Lateral pushing structure of bending die
By designing the side push structure of the bending mold, bending processing at the A position of the product is completed at one time, solving the problems of multiple bending processing and high cost in the prior art, improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202420453427.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-08
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-03-08
AI Technical Summary
The existing bending mold process requires at least two bending processing, which increases processing time and production cost. It also requires the use of two stamping equipment and the development of two sets of molds.
A side push structure of a bending mold is designed, including upper and lower mold components corresponding to upper and lower mold components. The side push structure makes the bending mould fit with the bending die to achieve bending processing at the A position of the product at one time.
It reduces the processing process and time of the product, improves the processing efficiency, reduces the labor costs of stamping equipment and operators, and reduces the cost of mold development.
Smart Images

Figure CN222890360U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of stamping dies, and in particular relates to a side push structure of a bending die. Background Art
[0002] In the manufacturing industries such as machinery and home appliances, in order to make the appearance of the product more popular with consumers, the shell of the product usually uses stamping equipment with bending, stretching and other molds to obtain the corresponding shell shape through the use of bending, stretching and other processes, such as Figure 1 As shown in the figure, the A part of the product is composed of two groups of inclined planes with different angles and opposite bending directions. Figure 1 The processing steps of the product shown are as follows: first, the edge of the product is bent downward 90 degrees by a downward bending mold, and then the edge of the bent product is pushed inward and bent 90 degrees by a side push mold to complete the bending process at the A position of the product.
[0003] The problem is that, in order to complete the bending process at the A part of the product, the above bending process needs to bend the product at least twice, which increases the processing steps of the product, thereby increasing the processing time of the product and reducing the production efficiency of the product. Moreover, in order to complete the bending process at the A part of the product, two stamping equipments need to be used at the same time and two operators need to bend the product, which increases the labor cost of the product and the cost of using the stamping equipment, and increases the production cost of the product. In addition, in order to complete the bending process at the A part of the product, two sets of bending molds need to be developed at the same time, which increases the mold development cost of the product and increases the production cost of the product.
[0004] Therefore, further improvements are needed. Utility Model Content
[0005] The purpose of the present utility model is to overcome at least one of the deficiencies of the above-mentioned prior art and to provide a side push structure of a bending mold, which can bend the product in one go, reduce the processing steps of the product, reduce the processing time of the product, and improve the processing efficiency of the product.
[0006] In order to achieve the above-mentioned purpose, the technical solution provided by the embodiment of the utility model is:
[0007] A side push structure of a bending mold, including an upper mold assembly and a lower mold assembly corresponding to each other, the lower mold assembly including a lower mold plate, a bending die arranged on the lower mold plate, and a lower stripper plate arranged on the lower mold plate and used for placing products, the upper mold assembly including an upper mold plate, a bending punch arranged on the upper mold plate and cooperating with the bending die, and an upper stripper plate arranged on the upper mold plate and used for pressing the product against the lower stripper plate, a side push structure for guiding the bending punch to move toward a direction close to the bending die is provided between the upper mold assembly and the lower mold assembly.
[0008] The side-pushing structure includes a fixed component fixed on the upper template, a sliding rod slidably mounted on the fixed component and fixedly connected to the bending punch, and an inclined wedge fixed on the lower template and located below the bending punch. The bending punch is located on the side of the fixed component facing the bending die. A first inclined surface is provided on the bottom surface of the bending punch, and a second inclined surface is provided on the top surface of the inclined wedge. The first inclined surface and the second inclined surface cooperate with each other. The inclined wedge drives the bending punch to slide in a direction close to the bending die, so that the bending punch and the bending die cooperate with each other to bend the product.
[0009] The side-pushing structure also includes a first resetting component to guide the bending punch to reset in a direction away from the bending die. A limiting portion is provided on the end of the sliding rod away from the bending punch. The first resetting component is sleeved on the outer side of the sliding rod with one end abutting against the limiting portion and the other end abutting against the fixing component.
[0010] The side thrust structure is also provided with a protection component for protecting the first reset component, and the protection component can be detachably mounted on the fixing component.
