Remote water meter pressure resistance detection device

By designing a sliding cavity with adjustable contact area and a magnet short column structure, combined with a remote water meter pressure resistance detection device with a multi-angle rotation mechanism, the problems of fixed contact area and low detection efficiency in the prior art are solved, and multi-angle and multi-point pressure resistance detection of the new material water meter case is realized.

CN120102295AActive Publication Date: 2025-06-06江花集团有限公司
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Patent Information

Application Number
CN202510572546.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-06-06
Estimated Expiration
2045-05-06

AI Technical Summary

Technical Problem

When the existing water meter pressure-resistant detection device detects the water meter case of a new material, the contact area of ​​the urge mechanism is fixed, the detection methods are not abundant enough, and the water meter is not easy to change its position, which affects the detection efficiency.

Method used

A remote water meter pressure resistance detection device is designed, adopting an adjustable slip chamber and magnet short column structure, which can detect the pressure resistance characteristics under different contact areas, and facilitate changing the water meter body position and increasing the detection point through a multi-angle rotation mechanism.

Benefits of technology

The pressure resistance detection of the water meter case of the new material is achieved under different contact areas, enriching the detection methods, improving the detection efficiency, and conveniently changing the body position of the water meter and adding detection points.

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Abstract

The invention discloses a remote water meter pressure resistance detection device, and relates to the technical field of new material water meter shell detection.The remote water meter pressure resistance detection device comprises an operation table, a lifting table is arranged above the operation table, a rotating seat is fixedly connected to one side of the top of the lifting table, a rotating disc is rotationally connected to the rotating seat, and a plurality of sliding cavities are annularly formed in the rotating disc at equal intervals by a circle; a baffle ring is fixedly connected to one end of each sliding cavity, a magnet short column is slidably connected to the interior of each sliding cavity, an abutting rod is in threaded connection with the center of the end, away from the corresponding baffle ring, of each magnet short column, and the diameters of the ends, away from the magnet short columns, of the abutting rods are arranged in an echelon mode; the side, away from the rotating base, of the top of the lifting table is fixedly connected with a third electric cylinder used for pushing and pulling the short magnet columns. The device can detect the pressure resistance characteristic of the meter shell under different action areas, enriches the detection means, and achieves the effects of conveniently changing the body position of the water meter and enriching the detection point positions through a water meter multi-angle adjustment mechanism.
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Description

Technical Field

[0001] The invention relates to the technical field of new material water meter shell detection, and in particular to a remote water meter pressure resistance detection device. Background Art

[0002] In daily use, remote water meters require significantly fewer manual inspections than existing mechanical water meters, which leads to a lack of manual inspection opportunities for remote water meters. As a result, the chance of damage during use is greater. Therefore, some manufacturers use new materials such as carbon fiber on the outer shell of remote water meters to increase the pressure resistance of remote water meters in special scenarios such as outdoor use. This requires them to have better pressure resistance performance, and when using new materials to produce remote water meters, random pressure resistance inspections of the outer shell will be carried out.

[0003] At present, the pressure resistance test of most water meters is mostly carried out by clamping the meter case through a clamping device, and then applying pressure to the new material meter case through a force-applying mechanism to test its pressure resistance performance. However, the existing force-applying mechanism has a fixed and single effective area size used by the force-applying end to contact the new material meter case, and does not have the function of adjusting the contact area. The detection methods are not rich enough. At the same time, since the water meter is clamped on a fixed fixture, it is not easy to change the position of the water meter. On the other hand, the fixture directly clamps the new material meter case and also blocks part of the shell, resulting in a reduction in the number of points that can be detected, affecting the work efficiency of the detection.

[0004] In order to solve the above problems, a remote water meter pressure resistance detection device is proposed. Summary of the invention

[0005] In order to solve the above technical problems, a remote water meter pressure resistance detection device is provided. This technical solution solves the problems raised in the above background technology.

[0006] To achieve the above objectives, the present invention can be implemented by the following technical solutions:

[0007] The invention provides a remote water meter pressure resistance detection device, comprising an operating table, a lifting platform is provided above the operating table, a top side of the lifting platform is fixedly connected with a rotating seat, a turntable is rotatably connected to the rotating seat, a plurality of sliding cavities are arranged on the turntable in a circular shape with equal spacing, one end of each sliding cavity is fixedly connected with a retaining ring, a magnet short column is slidably connected inside each sliding cavity, a resistance rod is threadedly connected at the center of one end of each magnet short column away from the retaining ring, the diameters of the ends of the plurality of resistance rods away from the magnet short column are arranged in stages, an electric cylinder three for pushing and pulling the magnet short column is fixedly connected at one side of the top of the lifting platform away from the rotating seat, a bracket is fixedly connected at one side of the operating table away from the electric cylinder three, a base is rotatably connected at one side of the bracket away from the turntable, a worm gear two is rotatably connected to the middle part of the base, a through cavity is arranged at the center of the worm gear two, saddles are detachably connected to the top of the worm gear two on both sides, and a fixing clamp is detachably connected to the top of each saddle.

