A stainless steel water distributor detection device
By designing a stainless steel water distributor detection device that includes installation frame, detection frame and airtightness detection components, the defect that existing equipment cannot timely determine the airtightness of the water distributor area is solved, and accurate and rapid detection of the vessel properties of the stainless steel water distributor is achieved, helping to quickly locate problems in the production process.
Patent Information
- Application Number
- CN202411455526.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2044-10-18
AI Technical Summary
The existing stainless steel water distributor airtight detection equipment cannot determine in time which area of the water distributor has airtightness problems, resulting in the inability to quickly determine which process section has problems.
A detection device including a mounting frame, a detection frame and an airtightness detection component is designed. The detection frame is equipped with equal spacing airtightness detection components, including installation chambers, pressure sensors, limit plates, Velcro and detection test strips. Through the uniform movement of the detection frame and the driving of the transmission mechanism, the airtightness detection of different areas of the stainless steel water distributor is achieved.
The accuracy and rapidity of the vessel detection of stainless steel water distributors can be accurately positioned, and the severity of the problem can be judged through pressure signals, which helps to quickly locate problems in the processing and production process.
Smart Images

Figure CN119197928B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of stainless steel water distributors detection, and specifically relates to a stainless steel water distributor detection device. Background Art
[0002] A stainless steel water distributor is a water distributor made of stainless steel raw materials. A manifold is a device for connecting the supply and return water of each heating pipe in a water system. The water distributors used in floor heating and air conditioning systems are preferably made of brass, and most of the water distributors used for household meter transformation in the tap water supply system are made of PP or PE. Exhaust valves are provided for both the supply and return water, and many water distributors also have drain valves for the supply and return water. A "Y" - type filter should be provided at the front end of the water supply. Valves should be provided for each branch pipe of the water supply main pipe to adjust the amount of water.
[0003] In the prior art, after the production of stainless steel water distributors, it is necessary to monitor their airtightness to ensure good airtightness. However, during the airtightness detection process, only whether there is an airtightness problem can be detected singly. In this way, it is impossible to timely determine which area of the water distributor has an airtightness problem, and thus it is impossible to quickly determine which process section has a problem.
[0004] After retrieval, as a Chinese patent document discloses a stainless steel water distributor airtightness detection device (Publication No.: CN115855393A). The present invention provides a stainless steel water distributor airtightness detection device, belonging to the technical field of water distributor detection. It includes a frame body, a lifting assembly, a bracket, a left - hand cylinder, a right - hand baffle, multiple top cylinders and an air - filling device. The lifting assembly is arranged on the frame body, and the upper end of the lifting assembly is connected with a lifting platform. The lifting assembly is used to push the lifting platform to adjust its height along the height direction of the frame body. The bracket is arranged on the upper end of the lifting platform, and the upper end of the bracket is used to place the stainless steel water distributor to be detected. The left - hand cylinder is arranged on the upper end of the lifting platform and is used to push and seal the left - hand air hole. The right - hand baffle is connected to the lifting platform and is used to seal the right - hand air hole. Multiple top cylinders are all connected to the frame body and are all used to seal the upper - side air holes. The air - filling device is used to connect with the stainless steel water distributor and supply gas. After the stainless steel water distributor is filled with gas, it is judged whether there is air leakage. The present invention has the advantages of being able to detect the airtightness of stainless steel water distributors with different lengths and heights, fast detection speed, good effect and high efficiency. However, it still has the following defects:
[0005] Although the above - mentioned stainless steel water distributor airtightness detection device can detect the airtightness of stainless steel water distributors with different lengths and heights, with fast detection speed, good effect and high efficiency, during the airtightness detection process, only whether there is an airtightness problem can be detected singly. In this way, it is impossible to timely determine which area of the water distributor has an airtightness problem, and thus it is impossible to quickly determine which process section has a problem. Summary of the Invention
[0006] In order to solve the problems raised in the above background technology, the present invention provides a stainless steel water separator detection device, which can only detect whether there is an airtightness problem during the airtightness detection process. In this way, it is impossible to timely determine which area of the water separator has the airtightness problem, so it is impossible to quickly determine which process section has the problem.
