Temperature sensor probe stamping device

By setting the first alignment unit and the second alignment unit in the temperature sensor probe stamping device, and using components such as bidirectional screws, limiting plates and guide rods, the problem of inaccurate positioning of the ballast plate is solved, and the precise alignment and fixing of the ballast plate is achieved, which simplifies the operation process and improves the effect of stamping processing.

CN222970776UActive Publication Date: 2025-06-13ZHUZHOU HONGDA ELECTRONICS
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Patent Information

Application Number
CN202421590418.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-08
Publication Date
2025-06-13
Estimated Expiration
2034-07-08

AI Technical Summary

Technical Problem

The ballast plate limiting components of the existing temperature sensor probe stamping device are complex in structure and high in preparation. At the same time, the ballast plate is difficult to accurately position directly below the stamping part, which affects the stamping treatment effect.

Method used

By setting up the first alignment unit and the second alignment unit, using components such as bidirectional screws, limiting plates and guide rods, the precise alignment and fixing of the ballast plate is achieved, which simplifies the operation process and improves the positioning accuracy.

Benefits of technology

The preliminary and precise alignment and fixation of the ballast plate is achieved, the operation process is simplified, the effect and applicability of stamping treatment is improved, and the complexity and preparation cost of the equipment are reduced.

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Abstract

The utility model discloses a temperature sensor probe stamping device, which relates to the technical field of temperature sensor processing, and comprises a hollow base plate and a stamping support plate, and further comprises a first alignment unit and a second alignment unit which are arranged between the base plate and the stamping support plate, and a stamping assembly arranged on the base plate, the first alignment unit comprises a first bidirectional screw rod, a longitudinal batten, a first limiting plate and a bearing table; the second alignment unit comprises a second bidirectional lead screw, a transverse batten and a second limiting plate. According to the utility model, the two longitudinal battens which are in threaded connection with the first bidirectional screw rod are stressed to move relatively to drive the two L-shaped first limiting plates to adjust the distance on the outer side of the bearing table, and the two first limiting plates can align and fix a stamping carrier plate on the horizontal plane of the transverse center of the top of the bearing table after being drawn close to each other; and the equipment is simple and convenient to preliminarily align and fix the punching ballast plate.
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Description

Technical Field

[0001] The utility model relates to the technical field of temperature sensor processing, in particular to a stamping device for a temperature sensor probe. Background Technique

[0002] A temperature sensor refers to a sensor that can sense temperature and convert it into an available output signal. At present, during the production process of temperature sensors, the probe needs to be signal-connected to the temperature sensor body through a wire harness, and through a corresponding connecting device, subsequent positioning connection is carried out between the temperature sensor body and the probe. When the connecting device in the traditional technology performs subsequent positioning connection between the temperature sensor body and the probe, a protective sleeve is mostly sleeved between the probe and the temperature sensor body, and the protective sleeve is pressed tightly by stamping. However, when carrying the temperature sensor, due to the relatively fixed structure of the carrier plate, it is difficult to adapt to the carrying operations of temperature sensors of different model sizes, which greatly affects the overall applicability.

[0003] The publication (announcement) number is CN220073038U, which discloses a rapid connection device for a temperature sensor probe, including a bearing seat. The top end of the bearing seat is fixedly connected with a hydraulic cylinder, the output end of the hydraulic cylinder is fixedly connected with a stamping rod, the bottom end inside the bearing seat is fixedly connected with a support seat, the top end of the support seat is equipped with a stamping carrier plate, and one end of the support seat is provided with a detachable mechanism for forming the rapid assembly of the stamping carrier plate. The detachable mechanism includes a transmission seat, a central shaft rod, a force-bearing pull rod, an eccentric transmission plate, an extension seat and a derivation plate. The utility model relates to the technical field of temperature sensor processing; through the connection of the hydraulic cylinder and the stamping rod, the utility model can efficiently stamp and connect the probe of the temperature sensor, and by setting the detachable mechanism, the rapid replacement of the stamping carrier plate can be formed through the connection mode of the stop plate and the stamping carrier plate to meet the carrying requirements of temperature sensors of different models, thereby improving the overall applicability.

