Modular Vise System and Methods of Using Same
20220288747 ยท 2022-09-15
Inventors
Cpc classification
International classification
Abstract
The present invention provides a modular vise system comprised of a fixed body, a moveable body, and a fixture plate, wherein the moveable body has a wide range of motion which enables it to grab a piece of any size that will fit within the confines of the fixture plate, the moveable body being tightened from the top of the modular vise. Tightening of the modular vise from the top allows for multiple work pieces to be placed along the moving axis of the modular vise which increases workpiece density and machine efficiency. The moveable body of the modular vise may be driven mechanically, electrically, or via a fluid driven actuator such as a pneumatic actuator or a hydraulic actuator.
Claims
1. A moveable body of a modular vise compatible with mounting upon the working surface of a machine tool via a fixture plate, the moveable body comprising: a stationary block; a master jaw; a means for actuating said master jaw; and a means for aligning and mounting said stationary block to the fixture plate; wherein said means for actuating said master jaw simultaneously allows said stationary block to be a fixed body for at least one additional vise; and wherein said master jaw comprises a means for affixing at least one vise jaw.
2. The moveable body of claim 1 wherein said stationary block additionally contains means for affixing vise jaws.
3. The moveable body of claim 2 wherein the means for actuating said master jaw comprises a bevel gear set; a lead screw; at least one guide rod; wherein said bevel gear set further comprises a drive bevel gear and a driven bevel gear; wherein said drive bevel gear further comprises a driving feature, said driven bevel gear is threaded and said threaded bevel gear acts upon the lead screw.
4. The moveable body of claim 3 wherein said means for affixing at least one vise jaw comprises a dovetail groove, one or more alignment dowels, and at least one dovetail clamp.
5. The moveable body of claim 4 wherein means for aligning and mounting said stationary block to the fixture plate comprises at least one bolt hole and at least one precision counterbore.
6. The moveable body of claim 5 wherein the at least one guide rod and the lead screw are rigidly affixed to the master jaw; and said stationary block further comprises a housing for said bevel gear seat; said housing for said bevel gear set comprises a tight tolerance bore; said tight tolerance bore acting as a bearing; wherein each said at least one precision counterbore is filled by at least one hollow alignment dowel.
7. The moveable body of claim 3 wherein said drive bevel gear is oriented along an axis other than the axis upon which said driven bevel gear is aligned.
8. The moveable body of claim 7 wherein said orientation of the drive bevel gear provides means for tightening said vise while said means for tightening said vise simultaneously allows said stationary block to be a fixed body for at least one additional vise.
9. The moveable body of claim 8 wherein said drive bevel gear is oriented along an axis substantially perpendicular to the axis of said driven bevel gear.
10. The moveable body of claim 2 wherein said means for actuating said master jaw comprises: at least one piston; at least one piston bore; at least one guide rod bore; at least one guide rod, and a port for transfer of fluid to act on said piston.
11. The moveable body of claim 10 wherein said means for actuating said master jaw further comprises a set of hydraulic pistons, O-rings, and a seal housing; said stationary block further comprises a housing for said hydraulic pistons; said housing for said hydraulic pistons comprises a tight tolerance bore; said tight tolerance bore and hydraulic pistons are sealed via said series of O-rings; said set of hydraulic pistons additionally functioning as guide rods.
12. The moveable body of claim 2 wherein said means for actuating said master jaw comprises a lead screw, an electric motor, a lead screw nut; a drivetrain; and at least one guide rod wherein the drivetrain transfers the motion of said electric motor to the nut.
13. A modular vise comprising: a moveable body; a fixed body; and a fixture plate wherein the moveable body comprises the moveable body of claim 1.
14. The modular vise of claim 13 wherein said fixed body comprises a means for mounting and aligning to said fixture plate and a means for mounting at least one vise jaw.
15. The modular vise of claim 14 wherein said means for aligning and mounting said fixed body to said fixture plate comprises at least one hole and at least one precision counterbore and said means for affixing vise jaws comprises at least one dovetail groove, at least one alignment dowel and at least one dovetail clamp; wherein said fixture plate comprises a rigid plate, said rigid plate comprising patterned features for locating and retaining at least one moveable body and at least one fixed body.
