of the second tab 256th
  • Holders 270 are positioned in the recesses 268.
  • the holders 270 are in particular metal sheets.
  • the holders 270 in turn each have openings 272a and 272b for penetrating the pins 242a and 242b.
  • the holders 270 are inserted into the recesses 268. In each case, there is a holder 270 in front of the first tab 254 and behind the first tab 254, so that the first tab 254 lies between adjacent holders 270. Furthermore, one holder 270 lies in front of the second tab 256 and behind the second tab 256, so that the second tab 256 lies between adjacent holders 270.
  • the openings 272a in the holders 270 and the openings 260a, 260b and the openings 272b in the holders 270 and the openings 262a and 262b and the openings 264 are aligned in this case.
  • the second housing part 250 is placed on the first housing part 248, which has openings 274 and 276 for penetrating the pins 242b, 242a.
  • a contact element 278 is arranged and in particular pushed, on which a first contact surface 280 is formed.
  • a contact element 282 is also pushed, on which a further contact surface is formed.
  • the first housing part 248 and the second housing part 250 are made of a plastic material which is so elastic that it is possible to assemble with the fixation on the slide rail 240.
  • the second housing part 250 is placed, wherein the walls of the openings 274, 276 are deformed so that a placement is possible.
  • the fixed bracket 44 is assembled, then it is placed on the slide rail 240 and then the pins 242a, 242b are fixed to the slide rail 40 through the corresponding openings.
  • a slide rail contact element 284 is in particular made of a plastic material and formed in one piece. It includes ( FIG. 7 ) a first leg 286a and a second leg 286b. These Legs 286a, 286b are connected via an abutment region 288, which provides a (first) abutment surface 290.
  • the contact surface 290 is oriented transversely and in particular perpendicular to the first contact surface 26 or 280 and to the second contact surface 148.
  • the contact surface 290 lies below the slide rail 12 or 240 on a side on which the force application device 50 is arranged. It is thus facing a workpiece, which is clamped between the fixed bracket 22 or 244 and the housing device 34.
  • the slide rail abutment member 284 has a second abutment surface 291 formed on the legs 286a and 286b. About this, the clamp is placed on a pad.
  • the slide rail contact element 284 is designed such that this contact surface 291 protrudes beyond the housing device 34.
  • the housing device is set back relative to the contact surface 291. A typical amount for the distance between the housing device 34 and the abutment surface 291 is 1 mm or less. If the ferrule is placed over the fixed bracket 22 or 244 and a slide rail contact element with bearing surface 291, then the housing means 34 is displaceable on the slide rail 12 or 240 by the recessed arrangement.
  • the housing device 34 preferably has a smaller maximum height above the slide rail 12 or 240 than the fixed bracket 22 or 244, specifically on the side facing away from the force application device 50.
  • the height difference is of the order of 1 mm or less.
  • a slide rail contact element 284 is designed such that it can be clipped onto the slide rail 12 or 240.
  • the first leg 286a and the second Legs 286b are so elastic and arranged on the abutment portion 288 that they are spreadable and a gap 292 between the first leg 286a and the second leg 286b on the slide rail 12 and 240 can be brought, that is, the slide rail 12, 240 in the Interspace 292 is insertable.
  • a slide rail contact element 284 is frictionally held, so that it is displaceable on the slide rail 12 or 240 and can be positioned at a desired position, but with a force required for displacement (with a winder the frictional force) is necessary.
  • the contact surface 290 has a width that is greater than the width of the slide rail 12, 240.
  • the contact surface 290 has a width which corresponds to the width of the second contact surface 148 and the width of the first contact surface 26 and 280, respectively.
  • the slide rail contact element 284 does not protrude beyond an underside of the fixed bracket 22 or 244. As a result, the clamp can be placed over the corresponding underside of the fixed bracket 22 or 244 on a base such as a table.
  • an opening 296 may be arranged.
  • One or more slide rail contact elements 284 are arranged in particular between the housing device 34 and the fixed bracket 22 or 244. Through the openings 296, a pin element (bolt) of a corresponding terminal such as the table clamp TK6 BESSEY Tool GmbH & Co. KG can be performed. This makes it possible to jam a slide rail contact element with a base (in particular a table) and this in turn makes it possible to jam the clamp to the base.
  • the ferrule 10 and 238 can be placed on a workpiece. It is possible that the ferrule in the region of or the slide rail contact elements 284 with the or the contact surfaces 290 is placed on the workpiece. It is also possible to put the clamp upside down with the or the contact surfaces 291 and a bottom of the fixed bracket 22 and 244 on a pad.
  • slide rail 12 or 240 in particular made of a metallic material, by one or more slide rail contact elements 284.
  • the slide rail abutment elements 284 are removable from the slide rail 12 and 240, respectively.
  • a blocking element 298 may be arranged, which is in particular clipped and made of a plastic material.
  • the blocking element 298 serves to prevent the housing device 34 from being pulled off the slide rail 12 or 240.
  • the blocking element 298 has a contact surface 299, which is aligned substantially flush with a contact surface 291 of a slide contact element 284, so that the clamp strikes a Pad is placed.
  • the ferrule 10 or 238 according to the invention can be produced in a simple and cost-effective manner.
  • the housing device 34 can be mounted quickly in a simple and cost-effective manner. From a small number of items, the assembly of the ferrule 10 or 238 can be performed quickly.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Clamps And Clips (AREA)
  • Mechanical Coupling Of Light Guides (AREA)
  • Jigs For Machine Tools (AREA)

