Die for shaping inclined plane of product
By designing a mold for product bevel shaping, and utilizing the cooperation of bevel shaping components and resetting components, the problems of uneven hole shape and uneven stamping pressure caused by the non-fitting of the shaping components with the product bevel were solved, thus realizing uniform stamping and round hole production in the bevel area of the product.
Patent Information
- Application Number
- CN202423218679.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-26
AI Technical Summary
When existing molds punch and shape the inclined surface of a product, the shaping component does not fit completely with the inclined surface of the product, resulting in a waist-shaped hole and uneven punching pressure, which can easily lead to deformation and bending of the shaping component.
A mold for shaping the inclined surface of a product is designed, including a mold base body, an inclined surface shaping component, and a reset component. Through the coordinated movement of the passive stage, the transfer stage, the fixed seat, and the shaping part of the inclined surface shaping component, it is ensured that the shaping part can be evenly attached to and stamped on the inclined surface of the product. The reset component is used to realize the restorative movement of the shaping part, ensuring the uniformity of each stamping.
It achieves uniform stamping of the product's beveled area, avoids the formation of waist-shaped holes and bending of the forming parts, and meets the manufacturing requirements of round holes.
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Figure CN223684225U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mould shaping technical field, concretely relates to a mould for product bevel shaping. BACKGROUND
[0002] At present, if the shaping part does not keep the complete pose of sticking to the product bevel when the part of the product bevel is shaped such as punching, then the hole type is easily formed as the waist type hole in the product bevel position, and further, it is difficult to meet the production requirement of forming the round hole in the product bevel.
[0003] In addition, when the shaping part is pushed by the pushing force that is not consistent with the axial direction of the shaping part to punch the product, the shaping part can also be unevenly stressed and bent, and further, the punching operation is affected. SUMMARY
[0004] To solve the above technical problems and achieve at least one advantage of the utility model, the utility model provides a mould for product bevel shaping, wherein the mould for product bevel shaping comprises:
[0005] The mould base body comprises an upper mould base and a lower mould base, the upper mould base and the lower mould base are oppositely arranged, and the upper mould base is connected to the lower mould base in the die closing mode, and the lower mould base forms a placing part at the position opposite to the bottom of the upper mould base to place at least one product.
[0006] At least one inclined surface shaping assembly, the inclined surface shaping assembly comprises a passive table, a moving table, a fixed seat and a shaping piece, wherein the passive table and the moving table are oppositely arranged, the passive table is connected to one end of the fixed seat, and the passive table forms a passive inclined part deviated from the axial direction by a predetermined angle at the end close to the moving table, the moving table is connected to the lower die seat, and the moving table forms a moving inclined part deviated from the axial direction by a predetermined angle and parallel to the passive inclined part at the other end away from the lower die seat, the inclined surface of the moving inclined part is arranged opposite to the forming position of the placing part, when the upper die seat and the lower die seat are closed, the passive inclined part is arranged to be close to the position of the placing part along the forming direction of the moving inclined part, the fixed seat is movably connected to the upper die seat, and the fixed seat forms a mounting part deviated from the axial direction by a predetermined angle at the other end away from the passive table, the shaping piece is connected to the mounting part in a direction perpendicular to the direction of the mounting part, and when the passive inclined part moves in the moving inclined part, the shaping piece is arranged to fit and stamp the product inclined surface area in the placing part.
[0007] According to an embodiment of the present application, the passive inclined part of the passive table is arranged to be recessed into a groove shape from the middle position in the direction consistent with the forming direction of the passive inclined part, and the moving inclined part of the moving table is arranged to extend outward into a convex shape matched with the groove-shaped passive inclined part from the middle position in the direction consistent with the forming direction of the moving inclined part, so as to limit the movement mode of the groove-shaped passive inclined part.
[0008] According to an embodiment of the present application, the passive inclined part of the passive table is arranged to be recessed into a convex shape from the middle position in the direction consistent with the forming direction of the passive inclined part, and the moving inclined part of the moving table is arranged to extend outward into a groove shape matched with the convex-shaped passive inclined part from the middle position in the direction consistent with the forming direction of the moving inclined part, so as to limit the movement mode of the convex-shaped passive inclined part.
