Automatic assembly tool for overflow valve at tail end of rubber pipe
The automated assembly fixture for the overflow valve at the end of the hose solves the problems of low precision and low efficiency in traditional manual assembly, and realizes efficient and accurate assembly of hoses and overflow valves, thereby improving the intelligence and safety of the production line.
Patent Information
- Application Number
- CN202520155962.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-22
AI Technical Summary
The assembly of traditional hose end overflow valves relies on manual operation, resulting in low assembly accuracy, low efficiency, and the possibility of human error, which cannot meet the high-efficiency production requirements of modern automobile manufacturing.
An automated hose end overflow valve assembly fixture is adopted, including a base, a moving component, a hose fixing device, and first and second detection components. It uses infrared detection probes and mechanized means for precise assembly, and combines a detachable marking component and a contour base to achieve automated control and detection.
It improves assembly efficiency and precision, reduces manual operation, lowers the possibility of human error, and enhances the intelligence level and production efficiency of the production line.
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Figure CN223748934U_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 end overflow valve. BACKGROUND
[0002] In modern automobile manufacturing, the performance of the hydraulic system directly affects the safety and reliability of the vehicle. As an important component of the hydraulic system, the assembly precision and efficiency of the rubber tube are crucial to the overall system performance. The traditional assembly method of the rubber tube end overflow valve mainly relies on manual operation, which usually requires multiple workers to cooperate, and the process is complicated and inefficient.
[0003] For manual assembly, the following problems exist: When manually holding the rubber tube, it is easy to cause position deviation of the rubber tube, affecting the assembly precision. During the process of installing the overflow valve into the rubber tube, the depth of installation cannot be accurately controlled by manual operation, resulting in inaccurate insertion position of the flow limiting valve. With the rapid development of the automobile industry, the manual assembly method cannot meet the increasing production demand, resulting in low production efficiency.
[0004] Therefore, it is particularly necessary to develop an automatic overflow valve assembly tool with high automation. There are also automatic assembly tools at present, and the related prior art such as Chinese patent application "Rubber tube flow limiting valve assembly equipment", application number: CN201921719896.3, discloses a machine base, the surface of the machine base is provided with a rubber tube positioning section profiling base, a rubber tube flattening section base, a flow limiting valve profiling base and a valve pushing mechanism in sequence, the positioning section pressing mechanism is arranged above the rubber tube positioning section profiling base, the rubber tube clamping groove is arranged on the top surface of the rubber tube flattening section base, and the rubber tube flattening mechanism is arranged above the rubber tube flattening section base, the recess matched with the flow limiting valve is arranged on the top surface of the flow limiting valve profiling base, and the flow limiting valve conveying mechanism is arranged above the flow limiting valve profiling base, the flow limiting valve conveying mechanism conveys the flow limiting valve to the flow limiting valve profiling base, and the valve pushing mechanism pushes the flow limiting valve on the flow limiting valve profiling base into the rubber tube.
[0005] The automatic assembly tool realizes quick and accurate butt joint of the valve body and the rubber tube through mechanization, which significantly improves the production efficiency. However, the above patent application still relies on manual inspection of the placement of parts, which not only increases the work burden of the operator, but also may cause human error. During the assembly process, the parts may not be placed correctly or the butt joint may be poor. This problem not only affects the quality of assembly, but also may cause failure in subsequent use, thereby increasing maintenance cost and time. CONTENT OF THE UTILITY MODEL
[0006] The technical problem to be solved by the present application is to provide an automatic assembly tool for a rubber tube end overflow valve, to improve assembly efficiency and precision, reduce labor cost, and improve the intelligent level of the production line.
[0007] The technical scheme adopted by the present application is: a rubber pipe end overflow valve automatic assembly tool, comprising a base, a moving assembly and a rubber pipe fixing device;
[0008] The rubber pipe fixing device is arranged on the base, and the rubber pipe fixing device comprises a profiling base and a profiling pressure seat, which cooperate to achieve pressure fixation of the rubber pipe assembly end, and the profiling base is provided with a first detection assembly for detecting whether the rubber pipe is placed in place;
[0009] The moving assembly is arranged on the base, and the moving assembly comprises a linear slide rail arranged on the base and a sliding block mounted on the linear slide rail, wherein the sliding block is connected to a power device, and the power device drives the sliding block to move along the slide rail when working;
[0010] The sliding block is provided with an assembly assembly and a second detection assembly, and the overflow valve is sleeved on the assembly assembly, and the sliding block moves to switch the second detection assembly or the assembly assembly relative to the rubber pipe; when the assembly assembly is opposite to the rubber pipe, the assembly assembly moves to drive the overflow valve to be inserted into the rubber pipe; when the second detection assembly is opposite to the rubber pipe, the second detection assembly works to detect the position of the overflow valve in the rubber pipe.