[0011] A first guide structure is provided between the bending punch and the upper template to enable the bending punch to slide in a direction approaching or away from the bending die, the first guide structure includes a first guide groove arranged on the left side and / or right side of the bending punch, and a first guide block fixed on the upper template and having a first guide protrusion, the first guide groove and the first guide protrusion are arranged correspondingly.
[0012] A second reset component for guiding the lower unloading plate to reset upward and a second guide structure for guiding the lower unloading plate to move along the height direction of the lower mold assembly are provided between the lower unloading plate and the lower mold plate. The second reset component is fixed on the top surface of the lower mold plate, and the second guide structure includes a second guide hole provided on the lower mold plate, and a second guide column provided on the lower unloading plate and corresponding to the second guide hole.
[0013] A third reset structure for resetting the bending die upward and a third guide structure for guiding the bending die to move along the height direction of the lower die assembly are provided between the bending die and the lower die. The third reset structure includes a reset plate arranged on the bottom surface of the lower die, and a plurality of third reset components arranged on the reset plate. The fixed end of the third reset component is fixedly mounted on the reset plate, and the movable end thereof passes through the lower die from bottom to top and abuts against the bottom surface of the bending die. The third guide structure includes a third guide protrusion arranged on the bending die, and a third guide block arranged on the lower die and having a third guide groove. The third guide protrusion is located on the end surface of the bending die facing the third guide block, and the third guide groove is arranged corresponding to the third guide protrusion and is located on the end surface of the third guide block facing the bending die.
[0014] A fourth reset component for guiding the upper unloading plate to reset downward and a fourth guide structure for guiding the upper unloading plate to move along the height direction of the lower mold assembly are provided between the upper unloading plate and the upper mold plate. The fourth reset component is fixed on the upper mold plate, and the fourth guide structure includes a fourth guide hole provided on the upper mold plate, and a fourth guide column provided on the upper unloading plate and corresponding to the fourth guide hole.
[0015] The upper mold assembly also includes an upper pad plate arranged between the upper mold plate and the upper unloading plate, an upper support plate arranged on the top surface of the upper mold plate, and an upper mold fixing plate arranged on the top surface of the upper support plate. The upper pad plates are arranged in several groups and are arranged at intervals along the width direction of the upper mold plate, and the upper support plates are arranged in several groups and are arranged at intervals along the length direction of the upper mold plate.
[0016] The lower mold assembly also includes a lower pad plate arranged between the lower mold plate and the lower unloading plate, a lower support plate arranged on the bottom surface of the lower mold plate, and a lower mold fixing plate arranged on the bottom surface of the lower support plate. The lower pad plates are arranged in several groups and are arranged at intervals along the width direction of the lower mold plate. The lower support plates are arranged in several groups and are arranged at intervals along the length direction of the lower mold plate.
[0017] The beneficial effects of the utility model are as follows:
[0018] The utility model adopts the side push structure of the bending die of the above technical solution, which can complete the bending process of the A part of the product at one time, reduces the processing steps of the product, reduces the processing time of the product, and improves the processing efficiency of the product.
[0019] Moreover, the side-thrust structure of the bending die only requires one operator to operate a set of stamping equipment to complete the bending processing of the A part of the product, reducing the number of stamping equipment and the number of operators occupied during product production, thereby reducing the startup cost of the stamping equipment and the labor cost of the operators, and reducing the production cost of the product.
[0020] In addition, by adopting the side push structure of the bending mold of the above technical solution, only one set of bending molds needs to be developed to complete the bending processing of the A part of the product, which reduces the mold development cost of the product and thus reduces the development cost of the product. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a front view of a product according to an embodiment of the present utility model.
[0022] Figure 2 The figure is a schematic diagram of the mold splitting of a bending mold according to an embodiment of the utility model.
[0023] Figure 3 This is an exploded view of a bending mold according to an embodiment of the utility model.
[0024] Figure 4 This is an exploded view of a bending mold according to an embodiment of the utility model.
[0025] Figure 5 for Figure 3 Enlarged view of part B.
[0026] Figure 6 for Figure 3 Enlarged view of part C.
