Continuous and integrated stamping device for computer backboard
By improving the mold assembly structure of the computer backplane continuous stamping device, the stable discharge and automatic transportation of finished products are achieved, and the problems of damage and low efficiency of finished products caused by the discharge method in the existing devices are solved, and the working efficiency is improved.
Patent Information
- Application Number
- CN202421502984.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-06-28
AI Technical Summary
After the cutting edge of the existing computer backplane continuous stamping device is completed, the cutting method can easily lead to damage to the finished product or low efficiency, making it difficult to achieve subsequent steps of efficient automation.
The design of lower mold assembly and upper mold assembly is adopted, including lower mold seat, lower pad plate, lower module, unloading assembly, limit slide chute, guide slide, sliding plate, hydraulic rod and unloading pallet, etc. The combination movement of the hydraulic rod is used to achieve stable unloading and automatic transportation of the finished product to avoid interference to the material belt.
It improves the stability and efficiency of the discharge process, facilitates the automated operation of the robotic arm, reduces the risk of finished product damage, and improves the overall working efficiency.
Smart Images

Figure CN223056527U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of stamping devices, and particularly to a continuous integrated stamping device for computer backplates. Background Art
[0002] A continuous integrated stamping device is a highly integrated stamping equipment that can complete multiple stamping processes in a single continuous operation process, thereby realizing an efficient and automated forming process for metal sheets or other sheet materials. The characteristic of this device is that it can connect multiple independent stamping dies in series. When the material passes through the device, it will pass through each station in turn, and one or more processing steps, such as punching, forming, trimming, etc., will be completed at each station until it finally becomes a complete stamping part.
[0003] After the trimming in the last step of the existing continuous integrated stamping device for computer backplates, the blanking method is usually that the finished product falls to the bottom guide chute under the action of gravity, or waits for the robotic arm to pick up the finished product and then move the material tape. The former is not convenient for subsequent automated steps and is likely to drop and damage the computer backplate. The latter has relatively low efficiency and is not convenient to use. Summary of the Utility Model
[0004] This application provides a continuous integrated stamping device for computer backplates to solve the problems raised in the above background art.
[0005] The above technical objectives of this application are achieved through the following technical solutions:
[0006] A continuous integrated stamping device for computer backplates includes a lower die assembly and an upper die assembly. The lower die assembly includes a lower die base. A lower backing plate is fixedly installed on the top of the lower die base. A lower die block is fixedly installed on the top of the lower backing plate. A blanking component is fixedly installed at the bottom of one end of the lower die block. The blanking component includes an installation frame. Limiting sliding grooves are opened on both sides inside the installation frame. A guiding slider is slidably connected inside the limiting sliding grooves. A sliding plate is fixedly installed on one side of the guiding slider. A third hydraulic rod is fixedly installed in the middle of the sliding plate. Blanking support plates are fixedly installed at the output ends of the two third hydraulic rods. A connecting plate is fixedly installed at one end of the two sliding plates. A second hydraulic rod is fixedly installed at one end of the installation frame. The output end of the second hydraulic rod is fixedly connected to the middle of the connecting plate.
[0007] With the above - mentioned solution, the lower module is fixedly installed at the top of the lower backing plate, which facilitates the closing of the lower module and the upper module to stamp and form the strip. The guiding slider is slidably connected inside the limiting chute, and a sliding plate is fixedly installed on one side of the guiding slider, which facilitates the sliding of the sliding plate along the limiting chute. The discharging support plate is fixedly installed at the output ends of two third hydraulic rods, which facilitates the third hydraulic rods to drive the discharging support plate to move up and down, and it is convenient for the discharging support plate to hold the finished product after cutting and move it downward. One end of the installation frame is fixedly installed with a second hydraulic rod, and the output end of the second hydraulic rod is fixedly connected to the middle of the connecting plate, which facilitates the second hydraulic rod to push the sliding plate to slide outwards, so that the discharging support plate drives the finished computer backplane to move outwards, which is convenient for subsequent automated steps by feeding equipment such as robotic arms, and does not interfere with the movement of the strip during the discharging process, which is beneficial to improving work efficiency.
