Temperature measuring tube seat installation auxiliary device

By designing an auxiliary device for installing the temperature measuring tube seat, and utilizing a positioning and angle monitoring mechanism to achieve one-time angle adjustment, the problem of the complexity of tilting the temperature measuring tube seat in the existing technology is solved, and the convenience of installation and assembly efficiency are improved.

CN223519580UActive Publication Date: 2025-11-07YANGZHOU HUAYU PIPE FITTING CO LTD
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Patent Information

Application Number
CN202422428525.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-11-07
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

When installing the temperature measuring tube socket at an angle, the existing technology requires two angle adjustments, which increases the complexity of the operation and is not conducive to assembly.

Method used

An auxiliary device for installing a temperature measuring tube seat was designed, comprising a positioning mechanism, a spacing adjustment mechanism, and an angle monitoring mechanism. The clamping force is monitored by a pressure sensor, and the angle is adjusted in one step using a drive motor and a transmission shaft. The rotation of the preset angle is controlled by a digital display inclinometer.

Benefits of technology

The installation process of the temperature measuring tube socket is simplified, and the tilt setting can be completed with only one angle adjustment, which improves the convenience of installation and the efficiency of subsequent assembly.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223519580U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of temperature measuring tube seats, and particularly discloses a temperature measuring tube seat installation auxiliary device, which comprises a tube seat and a base, positioning mechanisms are symmetrically arranged on the front and the back of the tube seat, the base is arranged below the left side of the tube seat, supporting rod pieces are connected to the top of the base at equal intervals, and vertical plate pieces are connected to the top ends of the supporting rod pieces. Spacing adjusting mechanisms are symmetrically arranged in the vertical plate front and back, the positioning mechanism is connected with the spacing adjusting mechanisms, the positioning mechanism comprises an arc-shaped plate and a connecting plate, the device clamps and fixes a tube base through the spacing adjusting mechanisms, and after fixing is completed, a driving motor is started to drive the arc-shaped plate and the connecting plate to rotate. According to the digital display inclinometer, the transmission shaft drives the arc-shaped plate and the tube base to rotate, when the tube base rotates to the preset angle of the digital display inclinometer, the driving motor is controlled to be turned off through the external terminal, inclined arrangement of the tube base is completed, only one-time angle adjustment is needed, and therefore more convenience is achieved, and follow-up assembly of the tube base is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to temperature measuring pipe seat technical field, specifically related to a temperature measuring pipe seat installation auxiliary device. BACKGROUND

[0002] Temperature measuring pipe seat is divided into vertical installation and inclined installation according to installation direction, wherein, when the temperature measuring pipeline is inclined to install, the temperature measuring pipe seat is inclined to hang using ring sling, then the angle of the inclined temperature measuring pipe seat is adjusted again, because the temperature measuring pipe seat is adjusted twice, the complexity of operation is increased, and the assembly of temperature measuring pipe seat is not conducive. CONTENT OF UTILITY MODEL

[0003] The utility model discloses a temperature measuring pipe seat installation auxiliary device to solve the problem in the background art.

[0004] To achieve the above object, the utility model provides the following technical scheme:

[0005] A temperature measuring pipe seat installation auxiliary device, comprising:

[0006] The pipe seat and the base are symmetrically provided with a positioning mechanism, the base is arranged on the left side below the pipe seat, the top of the base is connected with a support rod, the top of the support rod is connected with a vertical plate, the vertical plate is symmetrically provided with a spacing adjustment mechanism, the positioning mechanism is connected with the spacing adjustment mechanism, the positioning mechanism comprises an arc plate and a connecting plate, the inner wall of the arc plate is attached to the pipe seat, and the connecting plate is arranged on the outer side of the arc plate.

[0007] The top of the positioning mechanism is connected with an angle monitoring mechanism, the angle monitoring mechanism comprises a driving motor, a transmission shaft, an extension block, a mounting plate and a digital inclinometer, the driving motor is fixedly connected to the middle part of the connecting plate on the rear side through a positioning bolt, the output end of the front side of the driving motor is connected with the transmission shaft, the front end of the transmission shaft penetrates through the connecting plate and is connected with the arc plate, the extension block is connected to the front side of the arc plate, the mounting plate is connected to the front side of the extension block, the digital inclinometer is connected to the top of the mounting plate, the front top of the mounting plate is connected with an inclined surface plate, and the top surface of the inclined surface plate is attached to the digital inclinometer.