[0027] Figure 7 for Figure 3 Enlarged view of part D.
[0028] Figure 8 for Figure 4 Enlarged view of part E.
[0029] Fig. 9 It is an exploded view of a side thrust structure according to an embodiment of the utility model.
[0030] Fig.10 This is a first working schematic diagram of a bending mold according to an embodiment of the utility model.
[0031] Fig.11 for Fig.10 Enlarged view of part F.
[0032] Fig.12 This is a second working schematic diagram of the bending mold according to an embodiment of the utility model.
[0033] Fig.13 for Fig.12 Enlarged view of the G section.
[0034] Fig.14 This is a third working schematic diagram of the bending mold according to an embodiment of the utility model.
[0035] Fig.15 for Fig.14 Enlarged view of the H part. DETAILED DESCRIPTION
[0036] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments.
[0037] See also Figure 2-9The side push structure of the bending mold includes an upper mold assembly and a lower mold assembly corresponding to the upper and lower molds. The lower mold assembly includes a lower mold plate 2, a bending die 3, a lower unloading plate 4, a lower pad 5, a lower support plate 6, and a lower mold fixing plate 7. The bending die 3 slides on the lower mold plate 2 along the height direction of the lower mold assembly, and its processing end face is located on the right end face of the bending die 3. The lower unloading plate 4 slides on the lower mold plate 2 along the height direction of the lower mold assembly and is arranged on the left side of the bending die 3. It is used to place the product 1 on the lower mold assembly. The number of the lower pads 5 is preferably four groups and is arranged between the lower mold plate 2 and the lower unloading plate 4 and fixed on the top surface of the lower mold plate 2. The number of the lower support plates 6 is preferably five groups and is arranged at intervals along the width direction of the lower mold plate 2 and is arranged on the lower mold plate 2. The bottom surface of the lower die fixing plate 7 is arranged on the bottom surface of the lower support plate 6 and is used to fix the lower die assembly on the working table of the stamping equipment. The upper die assembly includes an upper die plate 8, a bending punch 9, an upper unloading plate 10, an upper pad 11, an upper support plate 12, and an upper die fixing plate 13. The bending punch 9 slides on the upper die plate 8 along the left and right directions of the upper die assembly, and its processed end surface is located on the left end surface of the bending punch 9. The upper unloading plate 10 slides on the upper die along the height direction of the upper die assembly and is arranged on the left side of the bending punch 9. It is used to press the product 1 against the lower unloading plate 4. The number of upper pads 11 is preferably four groups and is arranged between the upper die plate 8 and the upper unloading plate 10 and fixed on the bottom surface of the upper die plate 8. The number of upper support plates 12 is preferably five groups and The upper mold fixing plate 13 is arranged at intervals along the length direction of the upper mold plate 8 and is arranged on the top surface of the upper mold plate 8. The upper mold fixing plate 13 is arranged on the top surface of the upper support plate 12 and is used to fix the upper mold assembly on the slider of the stamping equipment. A side push structure is provided between the upper mold assembly and the lower mold assembly to guide the bending punch 9 to move in the direction close to the bending die 3. In this embodiment, the number of the bending punch 9 and the bending die 3 are two groups respectively. The side push structure includes a fixed component 14 fixedly mounted on the upper mold plate 8, a slide bar 15 slidably mounted on the fixed component 14 and fixedly connected to the bending punch 9, and an inclined wedge 16 fixedly mounted on the lower mold plate 2 and located below the bending punch 9. The bending punch 9 is located on the side of the fixed component 14 facing the bending die 3. The fixed component 14 is preferably four groups And they are arranged in pairs on the same group of bending punches 9, the number of sliding rods 15 is preferably eight groups and they are arranged in pairs on the same group of fixed components 14, a first inclined surface 901 is arranged on the bottom surface of the bending punch 9, a second inclined surface 1601 is arranged on the top surface of the inclined wedge 16, the distance between the first inclined surface 901 and the upper template 8 gradually decreases from the side close to the bending die 3 to the side away from the bending die 3, and the distance between the second inclined surface 1601 and the lower template 2 gradually increases from the side close to the bending punch 9 to the side away from the bending punch 9, when the upper mold assembly descends and cooperates with the lower mold assembly, the bending punch 9 cooperates with the bending die 3 and pre-bends the product 1 downward by 70°, when the upper mold assembly continues to descend and makes the first inclined surface 901 and the second inclined surface 1601 contact each other,The inclined wedge 16 drives the bending punch 9 to slide in the horizontal direction toward the bending die 3, so that the bending punch 9 cooperates with the bending die 3 and bends the product 1 to the left by 90°, completing the bending process of the A part of the product 1 at one time, reducing the processing steps of the product 1, reducing the processing time of the product 1, and improving the processing efficiency of the product 1.
