Titanium sheet anti-dislocation detection equipment

By designing a titanium sheet misalignment detection device, a probe is electrically connected to the titanium sheet, a voltage meter detects the voltage, and a control component displays and an alarm component sounds an alarm. This solves the problem of misalignment during titanium sheet installation and achieves efficient and accurate detection results.

CN223741468UActive Publication Date: 2025-12-30WUXI ESPRIT TECH CO LTD
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Patent Information

Application Number
CN202520123763.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-12-30
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

During the installation of titanium sheets, misalignment is prone to occur in multi-layered titanium sheets. Existing technology lacks effective detection methods, leading to unqualified installation.

Method used

A titanium sheet misalignment detection device was designed, including a stabilizing component, a probe, a pressure gauge, a control component, a display component, and an alarm component. The probe is electrically connected to the titanium sheet, the pressure gauge detects voltage information, the control component displays the information, and the alarm component sounds an alarm, thus realizing automated detection.

Benefits of technology

It achieves efficient and accurate titanium sheet installation and inspection, ensuring that the titanium sheets are not misaligned within the carrier, thus improving inspection efficiency and accuracy. It has a simple structure and is easy to operate.

✦ Generated by Eureka AI based on patent content.

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Abstract

One end of each probe can abut against a titanium sheet, the other end of each probe is connected with a power source, the probes at the two ends of the same titanium sheet are connected with a negative electrode power source and a positive electrode power source respectively, and when the same titanium sheet is inserted into limiting grooves in the same horizontal plane in a carrier, the probes at the two ends of the titanium sheet abut against the two ends of the titanium sheet respectively; the titanium sheet and the probes at the two ends of the titanium sheet form a path, the voltage measuring instrument detects voltage and transmits voltage information to the control assembly, the control assembly transmits the information to the display assembly for display, at the moment, it can be judged that the titanium sheet is installed in the carrier without dislocation and is qualified, and otherwise, the titanium sheet is unqualified. According to the titanium sheet anti-dislocation detection equipment, anti-dislocation detection can be efficiently carried out on installation of multiple layers of titanium sheets, the structure is simple, operation is convenient, and the detection accuracy rate is high.
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Description

Technical Field

[0001] This utility model relates to the field of titanium sheet installation technology, and in particular to a titanium sheet misalignment detection device. Background Technology

[0002] Titanium sheets have a silvery-gray, glossy appearance. Physically, titanium has a relatively low density, approximately 4.5 g / cm³. 3 It has high strength, even higher than many steels, and also has good heat resistance.

[0003] Titanium has a very high melting point, around 1668℃. In terms of chemical properties, titanium metal is very stable at room temperature and has good corrosion resistance. It can resist the erosion of the atmosphere, seawater, and many acids and alkalis because a dense oxide film can form on the surface of titanium.

[0004] Titanium sheets have wide applications in the aerospace field, such as in the manufacture of aircraft engine components and fuselage frames. This is due to its high strength and low density, which helps reduce the weight of aircraft while maintaining structural strength. In the medical field, titanium alloys can be used to make artificial joints and dental implants because their good biocompatibility minimizes rejection reactions in the human body. Titanium also has applications in the chemical industry, used to manufacture various corrosion-resistant reaction vessels and other equipment.

[0005] In related technologies, such as Figure 6 As shown, multi-layered titanium sheets need to be intermittently inserted into a titanium sheet carrier. The titanium sheet carrier is an enclosed frame carrier, which includes multiple limiting frames. The inner side of the limiting frames of the carrier is provided with multiple adjacent limiting slots. The same titanium sheet needs to be inserted into and confined in the limiting slots on the same horizontal plane. In actual operation, most of the titanium sheet will be exposed after being inserted into the carrier. The limiting slots limit the titanium sheet at multiple points. The same titanium sheet often misaligns during the insertion of the limiting slots, that is, the same titanium sheet may be inserted into limiting slots on different horizontal planes.

[0006] In practical applications, after multi-layer titanium sheets are inserted into the carrier, a titanium sheet misalignment detection device is needed to efficiently detect the misalignment of the multi-layer titanium sheets installed in the carrier and to detect whether there is any misalignment of the multi-layer titanium sheets in the carrier. Utility Model Content

[0007] In view of the problems in the related technologies, this application discloses a titanium sheet misalignment detection device, which solves the problems existing in the background technology.