[0011] Compared with the prior art, the present application has the following advantages: first, by introducing an automatic assembly tool, the time and labor intensity of manual operation are reduced, and the assembly process of the rubber pipe and the overflow valve is more efficient. The use of mechanical means for assembly reduces the dependence on human resources and can maintain stable production efficiency in large-scale production. Second, the automatic assembly tool can ensure that the overflow valve and the rubber pipe are assembled on the same axis, thereby improving the consistency and accuracy of the assembly and reducing errors caused by human factors. Third, the first detection assembly introduced in the present application can monitor the placement state of the rubber pipe, and the second detection assembly introduced can monitor the placement state and position of the overflow valve, reducing the possibility of human error. This not only improves the reliability of the assembly, but also significantly reduces the need for manual inspection and improves the intelligent level of the overall production line.
[0012] In some embodiments of the present application, the second detection assembly comprises an infrared detection probe electrically connected to a control device. The infrared detection probe is an application of the prior art, and the infrared detection probe emits infrared light beams, which are sent into the rubber pipe. When the infrared light beams meet the overflow valve, part of the light is reflected back to the infrared detection probe by the valve body. According to the intensity and time of the reflected light, it can be judged whether the overflow valve exists and whether the position of the overflow valve is accurate, and the position of the overflow valve can be accurately detected. The infrared detection probe is used in an automatic control system to ensure the accuracy and reliability of the assembly process.
[0013] In some embodiments of the present application, the assembly component includes a top rod connected with a linear cylinder, and an end of the top rod is provided with a sleeve rod in an axial direction, an outer diameter of the sleeve rod is adapted to an inner diameter of the overflow valve, and an outer diameter of the top rod is greater than the inner diameter of the overflow valve, and the top rod is in contact with the overflow valve.
[0014] The linear cylinder drives the top rod and the overflow valve to move into the rubber tube until the overflow valve moves to a predetermined position, the linear cylinder drives the top rod to retreat, at this time, the overflow valve is in interference fit connection with the inner wall of the rubber tube, the overflow valve is kept at the original position by the force of the rubber tube, and the sleeve rod is pulled out of the overflow valve. The linear cylinder drives the top rod to move back to the original position.
[0015] In some embodiments of the present application, a marking assembly is further arranged on the base and located on one side of the profiling base. By directly marking during assembly, the subsequent separate marking step is avoided, thereby reducing the time of manual operation and improving the overall production efficiency. The detachable design of the marking assembly enables it to be adjusted or replaced according to different production needs, adapts to different types of rubber tubes or assembly requirements, and improves the flexibility of the production line.
[0016] In some embodiments of the present application, the marking assembly includes an inclined cylinder, a seal, a first mounting block and a second mounting block, the first mounting block is connected with the inclined cylinder, the second mounting block is detachably connected with the seal, the first mounting block and the second mounting block are connected through an elastic assembly, and the second mounting block is movable relative to the first mounting block under stress.
[0017] By detachably connecting the second mounting block with the seal, the seal can be quickly replaced according to different marking needs, adapting to different product or batch marking requirements. The design of the elastic assembly allows the second mounting block to have a certain range of movement under stress, which can effectively absorb the impact force, reduce damage or mislabeling caused by impact, and improve the reliability of marking.
[0018] In some embodiments of the present application, the profiling base is detachably mounted on the base, the profiling pressure seat is detachably mounted on the power device, the profiling pressure seat is located directly above the profiling base, the top surface of the profiling base is provided with a lower groove matched with the bottom of the rubber tube, the bottom surface of the profiling pressure seat is provided with an upper groove matched with the top of the assembly end of the rubber tube, and the coupling surfaces of the profiling base and the profiling pressure seat are non-planar.
[0019] The detachable structure design of the present application can replace the rubber tube fixing device according to different sizes and structures, meet diversified assembly requirements, and improve the adaptability of the production line. The first detection assembly is directly matched and mounted on the profiling base in the present application, directly realizing the detection of the rubber tube, and multiple mounting positions are not needed to be arranged on the base for adaptability.