[0008] Furthermore, each retaining ring can be magnetically attracted by the magnet short column.

[0009] Furthermore, a worm wheel 1 is fixedly connected to the outside of the turntable, a worm gear 1 is rotatably connected to the top of the rotating seat, the worm wheel 1 and the worm gear 1 are meshingly connected, one end of the worm gear 1 is fixedly connected to a motor 1, and the housing of the motor 1 is correspondingly fixedly connected to the side of the rotating seat.

[0010] Furthermore, an assembly cavity is provided inside the telescopic end of the electric cylinder three, a pressure sensor is fixedly installed inside the assembly cavity, a pressure rod is slidably connected inside the assembly cavity, and the pressure rod can be magnetically attracted by the magnet short column.

[0011] Furthermore, a rotating shaft at one end of the base is fixedly connected to motor 2, and a housing of motor 2 is correspondingly fixedly connected to a side surface of the bracket.

[0012] Furthermore, a worm gear 2 is rotatably connected to a side of the base away from the turntable, and the worm gear 2 is meshingly connected to a worm wheel 2. One end of the worm gear 2 is fixedly connected to a motor 3, and a housing of the motor 3 is correspondingly fixedly connected to the side of the base.

[0013] Furthermore, an electric cylinder 2 is fixedly installed on one side of the bottom of the operating table, the top of the telescopic end of the electric cylinder 2 is fixedly connected to the middle of the bottom of the lifting platform, and guide rods are fixedly connected at both ends of the bottom of the lifting platform. The outer parts of the two guide rods are respectively slidably connected to the inner ends of the operating table.

[0014] Furthermore, it also includes an operating cabinet, an operating table is slidably connected to one side of the interior of the operating cabinet, an electric cylinder is fixedly connected to the middle of the bottom of the operating table, the cylinder body of the electric cylinder is correspondingly fixedly connected to the interior of the operating cabinet, and a cover plate is rotatably connected to one side of the top of the operating cabinet.

[0015] As described above, the characteristics and advantages of a remote water meter pressure resistance detection device in the present invention are:

[0016] By selecting a designated sliding cavity to align with the pressure rod and then performing the test, since the areas of the resistance rods arranged in each sliding cavity are different in size, the above-mentioned testing process can detect that when the force-applying mechanism acts on the new material water meter case, the pressure resistance characteristics of the new material case under different contact areas can be detected, thereby avoiding the situation in the prior art where the contact area between the force-applying mechanism and the new material case is single, thereby achieving the effect of enriching the detection means.

[0017] In each round of detection process mentioned above, by driving the water meter to rotate horizontally, any point in a circle on the side of the new material case can be detected. At the same time, the lifting platform is lifted to change the relative height between the resistance rod and the new material case, so that any point between the upper and lower ends of the side of the new material case can be detected. Furthermore, by driving the water meter to rotate vertically, the reading disk on the top of the water meter and its bottom can be detected. In this way, through the above-mentioned multi-angle adjustment mechanism, the situation in the prior art that the new material case is not easy to change its position, affecting the detection of its top reading disk and bottom is avoided, thereby achieving the effect of facilitating the change of the position of the water meter and enriching the detection points.

[0018] By closing the fixing clamps and saddles on both sides, the inlet and outlet of the water meter are clamped, and at this time, the bottom of the new material case just conflicts with the top port of the through cavity. Finally, the water meter is restricted at the above three points, so as to achieve the purpose of fixing the water meter. At the same time, according to the external contours of the inlet and outlet of different water meters, the applicability of the device can be improved by replacing the corresponding saddles and fixing clamps. In this way, the design of fixing the water meter above avoids the situation in the prior art that the water meter case is directly clamped by the clamp, which leads to a reduction in the exposed area of ​​the case, and finally leads to fewer points on the case surface that can be pressure-tested, thereby improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0020] Figure 2 for Figure 1 Another perspective diagram of the structure;

[0021] Figure 3 It is a schematic diagram of the assembly of the rotating seat and the rotating disk shown in the present invention;