[0009] According to an embodiment of the present application, the upper die seat has a plurality of moving channels with the moving direction consistent with the moving direction of the fixed seat, and each moving channel is arranged to pass through the top and bottom of the upper die seat, the fixed seat is arranged to have a moving part with a predetermined length at the top, the front end of the moving part is arranged to pass through one moving channel, the fixed seat is arranged to have a step at the position where the moving part passes through the front end of the moving channel, and the cross-sectional diameter of the step is arranged to be greater than the inner diameter of the moving channel.
[0010] According to an embodiment of the present application, the fixed seat is recessed from the outside to the inside to form a notch with a predetermined size at the position of the mounting part away from the shaping piece, and the opening direction of the notch is towards the lower die seat.
[0011] According to an embodiment of the utility model, the inclined surface shaping assembly further includes at least one positioning plate, the positioning plate is connected to the side of the fixed seat and coincides with the projection part of the fixed seat on the same vertical plane, and the positioning plate is arranged to keep in close contact with the projection on the same horizontal plane of the supply moving table, and when the upper die seat and the lower die seat are closed, the positioning plate is arranged to be able to close the side movement of the supply moving table.
[0012] According to an embodiment of the utility model, the lower die seat further forms a plurality of discharge channels from top to bottom, the inlet of each discharge channel is arranged to penetrate the placement part and is arranged to be consistent with the moving direction of the shaping part.
[0013] According to an embodiment of the utility model, the die seat body further includes a pressing block, the pressing block is connected to the upper die seat and located between the upper die seat and the lower die seat, and the pressing block has the same number of cavities as the moving channels, and each cavity is arranged to penetrate the top and bottom of the pressing block to communicate with one moving channel, and the pressing block, and the pressing block is kept above the placement part.
[0014] According to an embodiment of the utility model, the die for product inclined surface shaping further includes the same number of reset components as the inclined surface shaping assembly, the reset component includes a resilient member and a stopper, wherein the resilient member and the stopper are arranged opposite and adjacent to each other, and the resilient member is located on the moving path of the fixed seat, and when the fixed seat moves to the resilient member, the resilient member is arranged to abut against the stopper and deforms in the direction consistent with the moving direction of the fixed seat to form an elastic force.
[0015] According to an embodiment of the utility model, the reset component further includes a limiting block, the limiting block is arranged at the end of the fixed seat away from the resilient member and located on the moving path of the fixed seat, and when the fixed seat is driven by the elastic force of the resilient member, the limiting block is arranged to limit the moving distance of the fixed seat, so that the projection of the driven inclined part of the driven table and the projection of the supply moving inclined part of the supply moving table on the same plane at least partially coincide. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The utility model discloses a die for product inclined surface shaping is shown.
[0017] Figure 2 For Figure 1 The enlarged view of the local structure in the die for product inclined surface shaping is shown.
[0018] Figure 3The utility model discloses a mould for product bevel shaping shows the section of the utility model discloses a mould for product bevel shaping Figure 1 .
[0019] Figure 4 The utility model discloses a mould for product bevel shaping shows the section of the utility model discloses a mould for product bevel shaping Figure 2 .
[0020] Figure 5 The utility model discloses a mould for product bevel shaping shows the structure schematic diagram of one state of the utility model discloses a mould for product bevel shaping.
[0021] Figure 6 The utility model discloses a mould for product bevel shaping shows the structure schematic diagram of another state of the utility model discloses a mould for product bevel shaping.
[0022] Figure 7 For Figure 6 The utility model discloses a mould for product bevel shaping shows the partial structure enlarged view of the mould for product bevel shaping. Specific embodiments
[0023] The following description is used to disclose the utility model so that those skilled in the art can realize the utility model. The preferred embodiments in the following description are only as examples, and other obvious modifications can be thought by those skilled in the art. The basic principles defined in the following description can be applied to other implementation, modification, improvement, equivalent and other technical solutions without departing from the spirit and scope of the utility model.
[0024] Those skilled in the art should understand that in the disclosure of the utility model, the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore the above-mentioned terms can not be understood as a limitation to the utility model.
[0025] It can be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of one element can be one, and in another embodiment, the number of the element can be multiple, and the term "one" can not be understood as a limitation to the number.