[0020] In some embodiments of the present application, the first detection assembly is located at one end of the profiling base close to the moving assembly, both sides of the profiling base are provided with mounting grooves, mounting frames are arranged at the mounting grooves, and the first detection assembly is mounted on the mounting frames.
[0021] The design of the mounting grooves allows flexible adjustment of the position of the first detection assembly according to different detection requirements or equipment configurations, adapts to diversified assembly requirements, and improves the flexibility of the production line.
[0022] In some embodiments of the present application, a waist-shaped hole is formed at one end of the mounting frame, one end of the mounting frame is embedded in the mounting groove, the waist-shaped hole matches the mounting hole, and the mounting frame is locked in the mounting groove by bolts.
[0023] The shape of the waist-shaped hole allows a certain adjustment space, so that the mounting frame can be fine-tuned as needed during installation, adapt to different assembly requirements, and improve the flexibility of the equipment. The bolt locking mode provides strong connection and ensures that the mounting frame will not loosen during work due to vibration or other factors, enhancing the safety of the overall structure. In addition, the bolt locking mode makes the maintenance and replacement process simpler, and the operator can quickly disassemble and replace the mounting frame, reducing downtime and improving production efficiency.
[0024] In some embodiments of the present application, the first detection assembly includes a transmitter and a receiver arranged opposite to each other, the transmitter sends light signals to the receiver, and the rubber tube passes between the transmitter and the receiver. Specifically, the rubber tube can be designed to block the light signals emitted by the transmitter after installation, and then the receiver can determine whether the rubber tube is installed in place according to whether the light signals can be received.
[0025] In some embodiments of the present application, the profiling base is provided with a guide protrusion and / or a guide recess, the profiling pressure seat is provided with a guide recess corresponding to the guide protrusion or a guide protrusion corresponding to the guide recess, and the guide protrusion is a hemispherical structure. Preferably, the profiling base has guide protrusions or guide recesses at three corners.
[0026] The design of the guide protrusion and the guide recess can effectively guide the docking between the profiling pressure seat and the profiling base, ensure their accurate positioning during assembly, and thus improve the assembly precision. Moreover, even if there is a small amount of misalignment during the guided docking, the profiling base and the profiling pressure seat are in smooth contact and guidance, the friction is small, and the situation of being stuck is not easy to occur.
[0027] The base is provided with two left and right start buttons, the start buttons are electrically connected with the control device, and the control device is used to control the power device and the down pressure cylinder.
[0028] In the application, in order to ensure the safety of the device, two starting buttons are arranged, and only the operator can successfully start by pressing the two starting buttons with both hands, which can ensure that the operator has left the assembly tooling with both hands, and ensure safety.
[0029] On the basis of common sense in the art, the above-mentioned embodiments can be combined arbitrarily. BRIEF DESCRIPTION OF DRAWINGS
[0030] The application will be further described in detail below in conjunction 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 limiting the scope of the application. In addition, unless specifically indicated, the drawings only schematically represent the composition or structure of the described objects and can contain exaggerated displays, and the drawings are not necessarily drawn to scale.
[0031] Figure 1 is a structural schematic view of the application;
[0032] Figure 2 is a top view of the base of the application;
[0033] Figure 3 is a structural schematic view of the base of the application.
[0034] Wherein, the reference signs are specifically explained as follows: 1, base; 2, profiling base; 3, profiling pressing seat; 4, first detection assembly; 5, straight line sliding rail; 6, sliding block; 7, power device; 8, assembly assembly; 81, straight line cylinder; 82, top rod; 83, sleeve rod; 9, overflow valve; 10, second detection assembly; 11, marking assembly; 12, inclined cylinder; 13, seal; 14, first mounting block; 15, second mounting block; 16, elastic assembly; 17, guide protrusion; 18, guide recess; 19, rubber tube; 20, starting button. DETAILED DESCRIPTION
[0035] The application will be described in detail below in conjunction with the drawings.
[0036] In order to make the purpose, technical scheme and advantages of the application more clear and obvious, the application will be further described in detail below in conjunction with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the application, and are not used to limit the application.