[0038] Moreover, the side-thrust structure of the bending die only requires one operator to operate a set of stamping equipment to complete the bending processing on the A part of the product 1, reducing the number of stamping equipment and the number of operators occupied during the production of the product 1, thereby reducing the startup cost of the stamping equipment and the labor cost of the operators, and reducing the production cost of the product 1.
[0039] In addition, by adopting the side push structure of the bending mold of the above technical solution, only one set of bending molds needs to be developed to complete the bending processing of the A part of the product 1, which reduces the mold development cost of the product 1 and thus reduces the development cost of the product 1.
[0040] Furthermore, the side thrust structure also includes a first reset component 17. In the present embodiment, the first reset component 17 is preferably a pressure spring or a shock-absorbing pad and the number thereof is preferably eight groups and is installed on the outer peripheral wall of each group of slide bars 15. A limiting portion 1501 is provided on the end of the slide bar 15 away from the bending punch 9. The radial dimension of the limiting portion 1501 is greater than the radial dimension of the slide bar 15. The radial dimension of the inner peripheral wall of the first reset component 17 is greater than the radial dimension of the slide bar 15 and smaller than the radial dimension of the limiting portion 1501. When the slide bar 15 is slidably installed on the fixed component 14, one end of the first reset component 17 abuts against the limiting portion 1501, and the other end abuts against the fixed component 14. When the bending punch 9 moves horizontally toward the bending die 3, the first reset component 17 is pressurized and guides the bending punch 9 to reset in a direction away from the bending die 3. This can be understood by those skilled in the art.
[0041] Furthermore, a protection component 18 for protecting the first reset component 17 is also provided on the side thrust structure. In the present embodiment, the number of the protection components 18 is preferably four groups and they are arranged corresponding to each group of fixing components 14. The protection components 18 can be detachably mounted on the fixing components 14 through fastening components. Through the above technical solution, when the mold is processed, oil stains can be prevented from entering the first reset component 17, and the life of the first reset component 17 can be extended to a certain extent, which can be understood by those skilled in the art.
[0042] Furthermore, a first guide structure is provided between the bending punch 9 and the upper template 8. In the present embodiment, the first guide structure includes first guide grooves 902 provided on the left and right sides of the bending punch 9, and a first guide block 19 fixed on the upper template 8 and having a first guide protrusion 1901. Two groups of first guide grooves 902 are provided on the left and right sides of each group of bending punches 9. The first guide blocks 19 are fixed on the upper template 8 through fastening components. The number of first guide blocks 19 is three groups, two groups of first guide blocks 19 are provided on the outer sides of the two groups of bending punches 9 and each group of first guide protrusions 1901 corresponding to the first guide grooves 902 are provided. Another group of guide blocks is provided between the two groups of bending punches 9 and first guide protrusions 1901 corresponding to the first guide grooves 902 are provided on the left and right sides respectively. When the first guide grooves 902 slide back and forth along the length direction of the first guide protrusions 1901, the bending punch 9 slides in a direction close to or away from the bending die 3, which can be understood by those skilled in the art.
