CN217317053U - Laser support processing frock - Google Patents
Laser support processing frock Download PDFInfo
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- CN217317053U CN217317053U CN202221231591.XU CN202221231591U CN217317053U CN 217317053 U CN217317053 U CN 217317053U CN 202221231591 U CN202221231591 U CN 202221231591U CN 217317053 U CN217317053 U CN 217317053U
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- tool body
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- pressing plate
- holes
- laser support
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Abstract
The utility model discloses a laser bracket processing tool, which comprises a tool body A and a tool body B, wherein a plurality of positioning holes and pressing plate connecting holes are respectively arranged at the front side edge and the rear side edge of the upper surface of the tool body A and the upper surface of the tool body B, and a pressing plate and a positioning pin are respectively connected in the pressing plate connecting holes and the positioning holes; the lower surface of the tool body A is provided with a plurality of connecting holes; the upper surface of the tool body A is also provided with a first guide hole; one side wall of the tool body B is provided with a second guide hole matched with the first guide hole; the other side wall of the tool body B is provided with a tailstock center hole; still include the four-axis connecting seat, lie in the position department that corresponds the connecting hole on a lateral wall of four-axis connecting seat and seted up the frock fixed orifices, a plurality of four-axis connecting holes have been seted up to this lateral wall of four-axis connecting seat, the utility model has the advantages of can satisfy the centre gripping of the all-round processing of laser instrument support through two frock bodies, the clamping is stable, and processing is convenient, frock simple structure, and the machining precision is high.
Description
Technical Field
The utility model relates to a processing frock technical field specifically is a laser instrument support processing frock.
Background
The existing laser support processing needs a specific tool to fix and clamp the laser support, and then the laser is processed through a four-axis numerical control machine tool; the laser support comprises a plane plate, wherein the left end and the right end of the plane plate are respectively provided with a side plate perpendicular to the plane plate, the top surface of the side plate at the rear end is provided with an inclined plane, the inclined plane is required to be provided with a hole perpendicular to the inclined plane, the rear side wall of the plane plate is provided with a plurality of notches, round holes are formed in the middle and the tail end of the rear side edge of the upper surface of the plane plate, the front side wall of the plane plate is provided with three convex blocks extending outwards, the convex blocks are provided with round holes, the upper surface of the plane plate is provided with three square bulges along the length direction, the upper surface of the plane plate is provided with a rectangular bulge along the length direction, and the lower surface of the plane plate is provided with a rectangular bulge; due to the fact that the laser support is complex in structure, when the existing tool is used for clamping and machining the laser support, clamping of the laser support tool is unstable, a plurality of tools are needed for clamping the laser support, machining is inconvenient, the tool is complex in structure, machining precision is low, and the like.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, provide a laser instrument support processing frock, can satisfy the centre gripping location of all-round processing of laser instrument support through frock body A, frock body B and four-axis connecting seat, it is stable to laser instrument support clamping, processing is convenient, frock simple structure, and the machining precision is high, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: a laser support machining tool comprises a tool body A and a tool body B for clamping a laser support, wherein the length of the tool body A is smaller than that of the laser support, a plurality of first positioning holes and a plurality of first pressing plate connecting holes are formed in the front side edge and the rear side edge of the upper surface of the tool body A, and a pressing plate and a positioning pin are respectively connected into the first pressing plate connecting holes and the first positioning holes; the tool body A is provided with a yielding groove transversely penetrating through the upper surface of the tool body A, and the upper surface of the tool body A is provided with three yielding holes I along the length direction of the tool body A; the lower surface of the tool body A is provided with a plurality of connecting holes; the upper surface of the tool body A is also provided with a first guide hole; the length of the tool body B is matched with that of the laser support, step surfaces are arranged at two ends of the upper surface of the tool body B, a plurality of second positioning holes and a second pressing plate connecting hole are arranged at the front side edge and the rear side edge of the upper surface of the tool body B, and a pressing plate and a positioning pin are respectively connected in the second pressing plate connecting hole and the second positioning hole; the upper surface of the tool body B is provided with a second abdicating hole; one side wall of the tool body B is provided with a second guide hole matched with the first guide hole; the other side wall of the tool body B is provided with a tailstock center hole; still include the four-axis connecting seat, lie in the position department that corresponds the connecting hole on one side wall of four-axis connecting seat and seted up the frock fixed orifices, lie in the periphery of frock fixed orifices on this lateral wall of four-axis connecting seat and seted up a plurality of four-axis connecting holes.