Claims (15)

  1. Serre-joint, comprenant un rail (12 ; 240), un mors fixe (22 ; 244) fixé sur le rail (12 ; 240) et contre lequel est disposée une première surface d'appui (26 ; 280) pour une pièce, un mors mobile (48) déplaçable sur le rail (12 ; 240), un ensemble de boîtier (34) sur lequel sont maintenus un premier dispositif de palier (36) et un deuxième dispositif de palier (38) espacé du premier dispositif de palier (36), au moyen desquels l'ensemble de boîtier (34) est coulissant sur le rail (12 ; 240), le mors mobile (48) étant positionné entre le premier dispositif de palier (36) et le deuxième dispositif de palier (38), une deuxième surface d'appui (148) pour une pièce, opposée à la première surface d'appui (26 ; 280), étant disposée contre l'ensemble de boîtier (34), et un dispositif d'application de force (50) maintenu sur le mors mobile (48) et agissant sur une pièce de pression (62) maintenue sur l'ensemble de boîtier (34),
    caractérisé en ce que l'ensemble de boîtier (34) comporte une première partie de boîtier (40) avec un compartiment intérieur de boîtier (46), laquelle est pourvue d'une ouverture (132) opposée à la première surface d'appui (26 ; 280) et par laquelle le mors mobile (48) peut être mis en place dans le compartiment intérieur de boîtier (46) lors de la fabrication du serre-joint, et en ce qu'une deuxième partie de boîtier (130) est fixée sur l'ensemble de boîtier (36) pour l'obturation de l'ouverture (132).
  2. Serre-joint selon la revendication 1, caractérisé en ce que la deuxième partie de boîtier (130) est réalisée comme couvercle de boîtier.
  3. Serre-joint selon la revendication 1 ou 2, caractérisé en ce que la deuxième partie de boîtier (130) est enclenchée sur l'ensemble de boîtier (34).
  4. Serre-joint selon l'une des revendications précédentes, caractérisé en ce que la deuxième partie de boîtier (130) est fixée sur la première partie de boîtier (40).
  5. Serre-joint selon l'une des revendications précédentes, caractérisé en ce qu'un élément d'appui (146) sur lequel la deuxième surface d'appui (148) est formée est au moins partiellement maintenu sur la deuxième partie de boîtier (130).
  6. Serre-joint selon l'une des revendications précédentes, caractérisé en ce que la première partie de boîtier (40) a une section transversale en forme de L avec une partie en longueur (42) qui s'étend le long du rail (12 ; 240), et une partie transversale (44) qui s'étend transversalement au rail (12 ; 240), et en particulier en ce que le premier dispositif de palier (36) et le deuxième dispositif de palier (38) sont disposés sur la partie en longueur (42), et en particulier en ce que la pièce de pression (62) est disposée sur la zone transversale (44).
  7. Serre-joint selon l'une des revendications précédentes, caractérisé en ce qu'un élément de maintien (66) est disposé dans le compartiment intérieur de boîtier (46), pour le maintien du premier dispositif de palier (36), du deuxième dispositif de palier (38) et de la pièce de pression (62), et en particulier en ce que l'élément de maintien (66) maintient des rouleaux (90, 94 ; 106, 108) du premier dispositif de palier (36) et du deuxième dispositif de palier (38), et en particulier en ce qu'un ou plusieurs rouleaux (90, 94) du premier dispositif de palier (36) et/ou du deuxième dispositif de palier (38) sont maintenus de manière à pouvoir tourner, et en particulier en ce que l'élément de maintien (66) présente des paires d'évidements (82a, 82b, 104a, 104b) ayant chacune un premier évidement et un deuxième évidement opposé, où sont logées des goupilles (88, 92 ; 106, 108) correspondantes, et en particulier en ce que la deuxième partie de boîtier (130) présente des brides (136a, 136b) opposées avec des évidements (142a, 144a ; 142b, 144b) où sont au moins partiellement engagées des goupilles (106, 108) du deuxième dispositif de palier (38), et en particulier en ce que l'élément de maintien (66) est fabriqué dans un matériau métallique, et en particulier en ce que l'élément de maintien comprend