[0008] Further, a guiding rod is fixedly installed at the bottom of the discharging support plate, guiding holes are opened at both ends of the sliding plate, and the guiding rod is slidably connected with the guiding holes.
[0009] With the above - mentioned solution, by the sliding connection between the guiding rod and the guiding holes, it is convenient to guide the up - and - down movement of the discharging support plate, thus improving the stability of the up - and - down movement of the discharging support plate.
[0010] Further, a support rod is fixedly installed in the middle of the bottom end of the installation frame, and the middle of the top end of the support rod is fixedly connected with the second hydraulic rod.
[0011] With the above - mentioned solution, by the fixed connection between the middle of the top end of the support rod and the second hydraulic rod, it is convenient to improve the installation stability of the second hydraulic rod.
[0012] Further, guide columns are fixedly installed at the top of both sides of the lower backing plate, and the upper die assembly includes an upper die base, and guide sleeves are fixedly installed at both sides of the bottom of the upper die base.
[0013] With the above - mentioned solution, through the arrangement of the guide columns and the guide sleeves, it is convenient to guide during die - closing and improve the accuracy of die - closing.
[0014] Further, first hydraulic rods are fixedly installed on both sides of the lower die base, and the output ends of the first hydraulic rods are fixedly connected with the upper die base.
[0015] With the above - mentioned solution, by the fixed connection between the output ends of the first hydraulic rods and the upper die base, it is convenient for the first hydraulic rods to work to open or close the device.
[0016] Further, a second tool - holder groove is opened at one end of the lower module facing the discharging component, and a first tool - holder groove is opened at the other end of the lower module.
[0017] With the above solution, a second tool holder groove is provided at one end of the lower module facing the blanking component, and a first tool holder groove is provided at the other end of the lower module, which facilitates the cooperation of the first tool holder groove and the first tool head plate to trim part of the strip during mold closing, and the cooperation of the second tool holder groove and the second tool head plate to trim the finished product after stamping and cut it off from the strip.
[0018] Furthermore, a punching groove is provided inside the first tool holder groove, and a slag discharge slideway is provided at one end of the lower die base facing the first tool holder groove.
[0019] With the above solution, a slag discharge slideway is provided at one end of the lower die base facing the first tool holder groove, which facilitates the cooperation of the punching groove and the punch to punch holes in the strip during mold closing, and the waste generated by punching slides out from the slag discharge slideway, facilitating the collection of waste.
[0020] Furthermore, three grading forming bumps are provided in the middle of the lower module, an upper module is fixedly installed at the bottom of the upper die base, and three grading forming grooves are provided in the middle of the upper module.
[0021] With the above solution, through the setting of three grading forming bumps and three grading forming grooves, it is convenient to stamp and form the computer backplane on the strip during mold closing.
[0022] Furthermore, a first tool head plate is provided at the bottom of one end of the upper module, and a second tool head plate is provided at the bottom of the other end of the upper module, and a punch is provided inside the first tool head plate.
[0023] In summary, the present application has the following technical effects:
[0024] By fixedly installing the lower module on the top of the lower backing plate, it is convenient for the lower module and the upper module to close and stamp and form the strip. By slidingly connecting a guiding slider inside the limiting chute, and fixedly installing a sliding plate on one side of the guiding slider, it is convenient for the sliding plate to slide along the limiting chute. By fixedly installing a blanking support plate at the output ends of two third hydraulic rods, it is convenient for the third hydraulic rods to work and drive the blanking support plate to move up and down, facilitating the blanking support plate to support the finished product after cutting and move it downward. By fixedly installing a second hydraulic rod at one end of the installation frame, and fixedly connecting the output end of the second hydraulic rod to the middle of the connecting plate, it is convenient for the second hydraulic rod to work and push the sliding plate to slide outwards, so that the blanking support plate drives the computer backplane finished product to move outwards, facilitating subsequent automated steps by blanking equipment such as a robotic arm, and not interfering with the movement of the strip during blanking, which is beneficial to improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a three-dimensional structural diagram of a continuous integrated stamping device for a computer backplane of the present application;
[0026] Figure 2 is a three-dimensional structural diagram of the blanking component of the present application;
[0027] Figure 3 is an exploded view of the blanking component of the present application;
[0028] Figure 4 is a three-dimensional structure diagram of the lower die component of the present application;
[0029] Figure 5 is a three-dimensional structure diagram of the upper die component of the present application.
