Stamping structure for inward and outward double-opening doors and windows
Through the design of machining seats and limit components of the stamping structure of the inner and outer double-open doors and windows, the synchronous clamping positioning is achieved using hydraulic drive, which solves the problem of inconsistent force and position in manual operation, and improves production speed and accuracy.
Patent Information
- Application Number
- CN202421782432.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The existing double-opening door and window stamping devices in the manual operation are difficult to ensure the consistency of the force and position of each stamping, resulting in differences in the size and appearance of the double-opening door and windows in the same batch.
The machining seat, stamping assembly and limit assembly are used in combination. The hydraulic cylinder drives the moving plate to drive the adjustment plate and limit block to achieve synchronous clamping positioning. Combined with the design of the slider, slider and guide seat, the precise movement and reset of the limit block is ensured.
实现了快速、准确的定位和夹持,提高了生产速度和效率,减少了手动调整时间,确保了冲压精度和连贯性。
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Figure CN223083692U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of stamping structures, in particular to a stamping structure for an internal and external double-opening window. Background Art
[0002] The application of stamping technology in window and door manufacturing, especially in internal and external double-opening windows, is to meet various functional and performance requirements, including wind pressure resistance, water tightness, air tightness, etc., and to consider factors such as safety, lighting, energy conservation, and sound insulation.
[0003] In the actual use of existing double-opening window stamping devices, the staff usually place the window beam to be stamped at the lower end of the stamping die. The staff hold one end of the window by hand and then start the stamping die to perform stamping processing on it.
[0004] However, this device has some defects. Since the staff need to hold the positioning beam frame by hand during the stamping of the window beam, it is difficult to ensure that the stamping force and position are exactly the same each time manually, which may lead to differences in the size and appearance of the internal and external double-opening windows in the same batch.
[0005] Therefore, it is necessary to provide a stamping structure for internal and external double-opening windows to solve the above technical problems. Summary of the Utility Model
[0006] In view of the above situation, in order to overcome the defects of the prior art, the utility model provides a stamping structure for an internal and external double-opening window, which can realize the synchronous clamping of the positioning frame by the two end limit blocks during the stamping process through the cooperation of the set stamping component and the limit component.
[0007] To achieve the above object, the technical scheme adopted by the utility model is as follows:
[0008] The stamping structure for an internal and external double-opening window includes: a processing seat, the processing seat includes a stamping table, fixed seats are symmetrically arranged inside the stamping table, a placing table is arranged at the symmetric center of the two fixed seats, and a stamping component is further arranged at the upper end of the stamping table. The stamping component includes a hydraulic cylinder assembled on the upper end surface of the stamping table. Sleeve pipes are symmetrically arranged on both sides of the hydraulic cylinder. Guide columns are movably arranged inside the sleeve pipes. The guide columns and the output end of the hydraulic cylinder are both fixedly connected with a connecting plate. A stamping column is fixedly arranged at the lower end of the connecting plate. Positioning holes are further opened on both sides of the connecting plate. Adjusting plates are detachably fixed to the lower ends of both sides of the connecting plate through positioning bolts. The adjusting plates are of a U-shaped structure, and an inclined surface is opened at the lower port thereof. A slide rail is arranged at the upper end of the fixed seat. A slider is sleeved on the upper end of the slide rail. A limit block is arranged at the upper end of the slider. One end of the limit block is also designed as an inclined surface, and the limit block is installed at the lower port of the adjusting plate.
[0009] Preferably, a fixing rod is further provided on the side of the slider, and springs are provided on both side walls of the stamping table. The fixing rod penetrates through both side walls of the stamping table and is connected to the springs.
[0010] Preferably, a sliding bar is further provided on one side of the adjusting plate. The adjusting plate slides up and down in the guiding seats provided on both sides of the stamping table through the sliding bar.
[0011] Preferably, a connecting block is further sleeved on the output end of the hydraulic cylinder. The hydraulic cylinder is detachably and fixedly connected to the moving plate through the connecting block.
[0012] Preferably, the moving plate is designed in a T-shaped structure, and a threaded port is opened at the lower end of the moving plate. The stamping column is helically installed in the threaded port at the lower end of the moving plate.
[0013] Preferably, a rubber gasket is further provided on one side of the limiting block. The rubber gasket is closely adhered to the side of the limiting block through a magic tape.