une première branche (68a), une deuxième branche (68b) qui lui est parallèlement espacée, et sur une face frontale au moins une branche de liaison (70) entre la première branche (68a) et la deuxième branche (68b), et en particulier en ce que la première branche (68a) et la deuxième branche (68b) sont chacune en forme de L, et en particulier en ce que la ou les branches de liaison (70) sont positionnées dans la zone de l'ouverture (132) de la première partie de boîtier (40), et en particulier en ce que l'élément de maintien (66) présente une face frontale ouverte opposée à la face frontale pourvue d'au moins une branche de liaison (70).
  8. Serre-joint selon l'une des revendications précédentes, caractérisé en ce qu'un élément de maintien de rouleaux (124) est disposé dans le compartiment intérieur de boîtier (46) pour le maintien des rouleaux (90 ; 94) du premier dispositif de palier (36), et en particulier en ce que l'élément de maintien de rouleaux (124) est disposé au niveau d'une première face frontale (110) de la première partie de boîtier (40), laquelle est distante du mors fixe (22 ; 244), et en particulier en ce que l'élément de maintien de rouleaux (124) comporte une première paire d'évidements (128a) espacés et une deuxième paire d'évidements (128b) espacés où sont mis en place des rouleaux (90 ; 94) correspondants, et en particulier en ce qu'un élément de maintien (66) pour le premier dispositif de palier (36) et le deuxième dispositif de palier (38) est mis en place par une extrémité ouverte sur l'élément de maintien de rouleaux (124).
  9. Serre-joint selon l'une des revendications précédentes, caractérisé en ce que la première partie de boîtier (40) comprend des évidements (96a, 96b ; 98a, 98b) où sont au moins partiellement engagées des goupilles (88 ; 92) du premier dispositif de palier (36).
  10. Serre-joint selon l'une des revendications précédentes, caractérisé en ce que le rail (12 ; 240) traverse la première surface d'appui (26 ; 280) et la deuxième surface d'appui (148).
  11. Serre-joint selon l'une des revendications précédentes, caractérisé en ce que le compartiment intérieur de boîtier (46) est fermé sur une face frontale opposée à la deuxième surface d'appui (148), jusqu'à un évidement (112) par où passe le rail (12 ; 240).
  12. Serre-joint selon l'une des revendications précédentes, caractérisé en ce que le compartiment intérieur de boîtier (46) est fermé sur une face inférieure (116) et/ou une face supérieure (118) de l'ensemble de boîtier (34), et/ou en ce que le compartiment intérieur de boîtier (46) est fermé latéralement.
  13. Serre-joint selon l'une des revendications précédentes, caractérisé en ce que le mors fixe (22) comporte au moins un élément de blocage (172 ; 186) empêchant la mobilité du mors fixe (22) par rapport au rail (12) au moins dans une direction dans une position de blocage, et en ce qu'un dispositif de contrainte est prévu, au moyen duquel l'inclinaison de l'élément ou des éléments de blocage (172 ; 186) peut être modifiée de manière à rendre le mors fixe (22) déplaçable sur le rail (12) pour le réglage de sa position sur le rail (12).
  14. Serre-joint selon l'une des revendications précédentes, caractérisé en ce qu'au moins un élément d'appui sur rail (284) repose sur le rail (12 ; 240), lequel présente au moins une surface d'appui (290 ; 291) orientée transversalement à la première surface d'appui (26 ; 80) et transversalement à la deuxième surface d'appui (148).
  15. Procédé de fabrication d'un serre-joint selon l'une des revendications précédentes, où le mors mobile est inséré par l'ouverture dans la première partie de boîtier.
EP08802962.4A 2007-08-16 2008-08-05 Serre-joint et procédé de fabrication d'un serre-joint Active EP2178678B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102007039841A DE102007039841B3 (de) 2007-08-16 2007-08-16 Zwinge und Verfahren zur Herstellung einer Zwinge
PCT/EP2008/060267 WO2009021873A2 (fr) 2007-08-16 2008-08-05 Serre-joint et procédé de fabrication d'un serre-joint