[0026] Reference Figures 1 to 7, the mold for product bevel shaping according to the preferred embodiment of the utility model will be described in detail below, the mold for product bevel shaping includes a mold base body 10, at least one bevel shaping assembly 20 and a reset member 30, wherein the mold base body 10 includes an upper mold base 11 and a lower mold base 12, the upper mold base 11 and the lower mold base 12 are oppositely arranged, and the upper mold base 11 is connected to the lower mold base 12 in a way that the upper mold base 11 can be closed with the lower mold base 12. The lower mold base 12 forms a placing part 121 at the position opposite to the bottom of the upper mold base 11, for placing a plurality of products 90.
[0027] The bevel shaping assembly 20 is arranged on the mold base body 10, for performing shaping operation on the bevel area of the product 90.
[0028] Specifically, the bevel shaping assembly 20 includes a passive table 21, a supply table 22, a fixed seat 23 and a shaping piece 24, wherein the passive table 21 and the supply table 22 are oppositely arranged, the passive table 21 is connected to one end of the fixed seat 23, and the passive table 21 forms a passive bevel part 211 deviating from the axial direction by a predetermined angle at the end close to the supply table 22. The supply table 22 is connected to the lower mold base 12, and the supply table 22 forms a supply bevel part 221 deviating from the axial direction by a predetermined angle and keeping parallel with the passive bevel part 211 at the other end away from the lower mold base 12, the bevel of the supply bevel part 221 is arranged opposite to the forming position of the placing part 121, so that when the upper mold base 11 and the lower mold base 12 are closed, the passive bevel part 211 is arranged to be able to move along the forming direction of the supply bevel part 221 to the position close to the placing part 121. The fixed seat 23 is movably connected to the upper mold base 11, and the fixed seat 23 forms a mounting part 231 deviating from the axial direction by a predetermined angle at the other end away from the passive table 21. The shaping piece 24 is connected to the mounting part 231 in a way that the direction of the mounting part 231 keeps perpendicular to the direction of the shaping piece 24, so that when the passive bevel part 211 moves on the supply bevel part 221, the shaping piece 24 is arranged to be able to adhere to and stamp the bevel area of the product 90 located on the placing part 121, to complete the shaping operation.
[0029] As can be understood by those skilled in the art, when the upper die holder 11 and the lower die holder 12 are closed, the passive table 21 moves to the placement portion 121 of the lower die holder 12 by the way that the passive inclined portion 211 moves in the supply inclined portion 221, so that the fixed seat 23 is driven to move on the upper die holder 11 in the moving direction of the passive table 21, so that the shaping member 24 connected to the fixed seat 23 is also driven to move to the product 90 located in the placement portion 121 in the moving direction of the fixed seat 23, and then when the shaping member 24 punches the product 90, since the shaping member 24 is vertically connected to the mounting portion 231 of the fixed seat 23 and the shaping member 24 can fit the inclined surface area of the product 90, thus the shaping member 24 as a whole can receive uniform pushing force to punch the product 90 when the fixed seat 23 moves, so that the shaping operation is completed.
[0030] In this way, the shaping member 24 not only can receive uniform driving force to avoid bending when punching the product 90, but also can fit and punch the inclined surface area of the product 90 to form a round hole, and then meet the production requirements.
[0031] In an embodiment, the passive inclined portion 211 of the passive table 21 is recessed into a groove shape from the middle position in the direction consistent with the forming direction of the passive inclined portion 211. Correspondingly, the supply inclined portion 221 of the supply table 22 is extended into a protrusion shape from the middle position in the direction consistent with the forming direction of the supply inclined portion 221, which is matched with the groove-shaped passive inclined portion 211, so as to limit the moving way of the groove-shaped passive inclined portion 211, and then when the upper die holder 11 and the lower die holder 12 are closed, the moving way of the passive table 21 can be limited.
[0032] In another embodiment, the passive inclined portion 211 of the passive table 21 is recessed into a protrusion shape from the middle position in the direction consistent with the forming direction of the passive inclined portion 211. Correspondingly, the supply inclined portion 221 of the supply table 22 is extended into a groove shape from the middle position in the direction consistent with the forming direction of the supply inclined portion 221, which is matched with the protrusion-shaped passive inclined portion 211, so as to limit the moving way of the protrusion-shaped passive inclined portion 211, and then when the upper die holder 11 and the lower die holder 12 are closed, the moving way of the passive table 21 can be limited.
