Extrusion device for radiator water chamber machining
The servo motor-driven multi-axis threaded rod system and anti-slip texture design solve the problem of cumbersome multi-faceted operation in radiator water chamber processing, achieving automatic flipping and stable clamping, thus improving processing efficiency and accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2026-04-07
AI Technical Summary
Existing radiator water chamber processing extrusion devices require repeated assembly and disassembly when processing multiple surfaces, which is cumbersome and inefficient.
The multi-axis threaded rod system driven by servo motors enables automatic workpiece flipping and stable clamping. Four motors control the placement, clamping, and flipping of the workpiece, and the anti-slip texture design ensures the stability of the workpiece during processing.
This technology enables rapid flipping of radiator water chamber workpieces, eliminating the need for repeated assembly, thus improving processing efficiency and accuracy while reducing operational complexity.
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Figure CN224087607U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to radiator processing equipment technical field, concretely is a kind of radiator water chamber processing extrusion device. BACKGROUND
[0002] Radiator belongs to automobile cooling system, and radiator in engine water cooling system is composed of water inlet chamber, water outlet chamber, main piece and radiator core three parts.
[0003] The patent with disclosure number CN221133832U proposes a radiator water chamber processing extrusion device, which comprises a push block, a push rod is fixedly connected to one side of the push block, a rotating shaft is fixedly connected to one end of the push rod away from the push block, a motor is rotatably connected to one end of the rotating shaft away from the push rod, the rotating shaft is rotatably connected to the outer surface of the output end of the motor, and the rotating shaft is threadedly connected with the output end of the motor. A workbench is provided with a slide inside, a baffle one is movably connected to the upper surface of the workbench, and a baffle two is fixedly connected to the upper surface of the workbench. A limiting block is fixedly connected inside the slide, and the limiting block is fixedly connected inside the workbench through the slide. Through the above structure, it is beneficial to adjust the limiting block according to different specifications during the processing of the radiator water chamber, and the operation is simple, professional personnel are not required, the use cost is reduced, and the labor intensity of the workers is reduced.
[0004] The above structure is used when the radiator water chamber workpiece is extruded, and the angle of the workpiece is not easy to adjust. When multiple surfaces of the workpiece need to be processed, the workpiece needs to be repeatedly assembled and disassembled, which is cumbersome to operate and reduces the processing efficiency of the workpiece. Utility model content
[0005] (I) Technical problem solved
[0006] In view of the deficiencies of the prior art, the utility model provides a radiator water chamber processing extrusion device.
[0007] (II) Technical scheme
[0008] To achieve the above purpose, the utility model provides the following technical scheme: a radiator water chamber processing extrusion device, comprising a processing table, two bases are symmetrically arranged on the upper end of the processing table, the base is slidably connected with the processing table, a second motor is arranged at one end of the processing table, a second rotating shaft is arranged at the output end of the second motor, two second threaded rods with reverse thread structures are symmetrically arranged on the second rotating shaft, and the two second threaded rods respectively penetrate through the two bases and are threadedly connected with the bases.
[0009] The upper end of the base is provided with a vertical plate, the top end of the vertical plate is provided with a fourth motor, the output end of the fourth motor is provided with a first rotating shaft, one end of the first rotating shaft is provided with a U-shaped rod, a pressing plate is fixedly arranged on the U-shaped rod, two limiting blocks and a sliding groove are symmetrically arranged at the two ends of the pressing plate, the outer end of the limiting block is provided with a sliding block penetrating through the sliding groove and being in sliding connection with the sliding groove, one end of the pressing plate is provided with a third motor, the output end of the third motor is provided with a third rotating shaft, two third threaded rods with reverse threads are symmetrically arranged on the third rotating shaft, and the two third threaded rods penetrate through the two sliding blocks and are in threaded connection with the sliding blocks.
[0010] In order to make the radiator water chamber workpiece more stable when placed, the utility model discloses the improvement has, the upper of processing platform is equipped with the bearing plate, the four corners of bearing plate is equipped with the support that penetrates processing platform, the lower extreme of support is equipped with the bottom plate that is located the processing platform below, the lower extreme of processing platform is equipped with first motor, the output of first motor is equipped with first threaded rod that penetrates bottom plate and is connected with bottom plate threadedly.