[0022] Figure 4 for Figure 3 Another perspective diagram of the structure;

[0023] Figure 5 for Figure 4 Schematic diagram of the decomposition of the middle part structure;

[0024] Figure 6It is a schematic diagram of the structure of the pressure rod of the electric cylinder 3 shown in the present invention;

[0025] Figure 7 It is a schematic diagram of the assembly of the worm gear 2 shown in the present invention;

[0026] Figure 8 for Figure 7 Another perspective diagram of the structure;

[0027] Fig. 9 for Figure 7 Schematic diagram of the structure in the figure;

[0028] Fig.10 for Fig. 9 Another perspective diagram of the structure;

[0029] Fig.11 It is a schematic diagram of the assembly of the operating cabinet and operating table shown in the present invention.

[0030] Among them, the accompanying drawings in the present invention are:

[0031] 11. Operation cabinet; 12. Cover plate; 13. Electric cylinder 1; 14. Operation table; 15. Lifting platform; 16. Electric cylinder 2; 17. Guide rod;

[0032] 21. Rotating seat; 22. Rotating plate; 221. Sliding chamber; 23. Magnet short column; 24. Resistance rod; 25. Blocking ring; 26. Worm wheel 1; 27. Worm 1; 28. Motor 1;

[0033] 31. Electric cylinder three; 32. Assembly chamber; 33. Pressure sensor; 34. Pressure rod;

[0034] 41. Bracket; 42. Base; 43. Motor 2; 44. Worm gear 2; 45. Worm gear 2; 46. Motor 3; 47. Through cavity; 48. Saddle; 49. Fixing clamp. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only 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 ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0036] See also Figure 1-Figure 2 As shown in the figure, an embodiment of the present invention is provided, and a remote water meter pressure resistance detection device is described in detail below:

[0037] A remote water meter pressure resistance detection device, see Figure 1-Figure 3As shown, it includes an operating table 14, a second electric cylinder 16 is fixedly installed on one side of the bottom of the operating table 14, and the telescopic end of the second electric cylinder 16 extends to the outside of the operating table 14, and the top of the telescopic end of the second electric cylinder 16 is fixedly connected to a lifting platform 15, see Figure 3-Figure 5 As shown, a rotating seat 21 is fixedly connected to one side of the top of the lifting platform 15, and a turntable 22 is rotatably connected to the rotating seat 21. A plurality of sliding cavities 221 are provided on the turntable 22 in an annular manner and equidistantly around the turntable 22. A retaining ring 25 is fixedly connected to one end of each sliding cavity 221, and the retaining ring 25 is located on the side of the turntable 22 close to the lifting platform 15. A magnet short column 23 is slidably connected to the inside of each sliding cavity 221. A resistance rod 24 is threadedly connected to the center of one end of each magnet short column 23 away from the retaining ring 25. The diameters of the ends of the plurality of resistance rods 24 away from the magnet short column 23 are arranged in stages, see Figure 1-Figure 2 and Figure 6 As shown, the top of the lifting platform 15 is fixedly connected to the side away from the rotating seat 21. The telescopic end of the electric cylinder 31 is provided with an assembly cavity 32. A pressure sensor 33 is fixedly installed inside the assembly cavity 32. A pressure rod 34 is slidably connected inside the assembly cavity 32. Figure 1-Figure 2 and Figure 7-10 As shown, a bracket 41 is fixedly connected to the side of the operating table 14 away from the electric cylinder 31, a base 42 is rotatably connected to the side of the bracket 41 away from the turntable 22, a worm gear 2 44 is rotatably connected to the middle of the base 42, a through cavity 47 is provided at the center of the worm gear 2 44, saddles 48 are detachably connected to the top sides of the worm gear 2 44, a fixing clamp 49 is detachably connected to the top of each saddle 48, and the worm gear 2 44 and the fixing clamp 49 are detachably connected by bolts.

[0038] The device selects a certain designated sliding cavity 221 to align with the pressure rod 34 before performing detection. Since the area of ​​the resistance rod 24 arranged in each sliding cavity 221 is different in size, the pressure resistance characteristics of the new material water meter case under different contact action areas can be detected through the above-mentioned detection process, thereby avoiding the situation in the prior art that the contact area between the force-applying mechanism and the new material case is single, and achieving the effect of enriching the detection means. In each round of the above-mentioned detection process, by driving the water meter to rotate horizontally, any point in a circle on the side of the new material case can be detected. At the same time, the lifting platform 15 is lifted and lowered to change the relative height between the resistance rod 24 and the new material case, so that any point between the upper and lower ends of the side of the new material case can be detected. Further, by driving the water meter to rotate vertically, the reading disk on the top of the water meter and its bottom can be detected. In this way, through the above-mentioned multi-angle adjustment mechanism, the situation in the prior art that the new material case is not easy to change its position, which affects the detection of its top reading disk and bottom, is avoided, and the effect of facilitating the change of the water meter position and enriching the detection points is achieved.