[0037] Rubber tube end overflow valve automatic assembly tooling, example one is as follows: Figure 1 , Figure 3As shown: It includes a base 1, a moving component and a hose 19 fixing device; the hose 19 fixing device is set on the base 1, and the hose 19 fixing device includes a contour base 2 and a contour pressure seat 3. The contour base 2 and the contour pressure seat 3 cooperate to press the assembly end of the hose 19.
[0038] The moving component is mounted on the base 1. The moving component includes a linear slide rail 5 mounted on the base 1 and a slider 6 mounted on the linear slide rail 5. The slider 6 is connected to a power device 7. The power device 7 drives the slider 6 to move along the slide rail.
[0039] The slider 6 is equipped with an assembly component 8 and a second detection component 10. An overflow valve 9 is sleeved on the assembly component 8. The slider 6 moves to switch the second detection component 10 or the assembly component 8 to be opposite the hose 19. When the assembly component 8 is opposite the hose 19, the assembly component 8 moves to drive the overflow valve 9 to be inserted into the hose 19. The automated assembly fixture can ensure that the overflow valve 9 and the hose 19 are assembled on the same axis, thereby improving the consistency and accuracy of the assembly and reducing errors caused by human factors.
[0040] The contour base 2 is equipped with a first detection component 4 for detecting whether the hose 19 is properly positioned. When the second detection component 10 is opposite the hose 19, the second detection component 10 detects the position of the overflow valve 9 inside the hose 19. This application further introduces the first detection component 4 to monitor the placement status of the hose 19, and the second detection component 10 to monitor the placement status and position of the overflow valve 9, reducing the possibility of human error. This not only improves the reliability of assembly but also significantly reduces the need for manual inspection, enhancing the overall intelligence level of the production line.
[0041] This application reduces the time and labor intensity of manual operation by introducing automated assembly tooling, making the assembly process of hose 19 and overflow valve 9 more efficient. Using mechanized assembly reduces reliance on human resources and enables stable production efficiency in large-scale production.
[0042] Example 2, as Figures 1 to 3 As shown, the second detection component 10 includes an infrared detection probe electrically connected to the control device. The infrared detection probe is a prior art application; it emits an infrared beam that is directed into the hose 19. When the infrared beam encounters the overflow valve 9, some of the light is reflected back to the infrared detection probe by the valve body. Based on the intensity and duration of the reflected light, the presence and position of the overflow valve 9 can be determined, enabling precise detection of the overflow valve 9's position. The infrared detection probe is used in automated control systems to ensure the accuracy and reliability of the assembly process.
[0043] The assembly component 8 includes a top rod 82 connected with a linear cylinder 81, and a sleeve rod 83 is arranged at the end of the top rod 82 in the axial direction, the outer diameter of the sleeve rod 83 is adapted to the inner diameter of the overflow valve 9, the outer diameter of the top rod 82 is larger than the inner diameter of the overflow valve 9, and the top rod 82 is in contact with the overflow valve 9; the linear cylinder 81 drives the top rod 82 and the overflow valve 9 to move into the rubber tube 19 until the overflow valve 9 moves to a predetermined position, the linear cylinder 81 drives the top rod 82 to retreat, at this time, the overflow valve 9 is in interference fit connection with the inner wall of the rubber tube 19, the overflow valve 9 is kept at the original position by the force of the rubber tube 19, and the sleeve rod 83 is pulled out of the overflow valve 9. The linear cylinder 81 drives the top rod 82 to move back to the original position.
[0044] The base 1 is also provided with a marking assembly 11 located on one side of the profiling base 2. By directly marking during assembly, the subsequent separate marking step is avoided, thereby reducing the time of manual operation and improving the overall production efficiency. The detachable design of the marking assembly 11 enables it to be adjusted or replaced according to different production needs, adapt to different types of rubber tubes 19 or assembly requirements, and improve the flexibility of the production line.
[0045] The marking assembly 11 includes an inclined cylinder 12, a seal 13, a first mounting block 14 and a second mounting block 15, the first mounting block 14 is connected with the inclined cylinder 12, the second mounting block 15 is detachably connected with the seal 13, the first mounting block 14 and the second mounting block 15 are connected through an elastic assembly 16, and the second mounting block 15 is movable relative to the first mounting block 14 under stress. By detachably connecting the second mounting block 15 with the seal 13, the seal 13 can be quickly replaced according to different marking needs, adapting to different product or batch marking requirements. The design of the elastic assembly 16 allows the second mounting block 15 to have a certain range of movement under stress, which can effectively absorb impact force, reduce damage or mislabeling caused by impact, and improve the reliability of marking.
