Manufacturing tool of hammer pattern cup
By designing a hammer cup manufacturing tooling including an upper mold frame, a lower mold frame, a rotating assembly and a die core assembly, the problem of low production efficiency of the traditional hammer cup is solved, and the mass production and production efficiency of the hammer cup is improved.
Patent Information
- Application Number
- CN202422134246.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-30
AI Technical Summary
Traditional hammer cups have low production efficiency and cannot be mass-produced.
A hammer pattern cup manufacturing tool is designed, including the tooling body and the cup body. The tooling body is composed of an upper mold frame, a lower mold frame, a rotating component and a die core component. The rotating component drives the cup body to rotate, and when rotating, the upper mold is pressed downward with the hammer point to achieve the effect of the hammer pattern.
Through this tooling, mass production of hammer-shaped cups can be realized, and production efficiency can be improved.
Smart Images

Figure CN222999469U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a tooling, in particular to a manufacturing tooling for a hammered cup. Background Art
[0002] The process of the traditional hammered cup is to place the cup body on a specified mold, and then manually hammer the cup body to achieve the operation of hammered lines. However, this working method requires a large amount of labor and time for operation, with low production efficiency and unable to carry out mass production, so improvement is needed. Summary of the Invention
[0003] Aiming at the defects in the prior art such as low production efficiency of the hammered cup and inability to carry out mass production, the utility model provides a new manufacturing tooling for a hammered cup.
[0004] To solve the above technical problems, the utility model is realized through the following technical solutions:
[0005] A manufacturing tooling for a hammered cup, comprising a tooling main body and a cup body. The tooling main body includes an upper die holder, a lower die holder, a rotating assembly and a die core assembly. A fixed seat is arranged on the lower die holder. The rotating assembly includes a rotating shaft and a motor. The rotating shaft is arranged on the fixed seat and is rotationally connected with the fixed seat. The motor is arranged at the rear end of the rotating shaft. The die core assembly includes a hammer point upper die and a hammer point die core. The hammer point die core is arranged at the front end of the rotating shaft. The cup body is detachably connected with the hammer point die core. The hammer point upper die is arranged on the upper die holder and is located above the hammer point die core.
[0006] The rotating assembly drives the cup body installed on the hammer point die core to rotate regularly. When rotating, the hammer point upper die will also press down regularly, so that the corresponding shape on the hammer point model can be hammered out on the cup body. Thus, through the setting of the above structure, the hammered cup can be mass-produced, and the production efficiency of the hammered cup is improved.
[0007] Preferably, in the above-mentioned manufacturing tooling for a hammered cup, the tooling main body further includes a fixing assembly. The fixing assembly includes a rotating fixing block and a first fixing screw. A rotating space is arranged at the front end of the hammer point die core. The first fixing screw fixes the rotating fixing block in the rotating space. The outer diameter of the rotating fixing block is consistent with the inner diameter of the smallest end of the cup body.
[0008] The outer diameter of the rotating fixing block is consistent with the inner diameter of the smallest end of the cup body, so that the cup body can be more stable when fixed.
[0009] Preferably, in the above-mentioned manufacturing tooling for a hammered cup, the rotating assembly further includes a rotating bearing. The rotating bearing is arranged between the rotating fixing block and the rotating space.
[0010] The setting of the rotating bearing can improve the smoothness of the rotating shaft during rotation.
[0011] Preferably, for the manufacturing tooling of the hammered cup described above, the tooling main body further includes a fixing block, a fixing table is provided at the rear end of the hammer point die core, and the fixing block is connected to the fixing table by a second fixing screw.
[0012] Through the connection between the fixing block and the fixing table of the hammer point die core, it is convenient to install or disassemble and replace the hammer point die core.
[0013] Preferably, for the manufacturing tooling of the hammered cup described above, the rotating assembly further includes a third fixing screw, a fixing groove is provided at the rear end of the rotating shaft, and the driving shaft of the motor is inserted into the fixing groove and then connected by the third fixing screw.
[0014] The motor is connected to the fixing groove of the rotating shaft through the third fixing screw, so as to facilitate the installation or disassembly of the motor.
[0015] Preferably, for the manufacturing tooling of the hammered cup described above, fixing columns are provided on the lower die holder, fixing sleeves are provided on the upper die holder, and the upper die holder is connected to the fixing columns of the lower die holder through the fixing sleeves.
[0016] Through the cooperative setting of the fixing columns and the fixing sleeves, the upper die holder and the lower die holder can be made more smooth when being pressed together.
[0017] Preferably, for the manufacturing tooling of the hammered cup described above, shock-absorbing springs are provided on the fixing columns.
[0018] The setting of the shock-absorbing springs can provide a certain shock-absorbing and rebounding effect when the upper die holder presses against the lower die holder. Description of the Drawings
[0019] Figure 1 It is an exploded structural schematic diagram of the tooling main body of the present utility model;
[0020] Figure 2 It is a longitudinal sectional structural schematic diagram of the tooling main body of the present utility model. Detailed Embodiments
[0021] The following further describes the present utility model in detail in conjunction with the attached Figure 1-2 drawings and specific embodiments, but they are not limitations to the present utility model:
[0022] Embodiment 1
[0023] As Figure 1 、 Figure 2As shown in the figure, a manufacturing tooling for a hammered cup includes a tooling main body 1 and a cup body 2. The tooling main body 1 includes an upper die holder 11, a lower die holder 12, a rotating assembly 13 and a die core assembly 14. A fixed seat 121 is provided on the lower die holder 12. The rotating assembly 13 includes a rotating shaft 131 and a motor 132. The rotating shaft 131 is arranged on the fixed seat 121 and is rotatably connected to the fixed seat 121. The motor 132 is arranged at the rear end of the rotating shaft 131. The die core assembly 14 includes a hammer point upper die 141 and a hammer point die core 142. The hammer point die core 142 is arranged at the front end of the rotating shaft 131. The cup body 2 is detachably connected to the hammer point die core 142. The hammer point upper die 141 is arranged on the upper die holder 11 and is located above the hammer point die core 142.