[0039] Further, in this embodiment, refer to Figure 9-10 As shown, after the fixing clamp 49 is installed on the saddle 48, there is a cavity between it and the fixing clamp 49, and the cavity is consistent with the external contour of the inlet and outlet of the water meter to be tested. In this way, when the water meter is placed on the worm gear 44, the fixing clamps 49 on both sides are closed with the saddle 48 to clamp the inlet and outlet of the water meter, and at this time, the bottom of the new material case of the water meter should just collide with the top end of the through cavity 47. Finally, the purpose of fixing the water meter is achieved by restricting the water meter at the above three points. Naturally, according to the external contours of the inlet and outlet of different water meters, the corresponding saddle 48 and fixing clamp 49 can be replaced by bolt disassembly and installation to improve the applicability of the device. In this way, through the above-mentioned design of fixing the water meter, the problem of directly clamping the new material water meter case by the clamp in the prior art is avoided, which leads to a reduction in the exposed area of ​​the new material case, and finally leads to a decrease in the number of points on the surface of the new material case that can be pressure-tested, affecting the detection work.

[0040] See also Figure 1 As shown, a worm gear 26 is fixedly connected to the outside of the turntable 22, a worm 27 is rotatably connected to the top of the rotating seat 21, the worm gear 26 and the worm 27 are meshingly connected, one end of the worm 27 is fixedly connected to a motor 28, and the housing of the motor 28 is fixedly connected to the side of the rotating seat 21.

[0041] See also Figure 7-Figure 8 As shown, a rotating shaft at one end of the base 42 is fixedly connected to a second motor 43 , and a housing of the second motor 43 is correspondingly fixedly connected to a side surface of the bracket 41 .

[0042] In this embodiment, the motor 2 43 should adopt a motor product with an integrated braking mechanism. In the prior art, the brake is usually installed on the motor shaft. It is opened after power is turned on, and the motor can rotate freely. It is locked after power is turned off, and the motor cannot rotate. The motor self-locking when power is off can be achieved by installing a power-off locking device in the motor control system. When the power is disconnected, the power-off locking device will lock the motor's rotor in the current position to prevent the motor from running. When the power is restored, the power-off locking device will be unlocked to allow the motor to continue to run. The installation and connection of the motor 2 43 and its brake in this embodiment will not be repeated here.

[0043] See also Figure 7-Figure 8 As shown, a worm 2 45 is rotatably connected to one side of the base 42 away from the turntable 22 , and the worm 2 45 is meshingly connected to the worm wheel 2 44 . A motor 3 46 is fixedly connected to one end of the worm 2 45 , and a housing of the motor 3 46 is correspondingly fixedly connected to the side of the base 42 .

[0044] See also Figure 4As shown, both ends of the bottom of the lifting platform 15 are fixedly connected with guide rods 17, and the outer parts of the two guide rods 17 are respectively slidably connected to the inner ends of the operating platform 14, so that the lifting platform 15 can be lifted more stably.

[0045] See also Fig.11 As shown, the remote water meter pressure resistance detection device also includes an operating cabinet 11, an operating table 14 is slidably connected to one side of the interior of the operating cabinet 11, an electric cylinder 13 is fixedly connected to the middle of the bottom of the operating table 14, the cylinder body of the electric cylinder 13 is correspondingly fixedly connected to the interior of the operating cabinet 11, and a cover plate 12 is rotatably connected to one side of the top of the operating cabinet 11.

[0046] After the detection is completed, the electric cylinder 13 can change the lifting height of the operating table 14, so that after the detection device on the operating table 14 is transferred as a whole to the operating cabinet 11, the device can be stored. At the same time, covering the cover 12 can prevent dust, thus achieving the effect of protecting the structure of the detection device and maintaining its smooth operation.