Publications (2)

Publication Number Publication Date
EP2178678A2 EP2178678A2 (fr) 2010-04-28
EP2178678B1 true EP2178678B1 (fr) 2014-04-02

Family

ID=39688523

Family Applications (1)

Application Number Title Priority Date Filing Date
EP08802962.4A Active EP2178678B1 (fr) 2007-08-16 2008-08-05 Serre-joint et procédé de fabrication d'un serre-joint

Country Status (7)

Country Link
US (1) US8544831B2 (fr)
EP (1) EP2178678B1 (fr)
CN (1) CN101821060B (fr)
AU (1) AU2008288542B2 (fr)
DE (1) DE102007039841B3 (fr)
TW (1) TWI432294B (fr)
WO (1) WO2009021873A2 (fr)

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WO2013006499A2 (fr) 2011-07-01 2013-01-10 Samtec, Inc. Émetteur-récepteur et interface pour boîtier de circuit intégré
TWM426479U (en) * 2011-10-19 2012-04-11 Song-Qi Liu Fast clamp
US9635795B2 (en) 2012-10-23 2017-04-25 International Business Machines Corporation Multiple expansion card insertion and extraction tool
CN104070480B (zh) 2013-03-15 2018-06-22 创科电动工具科技有限公司 夹紧和扩张工具
JP5693660B2 (ja) * 2013-06-04 2015-04-01 ジヤトコ株式会社 ワークの把持装置
USD793835S1 (en) * 2016-05-16 2017-08-08 Industrias Piqueras Sa Combined tool and ergonomically shaped color coded handle interchangeable and multi positionable
US10297963B2 (en) 2016-09-15 2019-05-21 Te Connectivity Corporation Dual connector system
US10490919B2 (en) 2017-03-14 2019-11-26 Te Connectivity Corporation Dual connector system
US10264675B2 (en) 2017-04-18 2019-04-16 Te Connectivity Corporation Dual connector system
US10367282B2 (en) 2017-04-20 2019-07-30 Te Connectivity Corporation Dual connector system
US10290962B2 (en) 2017-04-20 2019-05-14 Te Connectivity Corporation Dual connector system
DE102017113996A1 (de) * 2017-06-23 2018-12-27 Bessey Tool Gmbh & Co. Kg Zwinge und Verfahren zum Betreiben einer Zwinge
US10312633B2 (en) * 2017-10-03 2019-06-04 Te Connectivity Dual connector system having a securing strap
TWI652149B (zh) 2018-04-27 2019-03-01 海麥斯科技有限公司 快速夾具之壓力調整裝置
DE102020127038A1 (de) 2020-10-14 2022-04-14 Bessey Tool Gmbh & Co. Kg Zwingenwerkzeugvorrichtung
AT526706A1 (de) * 2022-10-24 2024-05-15 Simon Walch Klemmvorrichtung

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Also Published As

Publication number Publication date
WO2009021873A2 (fr) 2009-02-19
WO2009021873A3 (fr) 2009-04-16
AU2008288542A1 (en) 2009-02-19
DE102007039841B3 (de) 2008-09-18
CN101821060B (zh) 2012-07-18
CN101821060A (zh) 2010-09-01
AU2008288542B2 (en) 2014-02-20
TWI432294B (zh) 2014-04-01
US8544831B2 (en) 2013-10-01
TW200914212A (en) 2009-04-01
US20100187739A1 (en) 2010-07-29
EP2178678A2 (fr) 2010-04-28

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