[0033] In a preferred embodiment, as Figure 1 and 2As shown, the upper die holder 11 has a plurality of moving channels 1101 extending in the same direction as the moving direction of the fixed seat 23, and each of the moving channels 1101 is arranged to pass through the top and bottom of the upper die holder 11. The fixed seat 23 is provided with a moving part 232 of a predetermined length at the top, and the front end of the moving part 232 is arranged to pass through one of the moving channels 1101. In addition, the fixed seat 23 is provided with a step 233 at the position where the moving part 232 passes through the front end of the moving channel 1101, and the cross-sectional diameter of the step 233 is arranged to be larger than the inner diameter of the moving channel 1101, so as to prevent the moving part 232 from being separated from the upper die holder 11.
[0034] It can be understood that when the fixed seat 23 is moved by the passive table 21, the moving part 232 moves along the moving channel 1101 in the extending direction of the moving channel 1101.
[0035] Preferably, the fixed seat 23 is recessed from the outside to the inside at a position away from the shaper 24 to form a notch 2301 of a predetermined size, and the opening direction of the notch 2301 is towards the lower die holder 12. Thus, when the fixed seat 23 moves, the lower die holder 12 or the product 90 placed on the placement part 121 can be at least partially located in the notch 2301, so as to avoid the fixed seat 23 being blocked by the lower die holder 12, or the product 90 being deviated from the shaping position by the moving fixed seat 23.
[0036] Preferably, the inclined surface shaping assembly 20 further comprises at least one positioning plate 25. As an embodiment, the positioning plate 25 is connected to the side of the fixed seat 23 and coincides with the projection of the fixed seat 23 in the same vertical plane, and the positioning plate 25 is arranged to be in close contact with the projection of the moving table 22 in the same horizontal plane. Thus, when the upper die holder 11 and the lower die holder 12 are closed, the positioning plate 25 is arranged to be capable of moving in close contact with the side of the moving table 22, so as to prevent the passive table 21 from being deviated.
[0037] Preferably, the lower die holder 12 is further provided with a plurality of discharge channels 1201 from top to bottom, and the inlet of each of the discharge channels 1201 is arranged to pass through the placement part 121 and is towards the moving direction of the shaper 24.
[0038] It can be understood that when the product 90 is shaped at the placement portion 121, the shaping member 24 at least partially penetrates the product 90 and is located at the discharge channel 1201, so that the waste generated by shaping the product 90 can be pushed into the discharge channel 1201 by the shaping member 24, thereby preventing the waste from accumulating at the predetermined shaping position and affecting the shaping operation of the next product 90.
[0039] More preferably, the lower die seat 12 is further provided with a plurality of discharge slopes 122, each of which defines a low end and a high end, the high end is arranged to extend downward from the low end to make the discharge slope 122 form a predetermined angle with the plane where the lower die seat 12 is located, and the high end of each discharge slope 122 is arranged below the outlet of one of the discharge channels 1201.
[0040] In this way, the waste can fall from the outlet of the discharge channel 1201 to the discharge slope 122 under the action of gravity and gradually be discharged from the lower die seat 12.
[0041] Further, the die seat body 10 further comprises a pressing block 13, preferably, the pressing block 13 is connected to the upper die seat 11 and located between the upper die seat 11 and the lower die seat 12, and the pressing block 13 has the same number of cavities 1301 as the moving channels 1101, and each cavity 1301 is arranged through the top and bottom of the pressing block 13 to communicate with one of the moving channels 1101, and the pressing block 13 is arranged to press the product 90 on the placement portion 121 when the upper die seat 11 and the lower die seat 12 are closed, thereby preventing the product 90 from being offset on the placement portion 121, resulting in that the shaping area of the product 90 cannot be completely shaped.
[0042] It is worth mentioning that the passive table 21, the moving table 22, the fixed seat 23, the shaping member 24 and the positioning plate 25 of the bevel shaping assembly 20 are arranged to be movable in the cavities 1301.
[0043] The reset member 30 is used to return the shaping member 24 of the bevel shaping assembly 20 to the initial position before shaping the product 90 when the upper die seat 11 and the lower die seat 12 are in the unclosed state, so that the bevel shaping assembly 20 can repeatedly shape a plurality of products 90.