16. A modular vise comprising: a fixed body; a moveable body; and a fixture plate wherein the moveable body comprises the moveable body of claim 6.
17. The modular vise of claim 16 wherein said fixed body comprises a means for mounting and aligning to a fixture plate; a means of mounting at least one vise jaw, further wherein said means for aligning and mounting said fixed body to said fixture plate comprises at least one hole and at least one precision counterbore and said means for affixing vise jaws further comprise at least one dovetail groove, at least one alignment dowel and at least one dovetail clamp; wherein said fixture plate comprises a rigid plate, said rigid plate comprising patterned features for locating and retaining at least one moveable body and at least one fixed body.
18. The modular vise of claim 17 wherein the moveable body, the fixed body, and the stationary body are comprised of an engineering material.
19. The modular vise of claim 18 wherein the engineering material is selected from steel, stainless steel, aluminum, titanium, brass, bronze, polymer, fiber reinforced polymer, or compacted graphite.
20. The modular vise of claim 19 wherein the bearings are comprised of bronze or other copper alloy.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Embodiments of the present invention will be described by reference to the following drawings, in which like numerals refer to like elements, and in which:
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[0024]
LIST of PARTS
[0025] The following is a listing of parts presented in the drawings wherein like part numbers indicate like parts:
[0026] 100-modular vise system;
[0027] 110-fixed body;
[0028] 112-dovetail groove;
[0029] 114-counterbore for fastener;
[0030] 120-moveable body;
[0031] 130-stationary block;
[0032] 132-dovetail groove;
[0033] 134-stationary block bore for fixture plate alignment dowel;
[0034] 136-stationary block bore for fixture plate mounting;
[0035] 137-fixture plate tight tolerance mounting dowel;
[0036] 140-bevel gear set;
[0037] 141-bevel gear set housing bore;
[0038] 142-bevel gear set housing;
[0039] 143-driven gear retaining ring;
[0040] 144-drive bevel gear;
[0041] 145-driven bevel gear;
[0042] 146-bevel gear driving feature;
[0043] 147-drive gear retaining ring;
[0044] 148-thrust washers;
[0045] 149-means for bevel gear set housing mounting;
[0046] 150-lead screw;
[0047] 160-guide rods;
[0048] 162-guide rod bore;
[0049] 164-guide rod mounting bolt;
[0050] 170-dovetail clamps;
[0051] 171-jaw alignment dowel bore hole;
[0052] 172-jaw alignment dowels;
[0053] 175-dovetail clamp bore hole;
[0054] 176-countersunk socket head cap screw (SHCS);
[0055] 178-chamfered edged tooth;
[0056] 180-master jaw;
[0057] 184-vise jaw;
[0058] 185-channel;
[0059] 187-double dove tail;
[0060] 188-mounting holes
[0061] 190-fixture plate;
[0062] 192-fixture plate mounting bore hole;
[0063] 194-fixture plate alignment dowel mounting bore hole;
[0064] 196-counterbored cutout for clamp mounting to machine working surface;
[0065] 197-fixture plate clamping bores;
[0066] 220-moveable body for modular vise with hydraulic or pneumatic actuation;
[0067] 230-stationary block;
[0068] 232-dovetail groove;
[0069] 237-drive fluid inlet;
[0070] 238-drive fluid outlet;
[0071] 260-guide rods/pistons;
[0072] 262-guide rod housing;
[0073] 263-O-rings;
[0074] 264-seal housing (seal pack);
[0075] 266-socket head cap screw (SHCS);
[0076] 320-moveable body for modular vise with electric actuation;
[0077] 330-stationary block;
[0078] 350-electric motor;
[0079] 362-guide rod bore;
[0080] 370-part clamping dove tail grip;
[0081] 384-part stop;
[0082] 385-part stop locating feature;
[0083] 387-double dovetail;
[0084] 510-grip; and
[0085] 1000-work piece.
DETAILED DESCRIPTION OF THE INVENTION
[0086] The present invention provides an exemplary modular machine vise.