[0014] Compared with the prior art, the present utility model has the following beneficial effects:
[0015] (1) By the cooperation of multiple parts in the processing seat, stamping assembly and limiting assembly provided in the present utility model, during the stamping process, the positioning frames can be synchronously clamped by the limiting blocks at both ends. Through the synchronous clamping of the limiting blocks, rapid and accurate positioning can be achieved, reducing the time required for traditional manual positioning, thereby greatly improving the overall production speed. At the same time, through synchronous clamping, it allows the operator to quickly transfer to the next working cycle after completing the stamping of one door and window, reducing the waiting and adjustment time, making the production more coherent;
[0016] (2) By providing a fixing rod on the side of the slider in the present utility model, during actual use, when the adjusting plate moves downward, through the downward extrusion of the adjusting plate, the slider and the limiting block provided on its upper end move towards one end. At this time, the fixing rod drives the spring to move towards one end accordingly. Through the elastic potential energy of the provided spring, the reset adjustment of the slider and the limiting block can be realized, thus eliminating the need for manual adjustment by the staff and greatly improving the production efficiency;
[0017] (3) By the cooperation of the sliding bar provided on the side of the adjusting plate and the guiding seat provided on the side of the stamping table in the present utility model, during actual use, when the adjusting plate is driven by the hydraulic cylinder to move downward, the sliding bar provided on the side of the adjusting plate slides up and down in the guiding seat provided on the side of the stamping table. Through the design of the sliding bar and the guiding seat, it ensures that the adjusting plate moves precisely along a predetermined path, reducing the possibility of deviation or swing, thereby improving the compaction accuracy of the limiting block on one side. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the internal and external double-door and window stamping structure provided by the present utility model;
[0019] Figure 2 Structural schematic diagram of the processing seat for the internal and external double-opening window stamping structure provided by the present utility model;
[0020] Figure 3 Structural schematic diagram of the stamping component and the limiting component;
[0021] Figure 4 Overall structural schematic diagram of the limiting component;
[0022] Figure 5 Structural schematic diagram of the hydraulic cylinder and the moving plate installation;
[0023] Figure 6 Structural schematic diagram of the installation of the moving plate, the adjusting plate and the guiding seat.
[0024] Among them, the names corresponding to the reference numerals are: 100, processing seat; 101, stamping table; 102, guiding seat; 103, fixed seat; 104, placing table; 200, stamping component; 201, hydraulic cylinder; 202, connecting block; 203, moving plate; 204, adjusting plate; 205, sliding bar; 206, sleeve; 207, guiding column; 208, stamping column; 300, limiting component; 301, slide rail; 302, slider; 303, limiting block; 304, rubber gasket; 305, fixed rod; 400, spring. Specific embodiments
[0025] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments. The implementation manners of the present utility model include but are not limited to the following embodiments.
[0026] The first embodiment:
[0027] As Figures 1-5As shown in the figure, this is the stamping structure of the double-opening interior and exterior doors and windows provided by the present utility model, including: a processing seat 100, the processing seat 100 includes a stamping table 101, fixed seats 103 are symmetrically arranged inside the stamping table 101, a placement table 104 is arranged at the symmetric center of the two fixed seats 103, and a stamping assembly 200 is further arranged at the upper end of the stamping table 101. The stamping assembly 200 includes a hydraulic cylinder 201 assembled on the upper end surface of the stamping table 101. Sleeve pipes 206 are symmetrically arranged on both sides of the hydraulic cylinder 201. Guide columns 207 are movably arranged inside the sleeve pipes 206. The guide columns 207 and the output end of the hydraulic cylinder 201 are both fixedly connected to a moving plate 203. A stamping column 208 is fixedly arranged at the lower end of the moving plate 203. Positioning holes are also opened on both sides of the moving plate 203. Adjusting plates 204 are detachably fixed to the lower ends of both sides of the moving plate 203 through positioning bolts. The adjusting plates 204 are of U-shaped structure, and inclined surfaces are opened at their lower ports. A limiting assembly 300 is further arranged inside the stamping table 101. The limiting assembly 300 includes slide rails 301 installed at the upper ends of the fixed seats 103. Sliders 302 are sleeved on the upper ends of the slide rails 301. Limiting blocks 303 are arranged at the upper ends of the sliders 302. One end of the limiting block 303 is also designed as an inclined surface, and the limiting block 303 is installed at the lower port of the adjusting plate 204. During actual use, the staff places the window frame to be stamped on the placement table 104, and then the staff starts the hydraulic cylinder 201. Through the drive of the hydraulic cylinder 201, the moving plate 203 moves downward. By the downward movement of the moving plate 203, the adjusting plate 204 is driven to move downward. Due to the inclined surfaces of the lower port of the adjusting plate 204 and the limiting block 303 on the slider 302, the direction of the force is converted through the inclined surface, thereby generating linear or lateral movement, so that the limiting block 303 moves towards the horizontal end. Through the opposite movement of the two limiting blocks 303 at both ends, the window frame on the placement table 104 is clamped and limited. At the same time, when the hydraulic cylinder 201 moves downward, the stamping column 208 at the lower end of the moving plate 203 stamps the window frame.