[0008] To achieve the above objectives, this application provides the following technical solution:

[0009] A titanium sheet misalignment detection device includes a detection body with a stabilizing component inside. A carrier with multiple layers of titanium sheets inserted is balanced and stabilized by the stabilizing component. Multiple probes are evenly distributed on both sides of the stabilizing component. One end of each probe can abut against the titanium sheet, and the other end is connected to a power source. The probes at both ends of the same titanium sheet are connected to the negative and positive power sources, respectively. A pressure gauge is connected to the power source of the probes. The detection body also includes a control component, a display component, and an alarm component. The control component is controlled and connected to each component in the detection body. The pressure gauge is signal-connected to the control component. The control component is signal-connected to the display component and the alarm component.

[0010] As a further embodiment of this application: the probe is fixedly mounted on the movable plate, the movable plate is poweredly connected to the movable end of the moving power device, the moving power device drives the probe to move through the movable plate, and the moving power device is signal-controlled connected to the control component.

[0011] As a further aspect of this application: the stabilizing component includes a stabilizing cylinder, which is a cylindrical structure. The stabilizing cylinder can stabilize and limit the position of the carrier. The stabilizing cylinder has detection ports at both ends of the titanium sheet. The detection ports are through holes, and the probe abuts against the titanium sheet through the detection ports.

[0012] As a further aspect of this application: the bottom of the stabilizing cylinder is provided with a stabilizing base, the bottom of the stabilizing cylinder is provided with multiple stabilizing holes, and the stabilizing base is provided with multiple stabilizing columns at corresponding positions. The stabilizing columns are inserted into the stabilizing holes to achieve stabilization and positioning of the stabilizing cylinder.

[0013] As a further aspect of this application: the mobile power device includes a cylinder.

[0014] As a further aspect of this application, the control component includes a programmable logic controller.

[0015] As a further aspect of this application: the display component includes a touch display screen.

[0016] As a further aspect of this application: the alarm component includes a three-color alarm light.

[0017] In summary, the beneficial effects of this application are as follows:

[0018] 1. A titanium sheet misalignment detection device includes a detection body with a stabilizing component inside. A carrier with multiple layers of titanium sheets inserted is balanced and stabilized by the stabilizing component. Multiple probes are evenly distributed on both sides of the stabilizing component. One end of each probe can abut against a titanium sheet, and the other end is connected to a power source. The probes at both ends of the same titanium sheet are connected to the negative and positive power sources, respectively. A pressure gauge is connected to the probe power source. The detection body also includes a control component, a display component, and an alarm component. The control component is connected to all components within the detection body. The pressure gauge signal is connected to the control component, the control component is connected to the display component, and the control component is connected to the alarm component. When the same titanium sheet is inserted into the same horizontal limiting groove within the carrier, the probes at both ends of the titanium sheet abut against the titanium sheet. When the titanium sheet and the probes at both ends are in contact, a path is formed, the pressure gauge detects the voltage, and transmits the voltage information to the control component. The control component then transmits the information to the display component for display. At this point, it can be determined that the titanium sheet is installed correctly within the carrier and the installation is qualified. However, if the same titanium sheet is not inserted into the same horizontal limiting groove within the carrier, the probe at one end of the titanium sheet cannot contact the titanium sheet, and the titanium sheet and the probes at both ends cannot form a path. The pressure gauge cannot detect the voltage, and therefore cannot transmit the voltage information to the control component. The control component then transmits the no-voltage information to the display component for display, and the alarm component sounds an alarm. At this point, it can be determined that the titanium sheet is misaligned within the carrier and the installation is unqualified. Adjustment and installation are required to achieve the required qualification.

[0019] This titanium sheet misalignment detection device can efficiently detect misalignment in multi-layer titanium sheet installations. It has a simple structure, is easy to operate, and has a high detection accuracy.

[0020] 2. The probe is fixedly mounted on the moving plate, and the moving plate is connected to the movable end of the moving power device. The moving power device drives the probe to move through the moving plate, which improves the detection efficiency and automation.