[0030] In the figure, 101 is the lower die component; 10101 is the lower die base; 10102 is the lower backing plate; 10103 is the lower die block; 10104 is the first hydraulic rod; 10105 is the guide pillar; 10106 is the first tool holder groove; 10107 is the second tool holder groove; 10108 is the punching groove; 10109 is the slag discharge slideway; 10110 is the grading forming convex block; 102 is the upper die component; 10201 is the upper die base; 10202 is the upper die block; 10203 is the guide bushing; 10204 is the first tool head plate; 10205 is the punch; 10206 is the second tool head plate; 10207 is the grading forming groove; 103 is the blanking component; 10301 is the installation frame; 10302 is the limit chute; 10303 is the second hydraulic rod; 10304 is the support rod; 10305 is the sliding plate; 10306 is the guiding slider; 10307 is the connecting plate; 10308 is the third hydraulic rod; 10309 is the guiding hole; 10310 is the blanking support plate; 10311 is the guiding rod. Detailed implementation manners
[0031] The present application will be further described in detail below with reference to the accompanying drawings.
[0032] Embodiment 1
[0033] Refer to Figures 1-5, including a lower die assembly 101 and an upper die assembly 102. The lower die assembly 101 includes a lower die base 10101. A lower backing plate 10102 is fixedly installed on the top of the lower die base 10101. A lower die block 10103 is fixedly installed on the top of the lower backing plate 10102. By fixedly installing the lower die block 10103 on the top of the lower backing plate 10102, it is convenient for the lower die block 10103 and the upper die block 10202 to close and stamp the strip material into shape. At the bottom of one end of the lower die block 10103, a blanking component 103 is fixedly installed. The blanking component 103 includes a mounting frame 10301. Limiting sliding grooves 10302 are opened on both sides inside the mounting frame 10301. A guiding slider 10306 is slidably connected inside the limiting sliding grooves 10302. A sliding plate 10305 is fixedly installed on one side of the guiding slider 10306. By slidably connecting the guiding slider 10306 inside the limiting sliding grooves 10302 and fixedly installing the sliding plate 10305 on one side of the guiding slider 10306, it is convenient for the sliding plate 10305 to slide along the limiting sliding grooves 10302. A third hydraulic rod 10308 is fixedly installed in the middle of the sliding plate 10305. Blanking support plates 10310 are fixedly installed at the output ends of the two third hydraulic rods 10308. By fixedly installing the blanking support plates 10310 at the output ends of the two third hydraulic rods 10308, it is convenient for the third hydraulic rod 10308 to drive the blanking support plates 10310 to move up and down, facilitating the blanking support plates 10310 to hold the finished product after cutting the plate and move it downward. Connecting plates 10307 are fixedly installed at one ends of the two sliding plates 10305. A second hydraulic rod 10303 is fixedly installed at one end of the mounting frame 10301. The output end of the second hydraulic rod 10303 is fixedly connected to the middle of the connecting plate 10307. By fixedly installing the second hydraulic rod 10303 at one end of the mounting frame 10301 and fixedly connecting the output end of the second hydraulic rod 10303 to the middle of the connecting plate 10307, it is convenient for the second hydraulic rod 10303 to push the sliding plate 10305 to slide outwards, so that the blanking support plates 10310 drive the finished computer backplane to move outwards, facilitating subsequent automated steps by blanking equipment such as robotic arms, and not interfering with the movement of the strip material during blanking, which is beneficial to improving work efficiency.