[0047] In combination with the above embodiments, the entire working process and working principle of the above embodiments are as follows:

[0048] The working state is: first, according to the external contour shape of the inlet and outlet pipes of the water meter to be tested, replace the corresponding saddle 48 and fixing clamp 49, place the water meter at the top port of the through cavity 47 of the worm gear 2 44, and place the inlet and outlet pipes of the water meter on the saddles 48 on both sides respectively, and then close the fixing clamp 49 to secure the inlet and outlet pipes on the saddle 48. In this embodiment, it adopts a bolt connection method.

[0049] Further, the motor 2 43 drives the base 42 to rotate and adjust its angle so that the worm gear 2 44 remains in a horizontal state, and then the motor 2 43 is powered off and self-locked to maintain the stability of the worm gear 2 44, and the motor 1 28 drives the worm 27 to rotate, and then drives the worm wheel 1 26 to rotate, and finally drives the turntable 22 to rotate, so as to rotate a certain designated sliding cavity 221 to a position aligned with the pressure rod 34, and the motor 1 28 stops, and then the self-locking characteristics between the worm wheel 1 26 and the worm gear 1 27 are used to maintain the stability of the turntable 22 after rotation.

[0050] Further, the electric cylinder three 31 is extended, so that the pressure rod 34 is inserted into the above-mentioned specified sliding cavity 221 through the retaining ring 25, and after contacting the magnetic short column 23 in the sliding cavity 221, it is magnetically connected thereto. After the electric cylinder three 31 continues to extend, the magnetic short column 23 is pushed to the outside of the sliding cavity 221 through the pressure rod 34, thereby pushing out the corresponding contact rod 24. After the contact rod 24 contacts the watch case, pressure detection can be performed on it. Specifically, by controlling the extension and contraction amount of the electric cylinder three 31, the pressure rod 34 transmits force to the magnetic short column 23, and then the magnetic short column 23 transmits force to the contact rod 24 that contacts the watch case, thereby achieving different pressures on the watch case, and at the same time, under the action force and reaction force, the reaction force equal to the transmitted force will be transmitted to the pressure sensor 33 by the pressure rod 34. At this time, the applied pressure value can be directly read by the pressure sensor 33 in the assembly cavity 32.

[0051] After the detection is completed, the electric cylinder 31 is reset, and then through the magnetic effect, the pressure rod 34 drags the magnet short column 23 together with the contact rod 24 back into the sliding cavity 221, and under the obstruction of the corresponding retaining ring 25, the pressure rod 34 is separated from the magnet short column 23. After separation, the magnet short column 23 is immediately magnetically connected to the retaining ring 25, so that it and the contact rod 24 are stably maintained inside the sliding cavity 221, avoiding stretching out to interfere with subsequent detection, and also playing a role in structural protection.

[0052] Repeat the above steps and rotate the turntable 22 to align the remaining sliding cavities 221 with the pressure rods 34 respectively. Since the areas of the resistance rods 24 arranged in each sliding cavity 221 are different in size, the above-mentioned detection process can detect the pressure resistance characteristics of the watch case under different contact action areas when the force-applying mechanism acts on the watch case, thereby avoiding the situation in the prior art that the contact area between the force-applying mechanism and the watch case is single, thereby achieving the effect of enriching the detection means.

[0053] In each round of the detection process mentioned above, the motor 3 46 drives the worm 2 45 to rotate, and then drives the worm wheel 2 44 to rotate, and finally drives the water meter to rotate, so that a specified point in a circle on the side of the case is rotated to a position aligned with the abutment rod 24, and the motor 3 46 stops, and then the self-locking characteristics between the worm wheel 24 and the worm 2 45 are used to maintain the stability of the water meter after rotation. In this way, any point in a circle on the side of the case can be detected. At the same time, with the extension and retraction of the electric cylinder 2 16, the lifting platform 15 performs a lifting movement under the guidance of the guide rod 17, thereby changing the relative height between the abutment rod 24 and the case. In this way, any point between the upper and lower ends of the side of the case can be detected. Further, the motor 2 mounted on the bracket 41 The driving end of 43 rotates, thereby driving the base 42 rotatably connected to the bracket 41 to rotate again to adjust its angle, and then the worm gear 2 44 on the base 42 drives the water meter to rotate, so that the reading disk on the top of the water meter and the bottom of its case are exposed in front of the resistance rod 24, wherein the bottom of the case is exposed through the through cavity 47, and then the motor 2 43 is powered off and self-locked to maintain the stability of the worm gear 2 44, so as to achieve stability during case detection, wherein the bottom of the case is exposed in front of the resistance rod 24 through the through cavity 47. In this way, through the above-mentioned multiple angle adjustment mechanisms, the situation in the prior art that the case is not easy to detect its top reading disk and its bottom part is avoided, and the effect of facilitating the change of the water meter body position and enriching the detection points is achieved.