[0044] Specifically, the reset member 30 comprises a resilient member 31 and a stopper 32, wherein the resilient member 31 and the stopper 32 are oppositely and adjacently arranged, and the resilient member 31 is located on the moving path of the fixed seat 23, so that when the fixed seat 23 moves towards the resilient member 31, the resilient member 31 is arranged to abut against the stopper 32 and deform in the direction consistent with the moving direction of the fixed seat 23 to form elastic force.
[0045] It can be understood that when the upper die seat 11 and the lower die seat 12 are closed, the fixed seat 23 drives the resilient member 31 to abut against the stopper 32 and form elastic force, so that when the upper die seat 11 and the lower die seat 12 are opened, the fixed seat 23 can be pushed away from the stopper 32 gradually to return to the original position due to the elastic force formed by the resilient member 31, so that the shaping member 24 can continue to perform the shaping operation on the product 90 located in the placing portion 121 when the upper die seat 11 and the lower die seat 12 are closed again.
[0046] In one embodiment, as shown in Figure 4 the resilient member 31 and the stopper 32 are arranged in the cavity 1301, the resilient member 31 is connected to the fixed seat 23, and the stopper 32 is fixedly connected to the upper die seat 11 and located in the cavity 1301.
[0047] In another embodiment, the resilient member 31 and the stopper 32 are arranged in the cavity 1301, the resilient member 31 is connected to the stopper 32, and the stopper 32 is fixedly connected to the upper die seat 11.
[0048] Further, the reset member 30 further comprises a limiting block 33, preferably, the limiting block 33 is arranged at the end of the fixed seat 23 away from the resilient member 31 and located on the moving path of the fixed seat 23, so that when the fixed seat 23 is driven by the elastic force of the resilient member 31, the limiting block 33 is arranged to limit the moving distance of the fixed seat 23, so that the projection of the passive inclined portion 211 of the passive table 21 and the projection of the supply inclined portion 221 of the supply table 22 on the same plane at least partially coincide.
[0049] It should be noted that when the fixed seat 23 moves under the elastic force of the elastic member 31 beyond a predetermined distance, the passive inclined portion 211 of the passive table 21 and the moving inclined portion 221 of the moving table 22 are difficult to keep coincident in the same plane, and further when the upper die seat 11 and the lower die seat 12 are closed, the passive table 21 is difficult to move along the moving direction of the moving inclined portion 221 of the moving table 22, so that the shaping member 24 is difficult to shape the product 90, and the limiting block 33 is arranged to limit the moving distance of the fixed seat 23 under the elastic force of the elastic member 31, so that the passive table 21 can move along the moving direction of the moving inclined portion 221 of the moving table 22 when the upper die seat 11 and the lower die seat 12 are closed, so that the shaping member 24 can move to the product 90 to perform the shaping operation on the product 90.
[0050] Preferably, the limiting block 33 is fixedly connected to the upper die seat 11 and located in the cavity 1301.
[0051] Those skilled in the art should understand that the above description and the embodiments of the utility model shown in the drawings are only examples and do not limit the utility model. The advantages of the utility model have been fully and effectively realized. The function and structural principle of the utility model have been shown and explained in the embodiments, and the embodiments of the utility model can be any deformation or modification without departing from the principle.
Claims
1. A mold for product bevel shaping, characterized by, The mold for product bevel shaping comprises: a mold base body comprising an upper mold base and a lower mold base, the upper mold base and the lower mold base being oppositely arranged, and the upper mold base being connectable to the lower mold base in a manner of being closed with the lower mold base, the lower mold base forming a placement portion at a position opposite to a bottom of the upper mold base for placing at least one product; at least one bevel shaping assembly comprising a passive table, a moving table, a fixed base and a shaping piece, wherein the passive table and the moving table are oppositely arranged, the passive table being connected to one end of the fixed base, and the passive table forming a passive bevel portion deviated from an axial direction of the passive table at an end close to the moving table, the moving table being connected to the lower mold base, and the moving table forming a moving bevel portion deviated from an axial direction of the moving table at an end away from the lower mold base, the moving bevel portion being parallel to the passive bevel portion, and a bevel of the moving bevel portion being arranged to face a position opposite to a position where the placement portion is formed, so that when the upper mold base and the lower mold base are closed, the passive bevel portion is arranged to be able to move along a direction in which the moving bevel portion is formed and approach the placement portion, the fixed base being movably connected to the upper mold base, and the fixed base forming a mounting portion deviated from an axial direction of the fixed base at an end away from the passive table, and the shaping piece being connected to the mounting portion in a manner perpendicular to a direction in which the mounting portion is located, so that when the passive bevel portion moves in the moving bevel portion, the shaping piece is arranged to be able to fit and stamp a bevel area of the product located in the placement portion.