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a stainless steel water divider detection device, comprising a mounting frame, a base is installed between the inner walls on both sides of the mounting frame, the outer wall of the base is sleeved with a sliding sleeve, and the top of the sliding sleeve is installed with a detection frame, and the inner wall of the detection frame is evenly spaced and equipped with a plurality of air tightness detection components, one side of the detection frame is provided with a plug-in column, the other side of the detection frame is provided with a mounting plate, and the end of the mounting plate away from the detection frame is provided with a second inflatable device body, the output end of the second inflatable device body passes through the interior of the mounting plate and is connected to one end of the inflatable tube, the inflatable tube is arranged in the middle of the resistance tube, and one end of the resistance tube is connected to the end of the mounting plate away from the second inflatable device body, and the other end of the resistance tube is provided with a silicone sealing pad.
[0008] Preferably, the airtightness detection component includes an installation cavity, a pressure sensor, a limiting plate, a male Velcro, a female Velcro and a detection test paper, the inner side wall of the detection frame is connected to one end of the installation cavity, and a pressure sensor is installed inside the installation cavity, the detection end of the pressure sensor is in conflict with one end of the detection test paper, and one end of the detection test paper is installed with a female Velcro, one end of the female Velcro is connected to one end of the male Velcro, the male Velcro is installed at one end of the limiting plate, and the limiting plate is installed on the inner side wall of the installation cavity.
[0009] Preferably, a guide slider is installed at the bottom end of the sliding sleeve, and the guide slider is movably connected to the inside of the guide slot, a first connecting screw sleeve is installed through the inside of the guide slider, and the inner side wall of the first connecting screw sleeve is meshedly connected to the first transmission screw.
[0010] Preferably, one end of the first transmission screw is transmission connected to one end of the first bevel gear, and one end of the first bevel gear is meshedly connected to the second bevel gear, the bottom end of the second bevel gear is transmission connected to the third bevel gear through a linkage rod, and one end of the third bevel gear is meshedly connected to the fourth bevel gear, and one end of the fourth bevel gear is transmission connected to the output end of the first motor.
[0011] Preferably, one end of the mounting frame is provided with a storage cavity, and rotation cavities for the rotation of the wheels are symmetrically installed inside the storage cavity. One ends of the rotation wheels, which are away from the winding shaft, are all connected to the reset spring pieces, and a winding shaft is connected between the rotation wheels. A connecting belt is wound around the outer side wall of the winding shaft, and the connecting belt passes through the inside of the guiding cavity and is connected to one end of the plugging post.
[0012] Preferably, a first inflating device body is installed at one end of the plugging post close to the connecting belt, and a sealing balloon is arranged on the outer side wall of the plugging post. The sealing balloon is connected to the output end of the first inflating device body through a transmission pipe arranged inside the plugging post. On both sides of the plugging post, there are arranged contact sealing pieces symmetrically on both sides of the sealing balloon.
[0013] Preferably, movable sleeves are installed on both sides and the top end of the mounting plate, and adjusting plates are installed through the inside of the movable sleeves. One ends of the adjusting plates are all connected to one end of the connecting plate.
[0014] Preferably, a second connecting screw sleeve is installed through the inside of the connecting plate, and a second driving screw is meshed with the inner side wall of the second connecting screw sleeve. The second driving screw is movably connected between the mounting frames, and one end of the mounting frame is connected to one end of the mounting plate away from the detection frame.
[0015] Preferably, a second motor is installed at one end of the mounting frame away from the mounting plate, and the output end of the second motor passes through one end of the mounting frame and is in transmission connection with one end of the second driving screw.
[0016] Preferably, a plugging sleeve is installed at one end of the adjusting plate, and a plugging plate is inserted into the inside of the plugging sleeve. A contact balloon is installed at one end of the plugging plate close to the mounting plate. First contact blocks are installed at equal intervals at both ends of the plugging plate, and the outer side walls of the first contact blocks are in contact with the outer side walls of the second contact blocks. The second contact blocks are installed at equal intervals at one end of the flexible sheet, and the flexible sheets are symmetrically installed inside the plugging sleeve.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0018] 1. In the present invention, through the provided airtightness detection component, during the use process, the detection frame moves uniformly from the outside of the stainless - steel water distributor during the detection process. If there is an airtightness problem with the stainless - steel water distributor, due to the gas pressure, the detection test paper at the corresponding position is impacted, causing the pressure sensor to receive a pressure signal. In this way, the airtightness of the stainless - steel water distributor can be accurately detected. This detection method can accurately locate the area with airtightness problems in the detected stainless - steel water distributor. At the same time, based on the pressure signal generated by the pressure sensor, the severity of the problem can be judged, which helps to detect and judge the problems existing in the processing and production process through this method.