[0011] In order to improve the stability of base when moving, the utility model discloses the improvement has, the both ends of processing platform symmetrically set up a plurality of guide grooves, the lower extreme of base is equipped with the guide block that is connected with the guide groove slidingly, the section of guide groove is T-shaped.
[0012] Further, the utility model discloses the improvement has, the inside of pressing plate and the inside of limiting block are equipped with antiskid line.
[0013] Further, the utility model discloses the improvement has, first motor, second motor, third motor and fourth motor all adopt servo motor.
[0014] (Three) beneficial effects
[0015] Compared with the prior art, the utility model provides a radiator water chamber processing extrusion device, has the following beneficial effects:
[0016] The device can conveniently turn over the workpiece for processing, without repeated assembly and disassembly of the workpiece. When multiple faces of the workpiece need to be processed, the workpiece can be rotated by 180 degrees by controlling the fourth motor, so that the processing face can be quickly switched, greatly saving the operation time and improving the processing efficiency of the radiator water chamber workpiece.
[0017] The clamping of the workpiece at both ends by the pressing plate and the clamping of the workpiece at both sides by the limiting block, combined with the antiskid lines on the inside of the pressing plate and the limiting block, can ensure that the workpiece remains stable during processing, avoid the decline of processing precision caused by workpiece shaking, and thus ensure the processing quality. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1It is the first perspective three-dimensional structure schematic view of the utility model;
[0019] Figure 2 It is the second perspective three-dimensional structure schematic view of the utility model;
[0020] Figure 3 It is the front view of the utility model Figure 1 ;
[0021] Figure 4 It is the side view of the utility model Figure 1 ;
[0022] In the drawing: 1, processing platform; 2, bearing plate; 3, bottom plate; 4, support rod; 5, first motor; 6, first threaded rod; 7, base; 8, vertical plate; 9, second motor; 10, second rotating shaft; 11, second threaded rod; 12, fourth motor; 13, first rotating shaft; 14, U-shaped rod; 15, extrusion plate; 16, limit block; 17, sliding groove; 18, sliding block; 19, third motor; 20, third rotating shaft; 21, third threaded rod. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to 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 the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0024] Please refer to Figures 1-4 , a radiator water chamber processing extrusion device, including processing platform 1, the upper end of processing platform 1 is symmetrically provided with two bases 7, the base 7 is slidably connected with processing platform 1, one end of processing platform 1 is provided with second motor 9, the output end of second motor 9 is provided with second rotating shaft 10, two second threaded rods 11 of reverse thread structure are symmetrically arranged on second rotating shaft 10, two second threaded rods 11 are respectively penetrated through two bases 7 and are threadedly connected with base 7;
[0025] The upper end of the base 7 is provided with a vertical plate 8, the top end of the vertical plate 8 is provided with a fourth motor 12, the output end of the fourth motor 12 is provided with a first rotating shaft 13, one end of the first rotating shaft 13 is provided with a U-shaped rod, a pressing plate 15 is fixedly arranged on the U-shaped rod, two limiting blocks 16 and a sliding groove 17 are symmetrically arranged at the two ends of the pressing plate 15, the outer end of the limiting block 16 is provided with a sliding block 18 penetrating through the sliding groove 17 and in sliding connection with the sliding groove 17, one end of the pressing plate 15 is provided with a third motor 19, the output end of the third motor 19 is provided with a third rotating shaft 20, two third threaded rods 21 with reverse threads are symmetrically arranged on the third rotating shaft 20, and the two third threaded rods 21 penetrate through the two sliding blocks 18 and are in threaded connection with the sliding blocks 18.
[0026] In the embodiment, the upper end of the machining table 1 is provided with a bearing plate 2, the four corners of the bearing plate 2 are provided with supporting rods 4 penetrating through the machining table 1, the lower end of the supporting rod 4 is provided with a bottom plate 3 located below the machining table 1, the lower end of the machining table 1 is provided with a first motor 5, and the output end of the first motor 5 is provided with a first threaded rod 6 penetrating through the bottom plate 3 and in threaded connection with the bottom plate 3.
[0027] In the embodiment, the inner side of the pressing plate 15 and the inner side of the limiting block 16 are both provided with anti-skid lines.