Furthermore, a top rod is fixedly connected in the first guide hole, and the outer side end of the top rod penetrates into the second guide hole.
Furthermore, a limiting hole matched with the first positioning hole is formed in the side wall of the tool body B, a limiting rod is fixedly connected in the limiting hole, and the outer side end of the limiting rod penetrates into the first positioning hole corresponding to the limiting rod.
Furthermore, the pressing plate is a rectangular square, a threaded hole is formed in the pressing plate, and the pressing plate is connected with the first pressing plate connecting hole and the second pressing plate connecting hole through bolts.
Compared with the prior art, the beneficial effects of the utility model are that: this laser support processing frock can satisfy the all-round centre gripping location of processing of laser support through frock body A, frock body B and four-axis connecting seat, and is stable to laser support clamping, and processing is convenient, frock simple structure, and the machining precision is high.
Drawings
Fig. 1 is a front axial view of a laser holder according to the present invention;
fig. 2 is a schematic view of the reverse side of the laser holder according to the present invention;
FIG. 3 is a schematic structural view of the fixture body A of the present invention;
fig. 4 is a bottom view of the tool body a of the present invention;
FIG. 5 is a schematic structural view of the fixture A of the present invention when clamping the laser holder;
FIG. 6 is a schematic structural view of a fixture body B of the present invention;
fig. 7 is a schematic structural view of the fixture body B when clamping the laser holder of the present invention;
FIG. 8 is a schematic view of the connection between the fixture body A and the four-axis connecting seat of the present invention;
FIG. 9 is a schematic view of the four-axis connecting base of the present invention;
fig. 10 is a schematic structural view of the back surface of the laser holder according to the present invention;
fig. 11 is a left isometric view of the back side of the laser holder of the present invention;
fig. 12 is a right side perspective view of the back side of the laser holder of the present invention;
fig. 13 is a partial enlarged view of the laser holder side plate bevel processing round hole of the present invention.
In the figure: the tool comprises a laser support 1, a tool body A2, a tool body A21, a tool body B31, a tool fixing hole 61, a four-axis connecting hole 62 and a push rod 7, wherein the tool body A comprises a first positioning hole, a first pressing plate connecting hole 22, a step groove 23, a first 24-step hole, a first 26-connecting hole, a first 27-guiding hole, a second 3-tool body B, a second 31-positioning hole, a second 32-pressing plate connecting hole, a second 33-step hole, a step surface 34, a second 35-guiding hole, a 36 limiting hole, a 4-positioning pin, a 5-pressing plate, a 6-four-axis connecting seat, a 61-tool fixing hole, a 62-four-axis connecting hole and a 7-push rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example one
Referring to fig. 1-13, the present invention provides a technical solution: a laser bracket processing tool comprises a tool body A2 and a tool body B3 for clamping a laser bracket 1, wherein the length of the tool body A2 is smaller than that of the laser bracket 1, a plurality of positioning holes I21 and pressure plate connecting holes I22 are formed in the front side edge and the rear side edge of the upper surface of the tool body A2, the positioning holes I21 in the front side edge of the tool body A2 are matched with the positions of round holes in bumps on the front side wall of the laser bracket 1, the positioning holes I21 in the rear side edge of the tool body A2 are matched with the positions of round holes in the upper rear side edge of a plane plate of the laser bracket 1, and a pressure plate 5 and a positioning pin 4 are connected in the pressure plate connecting holes I22 and the positioning holes I21 respectively; the tool body A2 is provided with a yielding groove 23 transversely penetrating through the upper surface of the tool body A2, the yielding groove 23 is matched with the structure and the position of a rectangular bulge on the upper surface of the laser support 1, the upper surface of the tool body A2 is provided with three yielding holes I24 along the length direction of the upper surface of the tool body A2, and the yielding holes I24 are matched with the position and the structure of the square bulge on the upper surface of the laser support 1; the lower surface of the tool body A2 is provided with a plurality of connecting holes 26; the upper surface of the tool body A2 is also provided with a first guide hole 27; the laser support 1 is reversely positioned on a tool A2 through a positioning hole I21 and a positioning pin 4 on a tool A2, rectangular protrusions and square protrusions on the upper surface of the laser support 1 are abducted through an abduction groove 23 and an abduction hole I24, the laser support 1 is pressed through a pressing plate 5, and the tool A2 is fixed on a clamp of a four-axis numerical control machine tool to process the reverse side of the laser support 1;