[0008] Preferably, a rotating shaft is connected between the connecting plate on the front side and the arc plate, the rear end of the rotating shaft is connected with the arc plate, and the front end of the rotating shaft is connected with the bearing of the connecting plate, which guarantees the supporting effect of the arc plate on the front side and the rotating effect of the arc plate on the front side.

[0009] The gap is left between the overhanging block bottom surface, the mounting plate bottom surface and the rotating shaft, so that the overhanging block and the mounting plate are left with a gap from the connecting plate on the front side, and the connecting plate does not affect the rotation of the overhanging block.

[0010] Preferably, a device notch is arranged in the middle of the inner wall of the arc-shaped plate, and a pressure sensor is embedded in the device notch; the pressure sensor monitors the clamping force of the two sets of arc-shaped plates; when the clamping force reaches the preset value of the pressure sensor, the pressure sensor transmits data to an external terminal, and the external terminal receives the data and controls the double-shaft motor to be turned off.

[0011] Preferably, the spacing adjustment mechanism comprises a double-shaft motor, a drive screw, a translation plate and a threaded hole; the double-shaft motor is fixedly connected to the left middle part of the vertical plate through positioning bolts; the drive screw is symmetrically connected to the left and right sides of the double-shaft motor; the translation plate is symmetrically arranged on the left side of the vertical plate; the threaded hole is arranged in the middle of the translation plate and penetrates through the translation plate; one end of the drive screw away from the double-shaft motor penetrates through the threaded hole and is screw-connected with the threaded hole through external threads; the pipe base is arranged between the two sets of arc-shaped plates; the double-shaft motor is started to rotate the drive screw; the two sets of translation plates move towards the double-shaft motor in cooperation with the threaded hole; the arc-shaped plates move towards the pipe base in cooperation with the sliding plate and the horizontal plate; and the two sets of arc-shaped plates clamp and fix the pipe base.

[0012] Preferably, the spacing adjustment mechanism further comprises a sliding groove, a sliding plate and a horizontal plate; the sliding groove is symmetrically arranged on the left side of the vertical plate; the right end of the sliding groove penetrates through the vertical plate; the horizontal plate is symmetrically arranged on the right side of the vertical plate; the sliding plate is slidingly fitted in the sliding groove; the left and right sides of the sliding plate are connected with the translation plate and the horizontal plate; when the translation plate translates, the horizontal plate translates through the sliding plate.

[0013] The left end of the front side and the left end of the rear side of the horizontal plate are symmetrically connected with sliding inclined plates in an up-down manner, and the left side of the sliding inclined plate is slidingly fitted with the vertical plate, so that the stability of the horizontal plate is improved without affecting the forward and backward translation of the horizontal plate.

[0014] Preferably, the right side of the base is symmetrically connected with a reinforcing plate; the bottom end of the connecting plate is connected with a primary stabilizing plate; one side of the bottom of the primary stabilizing plate is connected with a secondary stabilizing plate; the bottom surface of the secondary stabilizing plate is slidingly fitted with the top surface of the reinforcing plate, so that the stability of the connecting plate is improved, and the pipe base is better supported.

[0015] Compared with the prior art, the utility model has the advantages that:

[0016] The utility model discloses a spacing adjusting mechanism makes the device to the pipe base carries out clamping fixed, through pressure sensor, monitors two groups of arc plate spare to the pipe base's clamping strength, prevents two groups of arc plate spare's clamping strength to be small or big, makes the device suitable for the pipe base of different pipe diameter, after fixing is completed, starts drive motor, through transmission shaft and drives arc plate spare and the pipe base to rotate, when the pipe base rotates to the preset angle of digital inclinometer, through external terminal, control drive motor closes, completes the inclination setting of pipe base, only needs to carry out angle adjustment once to be convenient, and be favorable to the subsequent assembly of pipe base. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the whole structure schematic diagram of the utility model;

[0018] Figure 2 It is the rear side structure schematic diagram of the utility model;

