Alloy cutter machining and punching mechanism
By designing a punching mechanism for alloy cutters, the combination of electric push rods and hydraulic rods is used to limit the alloy cutter body and achieve precise punching, which solves the problem of offset caused by equipment vibration during the punching process, and improves punching stability and automated unloading efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUIZHOU PUJI PRECISION CUTTING TOOL CO LTD
- Filing Date
- 2025-05-15
- Publication Date
- 2026-04-10
AI Technical Summary
The alloy cutter is prone to shifting due to equipment vibration during the punching process, resulting in punching errors and low stability.
A punching mechanism for alloy cutting tools was designed, including a support, a table, a top die, a bottom die, an electric push rod, and a hydraulic rod. By opening a cutting groove between the top die and the bottom die and using the cooperation of the electric push rod and the hydraulic rod, the alloy cutting tool body is limited and precisely punched, and automatic unloading is achieved through a worm gear mechanism.
It improves the stability of alloy cutting punching, reduces debris residue, and enables a convenient punching process and automated unloading.
Smart Images

Figure CN224101617U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to alloy cutter punching equipment technical field, concretely relates to a kind of alloy cutter processing punching mechanism. BACKGROUND
[0002] Alloy cutter is the precision cutting tool made of hard alloy (such as tungsten steel) as main material, is widely used in electronic, machinery manufacturing and building etc., and punching structure is needed to be used in the process of alloy cutter processing to punch it, to facilitate subsequent installation or mutual splicing with other parts, but alloy cutter is easily slightly deviated due to the vibration of equipment in the process of punching alloy cutter by using punching equipment, certain error is caused when subsequent punching, and stability is lower.For this, we propose a kind of alloy cutter processing punching mechanism. SUMMARY
[0003] In view of the problems in the prior art, the utility model provides a kind of alloy cutter processing punching mechanism.
[0004] The technical scheme adopted by the utility model to solve its technical problems is a kind of alloy cutter processing punching mechanism, including support, the support is rotationally installed with the plate for supporting in, and the plate top surface is equipped with the bottom die for placing alloy cutter, the support top surface is equipped with the electric push rod for adjusting, and the electric push rod has multiple groups, the electric push rod power output end is equipped with the top die that is in accord with bottom die, and the top die and bottom die are opened with the knife groove for accommodating alloy cutter body between, and the knife groove has multiple groups;
[0005] The top die and bottom die are all opened with the vertical hole that is communicated with knife groove, the top die top surface is equipped with the plate seat for supporting, and the plate seat has multiple groups, the plate seat top surface is equipped with hydraulic rod, and the hydraulic rod power output end is equipped with the punch that is inserted into the vertical hole and is connected, the plate top surface is opened with the square hole that is communicated with vertical hole.
[0006] By adopting the above technical scheme, in the process of punching alloy cutter, corresponding knife groove can be opened between top die and bottom die according to the specification of alloy cutter body, then alloy cutter body can be directly placed into knife groove, then electric push rod operates and pushes top die to be close to bottom die, so that top die and bottom die are combined and alloy cutter body is positioned by using the knife groove between them, so as to improve the stability of alloy cutter body when subsequent punching;
[0007] When the top die and the bottom die are closed, the hydraulic rod on the surface panel base of the top die can be operated, the hydraulic rod operation facilitates the displacement of the punch in the vertical hole, and the vertical hole is preset according to the position of the alloy cutter body surface needing to be punched, so that the punch can be displaced along the vertical hole and can punch the alloy cutter body in the cutter groove, facilitating the punching of the alloy cutter body, and the debris during punching can slide along the vertical hole on the bottom die and fall through the square hole in the table plate, thereby reducing the influence of the debris remaining in the bottom die, so that the punching equipment can more stably and conveniently punch the alloy cutter body.
[0008] Specifically, the outer wall surface of the support is rotatably connected with a worm gear which is in transmission connection with the table plate, and the outer wall surface of the support is provided with a speed reducer, the power output end of the speed reducer is provided with a worm which is in meshing connection with the worm gear, and the power input end of the speed reducer is provided with a reciprocating motor.
[0009] Through the above technical scheme, when the alloy cutter body punching between the bottom die and the top die is completed, the top die can be separated from the bottom die under the operation of the electric push rod, then the reciprocating motor outside the support is operated, the reciprocating motor operation facilitates the rotation of the worm under the operation of the speed reducer, so that the worm can mesh with the worm gear and drive the worm gear to rotate, then the worm gear can drive the table plate inside the support to overturn to a certain extent, and the bottom die can be inclined and the alloy cutter body after punching in the cutter groove can be automatically slid out, facilitating the stripping of the alloy cutter body, and after stripping, the reciprocating motor continues to operate and drives the table plate to return to the original position through the worm and the worm gear, facilitating the punching of the next group of alloy cutter.