[0028] Workpiece placement and bearing plate 2 adjustment:
[0029] Firstly, the radiator water chamber workpiece is placed on the upper end of the bearing plate 2. At this time, if it is necessary to adjust the height of the bearing plate 2 to adapt to the machining requirement, the first motor 5 located at the lower end of the machining table 1 can be started. The output end of the first motor 5 is connected with the first threaded rod 6, the first threaded rod 6 penetrates through the bottom plate 3 located below the machining table 1 and is in threaded connection with the bottom plate 3. When the first motor 5 operates, the first threaded rod 6 rotates, and due to the threaded cooperation with the bottom plate 3, the bottom plate 3 moves linearly relative to the first threaded rod 6, thereby driving the bearing plate 2 to rise or fall through the supporting rod 4, so as to ensure that the workpiece is at a suitable machining height.
[0030] Workpiece two-end clamping:
[0031] After the workpiece is placed properly, the second motor 9 located at one end of the machining table 1 is started. The output end of the second motor 9 is connected to the second rotating shaft 10, and two second threaded rods 11 with opposite screw threads are symmetrically arranged on the second rotating shaft 10. The two second threaded rods 11 respectively penetrate through the two bases 7 that are slidingly connected to the machining table 1 and are threadedly connected with the bases 7. When the second motor 9 is started, the second rotating shaft 10 drives the second threaded rods 11 to rotate. Since the screw threads of the two second threaded rods 11 are opposite, the two bases 7 will move linearly in opposite directions or in the same direction under the action of the screw threads. When moving in opposite directions, the two ends of the workpiece are clamped by the two extrusion plates 15 on the upper end vertical plates 8 of the two bases 7. At the same time, the multiple T-shaped guide grooves symmetrically arranged at the two ends of the machining table 1 and the guide blocks at the lower end of the base 7 are in sliding cooperation, which can effectively improve the stability of the base 7 during movement and ensure that the extrusion plates 15 accurately clamp the workpiece.
[0032] Workpiece clamping on both sides
[0033] After the two ends of the workpiece are clamped by the extrusion plates 15, the third motor 19 located at one end of the extrusion plate 15 is started. The output end of the third motor 19 is connected to the third rotating shaft 20, and two third threaded rods 21 with opposite screw threads are symmetrically arranged on the third rotating shaft 20. The two third threaded rods 21 respectively penetrate through the sliding blocks 18 at the outer ends of the two end limit blocks 16 of the extrusion plate 15 and are threadedly connected with the sliding blocks 18, and the sliding blocks 18 are slidingly connected with the sliding grooves 17 on the extrusion plate 15. When the third motor 19 is started, the third rotating shaft 20 drives the third threaded rods 21 to rotate. Since the screw threads of the two third threaded rods 21 are opposite, the two sliding blocks 18 will move linearly in opposite directions or in the same direction along the sliding grooves 17 under the action of the screw threads. When moving in opposite directions, the limit blocks 16 will gradually approach to clamp the two sides of the workpiece, further ensuring the stability of the workpiece during machining. Moreover, the inner sides of the extrusion plate 15 and the limit blocks 16 are provided with anti-skid patterns, which can effectively prevent the workpiece from sliding during clamping.
[0034] Workpiece turning processing
[0035] After the upper surface of the workpiece is machined, the first motor 5 is started to lower the carrying plate 2 to provide enough space for workpiece turning. Then the fourth motor 12 located at the top end of the vertical plate 8 is started, and the output end of the fourth motor 12 is connected to the first rotating shaft 13. One end of the first rotating shaft 13 is provided with a U-shaped rod, and the U-shaped rod is fixedly provided with the extrusion plate 15. After the fourth motor 12 is started, the first rotating shaft 13 drives the U-shaped rod and the extrusion plate 15 to rotate, so that the clamped workpiece is turned by 180 degrees. Then, the first motor 5 is started again to raise the carrying plate 2 to reset, and the other surface of the workpiece can be machined conveniently.
[0036] The device can conveniently turn over the radiator water chamber workpiece for processing, without the need to repeatedly assemble and disassemble the workpiece. When multiple surfaces of the workpiece need to be processed, only need to rotate the workpiece by 180 degrees through the control of the fourth motor 12, so as to quickly switch the processing surface, greatly saving the operation time and improving the processing efficiency of the radiator water chamber workpiece.
