Automatic assembly tool for rubber tube clamp
By designing automated hose clamp assembly fixtures, rapid and precise assembly of hoses and clamps has been achieved, solving the problem of low efficiency in manual operation, improving assembly quality and safety, and adapting to the assembly needs of different models.
Patent Information
- Application Number
- CN202520155959.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-22
AI Technical Summary
In the existing technology, the assembly of hoses and clamps mainly relies on manual operation, which leads to low efficiency, easy assembly errors, and affects vehicle performance and safety. In addition, the high labor intensity of manual operation increases production costs.
An automated assembly fixture for hose clamps was designed, including a base, a moving component, a connector fixing device, and a clamp opening device. The fixture enables rapid and precise assembly of hoses and clamps through automated equipment. Fixed and moving components ensure stable positioning. A detachable mounting base and a contour base are designed to adapt to the assembly requirements of different models. The hose position is monitored in real time through a detection component.
It significantly improves production efficiency and assembly quality, reduces assembly errors, lowers the risk of human error, meets the needs of modern automobile manufacturing, and adapts to the assembly requirements of diverse products.
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Figure CN223720225U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of automobile component assembly, in particular to an automatic assembly tool for a rubber tube clamp. BACKGROUND
[0002] In the automobile manufacturing industry, the assembly of rubber tubes and metal pipes is involved, and the butt joint of the two is realized by locking the clamp on the rubber tube to achieve reliable connection. The traditional rubber tube and clamp assembly method mainly relies on manual operation, which is not only low in efficiency, but also prone to improper assembly. Due to the lack of standardization in manual assembly, it often leads to missing, misassembly and other phenomena, which affects the overall performance and safety of the automobile. In addition, the high labor intensity of manual operation also increases the production cost.
[0003] With the rapid development of the automobile industry, the introduction of automatic assembly tools is particularly important. Through automatic equipment, the rubber tube and clamp can be quickly and accurately assembled, significantly improving production efficiency and assembly accuracy. Automatic assembly not only reduces the risk of human error, but also maintains consistent quality standards in mass production, meeting the needs of modern automobile manufacturing. Related prior art such as Chinese patent application "Rubber tube assembly tool", application number: CN201920481524.5, discloses a tool including a base, a pipe joint support frame, two sets of sliding mechanisms, two sets of clamp opening mechanisms, two sets of rubber tube support frames, and three sets of pressing mechanisms; the pipe joint support frame is arranged on the base; the two sets of sliding mechanisms are symmetrically arranged on the left and right sides of the pipe joint support frame; the two sets of clamp opening mechanisms are symmetrically arranged on the left and right sides of the pipe joint support frame; the two sets of rubber tube support frames are symmetrically arranged on the left and right sides of the pipe joint support frame and are located outside the clamp opening mechanisms, the rubber tube support frame is fixedly connected with the sliding mechanism on the corresponding side, and the clamp opening mechanism is connected with the rubber tube support frame on the corresponding side; the three sets of pressing mechanisms, one set is arranged on the pipe joint support frame for pressing the pipe joint; two sets are arranged on the rubber tube support frame.
[0004] The above patent application provides an automatic assembly tool for rubber tubes, pipe joints and clamps, but there is still room for improvement in the design of the tool structure to better ensure the stability and reliability of the assembly. Practical new type content
[0005] The technical problem to be solved by the present application is to provide an automatic assembly tool for a rubber tube clamp, which realizes more efficient and accurate assembly and improves production efficiency and assembly quality.
[0006] The technical scheme adopted by the present application is: an automatic assembly tool for a rubber tube clamp, comprising a base, a moving assembly, a plug-in pipe fixing device and a clamp opening device.
[0007] The clamp opening device is arranged on the base, and the clamp is installed in the clamp opening device;
[0008] The plug-in pipe fixing device is arranged on the base, the plug-in pipe is installed on the plug-in pipe fixing device, and the plug-in end of the plug-in pipe extends out of the plug-in pipe fixing device and passes through the center of the clamp;
[0009] The moving assembly comprises a linear slide rail arranged on the base and a sliding block installed on the linear slide rail, the sliding block is connected with the power device, the power device drives the sliding block to move along the linear slide rail, and the linear slide rail is arranged along the axial direction of the plug-in end of the plug-in pipe;
[0010] The sliding block is provided with a rubber pipe fixing device, and the rubber pipe is installed on the rubber pipe fixing device, and the plug-in end of the rubber pipe extends out of the rubber pipe fixing device.