[0046] The other contents of example two are the same as those of example one.
[0047] Example three, as Figures 1 to 3As shown, the profiling base 2 is detachably mounted on the base 1, and the profiling pressure seat 3 is detachably mounted on the power device 7, and the profiling pressure seat 3 is located directly above the profiling base 2. The top surface of the profiling base 2 is provided with a lower groove matched with the bottom of the rubber pipe 19, and the bottom surface of the profiling pressure seat 3 is provided with an upper groove matched with the top of the assembly end of the rubber pipe 19. The coupling surface of the profiling base 2 and the profiling pressure seat 3 is non-planar. The detachable structure design of the present application can replace the rubber pipe 19 fixing device according to different sizes and structures, meet the diversified assembly requirements, and improve the adaptability of the production line. The first detection assembly is directly matched and mounted on the profiling base 2, and the detection of the rubber pipe 19 is directly realized, without the need to set multiple mounting positions on the base 1 for adaptability.
[0048] The first detection assembly 4 is located at one end of the profiling base 2 close to the moving assembly, and the two side surfaces of the profiling base 2 are provided with mounting grooves, and the mounting grooves are provided with mounting frames. The first detection assembly 4 is mounted on the mounting frame. The design of the mounting groove allows flexible adjustment of the position of the first detection assembly according to different detection requirements or equipment configuration, adapts to diversified assembly requirements, and improves the flexibility of the production line.
[0049] One end of the mounting frame is provided with a waist-shaped hole, one end of the mounting frame is embedded in the mounting groove, the waist-shaped hole is matched with the mounting hole, and the mounting frame is locked in the mounting groove by bolts. The shape of the waist-shaped hole allows a certain adjustment space, so that the mounting frame can be fine-tuned as needed during installation, adapt to different assembly requirements, and improve the flexibility of the equipment. The bolt locking mode provides strong connection, ensures that the mounting frame will not loosen during work due to vibration or other factors, enhances the safety of the overall structure, and the bolt locking mode makes the maintenance and replacement process simpler, and the operator can quickly disassemble and replace the mounting frame, reduces downtime, and improves production efficiency.
[0050] The first detection assembly 4 includes left and right oppositely arranged transmitters and receivers. The transmitter sends optical signals to the receiver, and the rubber pipe 19 passes between the transmitter and the receiver. Specifically, the rubber pipe 19 can be designed to block the light signal emitted by the transmitter after being installed in place, and then the receiver can judge whether the rubber pipe 19 is installed in place according to whether the light signal can be received.
[0051] The profiled base 2 is provided with a guide protrusion 17 and / or a guide recess 18, and the profiled pressing base 3 is provided with a guide recess 18 corresponding to the guide protrusion 17 or a guide protrusion 17 corresponding to the guide recess 18; the guide protrusion 17 is a hemispherical structure. Preferably, the profiled base 2 is provided with guide protrusions 17 or guide recesses 18 at three corners. The design of the guide protrusion 17 and the guide recess 18 can effectively guide the docking between the profiled pressing base 3 and the profiled base 2, ensure their accurate positioning during assembly, and improve the assembly accuracy. Moreover, even if there is a small amount of misalignment during the guided docking, the profiled base 2 and the profiled pressing base 3 are in smooth contact and the force is small, so it is not easy to be stuck.
[0052] The base 1 is provided with two left and right start buttons 20, and the start button 20 is electrically connected with the control device, and the control device is used for controlling the power device 7 and the down pressure cylinder. In the present application, in order to ensure the safety of the equipment, two start buttons 20 are provided, and only when the operator presses the two start buttons 20 with both hands can the equipment be successfully started, which can ensure that the operator has left the assembly tooling with both hands, and ensure safety.
[0053] The other contents of the third embodiment are the same as those of the first embodiment or the second embodiment.
[0054] The above has introduced the present application in detail, and the principle and implementation mode of the present application have been described by applying specific examples. The above description of the embodiments is only used to help understand the present application and the core idea. It should be pointed out that for ordinary skilled in the art, without departing from the principle of the present application, the present application can be improved and modified in several ways, and these improvements and modifications also fall within the protection scope of the present application.