[0019] 2. During the use process of the present invention, stainless - steel water distributors of different sizes can be quickly limited in position for airtightness detection. The second transmission lead screw and the second connecting lead screw sleeve form a lead - screw transmission structure to drive the connecting plate to move. In this way, the adjusting plate is synchronously driven by the connecting plate to limit the position of stainless - steel water distributors of different sizes for airtightness detection. And through the mutual adjustment between the plug - in plates, the plug - in plates can be adapted to the flange of the stainless - steel water distributor. After the plug - in plates move, they are self - limited by the mutual contact between the first abutting block and the second abutting block. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is the front - view structural schematic diagram of the present invention;
[0021] Figure 2 is the combined part - structure schematic diagram of the sliding sleeve, detection frame, installation cavity, guide slider and guide chute in the present invention;
[0022] Figure 3 is the combined part - structure schematic diagram of the installation cavity, pressure sensor and detection test paper in the present invention;
[0023] Figure 4 is the internal part - structure schematic diagram of the storage cavity in the present invention;
[0024] Figure 5 is the combined part - structure schematic diagram of the plug - in column, first inflation device body, sealing balloon and abutting sealing piece in the present invention;
[0025] Figure 6 is the combined part - structure schematic diagram of the inflation tube, abutting tube, movable sleeve, adjusting plate, plug - in plate and abutting balloon in the present invention;
[0026] Figure 7 is the combined part - structure schematic diagram of the mounting plate, second inflation device body, movable sleeve, adjusting plate, connecting plate, second connecting lead - screw sleeve, second transmission lead screw and mounting bracket in the present invention;
[0027] Figure 8 This is a schematic diagram of the enlarged structure of part A in the present utility model; Figure 2 in the present utility model;
[0028] Figure 9 This is a schematic diagram of the enlarged structure of part B in the present utility model; Figure 1 in the present utility model.
[0029] In the figure: 1. Installation frame; 2. Base; 3. Sliding sleeve; 4. Detection frame; 5. Installation cavity; 6. Pressure sensor; 7. Limiting piece; 8. Male magic tape; 9. Female magic tape; 10. Detection test strip; 11. Guide slider;
[0030] 12. Guide chute; 13. First connecting lead screw sleeve; 14. First driving lead screw; 15. First bevel gear; 16. Second bevel gear; 17. Third bevel gear;
[0031] 18. Fourth bevel gear; 19. First motor; 20. Storage cavity; 21. Reel; 22. Rotating wheel; 23. Rotating cavity; 24. Reset spring piece;
[0032] 25. Connecting belt; 26. Guide cavity; 27. Insertion post; 28. First inflation device body; 29. Sealing balloon; 30. Contact sealing piece;
[0033] 31. Installation plate; 32. Second inflation device body; 33. Inflation pipe; 34. Contact pipe; 35. Movable sleeve; 36. Adjusting plate; 37. Connecting plate;
[0034] 38. Second connecting lead screw sleeve; 39. Second driving lead screw; 40. Installation frame; 41. Second motor; 42. Insertion plate; 43. Contact balloon;
[0035] 44. First contact block; 45. Second contact block; 46. Flexible sheet. Detailed implementation manners
[0036] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0037] As Figures 1 to 9As shown in the figure, the present invention provides a stainless steel water divider detection device, which includes an installation frame 1. A base 2 is fixedly connected between the inner side walls of the installation frame 1. A sliding sleeve 3 is horizontally sleeved and movably connected to the outer side wall of the base 2. The top end of the sliding sleeve 3 is fixedly connected to a detection frame 4. And airtightness detection components for detecting the vessel property of the stainless steel water divider are fixedly connected to the inner side wall of the detection frame 4 at equal intervals. The airtightness detection components include an installation cavity 5, a pressure sensor 6, a limiting piece 7, a male magic tape 8, a female magic tape 9 and a detection test paper 10. Installation cavities 5 are fixedly connected to the inner side wall of the detection frame 4 at equal intervals. And a circular ring structure-shaped limiting piece 7 is fixedly connected to the inner side wall of the installation cavity 5. A male magic tape 8 with a suede structure is installed at one end of the limiting piece 7. And one end of the male magic tape 8 is adhered to one end of a female magic tape 9 with a hook surface structure. The female magic tapes 9 are all fixedly connected to one end of the detection test paper 10. And one end of the detection test paper 10 close to the female magic tape 9 abuts against one end of the pressure sensor 6. The pressure sensor 6 is fixedly connected inside the installation cavity 5.