[0010] Specifically, the outer wall surface of the support is provided with a disc seat for supporting, and the outer wall surface of the disc seat is provided with an arc hole for limiting, one end of the table plate inside the support is provided with a rotating disc for transmission, and the outer wall surface of the rotating disc is integrally provided with a sliding rod which is matched with the arc hole, and the arc hole is provided with a stop seat for limiting through bolts.
[0011] Through the above technical scheme, when the table plate is overturned, the rotating disc can be rotated, the rotating disc facilitates the sliding displacement of the sliding rod in the arc hole on the disc seat outside the support, and the stop seat in the arc hole facilitates the blocking of the sliding of the sliding rod and the overturning of the table plate, thereby reducing the excessive overturning of the table plate, and the position of the stop seat can be adjusted to facilitate the adjustment according to the needs during use.
[0012] Specifically, the outer periphery of the sliding rod is bonded with a rubber sleeve for protection.
[0013] Through the above technical scheme, the rubber sleeve has good elasticity, which can reduce the scratches caused by the abutment between the sliding rod and the stop seat.
[0014] Specific, the bracket is equipped with a corresponding to the square hole, and the outer wall surface of the box is equipped with a sponge inclined plate for guiding material.
[0015] By adopting the above technical scheme, the box is convenient for collecting the debris falling in the square hole, and the sponge inclined plate is convenient for receiving and guiding the alloy cutter body sliding in the bottom die, so that the alloy cutter body can stably slide to the specified position.
[0016] Compared with the prior art, the utility model has the beneficial effects that:
[0017] 1. According to the utility model, the corresponding cutter groove can be formed between the top die and the bottom die according to the specification of the alloy cutter body during punching of the alloy cutter, then the alloy cutter body can be directly placed in the cutter groove, then the electric push rod operates and pushes the top die to be close to the bottom die, the top die and the bottom die are combined, and the cutter groove between the top die and the bottom die is used to limit the alloy cutter body, thereby improving the stability of the alloy cutter body during subsequent punching.
[0018] 2. According to the utility model, when the top die and the bottom die are combined, the hydraulic rod on the surface of the plate seat of the top die operates, the hydraulic rod operates to conveniently push the punch to displace in the vertical hole, the vertical hole is pre-set according to the position of the alloy cutter body surface that needs to be punched, the punch can displace along the vertical hole and punch the alloy cutter body in the cutter groove, the alloy cutter body is conveniently punched, and the debris during punching can slide along the vertical hole on the bottom die and fall through the square hole in the inside of the table plate, thereby reducing the influence caused by the debris remaining in the bottom die, and the punching equipment can more stably and conveniently punch the alloy cutter body. BRIEF DESCRIPTION OF DRAWINGS
[0019] The utility model will be further described below in combination with the drawings and examples.
[0020] Figure 1 It is the isometric view of the utility model;
[0021] Figure 2 It is the connecting structure plane schematic view between the bottom die and the top die of the utility model;
[0022] Figure 3 It is the connecting structure plane schematic view between the disc seat and the slide rod of the utility model;
[0023] In the figure: 1, support; 2, table plate; 3, bottom die; 4, top die; 5, electric push rod; 6, knife groove; 7, alloy cutter body; 8, vertical hole; 9, plate seat; 10, hydraulic rod; 11, punch; 12, square hole; 13, worm gear; 14, speed reducer; 15, worm; 16, reciprocating motor; 17, rotary table; 18, disc seat; 19, arc hole; 20, sliding rod; 21, stop seat; 22, rubber sleeve; 23, box; 24, sponge inclined plate. DETAILED DESCRIPTION
[0024] In order to make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments.
[0025] Please refer to Figures 1-3 The utility model discloses a kind of alloy cutting tool processing punch mechanism, including support 1, support 1 is rotatably installed with the table plate 2 for supporting, and the top surface of table plate 2 is equipped with the bottom die 3 for placing alloy cutting tool, the top surface of support 1 is equipped with the electric push rod 5 for adjusting, and electric push rod 5 has multiple groups, and the power output end of electric push rod 5 is equipped with the top die 4 that is in accord with bottom die 3, and top die 4 and bottom die 3 between are equipped with the knife groove 6 for alloy cutter body 7 of setting, and knife groove 6 has multiple groups;Top die 4 and bottom die 3 are all equipped with vertical hole 8 that is connected with knife groove 6, and the top surface of top die 4 is equipped with the plate seat 9 for supporting, and plate seat 9 has multiple groups, and the top surface of plate seat 9 is equipped with hydraulic rod 10, and the power output end of hydraulic rod 10 is equipped with punch 11 that is inserted into the intercommunication of vertical hole 8, and the top surface of table plate 2 is equipped with square hole 12 that is connected with vertical hole 8.