[0034] Embodiment 2
[0035] Refer to Figures 1-5, a guide rod 10311 is fixedly installed at the bottom of the blanking pallet 10310. Guide holes 10309 are provided at both ends of the sliding plate 10305. The guide rod 10311 is slidably connected to the guide holes 10309. By the sliding connection between the guide rod 10311 and the guide holes 10309, it is convenient to guide the up and down movement of the blanking pallet 10310, thereby improving the stability of the up and down movement of the blanking pallet 10310. A support rod 10304 is fixedly installed in the middle of the bottom end of the installation frame 10301. The middle of the top end of the support rod 10304 is fixedly connected to the second hydraulic rod 10303. By the fixed connection between the middle of the top end of the support rod 10304 and the second hydraulic rod 10303, it is convenient to improve the installation stability of the second hydraulic rod 10303. Guide columns 10105 are fixedly installed at the top of both sides of the lower backing plate 10102. The upper die assembly 102 includes an upper die base 10201. Guide sleeves 10203 are fixedly installed on both sides of the bottom of the upper die base 10201. Through the arrangement of the guide columns 10105 and the guide sleeves 10203, it is convenient to guide during mold closing and improve the accuracy of mold closing. First hydraulic rods 10104 are fixedly installed on both sides of the lower die base 10101. The output ends of the first hydraulic rods 10104 are fixedly connected to the upper die base 10201. By the fixed connection between the output ends of the first hydraulic rods 10104 and the upper die base 10201, it is convenient for the first hydraulic rods 10104 to work to open or close the mold of the device.
[0036] Embodiment III
[0037] Refer to Figures 1-5, the lower module 10103 is provided with a second tool holder groove 10107 at one end facing the blanking component 103, and a first tool holder groove 10106 is provided at the other end of the lower module 10103. By providing the second tool holder groove 10107 at one end of the lower module 10103 facing the blanking component 103 and the first tool holder groove 10106 at the other end of the lower module 10103, it is convenient for the first tool holder groove 10106 to cooperate with the first tool head plate 10204 to perform partial trimming on the strip during mold closing, and the second tool holder groove 10107 cooperates with the second tool head plate 10206 to trim the finished product after stamping and cut it from the strip. An punching groove 10108 is provided inside the first tool holder groove 10106, and a slag discharge chute 10109 is provided at one end of the lower die base 10101 facing the first tool holder groove 10106. By providing the slag discharge chute 10109 at one end of the lower die base 10101 facing the first tool holder groove 10106, it is convenient for the punching groove 10108 to cooperate with the punch 10205 to punch holes in the strip during mold closing, and the waste generated by punching slides out from the slag discharge chute 10109, facilitating the collection of waste. Three grading forming protrusions 10110 are provided in the middle of the lower module 10103, and an upper module 10202 is fixedly installed at the bottom of the upper die base 10201. Three grading forming grooves 10207 are provided in the middle of the upper module 10202. By providing the three grading forming protrusions 10110 and the three grading forming grooves 10207, it is convenient to stamp and form the computer backplane on the strip during mold closing. A first tool head plate 10204 is provided at the bottom of one end of the upper module 10202, and a second tool head plate 10206 is provided at the bottom of the other end of the upper module 10202. A punch 10205 is provided inside the first tool head plate 10204.
[0038] Specifically, the output end of the first hydraulic rod 10104 is fixedly connected to the upper die base 10201, facilitating the operation of the first hydraulic rod 10104 to open or close the mold. Through the arrangement of the guide posts 10105 and the guide sleeves 10203, it is convenient to guide during mold closing and improve the accuracy of mold closing. There is a guide slider 10306 slidably connected inside the limit chute 10302, and a sliding plate 10305 is fixedly installed on one side of the guide slider 10306, facilitating the sliding of the sliding plate 10305 along the limit chute 10302. The output ends of two third hydraulic rods 10308 are fixedly installed with a blanking support plate 10310, facilitating the operation of the third hydraulic rods 10308 to drive the blanking support plate 10310 to move up and down, and conveniently the blanking support plate 10310 supports the finished product after cutting the board and moves it downward. One end of the installation frame 10301 is fixedly installed with a second hydraulic rod 10303, and the output end of the second hydraulic rod 10303 is fixedly connected to the middle of the connecting plate 10307, facilitating the operation of the second hydraulic rod 10303 to push the sliding plate 10305 to slide outwards, so that the blanking support plate 10310 drives the finished computer backplane outwards, facilitating subsequent automated steps for blanking equipment such as robotic arms, and not interfering with the movement of the strip during blanking, which is beneficial to improving work efficiency. The lower module 10103 is provided with a second tool seat groove 10107 at one end facing the blanking assembly 103, and a first tool seat groove 10106 at the other end of the lower module 10103, facilitating the cooperation of the first tool seat groove 10106 and the first tool head plate 10204 to perform partial edge trimming on the strip during mold closing, and the second tool seat groove 10107 and the second tool head plate 10206 cooperate to cut the finished product after stamping from the strip. Through the arrangement of three grading forming bumps 10110 and three grading forming grooves 10207, it is convenient to stamp and form the computer backplane on the strip during mold closing.
