Rotary temperature measuring structure

The pneumatically driven rotary temperature measuring structure utilizes a double-acting threaded cylinder and a pen-shaped cylinder in conjunction with a gear and rack transmission to achieve the extension, retraction, and rotation of the temperature probe. This solves the problem of insufficient flexibility of traditional temperature measuring mechanisms in confined spaces, and improves temperature measuring efficiency and accuracy.

CN224051457UActive Publication Date: 2026-03-27SHENZHEN LISHIZHI TECH CO LTD
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Patent Information

Application Number
CN202521380434.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-02
Publication Date
2026-03-27
Estimated Expiration
2035-07-02

AI Technical Summary

Technical Problem

Traditional temperature measurement mechanisms lack flexibility in complex environments and cannot flexibly adjust their position and angle in confined spaces, resulting in low temperature measurement efficiency and difficulty in guaranteeing accuracy.

Method used

The rotary temperature measuring structure is pneumatically driven, using a double-acting threaded cylinder and a pen-shaped cylinder in conjunction with a gear and rack transmission to realize the extension and rotation of the temperature measuring probe. Combined with a solenoid valve group to control the cylinder action, it achieves automated linkage.

Benefits of technology

It enables the temperature probe to flexibly extend, retract, and rotate in confined spaces, improving the flexibility and accuracy of temperature measurement, reducing the need for adaptability to complex environments, lowering costs, and simplifying system design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotary temperature measuring structure, which comprises a main mounting plate, the top of the main mounting plate is fixedly connected with a protective cover, the top of the main mounting plate is provided with a telescoping mechanism, a rotating mechanism and a temperature measuring mechanism, the telescoping mechanism comprises a threaded cylinder and a cylinder mounting seat, the threaded cylinder is mounted on the cylinder mounting seat, and the rotating mechanism is mounted on the cylinder mounting seat. And the rotating mechanism is used for realizing the telescopic action of the temperature measuring probe and comprises a pen-shaped cylinder, a guide rail pair, a gear rack, a rotating base, a deep groove ball bearing and a driving arm, the pen-shaped cylinder is fixedly connected with the main mounting plate, and the front end of the pen-shaped cylinder is connected with the guide rail connecting plate. According to the utility model, the double-acting threaded cylinder is used as a telescoping power source, the piston linearly moves to push the temperature measuring probe to telescope, and the pen-shaped cylinder is matched with the gear and the rack for transmission to drive the gear to rotate, so that the temperature measuring probe can rotate, the temperature measuring requirements of different positions in a narrow space are met, and the problem of insufficient flexibility of a traditional temperature measuring mechanism is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to temperature measurement structure technical field especially relates to a rotary temperature measurement structure. BACKGROUND

[0002] In the scene of lithium battery cooling equipment and industrial detection, there are special needs for temperature measurement under complex environment, especially the temperature measurement in narrow space needs the equipment to have the function characteristics of being rotatable and telescopic. The traditional temperature measurement mechanism mostly adopts electric drive mode, such as the combination of screw and synchronous motor or servo system, although it can guarantee certain measurement accuracy, but there are obvious defects such as complex mechanism and strong dependence on electricity, and it is not adaptable in many scenes. For example, in the industrial equipment detection or laboratory research with limited space, the traditional electric temperature measurement mechanism is difficult to adjust position and angle flexibly due to complex structure, cannot accurately position to the hidden or narrow area for temperature measurement, resulting in low temperature measurement efficiency and difficult to guarantee accuracy. Therefore, a telescopic and rotatable temperature measurement mechanism based on pneumatic drive is urgently needed to solve the problem of insufficient flexibility and poor adaptability of traditional temperature measurement equipment in complex environment. SUMMARY

[0003] The utility model aims at solving the shortcoming in prior art, and provides a rotary temperature measurement structure.

[0004] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0005] A rotary temperature measurement structure, including main mounting plate, the top of main mounting plate is fixedly connected with the protective cover, the top of main mounting plate is provided with telescopic mechanism, rotating mechanism and temperature measurement mechanism, the telescopic mechanism includes screw air cylinder, cylinder mounting seat, screw air cylinder is installed on cylinder mounting seat, is used for realizing the telescopic action of temperature measurement probe the rotating mechanism includes pen type air cylinder, guide rail pair, gear rack, rotating base, deep groove ball bearing, drive arm, pen type air cylinder is fixedly connected with main mounting plate, pen type air cylinder front end is connected with guide rail connecting plate, guide rail connecting plate is fixed with rack, rack is drivenly connected with gear, gear is fixedly connected with deep groove ball bearing, rotating base and drive arm, is used for realizing the rotating action of temperature measurement probe, the temperature measurement mechanism includes temperature measurement probe, probe mounting seat, temperature measurement probe is installed on probe mounting seat, drive arm is fixedly connected with cylinder mounting seat and probe mounting seat respectively.