Claims
1. An automatic assembly tool for a hose end spill valve, characterized by, It comprises a base (1), a moving assembly and a rubber tube (19) fixing device; The rubber tube (19) fixing device is arranged on the base (1), and comprises a profiling base (2) and a profiling pressure seat (3), which cooperate to realize the pressure fixation of the assembly end of the rubber tube (19); the profiling base (2) is provided with a first detection assembly (4) for detecting whether the rubber tube (19) is arranged in place; The moving assembly is arranged on the base (1) and comprises a linear slide rail (5) arranged on the base (1) and a sliding block (6) arranged on the linear slide rail (5); the sliding block (6) is connected with a power device (7), and the power device (7) drives the sliding block (6) to move along the slide rail when working; The sliding block (6) is provided with an assembly assembly (8) and a second detection assembly (10); an overflow valve (9) is sleeved on the assembly assembly (8); the sliding block (6) moves to switch the second detection assembly (10) or the assembly assembly (8) relative to the rubber tube (19); when the assembly assembly (8) is opposite to the rubber tube (19), the assembly assembly (8) moves to drive the overflow valve (9) to be inserted into the rubber tube (19); when the second detection assembly (10) is opposite to the rubber tube (19), the second detection assembly (10) works to detect the position of the overflow valve (9) in the rubber tube (19).
2. The hose end spill valve automatic assembly tool of claim 1, wherein, The second detection assembly (10) comprises an infrared detection probe electrically connected with a control device.
3. The automatic assembly tool for the hose end overflow valve according to claim 1, characterized in that, The assembly assembly (8) comprises a top rod (82) connected with a linear air cylinder (81); the end of the top rod (82) is provided with a sleeve rod (83) in the axial direction; the outer diameter of the sleeve rod (83) is adapted to the inner diameter of the overflow valve (9); the outer diameter of the top rod (82) is larger than the inner diameter of the overflow valve (9); and the top rod (82) is connected with the overflow valve (9).
4. The hose end spill valve automatic assembly tool of claim 1, wherein, The base (1) is further provided with a marking assembly (11) located on one side of the profiling base (2).
5. The hose end spill valve automatic assembly tool of claim 4, wherein, The marking assembly (11) comprises an inclined air cylinder (12), a seal (13), a first mounting block (14) and a second mounting block (15); the first mounting block (14) is connected with the inclined air cylinder (12); the second mounting block (15) is detachably connected with the seal (13); the first mounting block (14) and the second mounting block (15) are connected through an elastic assembly (16); and the second mounting block (15) is movable relative to the first mounting block (14) under stress.
6. The hose end spill valve automatic assembly tool of claim 1, wherein, The profiling base (2) is detachably mounted on the base (1); the profiling pressure seat (3) is detachably mounted on the power device (7) and located directly above the profiling base (2); the top surface of the profiling base (2) is provided with a lower groove matched with the bottom of the rubber tube (19); the bottom surface of the profiling pressure seat (3) is provided with an upper groove matched with the top of the assembly end of the rubber tube (19); and the coupling surfaces of the profiling base (2) and the profiling pressure seat (3) are non-planar.
7. The hose end spill valve automatic assembly tool of claim 1, wherein, The first detection assembly (4) is located at one end of the profiling base (2) close to the moving assembly, both sides of the profiling base (2) are provided with mounting grooves, mounting frames are arranged at the mounting grooves, and the first detection assembly (4) is mounted on the mounting frames.
8. The hose end spill valve automatic assembly tool of claim 7, wherein, A waist-shaped hole is formed at one end of the mounting frame, one end of the mounting frame is embedded into the mounting groove, the waist-shaped hole is matched with the mounting hole, and the mounting frame is locked at the mounting groove by bolts.
9. The hose end spill valve automatic assembly tool of claim 1, wherein, The first detection assembly (4) comprises left and right oppositely arranged transmitters and receivers, the transmitter sends optical signals to the receiver, and the rubber tube (19) passes through between the transmitter and the receiver.
10. The hose end spill valve automatic assembly tool of claim 1, wherein, The profiling base (2) is provided with a guide protrusion (17) and / or a guide recess (18), the profiling pressure base (3) is provided with a guide recess (18) corresponding to the guide protrusion (17) or a guide protrusion (17) corresponding to the guide recess (18); and the guide protrusion (17) is in a semispherical structure.
Citation Information
Patent Citations
Rubber tube flow-limiting valve assembling equipment
CN210789889U