[0011] Compared with the prior art, the assembly tool of the present application can realize the rapid assembly of the rubber pipe and the clamp through automatic equipment, significantly shortening the production cycle. Compared with traditional manual operation, automatic assembly can complete more assembly tasks in a shorter time, thereby improving the overall production efficiency. The use of the fixing device and the moving assembly ensures the stable position of the rubber pipe and the clamp during assembly, reducing the assembly errors caused by manual operation. Such design can ensure the accurate docking of each component during assembly, improving the assembly quality. In the present application, the clamp opening device and the plug-in pipe fixing device are relatively fixed structures on the base, which can ensure that the clamp and the plug-in pipe are more stable after installation. Only the rubber pipe fixing device is installed on the sliding block and is in motion during assembly. Compared with the prior art in which both components are designed as movable structures, the present application is more reliable in movement and has higher assembly precision. The design of the present application is flexible and can adapt to the assembly requirements of different types of rubber pipes and clamps. By replacing the fixing device, different assembly tasks can be quickly switched to meet the market demand for diversified products.
[0012] In some embodiments of the present application, the plug-in pipe fixing device comprises a mounting seat and a pressing seat, the mounting seat is detachably installed on the base, the pressing seat is detachably installed on the pressing cylinder, and the pressing seat is located directly above the mounting seat; and the part of the plug-in pipe close to the plug-in end is embedded in the mounting seat and is pressed and fixed by the pressing seat.
[0013] The use of detachable mounting seat and pressing seat makes the assembly tool have good modular characteristics. Users can quickly replace or adjust components according to different assembly requirements, improving the flexibility and adaptability of assembly. The part of the plug-in pipe close to the plug-in end is embedded in the mounting seat and is pressed and fixed by the pressing seat, which can ensure the accurate positioning of the plug-in pipe during assembly. This design effectively avoids assembly defects caused by position deviation, improving the overall assembly quality.
[0014] In some embodiments of the present application, the plug pipe fixing device further comprises a tail seat and a support seat, the support seat is arranged near the mounting seat, and the support seat supports the plug pipe part; the tail seat is arranged in a spaced manner with the support seat, and the tail end of the plug pipe is embedded in the tail seat for installation.
[0015] The design of the support seat can effectively support part of the plug pipe, reducing the sagging or deviation of the plug pipe caused by gravity or external force during assembly. This supporting structure ensures the stability of the plug pipe during assembly, improving the overall assembly quality. The design can adapt to plug pipes of different lengths and diameters, and the arrangement of the support seat and the tail seat makes the assembly tool have good universality. Users can adjust according to actual needs to meet the assembly needs of plug pipes of different models.
[0016] In some embodiments of the present application, the clamp opening device comprises a mounting plate fixed on the mounting seat, and the mounting plate is located on the end face side of the mounting seat; the top surface of the mounting plate is provided with a mounting groove accommodating the clamp.
[0017] By setting a special mounting groove, the accurate positioning of the clamp during assembly can be ensured, and the assembly error caused by human factors can be reduced. Furthermore, the mounting seat of the plug pipe and the mounting plate of the clamp are assembled together, which can effectively ensure the relative position of the clamp and the plug pipe after being installed on the assembly tool, ensuring the installation precision of the two.
[0018] In some embodiments of the present application, the clamp opening device comprises a pressing block and a releasing block arranged above the mounting plate, the pressing block and the releasing block are respectively connected with a power device, and the power device drives the pressing block and the releasing block to move respectively.
[0019] Through the design of the pressing block, the fixation of the clamp can be realized, ensuring the stability of the clamp during assembly. Through the design of the releasing block, the clamp can be unlocked and further opened, facilitating the insertion of the rubber pipe. This method significantly improves the speed of the assembly process and reduces the time of manual operation.
[0020] In some embodiments of the present application, the clamp comprises a ring with a circular ring structure, the two ends of the ring are arranged in a crossed manner and connected with a releasing lug, the ends of the ring are provided with clamps, and the two clamps are clamped to keep the ring in an opened state; the bottom surface of the pressing block is adapted to the structure of the top surface of the clamp, and the power device drives the pressing block to move downward and press on the ring of the clamp.
[0021] The bottom surface of the pressing block is designed according to the structure of the top surface of the clamp, which can better contact with the clamp and ensure uniform stress during pressing. This design improves the pressing effect and reduces assembly problems caused by poor contact. The design of the pressing block and the releasing block provides a stable and convenient releasing mechanism, significantly improving the assembly efficiency and quality.