[0019] Figure 3 It is the extension block schematic diagram of the utility model;

[0020] Figure 4 It is the equipment notch schematic diagram of the utility model;

[0021] In the drawing: 10, pipe base;

[0022] 20, base plate; 201, reinforced plate spare; 202, primary stable plate spare; 203, secondary stable plate spare;

[0023] 30, positioning mechanism; 301, arc plate spare; 3011, equipment notch; 3012, pressure sensor; 302, connecting plate spare; 303, rotating shaft;

[0024] 40, vertical plate spare;

[0025] 50, spacing adjusting mechanism; 501, double-shaft motor; 502, drive screw; 503, translation plate spare; 504, screw hole; 505, sliding notch; 506, sliding plate spare; 507, horizontal plate spare; 508, sliding inclined plate;

[0026] 60, angle monitoring mechanism; 601, drive motor; 602, transmission shaft; 603, extension block; 604, mounting plate spare; 605, digital inclinometer; 606, inclined plate spare;

[0027] 70, support rod spare. DETAILED DESCRIPTION

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] Example:

[0030] Please see Figures 1-4 As shown, a temperature measuring tube socket installation auxiliary device includes:

[0031] The tube seat 10 and the base 20 are provided. The tube seat 10 is symmetrically provided with positioning mechanisms 30 at the front and back. The base 20 is located on the lower left side of the tube seat 10. Support rods 70 are equidistantly connected to the top of the base 20. The top of the support rods 70 is connected to a vertical plate 40. The vertical plate 40 is symmetrically provided with spacing adjustment mechanisms 50 at the front and back. The positioning mechanism 30 is connected to the spacing adjustment mechanism 50. The positioning mechanism 30 includes an arc-shaped plate 301 and a connecting plate 302. The inner wall of the arc-shaped plate 301 is in contact with the tube seat 10. The connecting plate 302 is located on the outer side of the arc-shaped plate 301.

[0032] An angle monitoring mechanism 60 is connected to the top of the positioning mechanism 30. The angle monitoring mechanism 60 includes a drive motor 601, a transmission shaft 602, an extension block 603, a mounting plate 604, and a digital inclinometer 605. The drive motor 601 is fixedly connected to the middle of the rear side of the connecting plate 302 located on the rear side by positioning bolts. The output end of the front side of the drive motor 601 is connected to the transmission shaft 602. The front end of the transmission shaft 602 passes through the connecting plate 302 and is connected to the arc-shaped plate 301. The extension block 603 is connected to the front side of the arc-shaped plate 301. The mounting plate 604 is connected to the front side of the extension block 603. The digital inclinometer 605 is connected to the top of the mounting plate 604. An inclined plate 606 is connected to the top of the front side of the mounting plate 604, and the top surface of the inclined plate 606 is in contact with the digital inclinometer 605.

[0033] refer to Figure 3 As shown, a rotating shaft 303 is connected between the connecting plate 302 and the arc-shaped plate 301 on the front side. The rear end of the rotating shaft 303 is connected to the arc-shaped plate 301, and the front end of the rotating shaft 303 is connected to the bearing of the connecting plate 302. This ensures the support effect for the arc-shaped plate 301 on the front side while also ensuring the rotation effect of the arc-shaped plate 301 on the front side.

[0034] The bottom surface of the extension block 603 and the bottom surface of the mounting plate 604 are both left with the rotating shaft 303, so that the extension block 603 and the mounting plate 604 are both left with the connecting plate 302 located on the front side, so as to prevent the connecting plate 302 from affecting the rotation of the extension block 603.

[0035] Reference is made to Figure 4 As shown in the figure, the inner wall of the arc-shaped plate 301 is provided with a device notch 3011 in the middle, and a pressure sensor 3012 is embedded in the device notch 3011. The pressure sensor 3012 monitors the clamping force of the two groups of arc-shaped plates 301. When the clamping force reaches the preset value of the pressure sensor 3012, the pressure sensor 3012 transmits data to the external terminal, and the external terminal receives the data and controls the double-shaft motor 501 to be closed.