[0006] Preferably, the telescopic mechanism selects double-acting screw air cylinder as telescopic power source, and the linear motion of the cylinder piston pushes the temperature measurement probe to telescope.

[0007] Preferably, the rotating mechanism adopts a pen type cylinder matched with a guide rail pair and a gear and rack transmission, the pen type cylinder reciprocating motion drives the rack linear motion, and further drives the gear rotation, realizing the rotation of the temperature measuring probe.

[0008] Preferably, the temperature measuring probe can perform non-contact temperature measurement in a narrow space, and is linked with the telescopic mechanism and the rotating mechanism through the driving arm.

[0009] Preferably, the outer wall of the main mounting plate is fixedly connected with an electromagnetic valve group, the electromagnetic valve group controls the cylinder action in the telescopic mechanism and the rotating mechanism, and realizes the automatic linkage of telescoping and rotating in combination with pneumatic logic control.

[0010] The beneficial effects of the utility model are:

[0011] 1. By setting a double-acting threaded cylinder as a telescopic power source, the temperature measuring probe is pushed to telescope through the linear motion of the piston, the pen type cylinder is matched with a gear and rack transmission, drives the gear to rotate, makes the temperature measuring probe rotate, meets the temperature measurement demand of different positions in a narrow space, and solves the problem of insufficient flexibility of the traditional temperature measuring mechanism.

[0012] 2. By setting an electromagnetic valve group to control the cylinder action, the telescoping and rotating automation linkage is realized in combination with pneumatic logic, a complex power system is not needed, the cost is reduced, the deep groove ball bearing is matched with the driving arm to ensure stable movement, the protective cover protects the internal structure, and the overall lightweight design is suitable for various scenes such as industrial detection and laboratory research. BRIEF DESCRIPTION OF DRAWINGS

[0013] Fig. 1 A main body structure schematic view of a rotating temperature measuring structure is provided for the utility model;

[0014] Fig. 2 A back structure schematic view of a rotating temperature measuring structure is provided for the utility model;

[0015] Fig. 3 A protective cover internal main body structure schematic view of a rotating temperature measuring structure is provided for the utility model.

[0016] In the drawing: 1, installation main plate, 2, pen type cylinder, 3, gear pair, 4, gear, 5, rotating base, 6, temperature measuring probe, 7, guide rail connecting plate, 8, threaded cylinder, 9, driving arm, 10, cylinder mounting seat, 11, probe mounting seat, 12, protective cover, 13, deep groove ball bearing, 15, rack. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only a part of the embodiments of the utility model, rather than all the embodiments.

[0018] Referring to Figs. 1-3 A rotating temperature measurement structure, comprising a main mounting plate 1, a protective cover 12 is fixedly connected to the top of the main mounting plate 1, a telescopic mechanism, a rotating mechanism and a temperature measurement mechanism are arranged on the top of the main mounting plate 1, the telescopic mechanism comprises a threaded cylinder 8 and a cylinder mounting seat 10, the threaded cylinder 8 is installed on the cylinder mounting seat 10 and is used to realize the telescopic action of a temperature measurement probe 6, the rotating mechanism comprises a pen type cylinder 2, a guide rail pair, a gear and rack 15, a rotating base 5, a deep groove ball bearing 13 and a driving arm 9, the pen type cylinder 2 is fixedly connected with the main mounting plate 1, the front end of the pen type cylinder 2 is connected with a guide rail connecting plate 7, the guide rail connecting plate 7 is fixedly provided with the rack 15, the rack 15 is drivingly connected with a gear 4, the gear 4 is fixedly connected with the deep groove ball bearing 13, the rotating base 5 and the driving arm 9, and is used to realize the rotating action of the temperature measurement probe 6, the temperature measurement mechanism comprises the temperature measurement probe 6 and a probe mounting seat 11, the temperature measurement probe 6 is installed on the probe mounting seat 11, and the driving arm 9 is fixedly connected with the cylinder mounting seat 10 and the probe mounting seat 11 respectively, the double-acting threaded cylinder 8 is arranged as a telescopic power source, the temperature measurement probe 6 is pushed to realize telescopic action through linear motion of a piston, the pen type cylinder 2 is driven to rotate through gear and rack 15 transmission, the gear 4 is driven to rotate, and the temperature measurement probe 6 can rotate, so that the temperature measurement demand at different positions in a narrow space is met, and the problem of insufficient flexibility of a traditional temperature measurement mechanism is solved.