[0038] By providing the airtightness detection components, during the use process, the detection frame 4 moves uniformly from the outside of the stainless steel water divider during the detection process. In this way, if there is an airtightness problem with the stainless steel water divider, due to the gas pressure, the relative detection test paper 10 is impacted, so that the pressure sensor 6 receives a pressure signal. In this way, the vessel property of the stainless steel water divider can be accurately detected.
[0039] Specifically, the bottom end of the sliding sleeve 3 is fixedly connected to a guiding slider 11 with a "convex" shape structure. And the guiding slider 11 is movably connected inside a guiding chute 12 with an inner side wall of a "convex" shape structure. A first connecting lead screw sleeve 13 is fixedly connected through the inside of the guiding slider 11. And a first driving lead screw 14 is meshed and connected to the inner side wall of the first connecting lead screw sleeve 13. Both ends of the first driving lead screw 14 are movably connected between the inner side walls of the guiding chute 12. And one end of the first driving lead screw 14 is fixedly connected to one end of a first bevel gear 15. The first bevel gear 15 is meshed with a second bevel gear 16 at an angle of 90° away from the guiding chute 12. The bottom end of the second bevel gear 16 is fixedly connected to a third bevel gear 17 through a linkage rod. And the third bevel gear 17 is meshed with a fourth bevel gear 18 at an angle of 90°. One end of the fourth bevel gear 18 is fixedly connected to the output end of a first motor 19 fixedly connected to the bottom end of the guiding chute 12 through a coupling.
[0040] The first bevel gear 15, the second bevel gear 16, the third bevel gear 17 and the fourth bevel gear 18 are combined into a transmission assembly, so that the first transmission screw 14 is driven to rotate forward or reversely through the transmission assembly, and the first transmission screw 14 and the first connecting screw sleeve 13 form a screw transmission structure, which drives the guide slider 11 to move inside the guide slide groove 12, thereby driving the sliding sleeve 3 and the detection frame 4 to move horizontally to the left and right.
[0041] Furthermore, one end of the mounting frame 1 is fixedly connected to a storage cavity 20, and a winding shaft 21 for winding up the connecting belt 25 is arranged inside the storage cavity 20, rotating wheels 22 are fixedly connected to both sides of the winding shaft 21, and the rotating wheels 22 are movably connected to the inside of the rotating cavity 23, and the rotating cavity 23 is symmetrically fixedly connected to the inside of the storage cavity 20, and the end of the rotating wheel 22 away from the winding shaft 21 is fixedly connected to one end of a reset spring sheet 24, and the other end of the reset spring sheet 24 is fixedly connected to the inner wall of the storage cavity 20, and the top of the storage cavity 20 is connected to a guide cavity 26.
[0042] By setting up the winding shaft 21, the connecting belt 25 can be wound up by the winding shaft 21 and can be unwound by the winding shaft 21 during use, and then adapted to one end of the stainless steel water divider according to the size of the stainless steel water divider to be inspected, and at the same time, the excess connecting belt 25 can be wound up by the reset spring sheet 24, thereby effectively reducing the inconvenience caused by the scattering of the connecting belt 25 during the inspection process.
[0043] Furthermore, one end of the reset spring sheet 24 is connected to one end of the plug-in column 27, and the outer side walls of the plug-in column 27 are respectively fixedly connected with two abutting sealing sheets 30 and a sealing balloon 29. The sealing balloon 29 is connected to the output end of the first inflatable device body 28 through a transmission tube arranged inside the plug-in column 27. The first inflatable device body 28 is fixedly connected to one end of the plug-in column 27 close to the connecting belt 25.