[0036] Reference is made to Figure 1 , Figure 2 and Figure 4 As shown in the figure, the spacing adjustment mechanism 50 includes a double-shaft motor 501, a drive screw 502, a translation plate 503, and a threaded hole 504. The double-shaft motor 501 is fixedly connected to the left middle part of the vertical plate 40 by positioning bolts. The drive screw 502 is symmetrically connected to the left and right sides of the double-shaft motor 501. The translation plate 503 is symmetrically provided on the left side of the vertical plate 40. The threaded hole 504 is provided in the middle of the translation plate 503 and penetrates the translation plate 503 from front to back. One end of the drive screw 502 away from the double-shaft motor 501 penetrates the threaded hole 504 and is screw-connected to the threaded hole 504 through external threads. The pipe base 10 is arranged between the two groups of arc-shaped plates 301. The double-shaft motor 501 is started to rotate the drive screw 502, which cooperates with the threaded hole 504 to move the two groups of translation plates 503 towards the double-shaft motor 501. Thus, in cooperation with the sliding plate 506 and the horizontal plate 507, the arc-shaped plate 301 moves towards the pipe base 10, so that the two groups of arc-shaped plates 301 clamp and fix the pipe base 10.

[0037] Reference is made to Figure 1 , Figure 2 and Figure 4 As shown in the figure, the spacing adjustment mechanism 50 further includes a sliding groove 505, a sliding plate 506, and a horizontal plate 507. The sliding groove 505 is symmetrically provided on the left side of the vertical plate 40 from front to back, and the right end of the sliding groove 505 penetrates the vertical plate 40. The horizontal plate 507 is symmetrically provided on the right side of the vertical plate 40 from front to back. The sliding plate 506 is slidingly fitted in the sliding groove 505. The left and right sides of the sliding plate 506 are connected to the translation plate 503 and the horizontal plate 507, respectively. When the translation plate 503 translates, the horizontal plate 507 translates through the sliding plate 506.

[0038] The front left end and the rear left end of the horizontal plate 507 are symmetrically connected to the sliding inclined plate 508 from top to bottom, and the left side of the sliding inclined plate 508 is slidingly fitted with the vertical plate 40. This does not affect the forward and backward translation of the horizontal plate 507, while enhancing the stability of the horizontal plate 507.

[0039] Reference is made toFigure 1 and Figure 2 Figure 4 Figure 1 Figure 2 As shown in the figure, the right side of the base 20 is symmetrically connected with a reinforcing plate 201, the bottom end of the connecting plate 302 is connected with a first stabilizing plate 202, one side of the first stabilizing plate 202 is connected with a second stabilizing plate 203 at the bottom, and the bottom surface of the second stabilizing plate 203 is in sliding fit with the top surface of the reinforcing plate 201, so as to strengthen the stability of the connecting plate 302, thereby better supporting the pipe base 10.

[0040] In use, when the pipe base 10 needs to be installed, the pipe base 10 is arranged between the two groups of arc-shaped plates 301, the double-shaft motor 501 is started to rotate the drive screw 502, and the threaded hole 504 is matched to move the two groups of translation plates 503 towards the double-shaft motor 501, so as to match the sliding plate 506 and the transverse plate 507 to move the arc-shaped plate 301 towards the pipe base 10, so that the two groups of arc-shaped plates 301 clamp and fix the pipe base 10, the clamping force of the two groups of arc-shaped plates 301 is monitored by the pressure sensor 3012, when the clamping force reaches the preset value of the pressure sensor 3012, the pressure sensor 3012 transmits data to the external terminal, the external terminal receives data and controls the double-shaft motor 501 to be closed, the drive motor 601 is started to rotate the transmission shaft 602, so as to match the arc-shaped plate 301 and the rotating shaft 303 to rotate the pipe base 10, when the pipe base 10 is rotated to the preset angle of the digital inclinometer 605, the digital inclinometer 605 transmits data to the external terminal, the external terminal receives data and controls the drive motor 601 to be closed, and the setting of the inclination angle of the pipe base 10 is completed, only one angle adjustment is needed, so it is more convenient, and it is beneficial to the subsequent assembly of the pipe base 10.