[0026] When punching in the process of alloy cutting tool, corresponding knife groove 6 can be set between top die 4 and bottom die 3 according to the specification of alloy cutter body 7, then alloy cutter body 7 can be directly placed into knife groove 6, then electric push rod 5 operates and pushes top die 4 to be close to bottom die 3, so that top die 4 and bottom die 3 are combined and alloy cutter body 7 is limited by knife groove 6 between them, so that the stability of alloy cutter body 7 during subsequent punching is improved.
[0027] When top die 4 and bottom die 3 are combined, the hydraulic rod 10 on the surface plate seat 9 of top die 4 can operate, the hydraulic rod 10 operates conveniently to push the punch 11 to displace in the vertical hole 8, and the vertical hole 8 is preset according to the position of the alloy cutter body 7 surface that needs to be punched, so that the punch 11 displaces along the vertical hole 8 and can punch the alloy cutter body 7 in the knife groove 6, which is convenient for punching, and the debris during punching can slide along the vertical hole 8 on the bottom die 3 and fall through the square hole 12 inside the table plate 2, so that the influence caused by the debris remaining in the bottom die 3 is reduced, so that the punching equipment can more stably and conveniently punch the alloy cutter body 7.
[0028] As shown in Figure 1 and Figure 2 , the outer wall surface of the support 1 is rotatably provided with a worm gear 13 connected with the transmission plate 2, and the outer wall surface of the support 1 is provided with a speed reducer 14, the power output end of the speed reducer 14 is provided with a worm 15 engaged with the worm gear 13, and the power input end of the speed reducer 14 is provided with a reciprocating motor 16.
[0029] In use, when the alloy cutter body 7 is punched between the bottom die 3 and the top die 4, the top die 4 can be separated from the bottom die 3 under the operation of the electric push rod 5, and then the reciprocating motor 16 on the outside of the support 1 is operated, the reciprocating motor 16 is operated to drive the worm 15 to rotate under the operation of the speed reducer 14, so that the worm 15 can be engaged with the worm gear 13 and drive the worm gear 13 to rotate, then the worm gear 13 can drive the transmission plate 2 inside the support 1 to overturn to a certain extent, and the bottom die 3 can be inclined and the alloy cutter body 7 after punching in the cutter groove 6 can be automatically slid out, which is convenient for stripping, and after stripping, the reciprocating motor 16 continues to operate and drives the transmission plate 2 to return through the worm 15 and the worm gear 13, which is convenient for continuing to punch the next group of alloy cutters.
[0030] As shown in Figure 2 and Figure 3 , the outer wall surface of the support 1 is provided with a disc seat 18 for supporting, and the outer wall surface of the disc seat 18 is provided with an arc-shaped hole 19 for limiting, one end of the transmission plate 2 in the support 1 is provided with a rotating disc 17 for transmission, and the outer wall surface of the rotating disc 17 is integrally provided with a sliding rod 20 matched with the arc-shaped hole 19, and the arc-shaped hole 19 is provided with a stop seat 21 for limiting through bolts.
[0031] In use, when the transmission plate 2 is overturned, it can drive the rotating disc 17 to rotate, the rotating disc 17 can conveniently drive the sliding rod 20 to slide and displace in the arc-shaped hole 19 on the disc seat 18 outside the support 1, and the stop seat 21 in the arc-shaped hole 19 can conveniently block the sliding of the sliding rod 20 and block the overturning of the transmission plate 2, which can reduce the condition of excessive overturning of the transmission plate 2, and the position of the stop seat 21 can be adjusted to facilitate the adjustment according to the needs in use.
[0032] As shown in Figure 3 , the outer periphery of the sliding rod 20 is bonded with a rubber sleeve 22 for protection.
[0033] In use, the rubber sleeve 22 has good elasticity, which can reduce the scratches caused by the abutment between the sliding rod 20 and the stop seat 21.
[0034] As shown in Figure 1 , the support 1 is provided with a box 23 corresponding to the square hole 12, and the outer wall surface of the box 23 is provided with a sponge inclined plate 24 for guiding material.
[0035] In use, the box 23 facilitates the collection of debris falling into the square hole 12, and the sponge inclined plate 24 facilitates the reception and guidance of the alloy cutter body 7 sliding in the bottom die 3, so that it can stably slide to the designated position.