[0004] Although the above solution can quickly replace the stamping carrier plate to meet the carrying requirements of temperature sensors of different models, the detachable mechanism requires a large number of transmission parts and springs to cooperate. While the structure of the limiting parts of the stamping carrier plate of the equipment is complex and the preparation cost is high, it is difficult to accurately position the stamping carrier plate directly below the stamping part. Therefore, we propose a stamping device for a temperature sensor probe. Content of the Utility Model

[0005] The main purpose of the utility model is to provide a stamping device for a temperature sensor probe, which solves the problems that the structure of the limiting parts of the stamping carrier plate of the equipment is complex and the preparation cost is high, and at the same time, it is difficult to accurately position the stamping carrier plate directly below the stamping part by setting the first alignment unit and the second alignment unit.

[0006] To solve the above technical problems, the present utility model is realized through the following technical solutions: A stamping device for a temperature sensor probe includes a substrate with a hollow interior and a stamping carrier plate, and further includes: a first alignment unit and a second alignment unit disposed between the substrate and the stamping carrier plate, and a stamping assembly disposed on the substrate;

[0007] The first alignment unit includes a first bidirectional lead screw, a longitudinal strip plate, a first limiting plate, and a bearing table. The first bidirectional lead screw is movably disposed on the inner wall at one end of the substrate. There are two longitudinal strip plates in total, which respectively cooperate with the positive and negative two sections of symmetrically arranged threads on the first bidirectional lead screw. A transverse strip-shaped through groove is formed on the top surface of the substrate. The two first limiting plates are respectively fixedly disposed at the centers of the top surfaces of the two longitudinal strip plates and are located on the transverse strip-shaped through groove. The interior of the bearing table is hollow and is fixedly disposed at the center of the top surface of the substrate through a support column, and the first limiting plate is located outside the bearing table. The stamping carrier plate is placed on the top surface of the bearing table. One end of the first bidirectional lead screw that extends movably outside the substrate is fixedly provided with a first turntable;

[0008] The second alignment unit includes a second bidirectional lead screw, a transverse strip plate, and a second limiting plate. The second bidirectional lead screw is movably disposed on the inner wall at one end of the bearing table. There are two transverse strip plates in total, which respectively cooperate with the positive and negative two sections of symmetrically arranged threads on the second bidirectional lead screw. A longitudinal strip-shaped through groove is formed on the top surface of the bearing table. The two second limiting plates are respectively fixedly disposed at the centers of the top surfaces of the two transverse strip plates and are located on the longitudinal strip-shaped through groove. The first limiting plate and the second limiting plate are both in an "L" shape. One end of the second bidirectional lead screw that extends movably outside the bearing table is fixedly provided with a second turntable.

[0009] Preferably, the first alignment unit further includes a first guide rod, and the first guide rod is fixedly disposed on the inner wall at the other end of the substrate and movably penetrates through the two longitudinal strip plates.

[0010] Preferably, the second alignment unit further includes a second guide rod, and the second guide rod is fixedly disposed on the inner wall at one end of the bearing table and movably penetrates through the two transverse strip plates.

[0011] Preferably, the second bidirectional lead screw and the first bidirectional lead screw are perpendicularly arranged.

[0012] Preferably, the stamping assembly includes a support frame, a hydraulic cylinder, and a stamping rod. The support frame is fixedly disposed on the top surface of one side of the substrate. The hydraulic cylinder is fixedly installed on the top surface of one side of the support frame. The stamping rod is fixedly disposed at the output end of the hydraulic cylinder and is located directly above the bearing table.

[0013] Preferably, feet are fixedly disposed at the corners of the bottom surface of the substrate, and there are four feet in total, which are distributed in a rectangular array.

[0014] Compared with the prior art, the stamping device for a temperature sensor probe of the present utility model has the following beneficial effects:

[0015] 1. In the present utility model, by setting the first alignment unit, after the stamping carrier plate is placed on the top surface of the bearing table, by holding the first turntable, the first bidirectional screw rod can be controlled to rotate forward and backward on the substrate. The two longitudinal strip plates threadedly connected to the first bidirectional screw rod move relatively under the action of force, which can drive the two "L"-shaped first limit plates to adjust the distance outside the bearing table. The first guide rod is set to guide the sliding and translation of the two longitudinal strip plates to cooperate with their adjustment process. After the two first limit plates approach each other, the stamping carrier plate can be aligned and fixed on the horizontal plane at the transverse center of the top of the bearing table. The preliminary alignment and fixing operation of the stamping carrier plate by the equipment is simple.