[0028] By the coordinated use of multiple parts in the processing seat 100, the stamping assembly 200 and the limiting assembly 300, during the stamping process, the two limiting blocks 303 can synchronously clamp and position the window frame. Through the synchronous clamping of the limiting blocks 303, rapid and accurate positioning can be achieved, reducing the time required for traditional manual positioning, thereby greatly improving the overall production speed. At the same time, through synchronous clamping, the operator is allowed to quickly transfer to the next working cycle after completing the stamping of one door and window, reducing the waiting and adjustment time, making the production more coherent.
[0029] Second Embodiment:
[0030] As Figure 2 、 Figure 4As shown, a fixed rod 305 is also provided on the end side of the slider 302, and spring 400 is provided on both side walls of the stamping table 101. The fixed rod 305 penetrates through both side walls of the stamping table 101 and is connected to the spring 400.
[0031] By providing the fixed rod 305 on the end side of the slider 302, during actual use, when the adjusting plate 204 moves downward, due to the downward extrusion of the adjusting plate 204, the slider 302 and the limiting block 303 provided on its upper end move towards one end. At this time, the fixed rod 305 drives the spring 400 to move towards one end accordingly. Through the elastic potential energy of the provided spring 400, the reset adjustment of the slider 302 and the limiting block 303 can be realized, thus eliminating the need for manual adjustment by workers and greatly improving production efficiency.
[0032] Third Embodiment:
[0033] As Figure 2 、 Figure 6 shown, a slide bar 205 is also provided on one side of the adjusting plate 204. The adjusting plate 204 slides up and down within the guiding seats 102 provided on both sides of the stamping table 101 through the slide bar 205.
[0034] By using the slide bar 205 provided on the end side of the adjusting plate 204 in cooperation with the guiding seats 102 provided on the end side of the stamping table 101, during actual use, when the adjusting plate 204 is driven by the hydraulic cylinder 201 to move downward, the slide bar 205 provided on the end side of the adjusting plate 204 slides up and down within the guiding seats 102 provided on the end side of the stamping table 101. The design of the slide bar 205 and the guiding seats 102 ensures that the adjusting plate 204 moves precisely along a predetermined path, reducing the possibility of deviation or swing, thereby improving the compaction accuracy of the limiting block 303 on one side.
[0035] Fourth Embodiment:
[0036] As Figure 5 shown, a connecting block 202 is also sleeved on the output end of the hydraulic cylinder 201. The hydraulic cylinder 201 is detachably and fixedly connected to the moving plate 203 through the connecting block 202.
[0037] By sleeving the connecting block 202 on the output end of the hydraulic cylinder 201, during actual use, the hydraulic cylinder 201 can be quickly installed and disassembled from the moving plate 203 through the connecting block 202, facilitating subsequent replacement and maintenance work of the moving plate 203 by workers.
[0038] Fifth Embodiment:
[0039] As Figure 5 shown, the moving plate 203 is designed with a T-shaped structure. A threaded opening is provided at the lower port of the moving plate 203, and the stamping column 208 is helically installed in the threaded opening at the lower end of the moving plate 203.
[0040] By setting a threaded port at the lower port of the moving plate 203, during actual use, the staff only needs to align the upper port of the stamping column 208 with the threaded port provided on the moving plate 203 and rotate the stamping column 208 through screw rotation. Compared with the traditional welding method, the spiral installation facilitates the subsequent replacement of components by the staff.