[0044] By setting the plug-in column 27, during use, the plug-in column 27 is plugged into one end of the stainless steel water separator, and then the sealing balloon 29 is inflated through the output of the first inflation device body 28, so that the sealing balloon 29 expands and contacts the inner wall of the stainless steel water separator, thereby cooperating with the two contact sealing sheets 30 to seal one end of the stainless steel water separator.
[0045] It should be noted that at the top end of the end of the installation frame 1 far from the storage cavity 20, there is a fixedly connected mounting plate 31. On both sides and the top of the mounting plate 31, there are fixedly connected movable sleeves 35. And inside the movable sleeves 35, there are movably connected adjusting plates 36 through them. One end of each adjusting plate 36 is fixedly connected to one end of a connecting plate 37. Inside the connecting plate 37, there is a fixedly connected second connecting screw sleeve 38 through it. And on the inner side wall of the second connecting screw sleeve 38, there is a meshing connection with a second driving screw 39. The second driving screw 39 is movably connected between mounting frames 40. One end of the mounting frame 40 is fixedly connected to the end of the mounting plate 31 far from the detection frame 4. And the other end of the mounting frame 40 is fixedly connected with a second motor 41. And the output end of the second motor 41 penetrates through one end of the mounting frame 40 and is fixedly connected to one end of the second driving screw 39 through a coupling.
[0046] By setting up the screw drive structure composed of the second driving screw 39 and the second connecting screw sleeve 38, in the process of use, when it is necessary to deal with stainless steel water distributors of different sizes, the second motor 41 can rotate forward or backward, so that the screw drive structure composed of the second driving screw 39 and the second connecting screw sleeve 38 drives the connecting plate 37 to move. In this way, the adjusting plate 36 is synchronously driven by the connecting plate 37, and then the stainless steel water distributors of different sizes are limited for airtightness detection.
[0047] It should be noted that one end of the adjusting plate 36 is fixedly connected with a plugging sleeve. And symmetrically fixedly connected inside the plugging sleeve are flexible sheets 46. And at the corresponding ends of the flexible sheets 46, there are fixedly connected at equal intervals several second abutting blocks 45 arranged in a semi-cylindrical structure. One end of each second abutting block 45 abuts against a first abutting block 44 arranged in a semi-cylindrical structure. And the first abutting blocks 44 are fixedly connected at equal intervals to both ends of a plugging plate 42 inserted through the inside of the plugging sleeve. At one end of the plugging plate 42, there is a groove. And fixedly connected inside the groove is a abutting balloon 43 for abutting against the stainless steel water distributor.
[0048] By setting up the plugging plate 42, in the process of limiting the stainless steel water distributor, according to the size of the outer side wall of the flange of the stainless steel water distributor, through the mutual adjustment between the plugging plates 42, the plugging plates 42 can be adapted to the flange of the stainless steel water distributor. And after the plugging plates 42 move, they are self-limited by the mutual abutment between the first abutting blocks 44 and the second abutting blocks 45.
[0049] It is worth introducing that one end of the mounting plate 31 away from the detection frame 4 is fixedly connected with the second inflating device body 32, and a through hole is formed through the area of the mounting plate 31 adapted to the second inflating device body 32. The output end of the second inflating device body 32 penetrates into the inside of the through hole and is fixedly connected with one end of the inflating pipe 33. The inflating pipe 33 is arranged inside the abutting pipe 34 fixedly connected to the other end of the mounting plate 31, and a silica gel gasket is fixedly connected to the end of the abutting pipe 34 away from the mounting plate 31.
[0050] By arranging the abutting pipe 34 to abut against the flange at one end of the stainless steel water distributor, and making the sealing effect better between them through the silica gel gasket. At the same time, the inside of the stainless steel water distributor is inflated through the output of the second inflating device body 32 in cooperation with the inflating pipe 33.