[0024] Preferably, the tooling main body 1 further includes a fixing assembly 15. The fixing assembly 15 includes a rotating fixing block 151 and a first fixing screw 152. A rotating space 1421 is provided at the front end of the hammer point die core 142. The first fixing screw 152 fixes the rotating fixing block 151 in the rotating space 1421. The outer diameter of the rotating fixing block 151 is consistent with the inner diameter of the smallest end of the cup body 2.
[0025] Preferably, the rotating assembly 13 further includes a rotating bearing 133. The rotating bearing 133 is arranged between the rotating fixing block 151 and the rotating space 1421.
[0026] Preferably, the tooling main body 1 further includes a fixing block 16. A fixing platform 1422 is provided at the rear end of the hammer point die core 142. The fixing block 16 is connected to the fixing platform 1422 by a second fixing screw 3.
[0027] Preferably, the rotating assembly 13 further includes a third fixing screw 134. A fixing groove 1311 is provided at the rear end of the rotating shaft 131. After the driving shaft of the motor 132 is inserted into the fixing groove 1311, it is connected by the third fixing screw 134.
[0028] Preferably, fixing columns 122 are provided on the lower die holder 12, and fixing sleeves 111 are provided on the upper die holder 11. The upper die holder 11 is connected to the fixing columns 122 of the lower die holder 12 through the fixing sleeves 111.
[0029] Preferably, shock-absorbing springs 1221 are provided on the fixing columns 122.
[0030] Specifically, when the present utility model is in use, first, the cup body 2 is sleeved on the hammer point die core 142. Then, the smallest end of the cup body 2 is fixed to the rotary fixing block 151 of the fixing assembly 15. Subsequently, when the motor 132 of the rotating assembly 13 drives the rotating shaft 131 to rotate, the rotary fixing block 151 will also rotate synchronously. Then, the punching machine drives the hammer point upper die 141 installed on the upper die holder 11 to press downward in batches, thereby punching out a shape corresponding to that on the hammer point die core 142 on the cup body 2, and the production can be completed.
[0031] In summary, the above are only the preferred embodiments of the present utility model. All equivalent changes and modifications made within the scope of the patent application of the present utility model shall fall within the scope covered by the present utility model.
Claims
1. A manufacturing tool for a hammered cup, comprising a tool body (1) and a cup body (2), wherein the tool body (1) comprises an upper mold frame (11), a lower mold frame (12), a rotating assembly (13) and a core assembly (14), and is characterized in that: The lower mold frame (12) is provided with a fixed seat (121); the rotating assembly (13) comprises a rotating shaft (131) and a motor (132); the rotating shaft (131) is arranged on the fixed seat (121) and is rotatably connected to the fixed seat (121); the motor (132) is arranged at the rear end of the rotating shaft (131); the mold core assembly (14) comprises a hammer point upper mold (141) and a hammer point mold core (142); the hammer point mold core (142) is arranged at the front end of the rotating shaft (131); the cup body (2) is detachably connected to the hammer point mold core (142); the hammer point upper mold (141) is arranged on the upper mold frame (11) and is located above the hammer point mold core (142).
2. The manufacturing tool for a hammer pattern cup according to claim 1, characterized in that: The tooling body (1) further comprises a fixing assembly (15), wherein the fixing assembly (15) comprises a rotating fixing block (151) and a first fixing screw (152); a rotation space (1421) is provided at the front end of the hammer point mold core (142); the first fixing screw (152) fixes the rotating fixing block (151) in the rotation space (1421); and the outer diameter of the rotating fixing block (151) is consistent with the inner diameter of the smallest end of the cup body (2).
3. The manufacturing tool for a hammer pattern cup according to claim 2, characterized in that: The rotating assembly (13) further comprises a rotating bearing (133), wherein the rotating bearing (133) is arranged between the rotating fixed block (151) and the rotating space (1421).
4. The manufacturing tool for a hammer pattern cup according to claim 1, characterized in that: The tooling body (1) further comprises a fixing block (16), a fixing platform (1422) is provided at the rear end of the hammer point mold core (142), and the fixing block (16) and the fixing platform (1422) are connected via a second fixing screw (3).
5. The manufacturing tool for a hammer pattern cup according to claim 1, characterized in that: The rotating assembly (13) further comprises a third fixing screw (134); a fixing slot (1311) is provided at the rear end of the rotating shaft (131); and a driving shaft of the motor (132) is inserted into the fixing slot (1311) and connected via the third fixing screw (134).
6. The manufacturing tool for a hammer pattern cup according to claim 1, characterized in that: The lower mold frame (12) is provided with a fixing column (122), the upper mold frame (11) is provided with a fixing sleeve (111), and the upper mold frame (11) is connected to the fixing column (122) of the lower mold frame (12) via the fixing sleeve (111).
7. The manufacturing tool for a hammer pattern cup according to claim 6, characterized in that: The fixing column (122) is provided with a shock absorbing spring (1221).