[0022] In some embodiments of the present application, the release block corresponds to the release ear setting, and the power device drives the release block to move downward to act on the release ear of the clamp and further expand the ring. At this time, the two clamps are disengaged; the power device drives the release block to retreat to loosen the release ear, and the ring enters the contracted state.
[0023] The power device drives the release block to move downward, which can accurately act on the release ear to control the ring to enter the expanded state. Through the driving of the power device, the entire release process is automated, reducing the need for manual operation. This automated design not only improves the safety of operation, but also reduces errors caused by human factors.
[0024] In some embodiments of the present application, the rubber tube fixing device includes a profiling base and a profiling pressure seat. The profiling base is detachably installed on the sliding block, and the power cylinder is installed on the sliding block. The profiling pressure seat is detachably installed on the power cylinder, and the profiling pressure seat is located directly above the profiling base. The coupling surface of the profiling base and the profiling pressure seat is non-planar.
[0025] The profiling base and the profiling pressure seat are designed to be detachable, so that the operator can quickly replace the fixing device according to different models of rubber tubes. This flexibility improves the adaptability of the assembly tooling and can meet the diversified production needs. Through profiling design, accurate positioning of the rubber tube during assembly can be ensured, reducing quality problems caused by improper assembly. This high-precision assembly process is crucial to ensure the performance of the final product. The coupling surface of the profiling base and the profiling pressure seat is designed as a non-planar surface, which can provide a larger contact area and better stress distribution. This design can effectively reduce local stress concentration and reduce the risk of damage to the rubber tube during assembly.
[0026] In some embodiments of the present application, the profiling base is provided with a detection assembly for detecting whether the rubber tube is placed in place. The detection assembly is located at one end of the profiling base close to the clamp opening device.
[0027] The detection assembly can monitor in real time whether the rubber tube is placed in place, ensuring that the rubber tube is in the correct position during assembly. This real-time monitoring function can timely detect problems and reduce assembly errors caused by incorrect placement of the rubber tube. The detection assembly simplifies the operation process, and the operator does not need to perform additional manual inspection, which can quickly confirm the installation status of the rubber tube, thereby improving work efficiency.
[0028] In some embodiments of the present application, two start buttons are arranged on the base, and the start buttons are electrically connected with the control device, and the control device is used for controlling the power device and the down-pressing cylinder to work. In the present application, two start buttons are arranged for the safety of the equipment, and only when the operator presses the two start buttons with both hands can the equipment be successfully started, so that it can be ensured that the operator has left the assembly tooling with both hands, and the safety is ensured.
[0029] On the basis of common knowledge in the art, the above-mentioned embodiments can be combined arbitrarily. BRIEF DESCRIPTION OF DRAWINGS
[0030] The present application will be further described in detail below in combination with the drawings and preferred embodiments, but those skilled in the art will appreciate that the drawings are only drawn for the purpose of explaining the preferred embodiments, and therefore should not be regarded as a limitation on the scope of the present application. In addition, unless specifically indicated, the drawings only schematically show the composition or structure of the described objects and can contain exaggerated display, and the drawings are not necessarily drawn to scale.
[0031] Figure 1 is a structural schematic diagram of the present application;
[0032] Figure 2 is a partial structural schematic diagram of the present application;
[0033] Figure 3 is a structural schematic diagram of the present application in an assembled state Figure 1 ;
[0034] Figure 4 is a structural schematic diagram of the present application in an assembled state Figure 2 .
[0035] Specifically, the reference signs are as follows: 1, base; 2, moving assembly; 3, plug pipe fixing device; 31, mounting seat; 32, down-pressing seat; 33, tail seat; 34, supporting seat; 35, down-pressing cylinder; 4, clamp opening device; 41, mounting plate; 42, mounting groove; 43, pressing block; 44, releasing block; 5, clamp; 51, ring; 52, releasing lug; 6, rubber pipe fixing device; 8, profiling base; 9, profiling pressing seat; 10, detection assembly; 11, start button; 12, power cylinder; 13, power device; 14, rubber pipe; 15, plug pipe. DETAILED DESCRIPTION
[0036] The present application will be described in detail below in combination with the drawings.
[0037] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0038] Automatic assembly fixture for hose clamps, as shown in Example 1 Figures 1 to 3 As shown, the assembly fixture includes a base 1, a movable component 2, a connector fixing device 3, and a clamp opening device 4. This application's assembly fixture achieves rapid assembly of the hose 14 and clamp 5 through automated equipment, significantly shortening the production cycle. Compared to traditional manual operation, automated assembly can complete more assembly tasks in a shorter time, thereby improving overall production efficiency.