[0016] 2. In the present utility model, by setting the second alignment unit, by holding the second turntable, the second bidirectional screw rod can be controlled to rotate forward and backward on the bearing table. The two transverse strip plates threadedly connected to the second bidirectional screw rod move relatively under the action of force, which can help the two "L"-shaped second limit plates to adjust the distance on the top surface of the bearing table. The second guide rod is set to guide the sliding and translation of the two transverse strip plates to cooperate with their adjustment process. After the two second limit plates approach each other, the stamping carrier plate can be further aligned and fixed on the horizontal plane at the longitudinal center of the top of the bearing table. The equipment can accurately position the stamping carrier plate to ensure the stamping treatment effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 It is the overall structural schematic diagram of the stamping device for a temperature sensor probe of the present utility model;

[0019] Figure 2 It is the front view structural schematic diagram of the stamping device for a temperature sensor probe of the present utility model;

[0020] Figure 3 For the present utility model Figure 2 It is the sectional view structural schematic diagram at A-A in

[0021] Figure 4 For the present utility model Figure 2 It is the sectional view structural schematic diagram at B-B in

[0022] Figure 5 It is the top view structural schematic diagram of the stamping device for a temperature sensor probe of the present utility model.

[0023] In the accompanying drawings, the list of components represented by each reference numeral is as follows:

[0024] 1. Substrate;

[0025] 2. First alignment unit; 201. First bidirectional lead screw; 202. Longitudinal strip; 203. First limiting plate; 204. Carrier table; 205. First guide rod;

[0026] 3. Second alignment unit; 301. Second bidirectional lead screw; 302. Transverse strip; 303. Second limiting plate; 304. Second guide rod;

[0027] 4. Stamping carrier plate;

[0028] 5. Stamping assembly; 501. Support frame; 502. Hydraulic cylinder; 503. Stamping rod;

[0029] 6. Legs. Detailed implementation manners

[0030] To make the technical means, creative features, achieved purposes and functions of the present utility model easy to understand, the present utility model will be further described below in conjunction with specific implementation manners.

[0031] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "outer", "front end", "rear end", "both ends", "one end", "the other end", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present utility model. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0032] In the description of the present utility model, it should be noted that unless otherwise clearly defined and limited, the terms "installed", "provided with", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations. Embodiment 1

[0033] As Figure 1 、 Figure 2 、 Figure 3 and Figure 5As shown in the figure, a stamping device for a temperature sensor probe includes a substrate 1 with a hollow interior and a stamping carrier plate 4, and further includes: a first alignment unit 2 and a second alignment unit 3 disposed between the substrate 1 and the stamping carrier plate 4, and a stamping assembly 5 disposed on the substrate 1;

[0034] The first alignment unit 2 includes a first bidirectional lead screw 201, a longitudinal strip 202, a first limit plate 203, and a carrier table 204. The first bidirectional lead screw 201 is movably disposed on the inner wall of one end of the substrate 1. There are two longitudinal strips 202 in total, which are respectively matched with the positive and negative two threaded segments symmetrically arranged on the first bidirectional lead screw 201. A transverse strip-shaped through groove is formed on the top surface of the substrate 1. Two first limit plates 203 are respectively fixedly disposed at the centers of the top surfaces of the two longitudinal strips 202 and are located on the transverse strip-shaped through groove. The carrier table 204 has a hollow interior and is fixedly disposed at the center of the top surface of the substrate 1 through a support column, and the first limit plate 203 is located outside the carrier table 204. The stamping carrier plate 4 is placed on the top surface of the carrier table 204;

[0035] The second alignment unit 3 includes a second bidirectional lead screw 301, a transverse strip 302, and a second limit plate 303. The second bidirectional lead screw 301 is movably disposed on the inner wall of one end of the carrier table 204. There are two transverse strips 302 in total, which are respectively matched with the positive and negative two threaded segments symmetrically arranged on the second bidirectional lead screw 301. A longitudinal strip-shaped through groove is formed on the top surface of the carrier table 204. Two second limit plates 303 are respectively fixedly disposed at the centers of the top surfaces of the two transverse strips 302 and are located on the longitudinal strip-shaped through groove. Both the first limit plate 203 and the second limit plate 303 are in an "L" shape.