[0041] Sixth Embodiment:
[0042] As Figure 4 shown, a rubber gasket 304 is further provided on one side of the limit block 303, and the rubber gasket 304 is tightly adhered to the end side of the limit block 303 through Velcro.
[0043] Through the rubber gasket 304 provided on the end side of the limit block 303, when the two limit blocks 303 clamp the window frame, through the provided rubber gasket 304, the possibility of pinching can be prevented, ensuring the integrity of the side of the window frame.
[0044] Working Principle: During actual use, the staff places the window frame to be stamped on the placement table 104, and then the staff starts the hydraulic cylinder 201. Through the drive of the hydraulic cylinder 201, the moving plate 203 moves downward. By the downward movement of the moving plate 203, the adjusting plate 204 is driven to move downward. Through the downward movement of the adjusting plate 204, since both the lower port of the adjusting plate 204 and the limit block 303 on the slider 302 are designed with inclined surfaces, by converting the direction of the force through the inclined surfaces, a linear or lateral movement is generated, causing the limit block 303 to move towards the horizontal end. Through the opposite movement of the two limit blocks 303, the window frame on the placement table 104 is clamped and limited. At the same time, when the hydraulic cylinder 201 moves downward, the stamping column 208 at the lower end of the moving plate 203 performs stamping on the window frame.
[0045] The above embodiments are only one of the preferred embodiments of the present utility model and should not be used to limit the protection scope of the present utility model. Any meaningless changes or touch-ups made on the main design concept and spirit of the present utility model, as long as the technical problems solved are still the same as those of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A stamping structure for an internal and external double-opening door and window, characterized in that, Comprising: A processing base (100), the processing base (100) includes a stamping table (101), symmetrically arranged fixing seats (103) are provided inside the stamping table (101), a placing table (104) is arranged at the symmetric center of the two fixing seats (103), and a stamping assembly (200) is further provided at the upper end of the stamping table (101). The stamping assembly (200) includes a hydraulic cylinder (201) assembled on the upper end surface of the stamping table (101). Sleeve pipes (206) are symmetrically arranged on both sides of the hydraulic cylinder (201). Guide columns (207) are movably arranged inside the sleeve pipes (206). The guide columns (207) and the output end of the hydraulic cylinder (201) are both fixedly connected to a moving plate (203). A stamping column (208) is fixedly arranged at the lower end of the moving plate (203). Positioning holes are also formed on both sides of the moving plate (203). Adjusting plates (204) are detachably fixed to the lower ends of both sides of the moving plate (203) through positioning bolts. The adjusting plates (204) are of U-shaped structure, and an inclined surface is formed at its lower port. A limiting assembly (300) is further arranged inside the stamping table (101). The limiting assembly (300) includes a slide rail (301) installed at the upper end of the fixing seat (103). A slider (302) is sleeved on the upper end of the slide rail (301). A limiting block (303) is arranged at the upper end of the slider (302). One end of the limiting block (303) is also designed as an inclined surface, and the limiting block (303) is installed at the lower port of the adjusting plate (204).
2. The stamping structure of an internal and external double-opening door and window according to claim 1, wherein A fixing rod (305) is further arranged at the side of the slider (302), and springs (400) are arranged on both side walls of the stamping table (101). The fixing rod (305) penetrates through both side walls of the stamping table (101) and the springs (400).
3. The stamping structure of an internal and external double-opening door and window according to claim 1, wherein, A slide bar (205) is further arranged on one side of the adjusting plate (204). The adjusting plate (204) slides up and down inside the guide seats (102) arranged on both sides of the stamping table (101) through the slide bar (205).
4. A stamping structure for an inner and outer double-opening door and window according to claim 1, characterized in that, A connecting block (202) is sleeved on the output end of the hydraulic cylinder (201). The hydraulic cylinder (201) is detachably and fixedly connected to the moving plate (203) through the connecting block (202).
5. The stamping structure of an internal and external double-opening door and window according to claim 4, characterized in that The moving plate (203) is designed in a T-shaped structure. A threaded port is formed at the lower port of the moving plate (203). The stamping column (208) is helically installed at the threaded port at the lower end of the moving plate (203).
6. A stamping structure for an internal and external double-opening door and window according to claim 1, characterized in that A rubber gasket (304) is further arranged on one side of the limiting block (303). The rubber gasket (304) is tightly adhered to the side of the limiting block (303) through a magic tape.