[0054] After the detection is completed, the lifting height of the operating table 14 can be changed by the electric cylinder 13, so that after the detection device on the operating table 14 is transferred as a whole to the operating cabinet 11, the device can be stored. At the same time, covering the cover 12 can prevent dust, thus achieving the effect of protecting the structure of the detection device and maintaining its smooth operation.

[0055] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "including one..." do not exclude the presence of other identical elements in the process, method, article or device including the elements.

[0056] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A remote water meter pressure resistance detection device, comprising an operating table (14), characterized in that: A lifting platform (15) is provided above the operating table (14), a rotating seat (21) is fixedly connected to one side of the top of the lifting platform (15), a rotating disc (22) is rotatably connected to the rotating seat (21), a plurality of sliding cavities (221) are provided in a circular pattern at equal intervals around the rotating disc (22), one end of each sliding cavity (221) is fixedly connected to a retaining ring (25), a magnet short column (23) is slidably connected inside each sliding cavity (221), a resistance rod (24) is threadedly connected to the center of one end of each magnet short column (23) away from the retaining ring (25), and the diameter of one end of the plurality of resistance rods (24) away from the magnet short column (23) is The size is arranged in stages. An electric cylinder three (31) for pushing and pulling the magnet short column (23) is fixedly connected to the side of the top of the lifting platform (15) away from the rotating seat (21). A bracket (41) is fixedly connected to the side of the operating table (14) away from the electric cylinder three (31). The side of the bracket (41) away from the turntable (22) is rotatably connected to a base (42). A worm gear two (44) is rotatably connected to the middle of the base (42). A through cavity (47) is provided at the center of the worm gear two (44). Saddles (48) are detachably connected to both sides of the top of the worm gear two (44). A fixing clamp (49) is detachably connected to the top of each saddle (48).

2. A remote water meter pressure resistance detection device according to claim 1, characterized in that: Each retaining ring (25) can be magnetically attracted by the magnet short column (23).

3. A remote water meter pressure resistance detection device according to claim 2, characterized in that: A worm gear 1 (26) is fixedly connected to the outside of the turntable (22), a worm gear 1 (27) is rotatably connected to the top of the rotating seat (21), the worm gear 1 (26) and the worm gear 1 (27) are meshingly connected, one end of the worm gear 1 (27) is fixedly connected to a motor 1 (28), and a housing of the motor 1 (28) is fixedly connected to the side of the rotating seat (21).

4. A remote water meter pressure resistance detection device according to claim 3, characterized in that: An assembly cavity (32) is provided inside the telescopic end of the electric cylinder three (31), a pressure sensor (33) is fixedly installed inside the assembly cavity (32), and a pressure rod (34) is slidably connected inside the assembly cavity (32), and the pressure rod (34) can be magnetically attracted by the magnet short column (23).

5. A remote water meter pressure resistance detection device according to claim 4, characterized in that: A rotating shaft at one end of the base (42) is fixedly connected to a second motor (43), and a housing of the second motor (43) is correspondingly fixedly connected to a side surface of the bracket (41).

6. A remote water meter pressure resistance detection device according to claim 5, characterized in that: A worm gear 2 (45) is rotatably connected to a side of the base (42) away from the turntable (22), the worm gear 2 (45) is meshingly connected to a worm wheel 2 (44), one end of the worm gear 2 (45) is fixedly connected to a motor 3 (46), and a housing of the motor 3 (46) is fixedly connected to a side surface of the base (42).

7. A remote water meter pressure resistance detection device according to claim 6, characterized in that: A second electric cylinder (16) is fixedly mounted on one side of the bottom of the operating table (14); the top of the telescopic end of the second electric cylinder (16) is fixedly connected to the middle of the bottom of the lifting platform (15); both ends of the bottom of the lifting platform (15) are fixedly connected to guide rods (17); the outer ends of the two guide rods (17) are respectively slidably connected to the inner ends of the operating table (14).

8. A remote water meter pressure resistance detection device according to claim 7, characterized in that: It also includes an operating cabinet (11), an operating table (14) slidably connected to one side of the interior of the operating cabinet (11), an electric cylinder (13) fixedly connected to the middle of the bottom of the operating table (14), a cylinder body of the electric cylinder (13) correspondingly fixedly connected to the interior of the operating cabinet (11), and a cover plate (12) rotatably connected to one side of the top of the operating cabinet (11).

Citation Information

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