[0043] Furthermore, a second reset component 20 is provided between the lower unloading plate 4 and the lower template 2. In the present embodiment, the second reset component 20 is preferably a shock-absorbing pad and the number thereof is preferably sixteen groups and is evenly arranged on the bottom surface of the lower unloading plate 4. The second reset component 20 is fixedly mounted on the top surface of the lower template 2. Specifically, the lower pad 5 is provided with a plurality of mounting holes for mounting the second reset component 20. The lower ends of the plurality of groups of second reset components 20 are inserted into the respective groups of mounting holes. When the lower unloading plate 4 is mounted on the lower template 2, the upper end of the second reset component 20 abuts against the lower unloading plate 4. When the lower unloading plate 4 is pressed and moves downward, the second reset component 20 is pressed and guides the lower unloading plate 4 to reset upward. Those skilled in the art will understand this.
[0044] A second guide structure is provided between the lower discharge plate 4 and the lower mold plate 2. In the present embodiment, the second guide structure includes a second guide hole 201 provided on the lower mold plate 2, and a second guide column 401 provided on the lower discharge plate 4 and corresponding to the second guide hole 201. The number of the second guide holes 201 is preferably four groups and they are provided in pairs on the front and rear sides of the lower mold plate 2. The number of the second guide columns 401 is preferably four groups and they are provided in pairs on the front and rear sides of the lower discharge plate 4 and corresponding to the second guide columns 401. When the second guide columns 401 slide along the length direction of the second guide holes 201, the lower discharge plate 4 moves up and down along the height direction of the lower mold assembly, which is understood by those skilled in the art.
[0045] Furthermore, a third reset structure is provided between the bending die 3 and the lower template 2. In the present embodiment, the third reset structure comprises a reset plate 21 arranged on the bottom surface of the lower template 2, and several groups of third reset components 22 arranged on the reset plate 21. The reset plate 21 is installed on the bottom surface of the lower template 2 through a fastening component. The third reset components 22 are preferably nitrogen springs and the number is preferably twenty-two groups and are evenly arranged on the reset plate 21. The fixed end of the third reset component 22 is inserted into the reset plate 21 from bottom to top and is pressed onto the reset plate 21 through a fastener. When the reset plate 21 and the bending die 3 are respectively installed on the lower template 2, the movable end of the third reset component 22 passes through the lower template 2 from bottom to top and abuts against the bottom surface of the bending die 3. When the bending die 3 is pressed to move downward, the third reset component 22 is pressed and guides the bending die 3 to reset upward, which is understood by those skilled in the art.
[0046] A third guide structure is provided between the bending die 3 and the lower template 2. In the present embodiment, the third guide structure includes a third guide protrusion 301 provided on the bending die 3, and a third guide block 23 provided on the lower template 2 and having a third guide groove 2301. The third guide blocks 23 are preferably provided in two groups and correspond to the bending die 3. The number of the third guide protrusions 301 on each group of the bending die 3 is preferably four groups and are located on the end surface of the bending die 3 facing the third guide block 23. The number of the third guide grooves 2301 on each group of the third guide blocks 23 is preferably four groups and correspond to the third guide protrusions 301 and are located on the end surface of the third guide block 23 facing the bending die 3. When the third guide protrusion 301 slides back and forth along the length direction of the third guide groove 2301, the bending die 3 moves up and down along the height direction of the lower mold assembly, which can be understood by those skilled in the art.
[0047] Furthermore, a fourth reset component 24 is provided between the upper unloading plate 10 and the upper template 8. In the present embodiment, the fourth reset component 24 is preferably a nitrogen spring and the number thereof is preferably twelve groups and are respectively arranged on the left and right sides of the upper unloading plate 10. The fourth reset component 24 is fixedly mounted on the upper template 8. Specifically, a plurality of mounting holes for mounting the fourth reset component 24 are provided on the upper template 8. The fourth reset component 24 is inserted into the mounting holes from top to bottom and is pressed onto the upper template 8 by fasteners. When the upper unloading plate 10 is mounted on the upper template 8, the lower end of the fourth reset component 24 abuts against the lower unloading plate 4. When the upper unloading plate 10 is pressed to move upward, the fourth reset component 24 is pressed and guides the upper unloading plate 10 to reset downward. Those skilled in the art will understand this.