[0019] In the utility model, the telescopic mechanism selects the double-acting threaded cylinder 8 as the telescopic power source, the temperature measurement probe 6 is pushed to realize telescopic action through linear motion of a piston of the cylinder, the double-acting threaded cylinder 8 is arranged as the telescopic power source, the temperature measurement probe 6 is pushed to realize telescopic action through linear motion of a piston;

[0020] The rotating mechanism adopts pen type cylinder 2 cooperation guide rail pair and gear and rack 15 transmission, pen type cylinder 2 reciprocating motion drives rack 15 linear motion, and then drives gear 4 to rotate, realizes temperature measurement probe 6 rotation, temperature measurement probe 6 can carry out non-contact temperature measurement in narrow space, and through driving arm 9 and telescopic mechanism, rotating mechanism linkage, pen type cylinder 2 cooperation gear and rack 15 transmission, gear 4 is driven to rotate, makes temperature measurement probe 6 can rotate, meets the temperature measurement demand at different positions in a narrow space, solves the problem of insufficient flexibility of a traditional temperature measurement mechanism;

[0021] The outer wall of the main mounting plate 1 is fixedly connected with an electromagnetic valve group, the electromagnetic valve group controls the cylinder action in the telescopic mechanism and the rotating mechanism, combined with pneumatic logic control, realizes the automatic linkage of telescopic and rotation, through setting the electromagnetic valve group to control the cylinder action, combined with pneumatic logic to realize the automatic linkage of telescopic and rotation, without complex power system.

[0022] Working principle: in the device idle, all components, its reference structure piece is connected, the specific connecting means should be referred to the following working principle, the order of each component between the working sequence is completed, its detailed connecting means is the prior art, the following mainly introduces the working principle and process, no longer to do the explanation, when using the device, the installation plate 1 is fixed, the electromagnetic valve group controls the double-acting threaded air cylinder 8 piston linear motion, through the cylinder mounting seat 10 and drive arm 9 drive temperature probe 6 telescopic, at the same time pen type cylinder 2 reciprocating motion pushes rack 15 on the guide rail connecting plate 7 linear motion, rack 15 drive gear 4 rotation, gear 4 through the deep groove ball bearing 13 and rotary base 5 drive arm 9 drive arm 9 linkage cylinder mounting seat 10 and probe mounting seat 11, realize temperature probe 6 in the narrow space telescopic and rotary action, complete non-contact temperature measurement, protective cover 12 protects the internal mechanism from external interference.

[0023] The above is only the preferred embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art within the technical range disclosed by the present application, according to the technical scheme and the utility model concept of the present application, equivalent replacement or change, should be covered in the protection scope of the present application.

Claims

1. A rotating temperature measurement structure, comprising a main mounting plate (1), a top of the main mounting plate (1) is fixedly connected with a protective cover (12), characterized in that, The main mounting plate (1) top is provided with telescopic mechanism, rotating mechanism and temperature measuring mechanism, the telescopic mechanism includes screw air cylinder (8), cylinder mounting seat (10), the screw air cylinder (8) is installed on cylinder mounting seat (10), is used to realize the telescopic action of temperature measuring probe (6), the rotating mechanism includes pen type air cylinder (2), guide rail pair, gear rack (15), rotating base (5), deep groove ball bearing (13), drive arm (9), the pen type air cylinder (2) and main mounting plate (1) fixed connection, the pen type air cylinder (2) front end is connected with guide rail connecting plate (7), the guide rail connecting plate (7) is fixed with rack (15), the rack (15) is drivenly connected with gear (4), the gear (4) is fixedly connected with deep groove ball bearing (13), rotating base (5) and drive arm (9), for realizing the rotating action of temperature measuring probe (6), the temperature measuring mechanism includes temperature measuring probe (6), probe mounting seat (11), the temperature measuring probe (6) is installed on probe mounting seat (11), the drive arm (9) is fixedly connected with cylinder mounting seat (10) and probe mounting seat (11) respectively.

2. The rotation temperature measurement structure according to claim 1, wherein The telescopic mechanism selects double-acting screw air cylinder (8) as telescopic power source, and the linear motion of the cylinder piston pushes the temperature measuring probe (6) to stretch out and retract.

3. The rotation temperature measurement structure according to claim 1, wherein The rotating mechanism adopts pen type air cylinder (2) to cooperate with guide rail pair and gear rack (15) transmission, and the reciprocating motion of pen type air cylinder (2) drives the linear motion of rack (15), and further drives the rotation of gear (4), realizes the rotation of temperature measuring probe (6).

4. The rotation temperature measurement structure according to claim 1, wherein The temperature measuring probe (6) can carry out non-contact temperature measurement in narrow space, and is linked with telescopic mechanism and rotating mechanism through drive arm (9).

5. The rotation temperature measurement structure according to claim 1, wherein The outer wall of the main mounting plate (1) is fixedly connected with electromagnetic valve group, and the electromagnetic valve group controls the cylinder action in telescopic mechanism and rotating mechanism, combines pneumatic logic control, realizes the automatic linkage of telescoping and rotation.