[0051] The principle and process of the present invention are as follows:
[0052] First, one end of the stainless steel water distributor to be detected is abutted against the abutting pipe 34, and the sealing effect between them is made better through the silica gel gasket. Then, through the arranged plug-in board 42, during the process of limiting the position of the stainless steel water distributor, according to the outer wall size of the flange of the stainless steel water distributor, the plug-in boards 42 can be adjusted relative to each other, so that the plug-in boards 42 can be adapted to the flange of the stainless steel water distributor. And after the plug-in board 42 moves, the first abutting block 44 abuts against the second abutting block 45, thereby self-limiting the adjusted plug-in board 42. Then, the second motor 41 rotates forward or backward, so that the second transmission lead screw 39 and the second connecting lead screw sleeve 38 form a lead screw transmission structure to drive the connecting plate 37 to move. In this way, the adjusting plate 36 is synchronously driven by the connecting plate 37, so as to limit the position of stainless steel water distributors of different sizes for airtightness detection.
[0053] Secondly, the inside of the stainless steel water distributor is inflated through the output of the second inflating device body 32 in cooperation with the inflating pipe 33. Then, by arranging the plug-in column 27, during use, the plug-in column 27 is inserted into one end of the stainless steel water distributor, and then the first inflating device body 28 outputs to inflate the sealing balloon 29, so that the sealing balloon 29 expands and abuts against the inner side wall of the stainless steel water distributor. In this way, the two abutting and sealing pieces 30 are used to seal one end of the stainless steel water distributor.
[0054] Afterwards, through the provided take-up reel 21, during use, the connecting belt 25 can be wound up by the take-up reel 21 and can also be unwound by the take-up reel 21. Furthermore, it can be adapted to the size of the stainless steel water divider to be detected at one end. At the same time, the redundant connecting belt 25 is wound up by the reset spring piece 24, thus effectively reducing the inconvenience caused by the scattering of the connecting belt 25 during the detection process. And through the combination of the first bevel gear 15, the second bevel gear 16, the third bevel gear 17 and the fourth bevel gear 18 to form a transmission assembly, by driving the first transmission lead screw 14 to rotate forward or backward through the transmission assembly, then a lead screw transmission structure is formed by the first transmission lead screw 14 and the first connecting lead screw sleeve 13, driving the guide slider 11 to move inside the guide chute 12, thereby driving the sliding sleeve 3 and the detection frame 4 to move horizontally left and right;
[0055] Finally, through the provided airtightness detection component, during use, the detection frame 4 moves uniformly from the outside of the stainless steel water divider during the detection of the stainless steel water divider. In this way, if there is an airtightness problem with the stainless steel water divider, due to the gas pressure, the detection test paper 10 at the corresponding position is impacted, causing the pressure sensor 6 to receive a pressure signal. In this way, the airtightness of the stainless steel water divider can be accurately detected, and thus the use of such a stainless steel water divider detection device is completed;
[0056] It should be noted that the present invention is a stainless steel water divider detection device, and the components are all common standard parts or parts known to those skilled in the art. Its structure and principle can be known by those skilled in the art through technical manuals or through conventional experimental methods. At the idle place of this device, all the above-mentioned electrical components, which refer to power elements, electrical components, and the adapted monitoring computer and power supply, are connected by wires. For the specific connection means, reference should be made to the above working principle to complete the electrical connection according to the sequence of work among the electrical components. The detailed connection means are well-known techniques in the art.
[0057] It should be noted that in this article, relational 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 sequence between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.
[0058] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A stainless steel water separator detection device, comprising a mounting frame (1), characterized in that: A base (2) is installed between the inner walls of both sides of the installation frame (1); a sliding sleeve (3) is sleeved on the outer wall of the base (2); a detection frame (4) is installed on the top of the sliding sleeve (3); a plurality of airtightness detection components are installed at equal intervals on the inner wall of the detection frame (4); a plug-in column (27) is provided on one side of the detection frame (4); a mounting plate (31) is provided on the other side of the detection frame (4); a second inflatable device body (32) is installed at one end of the mounting plate (31) away from the detection frame (4); an output end of the second inflatable device body (32) passes through the interior of the mounting plate (31) and is connected to one end of an inflatable tube (33); the inflatable tube (33) is arranged in the middle of a resistance tube (34); and one end of the resistance tube (34) is connected to one end of the mounting plate (31) away from the second inflatable device body (32). The ends are connected, the other end of the resistance tube (34) is installed with a silicone sealing pad, both sides and the top of the mounting plate (31) are installed with movable sleeves (35), and the inside of the movable sleeves (35) is penetrated by an adjustment plate (36), one end of the adjustment plate (36) is connected to one end of the connecting plate (37), one end of the adjustment plate (36) is installed with a plug-in sleeve, and the plug-in plate (42) is plugged into the plug-in sleeve, and the plug-in plate (42) is installed at one end of the plug-in plate (42) close to the mounting plate (31), and a resistance balloon (43) is installed at one end of the plug-in plate (42) close to the mounting plate (31), and first resistance blocks (44) are installed at equal intervals at both ends of the plug-in plate (42), and the outer wall of the first resistance block (44) is in conflict with the outer wall of the second resistance block (45), and the second resistance block (45) is installed at one end of the flexible sheet (46) at equal intervals, and the flexible sheet (46) is symmetrically installed inside the plug-in sleeve.