[0039] The clamp opening device 4 is mounted on the base 1, and the clamp 5 is installed inside the clamp opening device 4; the insertion pipe fixing device 3 is mounted on the base 1, and the insertion pipe 15 is installed on the insertion pipe fixing device 3, with the insertion end of the insertion pipe 15 extending out of the insertion pipe fixing device 3 and passing through the center of the clamp 5; the clamp opening device 4 and the insertion pipe fixing device 3 are designed as a structure that is relatively fixed on the base 1, which can ensure that the clamp 5 and the insertion pipe 15 are more stable after installation.
[0040] The movable component 2 includes a linear slide rail mounted on a base 1 and a slider mounted on the linear slide rail. The slide rail and slider are connected to a power device 13. The power device 13 drives the slider to move along the slide rail. The linear slide rail is axially aligned with the insertion end of the insertion tube 15. A hose fixing device 6 is provided on the slider, and a hose 14 is mounted on the hose fixing device 6, with the insertion end of the hose 14 extending out of the hose fixing device 6. Only the hose fixing device 6 is designed to be mounted on the slider, allowing for assembly through movement. Compared to existing technologies where both components are movable, the solution in this application offers more reliable movement and higher assembly precision.
[0041] By employing a fixing device and a moving component 2, the position of the hose 14 and clamp 5 is ensured to remain stable during assembly, reducing assembly errors caused by manual operation. This design guarantees precise alignment of each component during assembly, improving assembly quality.
[0042] The base 1 is equipped with two start buttons 11, one on the left and one on the right. The start buttons 11 are electrically connected to a control device, which is used to control the operation of the power unit 13 and the lowering cylinder 35. In this application, for equipment safety, two start buttons 11 are provided. The equipment can only be started successfully when the operator presses both start buttons 11 with both hands at the same time, which ensures that the operator's hands are removed from the assembly fixture, thus ensuring safety.
[0043] Example 2, as Figures 1 to 4As shown, the plug-in pipe fixing device 3 includes a mounting seat 31 and a pressing seat 32, the mounting seat 31 is detachably mounted on the base 1, the pressing seat 32 is detachably mounted on the pressing cylinder 35, and the pressing seat 32 is located directly above the mounting seat 31; the part of the plug-in pipe 15 close to the plug-in end is embedded in the mounting seat 31 and is pressed and fixed by the pressing seat 32. The detachable mounting seat 31 and the pressing seat 32 make the assembly tool have good modularization characteristics. Users can quickly replace or adjust components according to different assembly requirements, improving the flexibility and adaptability of assembly. The part of the plug-in pipe 15 close to the plug-in end is embedded in the mounting seat 31 and is pressed and fixed by the pressing seat 32, which can ensure the accurate positioning of the plug-in pipe 15 during assembly. This design effectively avoids poor assembly caused by position deviation, improving the overall assembly quality.
[0044] The plug-in pipe fixing device 3 also includes a tail seat 33 and a supporting seat 34, the supporting seat 34 is arranged close to the mounting seat 31, the supporting seat 34 supports part of the plug-in pipe 15, the tail seat 33 is arranged in a spaced manner with the supporting seat 34, and the tail end of the plug-in pipe 15 is embedded in the tail seat 33 for installation. The design of the supporting seat 34 can effectively support part of the plug-in pipe 15, reducing the sagging or deviation of the plug-in pipe 15 caused by gravity or external force during assembly. This supporting structure ensures the stability of the plug-in pipe 15 during assembly, improving the overall assembly quality. This design can adapt to plug-in pipes 15 of different lengths and diameters, and the arrangement of the supporting seat 34 and the tail seat 33 makes the assembly tool have good universality. Users can adjust according to actual needs to meet the assembly requirements of different types of plug-in pipes 15.
[0045] The clamp opening device 4 includes a mounting plate 41 fixed on the mounting seat 31, and the mounting plate 41 is located on the end face side of the mounting seat 31; the top surface of the mounting plate 41 is provided with a mounting groove 42 accommodating the clamp 5. By arranging a special mounting groove 42, the accurate positioning of the clamp 5 during assembly can be ensured, reducing the assembly errors caused by human factors. By assembling the mounting seat 31 of the plug-in pipe 15 and the mounting plate 41 of the clamp 5 together, the relative position of the clamp 5 and the plug-in pipe 15 after being installed on the assembly tool can be effectively ensured, ensuring the installation accuracy of the two.
