The present invention relates to a centering vice.
A conventional vice is used to clamp a work piece and prevent the work piece from being unexpectedly moved during machining so as to have good machining accuracy. For example, a five-axis machine tool may be used with a centering vice. A conventional centering vice includes a main body and a threaded rod positioned on the main body, and the threaded rod has two moving seats screwed thereon. Each of the two moving seats is connected with a clamp so that the two moving seats are movable relative to each other along the threaded rod and said clamps can stably clamp the work piece.
However, the threaded rod of the conventional centering vice is fixedly mounted to the main body so that a clamping center of the said clamps cannot be adjusted to be aligned with a machining center of the five-axis machine tool, which results in poor machining accuracy. Some of the centering vice has an adjusting mechanism for adjustment of the clamping center, but a structure of the adjusting mechanism is complicated, which is inconvenient to manufacture and operate. The present invention is, therefore, arisen to obviate or at least mitigate the above-mentioned disadvantages.
The main object of the present invention is to provide a centering vice, which is convenient to be adjusted and provides good machining accuracy.
To achieve the above and other objects, the present invention provides a centering vice, including: a base, a clamp assembly and an adjusting assembly. The base includes a sliding groove extending in a first direction and a first abutting portion. The clamp assembly includes a first jaw portion and a second jaw portion which are movable relative to each other in the first direction. The adjusting assembly is disposed within the sliding groove and includes a threaded rod, a positioning member and two adjusting members. The threaded rod includes a first threaded segment, a second threaded segment and a positioning portion. The first jaw portion and the second jaw portion are connected respectively to the first threaded segment and the second threaded segment, and the positioning member is immovably connected to the positioning portion and disposed between the two adjusting members. The two adjusting members respectively have a second abutting portion abutted against the first abutting portion. The two adjusting members are at least partially movable relative to the base in a second direction lateral to the first direction to urge the positioning member to move in the first direction.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment(s) in accordance with the present invention.
Please refer to
The base 10 includes a sliding groove 11 extending in a first direction D1 and a first abutting portion 12. The clamp assembly 20 includes a first jaw portion 21 and a second jaw portion 22 which are movable relative to each other in the first direction D1. The adjusting assembly 30 is disposed within the sliding groove 11 and includes a threaded rod 31, a positioning member 32 and two adjusting members 33, and the threaded rod 31 includes a first threaded segment 311, a second threaded segment 312 and a positioning portion 313. The first jaw portion 21 and the second jaw portion 22 are connected respectively to the first threaded segment 311 and the second threaded segment 312, and the positioning member 32 is immovably connected to the positioning portion 313 and disposed between the two adjusting members 33. The two adjusting members 33 respectively have a second abutting portion 331 abutted against the first abutting portion 12. The two adjusting members 33 are at least partially movable relative to the base 10 in a second direction D2 lateral to the first direction D1 to urge the positioning member 32 to move in the first direction D1. Therefore, a clamping center of the clamp assembly 20 is adjustable to be aligned with a machining center of a machining tool so as to provides good machining accuracy.
The adjusting assembly 30 further includes a first slider 35 screwed on the first threaded segment 311 and a second slider 36 screwed on the second threaded segment 312, and the first slider 35 and the second slider 36 are movably disposed within the sliding groove 11. The first jaw portion 21 and the second jaw portion 22 are detachably connected respectively with the first slider 35 and the second slider 36 so that the first jaw portion 21 and the second jaw portion 22 are replaceable to meet different requirements. Spiral directions of the first threaded segment 311 and the second threaded segment 312 are opposite to each other so that the first jaw portion 21 and the second jaw portion 22 are moved toward or away from each other when the threaded rod 31 is rotated. Preferably, the base 10 has at least one scale mark 16 corresponding to the first jaw portion 21 and the second jaw portion 22, which is convenient to accurately adjust a distance between the first jaw portion 21 and the second jaw portion 22.
The base 10 further includes a concave portion 13 disposed on a bottom wall of the sliding groove 11, and the positioning member 32 and the two adjusting members 33 are received within the concave portion 13. Specifically, the first abutting portion 12 includes two inclined guiding surfaces 121 extending in the second direction D2, and the two inclined guiding surfaces 121 are located at an inner circumferential wall of the concave portion 13 and spaced apart from each other in the first direction D1, which allows the two adjusting members 33 to be stably moved along the two inclined guiding surfaces 121. Please refer to
Each of the two adjusting members 33 includes a push block 332 having the second abutting portion 331 disposed thereon and a push rod 333 connected with the push block 332, and each said push rod 333 is adjustably positioned on the base 10. In this embodiment, the base 10 has two threaded holes 15 communicated respectively with the two second portions 132, and each said push rod 333 is a threaded rod screwed within one of the two threaded holes 15, which allows the two adjusting members 33 to be slightly adjusted for good accuracy. The push block 332 of each of the two adjusting members 33 is a wedge block and is movable relative to one said push rod 333, and each said second abutting portion 331 is a surface of one said wedge block extending in the second direction D2, which has a simple structure and provides stable abutment with one another. Each of the two second portions 132 is broadened in a direction remote from one of the two threaded holes 15 so that the first abutting portion 12 and the second abutting portion 331 of each of the two adjusting members 33 can correspond to and be firmly abutted against each other.
When the push rod 333 of one of the two adjusting members 33 is moved in a third direction D3 vertical to the first direction D1, the push rod 333 drives one said push block 332 to move in the second direction D2, and the second direction D2 is oblique to the third direction D3. Therefore, the two adjusting members 33 effectively urge the positioning member 32 to move, and a structure of the adjusting assembly 30 is simple and convenient to be processed. Preferably, each of the two adjusting members 33 and the base 10 has at least one elastic member 34 disposed therebetween, and each of the at least one elastic member 34 is elastically abutted against a side of one said push block 332 remote from one said push rod 333, which allows each said push block 332 to keep in contact and be co-movable with one said push rod 333. Each said push block 332 has at least one receiving groove 334 receiving the at least one elastic member 34 therewithin so as to prevent the at least one elastic member 34 from being disengaged unexpectedly. In other embodiments, each said push block may be integrally formed as a part of one said push rod; each said push rod may be positioned on the base in other manners.
Preferably, said push rods 333 of the two adjusting members 33 are arranged diagonally relative to the positioning member 32 so that the positioning member 32 can be urged evenly by the two adjusting members 33 and be moved smoothly. In the third direction D3, a width of each said push block 332 is larger than or equal to ⅓ of a width of the positioning member 32 for stable abutment. In the third direction D3, each said push block 332 is partially overlapped with a side wall of the first portion 131 so as to restrict a movable distance of each said push block 332. Please refer to
Although particular embodiments of the invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
110137380 | Oct 2021 | TW | national |