[0087] Referring to
[0088] The stationary block 130 of the moveable body 120 shall contain at least one and preferably two or more holes 134 to facilitate bolting or clamping to the fixture plate as well as at least one and preferably two or more locating features to precisely align the moveable body 120 with the fixture plate 190. In the preferred embodiment depicted in
[0089] The fixed body 110 closely resembles the stationary block 130 of the moveable body 120, though lacking the bores for guide rods and pockets for bevel gears. Therefore the fixed body 110 is preferably a block with the same dovetail groove 132, at least one alignment dowel 172 and preferably at least two hollow alignment dowels and more preferably two alignment dowels , and dovetail clamps 170 as both the master jaw 180 and stationary block 130 of the moveable body 120, as well as the one or more holes 136 to facilitate bolting or clamping to the fixture plate 190 as well as one or more location features to precisely align the moveable body with the fixture plate. As those skilled in the art are aware, changing the dovetail groove, alignment dowels, dovetail clamps, or holes do not avoid the teachings of the present invention. Again, similar to the stationary block 130 of the moveable body 120, the fixed body 110 in the preferred embodiment contains at least one counterbored through hole 136 for SHCS and at least one precision counterbore 134 on the bottom for hollow alignment dowels. In an alternative embodiment, the fixed body incorporates the same provisions described previously for mounting a vise jaw on the back of the fixed body onto the front of the fixed body, to allow mounting of two vise jaws wherein two movable bodies may act against the same fixed body. In yet another alternative embodiment, the same provisions described previously herein for mounting a vise jaw are placed on the top of the fixed body, to allow rapid and accurate machining of the front face of a vise jaw.
[0090] The at least one guide rod 160 is preferably a tight tolerance rod of any shape, more preferably round for ease of manufacture of the stationary block 130 of and the master jaw 180 of the moveable body 120. In the preferred embodiment depicted in
[0091] The lead screw 150 is preferably rigidly attached to the master jaw 180 and may be any screw that creates movement of the master jaw 180 when the bevel gear set 140 is rotated. In the preferred embodiment the lead screw 150 is Acme thread to reduce friction due to high axial loads on the screw while tightening the vise.
[0092]
[0093] As depicted in
[0094] Referring again to
[0095] The vise components may be made of any suitable engineering material such as stainless steel, steel, aluminum, titanium, or the like. Preferably a high stiffness, high hardness material such as steel will be used for the stationary block, master jaw, guide rods, bevel gears, fixed jaw, lead screw, fasteners and retaining rings. With bushings and bearings made of bronze, other copper alloy, or a similar suitable bearing material. If weight of the vise system becomes an area of concern, any of the parts may be substituted with a lighter material such as aluminum, titanium, brass, bronze, polymer, fiber reinforced polymer, compacted graphite, or similar material. Superficial pocketing to reduce weight of any components of the vise may also be performed.
[0096] In another embodiment depicted in
[0097] Another preferred embodiment of the modular vise is depicted in
[0098] In yet another embodiment depicted in
[0099] In yet another embodiment depicted in
[0100] In yet another embodiment of the present invention, a worm drive acts upon the lead screw. The worm drive may be powered by any readily available means.
[0101] In yet another embodiment of the present invention, the lead screw of the first embodiment is replaced with a rack and the bevel gear system is replaced with a pinion. The rotation of the pinion controls the movement of the rack allowing the modular vise to open and close.
[0102] In yet another embodiment of the present invention, the modular vise may be equipped with a dovetail rather than a mounting dowel and the fixture plate may be equipped with a grove to allow for rapid changeovers.
[0103] In yet another embodiment a key, groove, and set screw may be used to attach the modular vise to the fixture plate which also enables rapid changeovers.
[0104] As those skilled in the art are aware, the various embodiments of the present invention may be combined with readily available jaw configurations such as those that use Mitee Bite clamps, grips or other similar products.
[0105] Although several embodiments of the present invention, methods to use said, and its advantages have been described in detail, it should be understood that various changes, substitutions, and alterations can be made herein without departing from the spirit and scope of the invention as defined by the appended claims. The various embodiments used to describe the principles of the present invention are by way of illustration only and should not be construed in any way to limit the scope of the invention. Those skilled in the art will understand that the principles of the present invention may be implemented in any suitably arranged device.