[0036] Further, the first alignment unit 2 further includes a first guide rod 205. The first guide rod 205 is fixedly disposed on the inner wall of the other end of the substrate 1 and movably penetrates through the two longitudinal strips 202.

[0037] Further, the second bidirectional lead screw 301 is perpendicularly disposed to the first bidirectional lead screw 201.

[0038] Further, the stamping assembly 5 includes a support frame 501, a hydraulic cylinder 502, and a stamping rod 503. The support frame 501 is fixedly disposed on the top surface of one side of the substrate 1. The hydraulic cylinder 502 is fixedly installed on the top surface of one side of the support frame 501. The stamping rod 503 is fixedly disposed at the output end of the hydraulic cylinder 502 and is located directly above the carrier table 204.

[0039] The initial alignment and fixation of the stamping carrier plate 4 by the device through the first alignment unit 2 is simple and convenient. Embodiment 2

[0040] Such as Figure 1 、 Figure 4 And Figure 5As shown in the figure, a stamping device for a temperature sensor probe includes a substrate 1 with a hollow interior and a stamping carrier plate 4, and further includes: a first alignment unit 2 and a second alignment unit 3 disposed between the substrate 1 and the stamping carrier plate 4, and a stamping assembly 5 disposed on the substrate 1;

[0041] The first alignment unit 2 includes a first bidirectional lead screw 201, a longitudinal strip 202, a first limit plate 203, and a carrier table 204. The first bidirectional lead screw 201 is movably disposed on the inner wall of one end of the substrate 1. There are two longitudinal strips 202 in total, which respectively cooperate with the positive and negative two threaded segments symmetrically arranged on the first bidirectional lead screw 201. A transverse strip-shaped through groove is formed on the top surface of the substrate 1. The two first limit plates 203 are respectively fixedly disposed at the centers of the top surfaces of the two longitudinal strips 202 and are located on the transverse strip-shaped through groove. The carrier table 204 is hollow inside and is fixedly disposed at the center of the top surface of the substrate 1 through a support column, and the first limit plate 203 is located outside the carrier table 204. The stamping carrier plate 4 is placed on the top surface of the carrier table 204;

[0042] The second alignment unit 3 includes a second bidirectional lead screw 301, a transverse strip 302, and a second limit plate 303. The second bidirectional lead screw 301 is movably disposed on the inner wall of one end of the carrier table 204. There are two transverse strips 302 in total, which respectively cooperate with the positive and negative two threaded segments symmetrically arranged on the second bidirectional lead screw 301. A longitudinal strip-shaped through groove is formed on the top surface of the carrier table 204. The two second limit plates 303 are respectively fixedly disposed at the centers of the top surfaces of the two transverse strips 302 and are located on the longitudinal strip-shaped through groove. Both the first limit plate 203 and the second limit plate 303 are in an "L" shape.

[0043] Further, the second alignment unit 3 further includes a second guide rod 304. The second guide rod 304 is fixedly disposed on the inner wall of one end of the carrier table 204 and movably penetrates through the two transverse strips 302.

[0044] Further, the stamping assembly 5 includes a support frame 501, a hydraulic cylinder 502, and a stamping rod 503. The support frame 501 is fixedly disposed on the top surface of one side of the substrate 1. The hydraulic cylinder 502 is fixedly installed on the top surface of one side of the support frame 501. The stamping rod 503 is fixedly disposed at the output end of the hydraulic cylinder 502 and is located directly above the carrier table 204.

[0045] Further, feet 6 are fixedly disposed at the corners of the bottom surface of the substrate 1. There are four feet 6 in total and they are distributed in a rectangular array.

[0046] Through the second alignment unit 3, the device accurately positions the stamping carrier plate 4 to ensure the stamping treatment effect.