[0037] Through the clamping of the workpiece at both ends by the extrusion plate 15 and the clamping of the workpiece at both sides by the limiting block 16, combined with the anti-skid lines on the inner sides of the extrusion plate 15 and the limiting block 16, the stability of the workpiece during processing can be ensured, and the decline of processing precision caused by the shaking of the workpiece can be avoided, so as to ensure the processing quality.
[0038] In the embodiment, the first motor 5, the second motor 9, the third motor 19 and the fourth motor 12 are all servo motors.
[0039] The servo motor is used as the first motor 5, the second motor 9, the third motor 19 and the fourth motor 12, and the servo motor has accurate control performance and can realize accurate control of the movement of each component. The operator only needs to control the start, stop and rotation direction of the motor, so as to complete the placement, clamping, height adjustment and turning over of the workpiece, which is simple and convenient to operate and reduces the requirement for the professional skills of the operator.
[0040] In the embodiment, a plurality of guide grooves are symmetrically arranged at both ends of the processing table 1, the lower end of the base 7 is provided with a guide block in sliding connection with the guide grooves, and the cross section of the guide groove is T-shaped.
[0041] The T-shaped guide groove at both ends of the processing table 1 is in sliding cooperation with the guide block at the lower end of the base 7, effectively improving the stability of the base 7 during movement, ensuring that the extrusion plate 15 can accurately clamp the workpiece, avoiding the influence of the shaking of the base 7 on the clamping effect, and further improving the structural stability and reliability of the entire device.
[0042] In the description in this document, it should be noted that the relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.
[0043] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application.
Claims
1. A radiator water chamber processing extrusion device, comprising a processing table (1), characterized in that: Two bases (7) are symmetrically arranged on the upper end of the processing table (1). The bases (7) are slidably connected to the processing table (1). A second motor (9) is provided at one end of the processing table (1). A second rotating shaft (10) is provided at the output end of the second motor (9). Two second threaded rods (11) with reverse thread structure are symmetrically arranged on the second rotating shaft (10). The two second threaded rods (11) pass through the two bases (7) respectively and are threadedly connected to the bases (7). The upper end of the base (7) is provided with a vertical plate (8), the top end of the vertical plate (8) is provided with a fourth motor (12), the output end of the fourth motor (12) is provided with a first rotating shaft (13), one end of the first rotating shaft (13) is provided with a U-shaped rod, the U-shaped rod is fixedly provided with an extrusion plate (15), the two ends of the extrusion plate (15) are symmetrically provided with two limiting blocks (16) and a sliding groove (17), the outer end of the limiting block (16) is provided with a slider (18) that passes through the sliding groove (17) and is slidably connected to the sliding groove (17), one end of the extrusion plate (15) is provided with a third motor (19), the output end of the third motor (19) is provided with a third rotating shaft (20), the third rotating shaft (20) is symmetrically provided with two third threaded rods (21) with reverse thread structure, the two third threaded rods (21) respectively pass through the two sliders (18) and are threadedly connected to the sliders (18).
2. The extrusion device for processing radiator water chambers according to claim 1, characterized in that: The processing table (1) is provided with a support plate (2) above it. The support plate (2) is provided with support rods (4) that penetrate the processing table (1) at its four corners. The support rods (4) are provided with a base plate (3) located below the processing table (1) at their lower ends. The processing table (1) is provided with a first motor (5) at its lower end. The output end of the first motor (5) is provided with a first threaded rod (6) that penetrates the base plate (3) and is threadedly connected to the base plate (3).
3. The extrusion device for processing radiator water chambers according to claim 2, characterized in that: The processing table (1) has multiple guide grooves symmetrically arranged at both ends, and the lower end of the base (7) is provided with a guide block that is slidably connected to the guide groove.
4. The extrusion device for processing radiator water chambers according to claim 3, characterized in that: The cross-section of the guide groove is T-shaped.
5. The extrusion device for processing radiator water chambers according to claim 4, characterized in that: The inner side of the extrusion plate (15) and the inner side of the limiting block (16) are provided with anti-slip texture.
6. The extrusion device for processing radiator water chambers according to claim 5, characterized in that: The first motor (5), the second motor (9), the third motor (19) and the fourth motor (12) are all servo motors.
Citation Information
Patent Citations
Extrusion device for radiator water chamber machining
CN221133832U