[0048] A fourth guide structure is provided between the upper unloading plate 10 and the upper template 8. In the present embodiment, the fourth guide structure includes a fourth guide hole 801 provided on the upper template 8, and a fourth guide column 1001 provided on the upper unloading plate 10 and corresponding to the fourth guide hole 801. The number of the fourth guide holes 801 is preferably four groups and they are provided in pairs on the front and rear sides of the upper template 8. The number of the fourth guide columns 1001 is preferably four groups and they are provided in pairs on the front and rear sides of the upper unloading plate 10 and corresponding to the fourth guide columns 1001. When the fourth guide column 1001 slides along the length direction of the fourth guide hole 801, the upper unloading plate 10 moves up and down along the height direction of the upper mold assembly, which is understood by those skilled in the art.
[0049] See also Figure 10-15 When the side push structure of the bending mold is used to bend the product 1, first, the product 1 is placed on the lower unloading plate 4, and the front and rear sides of the product 1 are respectively against the positioning parts of the lower unloading plate 4; second, the stamping equipment is started, the upper die assembly moves downward, and the upper pressing plate presses the product 1 against the lower unloading plate 4; third, the upper die assembly continues to move downward, and the bending punch 9 cooperates with the bending die 3 to bend the left side of the product 1 downward by 70°; fourth, the upper die assembly continues to move downward, and the bending punch 9 cooperates with the bending die 3 to bend the left side of the product 1 downward by 70°. The inclined wedge 16 contacts, and the first inclined surface 901 cooperates with the second inclined surface 1601 to drive the bending punch 9 to push sideways in the direction close to the bending die 3 to bend the left side of the product 1 90° to the left. Five, after the processing is completed, the upper mold assembly is reset upward, the bending punch 9 leaves the inclined wedge 16 and moves away from the bending die 3 and abuts against the fixed component 14, the upper unloading plate 10 is reset downward and the lower unloading plate 4 is reset upward to allow the product 1 to be unloaded from the bending mold. Six, take out the product 1 to complete the punching.
[0050] The above is a preferred embodiment of the utility model, which shows and describes the basic principle, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and descriptions are only for explaining the principle of the utility model. The utility model may have various changes and improvements without departing from the spirit and scope of the utility model, and these changes and improvements fall within the scope of the utility model to be protected, and the scope of protection of the utility model is defined by the attached claims and their equivalents.
Claims
1. A side push structure of a bending mold, comprising an upper mold assembly and a lower mold assembly corresponding to each other, characterized in that: The lower die assembly comprises a lower die plate (2), a bending die (3) arranged on the lower die plate (2), and a lower stripping plate (4) arranged on the lower die plate (2) and used for placing the product (1); the upper die assembly comprises an upper die plate (8), a bending punch (9) arranged on the upper die plate (8) and cooperating with the bending die (3), and an upper stripping plate (10) arranged on the upper die plate (8) and used for pressing the product (1) against the lower stripping plate (4); a side push structure for guiding the bending punch (9) to move in a direction close to the bending die (3) is provided between the upper die assembly and the lower die assembly.
2. The side push structure of the bending mold according to claim 1 is characterized in that: The side push structure comprises a fixed component (14) fixedly mounted on the upper template (8), a sliding rod (15) slidably mounted on the fixed component (14) and fixedly connected to the bending punch (9), and an inclined wedge (16) fixedly mounted on the lower template (2) and located below the bending punch (9), wherein the bending punch (9) is located on the side of the fixed component (14) facing the bending die (3), a first inclined surface (901) is provided on the bottom surface of the bending punch (9), and a second inclined surface (1601) is provided on the top surface of the inclined wedge (16), the first inclined surface (901) and the second inclined surface (1601) cooperate with each other, and the inclined wedge (16) drives the bending punch (9) to slide in a direction close to the bending die (3), so that the bending punch (9) and the bending die (3) cooperate with each other to bend the product (1).
3. The side push structure of the bending mold according to claim 2 is characterized in that: The side push structure also includes a first reset component (17) for guiding the bending punch (9) to reset in a direction away from the bending die (3); a limiting portion (1501) is provided on the end of the slide bar (15) away from the bending punch (9); the first reset component (17) is sleeved on the outer side of the slide bar (15) with one end abutting against the limiting portion (1501) and the other end abutting against the fixing component (14).