[0041] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A temperature sensing tube seat installation aid, characterised in that, Include: The base (20) is arranged at the left lower side of the pipe seat (10), the pipe seat (10) is provided with positioning mechanism (30) symmetrically in front and back, the top of the base (20) is connected with support rod (70) equidistantly, the top end of the support rod (70) is connected with vertical plate (40), the vertical plate (40) is provided with spacing adjustment mechanism (50) symmetrically in front and back inside, the positioning mechanism (30) is connected with spacing adjustment mechanism (50), the positioning mechanism (30) includes arc plate (301) and connecting plate (302), the inner wall of the arc plate (301) is fitted with the pipe seat (10), the connecting plate (302) is arranged on the outer side of the arc plate (301); The top end of the positioning mechanism (30) is connected with angle monitoring mechanism (60), the angle monitoring mechanism (60) includes drive motor (601), transmission shaft (602), overhanging block (603), mounting plate (604) and digital inclinometer (605), the drive motor (601) is fixedly connected to the rear side of the connecting plate (302) in the middle of the rear side through positioning bolt, the output end of the drive motor (601) is connected with transmission shaft (602) in front side, the transmission shaft (602) penetrates through the connecting plate (302) at the front end, and is connected with the arc plate (301), the overhanging block (603) is connected to the front side of the arc plate (301), the mounting plate (604) is connected to the front side of the overhanging block (603), the digital inclinometer (605) is connected to the top end of the mounting plate (604), the front side top end of the mounting plate (604) is connected with inclined plane plate (606), and the top surface of the inclined plane plate (606) is fitted with the digital inclinometer (605).

2. The temperature probe installation aid of claim 1, wherein: The connecting plate (302) and the arc plate (301) are connected between the front side of the connecting plate (302) and the arc plate (301), and the rear end of the rotating shaft (303) is connected with the arc plate (301), and the front end of the rotating shaft (303) is connected with the bearing of the connecting plate (302); The bottom surface of the overhanging block (603) and the bottom surface of the mounting plate (604) are both left with gap between the rotating shaft (303).

3. The temperature probe installation aid of claim 1, wherein: The inner wall of the arc plate (301) is provided with equipment notch (3011) in the middle, and the pressure sensor (3012) is embedded in the equipment notch (3011).

4. The temperature probe installation aid of claim 1, wherein: The spacing adjusting mechanism (50) comprises a double-shaft motor (501), a driving screw rod (502), a translation plate (503) and a threaded hole (504), the double-shaft motor (501) is fixedly connected to the left middle part of the vertical plate (40) through positioning bolts, the driving screw rod (502) is symmetrically connected to the left and right sides of the double-shaft motor (501), the translation plate (503) is symmetrically arranged on the left side of the vertical plate (40), the threaded hole (504) is arranged in the middle of the translation plate (503), and the threaded hole (504) penetrates through the translation plate (503) from front to back, and the end of the driving screw rod (502) away from the double-shaft motor (501) penetrates through the threaded hole (504), and the driving screw rod (502) is screw-connected with the threaded hole (504) through external threads.

5. The temperature probe installation aid of claim 4, wherein: The spacing adjusting mechanism (50) further comprises a sliding groove (505), a sliding plate (506) and a horizontal plate (507), the sliding groove (505) is symmetrically arranged on the left side of the vertical plate (40), and the right end of the sliding groove (505) penetrates through the vertical plate (40), the horizontal plate (507) is symmetrically arranged on the right side of the vertical plate (40), the sliding plate (506) is slidingly fitted in the sliding groove (505), and the left and right sides of the sliding plate (506) are connected with the translation plate (503) and the horizontal plate (507) respectively. The left end of the front side and the left end of the rear side of the horizontal plate (507) are symmetrically connected with sliding inclined plates (508) from top to bottom, and the left side of the sliding inclined plate (508) is slidingly fitted with the vertical plate (40).

6. The temperature probe installation aid of claim 1, wherein: The right side of the base (20) is symmetrically connected with a reinforcing plate (201) from front to back, the bottom end of the connecting plate (302) is connected with a primary stabilizing plate (202), one side of the primary stabilizing plate (202) is connected with a secondary stabilizing plate (203) at the bottom, and the bottom surface of the secondary stabilizing plate (203) is slidingly fitted with the top surface of the reinforcing plate (201).