[0046] The clamp opening device 4 includes a pressing block 43 and a release block 44 arranged above the mounting plate 41, the pressing block 43 and the release block 44 are respectively connected with the power device 13, and the power device 13 drives the movement of the pressing block 43 and the release block 44 respectively. Through the design of the pressing block 43, the fixation of the clamp 5 can be realized, ensuring the stability of the clamp 5 during assembly. Through the design of the release block 44, the unlocking of the clamp 5 and the further opening of the clamp 5 are realized, facilitating the insertion of the rubber pipe 14. This way significantly improves the speed of the assembly process and reduces the time of manual operation.
[0047] The clamp 5 includes a circular ring structure ring 51, the two ends of the ring 51 are cross arranged and connected with the release lug 52, the ends of the ring 51 are provided with clamps, and the two clamps are clamped to keep the ring 51 in an open state; the bottom surface of the pressing block 43 is adapted to the structure of the top surface of the clamp 5, and the power device 13 drives the pressing block 43 to move downward and press on the ring 51 of the clamp 5. The bottom surface of the pressing block 43 is designed according to the structure of the top surface of the clamp 5, which can better contact with the clamp 5 and ensure uniform stress during pressing. This design improves the pressing effect and reduces assembly problems caused by poor contact. The design of the pressing block 43 and the release block 44 provides a stable and convenient release mechanism, significantly improving assembly efficiency and quality.
[0048] The release block 44 is provided corresponding to the release lug 52, and the power device 13 drives the release block 44 to move downward and act on the release lug 52 of the clamp 5 and further open the ring 51, at which time the two clamps are disengaged; the power device 13 drives the release block 44 to retreat and loosen the release lug 52, and the ring 51 enters the contracted state. The power device 13 drives the release block 44 to move downward, which can accurately act on the release lug 52 to control the ring 51 to enter the open state. Through the driving of the power device 13, the entire release process is automated, reducing the need for manual operation. This automated design not only improves the safety of operation, but also reduces errors caused by human factors.
[0049] The other contents of example two are the same as example one.
[0050] Example three, as shown in Figures 2 to 4 The hose fixing device 6 includes a profiled base 8 and a profiled pressing seat 9, the profiled base 8 is detachably installed on the sliding block, the power cylinder 12 is installed on the sliding block, the profiled pressing seat 9 is detachably installed on the power cylinder 12, the profiled pressing seat 9 is located directly above the profiled base 8, and the coupling surface of the profiled base 8 and the profiled pressing seat 9 is non-planar. The detachable profiled base 8 and the profiled pressing seat 9 allow the operator to quickly replace the fixing device according to different models of the hose 14. This flexibility improves the adaptability of the assembly tooling and can meet diverse production needs. Through the profiled design, the precise positioning of the hose 14 during assembly can be ensured, reducing quality problems caused by improper assembly. This high-precision assembly process is crucial to ensuring the performance of the final product. The coupling surface of the profiled base 8 and the profiled pressing seat 9 is designed as a non-planar surface, which can provide a larger contact area and better stress distribution. This design can effectively reduce local stress concentration and reduce the risk of damage to the hose 14 during assembly.
[0051] The detection assembly 10 is arranged on the profiling base 8 and is located at one end of the profiling base 8 close to the clamp opening device 4. The detection assembly 10 can monitor in real time whether the rubber pipe 14 is placed in place, ensuring that the rubber pipe 14 is in the correct position during assembly. This real-time monitoring function can timely find problems and reduce assembly errors caused by incorrect placement of the rubber pipe 14. The arrangement of the detection assembly 10 simplifies the operation process, and the operator does not need to perform additional manual inspection, which can quickly confirm the installation state of the rubber pipe 14, thereby improving work efficiency.
[0052] The other contents of the third embodiment are the same as those of the first embodiment or the second embodiment.
[0053] The above has carried on the detailed introduction to the application, the principle and implementation mode of the application are set forth by applying specific examples in this paper, the above embodiment is only for helping understanding the application and core idea. It should be pointed out that for ordinary skilled person in the art, without departing from the principle of the application, the application can be improved and modified, and these improvements and modifications also fall within the protection scope of the claims of the application.