4. The side push structure of the bending mold according to claim 3 is characterized in that: The side thrust structure is also provided with a protection component (18) for protecting the first reset component (17); the protection component (18) is detachably mounted on the fixing component (14).
5. The side push structure of the bending mold according to claim 2 is characterized in that: A first guide structure is provided between the bending punch (9) and the upper mold plate (8) to enable the bending punch (9) to slide in a direction approaching or moving away from the bending die (3), the first guide structure comprising a first guide groove (902) provided on the left side and / or right side of the bending punch (9), and a first guide block (19) fixed on the upper mold plate (8) and having a first guide protrusion (1901), the first guide groove (902) and the first guide protrusion (1901) being provided correspondingly.
6. The side push structure of the bending die according to claim 1, characterized in that: A second reset component (20) for guiding the lower discharge plate (4) to reset upwards and a second guide structure for guiding the lower discharge plate (4) to move along the height direction of the lower mold assembly are provided between the lower discharge plate (4) and the lower mold plate (2); the second reset component (20) is fixed on the top surface of the lower mold plate (2); the second guide structure comprises a second guide hole (201) provided on the lower mold plate (2); and a second guide column (401) provided on the lower discharge plate (4) and corresponding to the second guide hole (201).
7. The side push structure of the bending mold according to claim 1 is characterized in that: A third reset structure for resetting the bending die (3) upwards and a third guide structure for guiding the bending die (3) to move along the height direction of the lower die assembly are provided between the bending die (3) and the lower die assembly (2); the third reset structure comprises a reset plate (21) arranged on the bottom surface of the lower die assembly (2), and a plurality of third reset components (22) arranged on the reset plate (21); a fixed end of the third reset component (22) is fixedly mounted on the reset plate (21), and a movable end thereof passes through the lower die assembly (2) from bottom to top and abuts against the lower die assembly (2). The third guide structure is connected to the bottom surface of the bending die (3), and comprises a third guide protrusion (301) arranged on the bending die (3), and a third guide block (23) arranged on the lower template (2) and having a third guide groove (2301); the third guide protrusion (301) is located on the end surface of the bending die (3) facing the third guide block (23); and the third guide groove (2301) is arranged corresponding to the third guide protrusion (301) and is located on the end surface of the third guide block (23) facing the bending die (3).
8. The side push structure of the bending die according to claim 1, characterized in that: A fourth reset component (24) for guiding the upper unloading plate (10) to reset downward and a fourth guide structure for guiding the upper unloading plate (10) to move along the height direction of the lower mold assembly are provided between the upper unloading plate (10) and the upper mold plate (8); the fourth reset component (24) is fixed on the upper mold plate (8); the fourth guide structure comprises a fourth guide hole (801) provided on the upper mold plate (8), and a fourth guide column (1001) provided on the upper unloading plate (10) and corresponding to the fourth guide hole (801).
9. The side push structure of the bending die according to any one of claims 1 to 8, characterized in that: The lower mold assembly further comprises a lower pad (5) arranged between the lower mold plate (2) and the lower unloading plate (4), a lower support plate (6) arranged on the bottom surface of the lower mold plate (2), and a lower mold fixing plate (7) arranged on the bottom surface of the lower support plate (6), wherein the lower pads (5) are provided in a plurality of groups and are arranged at intervals along the width direction of the lower mold plate (2), and the lower support plates (6) are provided in a plurality of groups and are arranged at intervals along the length direction of the lower mold plate (2).
10. The side push structure of the bending die according to any one of claims 1 to 8, characterized in that: The upper mold assembly further comprises an upper pad (11) arranged between the upper mold plate (8) and the upper unloading plate (10), an upper support plate (12) arranged on the top surface of the upper mold plate (8), and an upper mold fixing plate (13) arranged on the top surface of the upper support plate (12), wherein the upper pads (11) are provided in a plurality of groups and are arranged at intervals along the width direction of the upper mold plate (8), and the upper support plates (12) are provided in a plurality of groups and are arranged at intervals along the length direction of the upper mold plate (8).