[0021] 3. The stabilization component includes a stabilizing cylinder, which has a cylindrical structure. The stabilizing cylinder can stabilize and limit the vehicle inside, and the stabilizing cylinder fully surrounds and limits the vehicle, improving the vehicle's stability and detection accuracy.

[0022] 4. The bottom of the stabilizing cylinder is equipped with a stabilizing base, and the bottom of the stabilizing cylinder is equipped with multiple stabilizing holes. The stabilizing base is equipped with multiple stabilizing columns at corresponding positions. The stabilizing columns are inserted into the stabilizing holes to achieve stabilization of the stabilizing cylinder. The stabilizing holes and stabilizing columns work together to achieve efficient stabilization of the vehicle. The structure is simple and the operation is convenient. Attached Figure Description

[0023] The accompanying drawings are provided to further understand this application and form part of the specification. They are used together with the embodiments of this application to explain this application and do not constitute a limitation thereof.

[0024] In the attached diagram:

[0025] Figure 1 This is a schematic diagram of the structure of this application.

[0026] Figure 2 This is an enlarged structural diagram of the left side of the stabilizing cylinder in this application.

[0027] Figure 3 This is an enlarged structural diagram of the right side of the stabilizing cylinder in this application.

[0028] Figure 4 This is a schematic diagram of the structure of the stabilizing cylinder in this application.

[0029] Figure 5 This is a schematic diagram of the structure of the stable base of this application.

[0030] Figure 6 A schematic diagram of a structure for inserting multiple layers of titanium sheets into a carrier.

[0031] Figure label annotations:

[0032] 1. Detection body; 2. Probe; 3. Pressure gauge; 4. Control component; 5. Display component; 6. Alarm component; 7. Moving plate; 8. Moving power unit; 9. Stabilizing cylinder; 10. Detection port; 11. Stabilizing base; 12. Stabilizing hole; 13. Stabilizing column; 14. Titanium sheet; 15. Carrier; Detailed Implementation

[0033] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects disclosed in this embodiment as detailed in the appended claims.

[0034] It should be noted that all directional indicators in the embodiments (such as up, down, left, right, front, back, etc.) are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0035] Furthermore, the use of terms such as "first" and "second" in the embodiments is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit this application. It is merely to distinguish components or operations described using the same technical terms and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If a combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0036] To further understand the content, features, and effects of this application, the following embodiments are provided, and detailed descriptions are given below in conjunction with the accompanying drawings:

[0037] like Figure 1-6 As shown;

[0038] The titanium sheet 14 anti-misalignment detection device includes a detection body 1, which is a box-type operating structure.

[0039] The detection body 1 is equipped with a stabilizing component, and the carrier 15 with the multi-layer titanium sheet 14 inserted is balanced and stabilized by the stabilizing component.

[0040] The stabilizing component includes a stabilizing cylinder 9, which is a cylindrical structure. The inside of the stabilizing cylinder 9 can stabilize and limit the position of the carrier 15. The stabilizing cylinder 9 has detection ports 10 at both ends of the titanium sheet 14. The detection ports 10 are through holes, and the probe 2 abuts against the titanium sheet 14 through the detection ports 10.

[0041] The bottom of the stabilizing cylinder 9 is provided with a stabilizing base 11 and two stabilizing holes 12. The stabilizing holes 12 are arranged diagonally. The stabilizing base 11 is provided with two stabilizing columns 13 at the corresponding positions. The stabilizing columns 13 are inserted into the stabilizing holes 12 to limit and stabilize the stabilizing cylinder 9, making it convenient to put the stabilizing cylinder 9 into place.

[0042] Multiple probes 2 are evenly arranged on both sides of the stabilizing component, with the number of probes 2 corresponding to the number of titanium plates 14. One end of each probe 2 can abut against the titanium plate 14, and the other end is connected to the power supply. The probes 2 at both ends of the same titanium plate 14 are connected to the negative and positive power supplies, respectively.

[0043] The detection unit 1 is also equipped with a control component 4, a display component 5, and an alarm component 6.

[0044] The probe 2 is powered by a pressure gauge 3. The control component 4 includes a programmable logic controller (PLC). The control component 4 is connected to all components within the detection body 1. The pressure gauge 3 is signal-connected to the control component 4. The control component 4 is signal-connected to the display component 5, which includes a touch screen. The control component 4 is signal-connected to the alarm component 6, which includes a three-color alarm light.