the tool body B3 is matched with the length of the laser support 1, step surfaces 34 are arranged at two ends of the upper surface of the tool body B3, a plurality of positioning holes II 31 and pressing plate connecting holes II 32 are arranged at the front side edge and the rear side edge of the upper surface of the tool body B3, the positioning holes II 31 positioned at the front side edge of the tool body B3 are matched with the positions of round holes in a convex block on the front side wall of the laser support 1, the positioning holes II 31 positioned at the rear side edge of the tool body B3 are matched with the positions of round holes in the rear side edge of a plane plate of the laser support 1, and a pressing plate 5 and a positioning pin 4 are respectively connected in the pressing plate connecting holes II 32 and the positioning holes II 31; a second abdicating hole 33 is formed in the upper surface of the tool body B3, and the second abdicating hole 33 is matched with the rectangular bulge on the lower surface of the laser support 1 in structure and position; one side wall of the tool body B3 is provided with a second guide hole 35 matched with the first guide hole 27; the other side wall of the tool body B3 is provided with a tailstock center hole; the laser support 1 processed by the tool body A2 is taken out, the laser support 1 is positioned on the tool body B3 in the forward direction through the second positioning hole 31 and the positioning pin 4 on the tool body B3, the rectangular protrusion arranged on the lower surface of the laser support 1 is abdicated through the second abdicating hole 33, the laser support 1 is compressed through the pressing plate 5, and the front surface of the laser support 1 is processed by fixing the tool body B3 on a clamp of a four-axis numerical control machine tool.
The four-axis connecting device is characterized by further comprising a four-axis connecting seat 6, wherein a tool fixing hole 61 is formed in a position, corresponding to the connecting hole 26, on one side wall of the four-axis connecting seat 6, and a plurality of four-axis connecting holes 62 are formed in the periphery, located on the tool fixing hole 61, of the side wall of the four-axis connecting seat 6; the laser support 1 processed by the tool body B3 is taken out, the laser support 1 is reversely fixed on a tool A2, a tool fixing hole 61 on the four-axis connecting seat 6 is fixedly connected with a connecting hole 26 on a tool A2 through a bolt, the four-axis connecting seat 6 is connected with a driving part of a four-axis numerical control lathe through a four-axis connecting hole 62 arranged on the four-axis connecting seat, the four-axis connecting seat 6 rotates along with the driving part of the four-axis numerical control lathe, and the four-axis numerical control lathe processes the side face of the laser support 1.
The inside of the first guide hole 27 is fixedly connected with a top rod 7, the outer side end of the top rod 7 penetrates into a second guide hole 35, the side wall of the tooling body B3 is provided with a limiting hole 36 matched with the first positioning hole 21, a limiting rod is fixedly connected into the limiting hole 36, and the outer side end of the limiting rod penetrates into the first positioning hole 21 corresponding to the limiting rod; the laser support 1 with the machined side face is taken out of the tool body A2, then the laser support 1 is fixed on the tool body B3 in the forward direction, a driving piece of the four-axis numerical control lathe moves to enable the tool body A2 to tightly push the tool body B3 through the ejector rod 7 and the limiting rod, the top on the four-axis tailstock tightly pushes the other side wall of the tool body B3, the limiting rod plays a limiting role in circumferential rotation of the tool body B3, the four-axis connecting seat 6 is driven to rotate through the driving piece of the four-axis numerical control lathe, so that the inclined face on the side plate of the laser support 1 rotates to be horizontal, and therefore circular holes vertical to the inclined face of the side plate of the laser support 1 are machined on the inclined face of the side plate of the laser support 1.
Further, the pressing plate 5 is a rectangular square, a threaded hole is formed in the pressing plate 5, and the pressing plate 5 is connected with the first pressing plate connecting hole 22 and the second pressing plate connecting hole 32 through bolts.
The utility model discloses a frock body A2, frock body B3 and four-axis connecting seat 6 can satisfy the centre gripping location of 1 all-round processing of laser instrument support, and are stable to 1 clamping of laser instrument support, and processing is convenient, frock simple structure, and the machining precision is high.