[0036] The working principle and use process of the utility model are as follows: in use, first, the corresponding structural components are installed at appropriate positions, in the process of punching the alloy cutter, the corresponding cutter groove 6 can be opened between the top die 4 and the bottom die 3 according to the specifications of the alloy cutter body 7, then the alloy cutter body 7 can be directly placed in the cutter groove 6, then the electric push rod 5 operates and pushes the top die 4 close to the bottom die 3, so that the top die 4 and the bottom die 3 are combined and the cutter groove 6 between them is used to limit the alloy cutter body 7, thereby improving the stability of the alloy cutter body 7 during subsequent punching, and when the top die 4 and the bottom die 3 are combined, the hydraulic rod 10 on the surface plate seat 9 of the top die 4 can operate, the operation of the hydraulic rod 10 facilitates the displacement of the punch 11 in the vertical hole 8, and the vertical hole 8 is pre-set according to the position of the alloy cutter body 7 surface that needs to be punched, so that the punch 11 displaces along the vertical hole 8 and can punch the alloy cutter body 7 in the cutter groove 6, thereby facilitating the punching of the alloy cutter body 7, and the debris during punching can slide along the vertical hole 8 on the bottom die 3 and fall through the square hole 12 inside the table plate 2, thereby reducing the impact of the debris remaining in the bottom die 3, so that the punching equipment can more stably and conveniently punch the alloy cutter body 7, and when the alloy cutter body 7 between the bottom die 3 and the top die 4 is punched, the top die 4 can be separated from the bottom die 3 under the operation of the electric push rod 5, then the reciprocating motor 16 outside the support 1 operates, the operation of the reciprocating motor 16 facilitates the rotation of the worm 15 under the operation of the speed reducer 14, so that the worm 15 can mesh with the worm wheel 13 and drive the worm wheel 13 to rotate, then the worm wheel 13 can drive the table plate 2 inside the support 1 to overturn to a certain extent, and the bottom die 3 can be inclined and the alloy cutter body 7 after punching in the cutter groove 6 can automatically slide out, thereby facilitating the stripping of the alloy cutter body 7, after stripping, the reciprocating motor 16 continues to operate and drives the table plate 2 to return to the original position through the worm 15 and the worm wheel 13, thereby facilitating the punching of the next group of alloy cutters, and when the table plate 2 is overturned, the rotating disc 17 can be rotated, the rotating disc 17 facilitates the sliding displacement of the sliding rod 20 in the arc-shaped hole 19 on the disc seat 18 outside the support 1, and the stop seat 21 in the arc-shaped hole 19 facilitates the blocking of the sliding of the sliding rod 20 and the overturning of the table plate 2, thereby reducing the condition of excessive overturning of the table plate 2, and the position of the stop seat 21 can be adjusted, thereby facilitating the adjustment according to the needs in use, and the punching equipment can more stably punch the alloy cutters.
[0037] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. An alloy cutter machining punch mechanism characterized by, The utility model provides a alloy cutting tool adjusting device, including support (1), the support (1) inside rotation installation is used for supporting the table board (2), and the table board (2) top end surface is equipped with the bottom die (3) for placing alloy cutting tool, the support (1) top end surface is equipped with the electric push rod (5) for adjusting, and electric push rod (5) has multiple groups, and the electric push rod (5) power output end is equipped with the top die (4) with the bottom die (3) of mutual engagement, and top die (4) and bottom die (3) between the establishment of the cutting groove (6) for the accommodation alloy cutting tool body (7) is, and cutting groove (6) has multiple groups; The top die (4) and bottom die (3) are both provided with a vertical hole (8) communicated with the cutting groove (6), the top die (4) top end surface is equipped with the plate seat (9) for supporting, and the plate seat (9) has multiple groups, the plate seat (9) top end surface is equipped with the hydraulic rod (10), and the hydraulic rod (10) power output end is equipped with the punch (11) with the vertical hole (8) of interengagement connection, the table board (2) top end surface is provided with a square hole (12) communicated with the vertical hole (8).
2. A punch mechanism for a cutting tool of an alloy according to claim 1, wherein The support (1) is rotatably installed with a worm gear (13) drivenly connected with the table board (2), and the support (1) is equipped with a speed reducer (14), the speed reducer (14) is equipped with a worm (15) engagedly connected with the worm gear (13), and the speed reducer (14) is equipped with a reciprocating motor (16).
3. A punch mechanism for a cutting tool of an alloy according to claim 1, wherein The support (1) is equipped with a disc seat (18) for supporting, and the disc seat (18) is provided with an arc-shaped hole (19) for limiting, the table board (2) is equipped with a rotating disc (17) for transmission at one end in the support (1), and the rotating disc (17) is integrally formed with a slide rod (20) matched with the arc-shaped hole (19) on the outer wall surface, and the arc-shaped hole (19) is provided with a stop seat (21) for limiting through bolts.
4. A punch mechanism for a cutting tool of an alloy according to claim 3, wherein The slide rod (20) is bonded with a rubber sleeve (22) for protection.
5. The piercing mechanism for a cutting tool of an alloy according to claim 1, wherein The support (1) is equipped with a box (23) corresponding to the square hole (12), and the box (23) is equipped with a sponge inclined plate (24) for material guiding on the outer wall surface.