2. The stainless steel water separator detection device according to claim 1, characterized in that: The airtightness detection assembly comprises a mounting cavity (5), a pressure sensor (6) and a detection test paper (10); the inner side wall of the detection frame (4) is connected to one end of the mounting cavity (5); the pressure sensor (6) is installed inside the mounting cavity (5); the detection end of the pressure sensor (6) is in contact with one end of the detection test paper (10); a female Velcro (9) is installed at one end of the detection test paper (10); one end of the female Velcro (9) is connected to one end of a male Velcro (8); the male Velcro (8) is installed at one end of a limiting plate (7); and the limiting plate (7) is installed on the inner side wall of the mounting cavity (5).
3. The stainless steel water separator detection device according to claim 1, characterized in that: A guide slider (11) is installed at the bottom end of each sliding sleeve (3), and the guide slider (11) is movably connected to the inside of the guide slot (12). A first connecting screw sleeve (13) is installed through the inside of the guide slider (11), and the inner side wall of the first connecting screw sleeve (13) is meshedly connected to the first transmission screw (14).
4. The stainless steel water separator detection device according to claim 3, characterized in that: One end of the first transmission screw (14) is transmission-connected to one end of the first bevel gear (15), and one end of the first bevel gear (15) is meshingly connected to the second bevel gear (16), the bottom end of the second bevel gear (16) is transmission-connected to the third bevel gear (17) via a linkage rod, and one end of the third bevel gear (17) is meshingly connected to the fourth bevel gear (18), and one end of the fourth bevel gear (18) is transmission-connected to the output end of the first motor (19).
5. The stainless steel water separator detection device according to claim 1, characterized in that: A storage cavity (20) is installed at one end of the installation frame (1), and a rotating cavity (23) for the movement of a rotating wheel (22) is symmetrically installed inside the storage cavity (20), one end of the rotating wheel (22) away from the winding shaft (21) is connected to a reset spring sheet (24), and the winding shaft (21) is connected between the rotating wheels (22), and a connecting belt (25) is wound on the outer wall of the winding shaft (21), and the connecting belt (25) passes through the interior of the guide cavity (26) and is connected to one end of the plug-in column (27).
6. The stainless steel water separator detection device according to claim 1, characterized in that: A first inflatable device body (28) is installed at one end of the plug-in column (27) close to the connecting belt (25), and a sealing balloon (29) is provided on the outer wall of the plug-in column (27). The sealing balloon (29) is connected to the output end of the first inflatable device body (28) via a transmission tube provided inside the plug-in column (27), and both sides of the plug-in column (27) are provided with abutting sealing sheets (30) symmetrically arranged on both sides of the sealing balloon (29).
7. The stainless steel water separator detection device according to claim 1, characterized in that: A second connecting screw sleeve (38) is installed through the interior of the connecting plate (37), and a second transmission screw (39) is meshedly connected to the inner wall of the second connecting screw sleeve (38), the second transmission screw (39) is movably connected between the mounting frames (40), and one end of the mounting frame (40) is connected to an end of the mounting plate (31) away from the detection frame (4).
8. The stainless steel water separator detection device according to claim 7, characterized in that: A second motor (41) is mounted on one end of the mounting frame (40) away from the mounting plate (31), and an output end of the second motor (41) passes through one end of the mounting frame (40) and is transmission-connected to one end of a second transmission screw rod (39).
Citation Information
Patent Citations
Airtightness detection equipment for stainless steel water segregator
CN115855393A
Airtightness detection device for fire extinguisher
CN219777008U