When in use: the laser support 1 is reversely positioned on a tool A2 through a positioning hole I21 and a positioning pin 4 on a tool A2, rectangular protrusions and square protrusions on the upper surface of the laser support 1 are abducted through an abduction groove 23 and an abduction hole I24, the laser support 1 is pressed through a pressing plate 5, and the tool A2 is fixed on a clamp of a four-axis numerical control machine tool to process the reverse side of the laser support 1; after processing, the tool body A2 is disassembled, and the laser bracket 1 is taken out of the tool body A2;
the laser support 1 is positively positioned on the tool body B3 through a second positioning hole 31 and a second positioning pin 4 on the tool body B3, a rectangular bulge arranged on the lower surface of the laser support 1 is abducted through a second abduction hole 33, the laser support 1 is pressed through a pressing plate 5, and the tool body B3 is fixed on a clamp of a four-axis numerical control machine tool to process the front surface of the laser support 1; after processing, the tool body B3 is removed, and the laser bracket 1 is taken out of the tool body B3;
then, the laser support 1 is reversely fixed on a tool A2, a tool fixing hole 61 on the four-axis connecting seat 6 is fixedly connected with a connecting hole 26 on a tool A2 through a bolt, the four-axis connecting seat 6 is connected with a driving piece of a four-axis numerical control lathe through a four-axis connecting hole 62 arranged on the four-axis connecting seat, the four-axis connecting seat 6 rotates along with the driving piece of the four-axis numerical control lathe, and the four-axis numerical control lathe processes the side face of the laser support 1;
the laser support 1 with the machined side face is taken out of the tool body A2, then the laser support 1 is fixed on the tool body B3 in the forward direction, a driving piece of the four-axis numerical control lathe moves to enable the tool body A2 to tightly push the tool body B3 through the ejector rod 7 and the limiting rod, the top on the four-axis tailstock tightly pushes the other side wall of the tool body B3, the limiting rod plays a limiting role in circumferential rotation of the tool body B3, the four-axis connecting seat 6 is driven to rotate through the driving piece of the four-axis numerical control lathe, so that the inclined face on the side plate of the laser support 1 rotates to be horizontal, and therefore circular holes vertical to the inclined face of the side plate of the laser support 1 are machined on the inclined face of the side plate of the laser support 1.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (4)
1. The utility model provides a laser support processing frock, includes the frock body A and the frock body B of clamping laser support, its characterized in that: the length of the tool body A is smaller than that of the laser support, a plurality of first positioning holes and a plurality of first pressing plate connecting holes are formed in the front side edge and the rear side edge of the upper surface of the tool body A, and a pressing plate and a positioning pin are respectively connected into the first pressing plate connecting holes and the first positioning holes; the tool body A is provided with a yielding groove transversely penetrating through the upper surface of the tool body A, and the upper surface of the tool body A is provided with three yielding holes I along the length direction of the tool body A; the lower surface of the tool body A is provided with a plurality of connecting holes; the upper surface of the tool body A is also provided with a first guide hole; the length of the tool body B is matched with that of the laser support, step surfaces are arranged at two ends of the upper surface of the tool body B, a plurality of second positioning holes and a second pressing plate connecting hole are arranged at the front side edge and the rear side edge of the upper surface of the tool body B, and a pressing plate and a positioning pin are respectively connected in the second pressing plate connecting hole and the second positioning hole; the upper surface of the tool body B is provided with a second abdicating hole; one side wall of the tool body B is provided with a second guide hole matched with the first guide hole; the other side wall of the tool body B is provided with a tailstock center hole; still include the four-axis connecting seat, lie in the position department that corresponds the connecting hole on one lateral wall of four-axis connecting seat and seted up the frock fixed orifices, lie in the periphery of frock fixed orifices on this lateral wall of four-axis connecting seat and seted up a plurality of four-axis connecting holes.
2. The laser bracket machining tool according to claim 1, characterized in that: and an ejector rod is fixedly connected in the first guide hole, and the outer side end of the ejector rod penetrates into the second guide hole.
3. The laser support machining tool according to claim 1, characterized in that: the side wall of the tool body B is provided with a limiting hole matched with the first positioning hole, a limiting rod is fixedly connected in the limiting hole, and the outer side end of the limiting rod penetrates into the first positioning hole corresponding to the limiting rod.
4. The laser support machining tool according to claim 1, characterized in that: the pressing plate is a rectangular square, a threaded hole is formed in the pressing plate, and the pressing block is connected with the first pressing plate connecting hole and the second pressing plate connecting hole through bolts.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202221231591.XU CN217317053U (en) | 2022-05-23 | 2022-05-23 | Laser support processing frock |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202221231591.XU CN217317053U (en) | 2022-05-23 | 2022-05-23 | Laser support processing frock |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN217317053U true CN217317053U (en) | 2022-08-30 |
Family
ID=82986328
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202221231591.XU Active CN217317053U (en) | 2022-05-23 | 2022-05-23 | Laser support processing frock |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN217317053U (en) |
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2022
- 2022-05-23 CN CN202221231591.XU patent/CN217317053U/en active Active
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