[0039] This specific embodiment is only an interpretation of the present application and does not limit the present application. After reading this specification, those skilled in the art can make modifications to this embodiment without creative contributions as needed, but as long as it is within the scope of the claims of the present application, it is protected by the patent law.
Claims
1. A continuous integrated stamping device for a computer backplane, characterized in that: It includes a lower die assembly (101) and an upper die assembly (102). The lower die assembly (101) includes a lower die base (10101). A lower backing plate (10102) is fixedly installed on the top of the lower die base (10101). A lower die block (10103) is fixedly installed on the top of the lower backing plate (10102). A blanking component (103) is fixedly installed at the bottom of one end of the lower die block (10103). The blanking component (103) includes an installation frame (10301). Limiting sliding grooves (10302) are opened on both sides inside the installation frame (10301). A guiding slider (10306) is slidably connected inside the limiting sliding grooves (10302). A sliding plate (10305) is fixedly installed on one side of the guiding slider (10306). A third hydraulic rod (10308) is fixedly installed in the middle of the sliding plate (10305). Blanking support plates (10310) are fixedly installed at the output ends of the two third hydraulic rods (10308). A connecting plate (10307) is fixedly installed at one end of the two sliding plates (10305). A second hydraulic rod (10303) is fixedly installed at one end of the installation frame (10301). The output end of the second hydraulic rod (10303) is fixedly connected to the middle of the connecting plate (10307).
2. The continuous integrated stamping device for a computer backplane according to claim 1, wherein: A guiding rod (10311) is fixedly installed at the bottom of the blanking support plate (10310). Guiding holes (10309) are opened at both ends of the sliding plate (10305). The guiding rod (10311) is slidably connected with the guiding holes (10309).
3. A continuous integrated stamping device for a computer backplane according to claim 1, characterized in that: A support rod (10304) is fixedly installed in the middle of the bottom end of the installation frame (10301). The middle of the top end of the support rod (10304) is fixedly connected to the second hydraulic rod (10303).
4. A continuous integrated stamping device for a computer backplane according to claim 1, characterized in that: Guide columns (10105) are fixedly installed at the top of both sides of the lower backing plate (10102). The upper die assembly (102) includes an upper die base (10201). Guide sleeves (10203) are fixedly installed at both sides of the bottom of the upper die base (10201).
5. A continuous integrated stamping device for a computer backplane according to claim 4, characterized in that: First hydraulic rods (10104) are fixedly installed on both sides of the lower die base (10101). The output ends of the first hydraulic rods (10104) are fixedly connected to the upper die base (10201).
6. The continuous integrated stamping device for a computer backplane according to claim 5, characterized in that: A second tool holder groove (10107) is opened at one end of the lower die block (10103) facing the blanking component (103), and a first tool holder groove (10106) is opened at the other end of the lower die block (10103).
7. A continuous integrated stamping device for a computer backplane according to claim 6, characterized in that: A punching groove (10108) is arranged inside the first tool holder groove (10106). A slag discharge slideway (10109) is opened at one end of the lower die base (10101) facing the first tool holder groove (10106).
8. A continuous integrated stamping device for a computer backplane according to claim 7, characterized in that: Three grading forming bumps (10110) are opened in the middle of the lower die block (10103). An upper die block (10202) is fixedly installed at the bottom of the upper die base (10201). Three grading forming grooves (10207) are opened in the middle of the upper die block (10202).
9. The continuous integrated stamping device for a computer backplane according to claim 8, characterized in that: One end of the upper module (10202) is provided with a first cutter head plate (10204) at the bottom, and the other end of the upper module (10202) is provided with a second cutter head plate (10206) at the bottom. A punch (10205) is arranged inside the first cutter head plate (10204).