[0047] The working principle of the present utility model is as follows:

[0048] After the stamping carrier plate 4 is placed on the top surface of the bearing platform 204, the first two-way lead screw 201 is rotated forward and backward on the substrate 1 by holding the first turntable. The two longitudinal strip plates 202 threadedly connected to the first two-way lead screw 201 move relative to each other under the action of force, driving the two "L"-shaped first limiting plates 203 to adjust the distance outside the bearing platform 204. The first guide rod 205 guides the sliding and translation of the two longitudinal strip plates 202. After the two first limiting plates 203 approach each other, the stamping carrier plate 4 is positioned and fixed on the horizontal plane at the transverse center of the top of the bearing platform 204. By holding the second turntable, the second two-way lead screw 301 is rotated forward and backward on the bearing platform 204. The two transverse strip plates 302 threadedly connected to the second two-way lead screw 301 move relative to each other under the action of force to help the two "L"-shaped second limiting plates 303 adjust the distance on the top surface of the bearing platform 204. The second guide rod 304 guides the sliding and translation of the two transverse strip plates 302. After the two second limiting plates 303 approach each other, the stamping carrier plate 4 is further positioned and fixed on the horizontal plane at the longitudinal center of the top of the bearing platform 204.

[0049] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A temperature sensor probe stamping device, comprising a hollow substrate (1) and a stamping carrier plate (4), characterized in that: Also includes: A first alignment unit (2) and a second alignment unit (3) arranged between the base plate (1) and the stamping carrier plate (4), and a stamping assembly (5) arranged on the base plate (1); The first alignment unit (2) comprises a first bidirectional screw (201), a longitudinal strip (202), a first limit plate (203) and a bearing platform (204); the first bidirectional screw (201) is movably arranged on the inner wall of one end of the base plate (1); the longitudinal strip (202) is provided with two and respectively corresponds to the positive and negative sections of the thread symmetrically arranged on the first bidirectional screw (201); the top surface of the base plate (1) is provided with a transverse strip through groove; the two first limit plates (203) are respectively fixedly arranged at the center of the top surface of the two longitudinal strips (202) and are located on the transverse strip through groove; the bearing platform (204) is hollow inside and is fixedly arranged at the center of the top surface of the base plate (1) by a support, and the first limit plate (203) is located outside the bearing platform (204); the stamping carrier (4) is placed on the top surface of the bearing platform (204); The second alignment unit (3) comprises a second bidirectional screw (301), a transverse strip (302) and a second limit plate (303); the second bidirectional screw (301) is movably arranged on the inner wall of one end of the support platform (204); the transverse strip (302) is provided with two and respectively corresponds to the positive and negative sections of the thread symmetrically arranged on the second bidirectional screw (301); the top surface of the support platform (204) is provided with a longitudinal strip through groove; the two second limit plates (303) are respectively fixedly arranged at the center of the top surfaces of the two transverse strips (302) and are located on the longitudinal strip through groove; the first limit plate (203) and the second limit plate (303) are both in an "L" shape.

2. A temperature sensor probe stamping device according to claim 1, characterized in that: The first alignment unit (2) further comprises a first guide rod (205), the first guide rod (205) being fixedly arranged on the inner wall at the other end of the base plate (1) and movably passing through the two longitudinal strips (202).

3. A temperature sensor probe stamping device according to claim 1, characterized in that: The second alignment unit (3) further comprises a second guide rod (304), the second guide rod (304) being fixedly arranged on the inner wall of one end of the supporting platform (204) and movably passing through the two transverse strips (302).

4. A temperature sensor probe stamping device according to claim 1, characterized in that: The second bidirectional screw rod (301) and the first bidirectional screw rod (201) are arranged perpendicular to each other.

5. The temperature sensor probe punching device according to claim 1, characterized in that: The punching assembly (5) comprises a support frame (501), a hydraulic cylinder (502) and a punching rod (503); the support frame (501) is fixedly arranged on the top surface of one side of the base plate (1); the hydraulic cylinder (502) is fixedly installed on the top surface of one side of the support frame (501); and the punching rod (503) is fixedly arranged at the output end of the hydraulic cylinder (502) and is located directly above the bearing platform (204).

6. A temperature sensor probe stamping device according to claim 1, characterized in that: Support feet (6) are fixedly arranged at the corners of the bottom surface of the base plate (1), and there are four support feet (6) in total and they are distributed in a rectangular array.

Citation Information

Patent Citations

  • Quick connecting device for temperature sensor probe

    CN220073038U