2. The mold for product bevel shaping according to claim 1, wherein The passive bevel portion of the passive table is arranged to be recessed into a groove shape from a middle portion in a direction consistent with a direction in which the passive bevel portion is formed, and the moving bevel portion of the moving table is arranged to be extended outward into a convex shape from a middle portion in a direction consistent with a direction in which the moving bevel portion is formed, so as to be adapted to the groove-shaped passive bevel portion, so as to limit a moving manner of the groove-shaped passive bevel portion.
3. The mold for product bevel shaping according to claim 1, wherein The passive bevel portion of the passive table is arranged to be recessed into a convex shape from a middle portion in a direction consistent with a direction in which the passive bevel portion is formed, and the moving bevel portion of the moving table is arranged to be extended outward into a groove shape from a middle portion in a direction consistent with a direction in which the moving bevel portion is formed, so as to be adapted to the convex-shaped passive bevel portion, so as to limit a moving manner of the convex-shaped passive bevel portion.
4. The mold for product bevel shaping according to claim 2 or 3, wherein The upper mold base has a plurality of moving channels in a direction consistent with a moving direction of the fixed base, and each of the moving channels is arranged to pass through a top and a bottom of the upper mold base, the fixed base being arranged to have a moving portion of a predetermined length at the top, a front end of the moving portion being arranged to pass through one of the moving channels, the fixed base being arranged to have a step at a position where the moving portion passes through the front end of the moving channel, and a cross-sectional diameter of the step being arranged to be greater than an inner diameter of the moving channel.
5. The mold for product bevel shaping according to claim 4, wherein The fixed base is recessed from outside to inside at a position away from the shaping piece to form a notch of a predetermined size, and an opening direction of the notch is arranged to face the lower mold base.
6. The mold for product bevel shaping according to claim 5, wherein The inclined surface shaping assembly further comprises at least one positioning plate, which is connected to the side of the fixed seat and coincides with the projected part of the fixed seat in the same vertical plane, and the positioning plate is arranged to adhere to the projection of the movable table in the same horizontal plane, so that when the upper die seat and the lower die seat are closed, the positioning plate is arranged to adhere to the side of the movable table.
7. The mold for product bevel shaping according to claim 6, wherein The lower die seat further comprises a plurality of discharging channels formed from top to bottom, and the inlet of each discharging channel is arranged to pass through the placement part and is directed to be consistent with the moving direction of the shaping member.
8. The mold for product bevel shaping according to claim 7, wherein The die seat body further comprises a pressing block, which is connected to the upper die seat and located between the upper die seat and the lower die seat, and the pressing block has the same number of cavities as the moving channels, and each cavity is arranged to pass through the top and bottom of the pressing block to communicate with one moving channel, and the pressing block is arranged to be above the placement part.
9. The mold for product bevel shaping according to claim 8, wherein The die for product inclined surface shaping further comprises the same number of reset members as the inclined surface shaping assembly, and the reset member comprises a resilient member and a stopper, wherein the resilient member and the stopper are arranged opposite and adjacent to each other, and the resilient member is located on the moving path of the fixed seat, so that when the fixed seat moves towards the resilient member, the resilient member is arranged to abut against the stopper and deform in the direction consistent with the moving direction of the fixed seat to form an elastic force.
10. The mold for product bevel shaping according to claim 9, wherein The reset member further comprises a limiting block, which is arranged at the end of the fixed seat away from the resilient member and located on the moving path of the fixed seat, so that when the fixed seat is driven by the elastic force of the resilient member, the limiting block is arranged to limit the moving distance of the fixed seat, so that the projection of the driven inclined part of the driven table and the projection of the movable inclined part of the movable table in the same plane at least partially coincide.