Claims
1. An automatic assembling tool for hose clamp, characterized in that, It comprises a base (1), a moving assembly (2), a plug pipe fixing device (3) and a clamp opening device (4). The clamp opening device (4) is arranged on one side of the plug pipe fixing device (3), and the clamp (5) is installed in the clamp opening device (4). The plug pipe fixing device (3) is arranged on the base (1), the plug pipe (15) is installed on the plug pipe fixing device (3), and the plug end of the plug pipe (15) extends out of the plug pipe fixing device (3) and passes through the center of the clamp (5). The moving assembly (2) comprises a linear slide rail arranged on the base (1) and a sliding block installed on the linear slide rail, the sliding block is connected with a power device (13), the power device (13) drives the sliding block to move along the slide rail when working, and the linear slide rail is arranged along the axial direction of the plug end of the plug pipe (15). A rubber pipe fixing device (6) is arranged on the sliding block, the rubber pipe (14) is installed on the rubber pipe fixing device (6), and the plug end of the rubber pipe (14) extends out of the rubber pipe fixing device (6).
2. The hose clamp automatic assembly tool according to claim 1, characterized in that, The plug pipe fixing device (3) comprises a mounting seat (31) and a pressing seat (32), the mounting seat (31) is detachably mounted on the base (1), the pressing seat (32) is detachably mounted on a pressing cylinder (35), and the pressing seat (32) is located directly above the mounting seat (31); the part of the plug pipe (15) close to the plug end is embedded into the mounting seat (31) and is pressed and fixed by the pressing seat (32).
3. The hose clamp automatic assembly tool of claim 2, wherein, The plug pipe fixing device (3) further comprises a tail seat (33) and a supporting seat (34), the supporting seat (34) is arranged close to the mounting seat (31), the supporting seat (34) supports the part of the plug pipe (15), the tail seat (33) is arranged in a spaced manner with the supporting seat (34), and the tail end of the plug pipe (15) is embedded into the tail seat (33) for installation.
4. The hose clamp automatic assembly tool of claim 2, wherein, The clamp opening device (4) comprises a mounting plate (41), the mounting plate (41) is fixed on the mounting seat (31) and located on the end face side of the mounting seat (31); a mounting groove (42) for accommodating the clamp (5) is arranged on the top surface of the mounting plate (41).
5. The hose clamp automatic assembly tool of claim 4, wherein, The clamp opening device (4) comprises a pressing block (43) and a releasing block (44) arranged above the mounting plate (41), the pressing block (43) and the releasing block (44) are respectively connected with the power device (13), and the power device (13) drives the pressing block (43) and the releasing block (44) to move when working.
6. The hose clamp automatic assembly tool of claim 5, wherein, The clamp (5) comprises a ring (51) in a circular ring structure, two end portions of the ring (51) are arranged in a crossed manner and are connected with releasing ears (52), the end portions of the ring (51) are provided with clamping pieces, and the two clamping pieces are clamped to keep the ring (51) in an open state; the bottom surface of the pressing block (43) is adapted to the structure of the top surface of the clamp (5), and the power device (13) drives the pressing block (43) to move downward and press and fix on the ring (51) of the clamp (5).
7. The hose clamp automatic assembly tool of claim 6, wherein, The release block (44) corresponds to the release lug (52) setting, the power device (13) works to drive the release block (44) to move downward and act on the release lug (52) of the clamp (5) and further open the ring (51), at this time, the two clamps are disengaged; the power device (13) works to drive the release block (44) to retreat and loosen the release lug (52), and the ring (51) enters the shrinked clamp state.
8. The hose clamp automatic assembly tool of claim 1, wherein, The rubber tube fixing device (6) comprises a profiling base (8) and a profiling pressure seat (9), the profiling base (8) is detachably installed on a sliding block, a power cylinder (12) is installed on the sliding block, the profiling pressure seat (9) is detachably installed on the power cylinder (12), the profiling pressure seat (9) is located directly above the profiling base (8), and the coupling surfaces of the profiling base (8) and the profiling pressure seat (9) are non-planar.
9. The hose clamp automatic assembly tool of claim 8, wherein, A detection assembly (10) for detecting whether the rubber tube (14) is arranged in place is arranged on the profiling base (8), and the detection assembly (10) is located at one end of the profiling base (8) close to the clamp opening device (4).
10. The hose clamp automatic assembly tool of claim 1, wherein, Two start buttons (11) are arranged on the base (1), the start buttons (11) are electrically connected with a control device, and the control device is used for controlling the power device (13) and the downward pressing cylinder (35) to work.
Citation Information
Patent Citations
Rubber tube assembling tool
CN209755073U