[0045] Additionally, probe 2 is fixedly mounted on movable plate 7, which is connected to the movable end of movable power device 8, which includes a cylinder. Movable power device 8 drives probe 2 to move via movable plate 7, and is connected to control component 4 via signal control.

[0046] In practical applications:

[0047] The titanium sheet 14 anti-misalignment detection device includes a detection body 1. The detection body 1 is equipped with a stabilizing component. A carrier 15 into which multiple titanium sheets 14 are inserted is balanced and stabilized by the stabilizing component. Multiple probes 2 are evenly arranged on both sides of the stabilizing component. One end of each probe 2 can abut against the titanium sheet 14 and the other end is connected to a power source. The two ends of the probes 2 of the same titanium sheet 14 are connected to the negative and positive power sources, respectively. A pressure gauge 3 is connected to the power source of the probes 2. The detection body 1 is also equipped with a control component 4, a display component 5, and an alarm component 6. The control component 4 is connected to each component in the detection body 1. The pressure gauge 3 is connected to the control component 4. The control component 4 is connected to the display component 5. The control component 4 is connected to the alarm component 6.

[0048] When the same titanium sheet 14 is inserted into the limiting groove on the same horizontal plane inside the carrier 15, the probes 2 at both ends of the titanium sheet 14 abut against the two ends of the titanium sheet 14 respectively, and the titanium sheet 14 and the probes 2 at both ends form a passage. The pressure measuring instrument 3 detects the voltage and transmits the voltage information to the control component 4. The control component 4 transmits the information to the display component 5 for display. At this time, it can be determined that the titanium sheet 14 is installed in the carrier 15 without misalignment, and the installation of the titanium sheet 14 is qualified.

[0049] When the same titanium sheet 14 is not inserted into the same horizontal limiting groove in the carrier 15, the probe 2 at one end of the titanium sheet 14 cannot contact the titanium sheet 14, and the titanium sheet 14 and the probes 2 at both ends cannot form a path. The pressure gauge 3 cannot detect voltage, and the pressure gauge 3 cannot transmit voltage information to the control component 4. The control component 4 transmits no voltage information to the display component 5 for display, and at the same time the alarm component 6 sounds an alarm. At this time, it can be determined that the titanium sheet 14 is misaligned in the carrier 15, and the installation of the titanium sheet 14 is unqualified. It needs to be adjusted and installed to meet the requirements.

[0050] This titanium sheet 14 anti-misalignment detection device can efficiently detect the misalignment of multi-layer titanium sheet 14 installations. It has a simple structure, is easy to operate, and has a high detection accuracy.

[0051] The probe 2 is fixedly mounted on the movable plate 7. The movable plate 7 is connected to the movable power device 8. The movable power device 8 drives the probe 2 to move through the movable plate 7. The movable power device 8 improves the detection efficiency and the automation of the detection.

[0052] The stabilization component includes a stabilizing cylinder 9, which has a cylindrical structure. The inside of the stabilizing cylinder 9 can stabilize and limit the carrier 15. The stabilizing cylinder 9 provides full enclosure and stabilization of the carrier 15, thereby improving the stability and detection accuracy of the carrier 15.

[0053] The bottom of the stabilizing cylinder 9 is provided with a stabilizing base 11, and the bottom of the stabilizing cylinder 9 is provided with multiple stabilizing holes 12. The stabilizing base 11 is provided with multiple stabilizing columns 13 at corresponding positions. The stabilizing columns 13 are inserted into the stabilizing holes 12 to achieve the stabilizing cylinder 9 to be limited and stabilized. The stabilizing holes 12 and stabilizing columns 13 work together to achieve efficient stabilization of the carrier 15. The structure is simple and the operation is convenient.

[0054] Finally, it should be noted that the above disclosure is merely a preferred embodiment of this application and is not intended to limit this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application. The scope of this application is limited only by the appended claims.

Claims

1. A titanium sheet misalignment detection device, characterized in that: The application relates to a titanium sheet detection device, which comprises a detection main body (1) provided with a stabilizing assembly, a carrier (15) for inserting a plurality of titanium sheets (14) is balanced and stably fixed through the stabilizing assembly, a plurality of probes (2) are evenly arranged on the two sides of the stabilizing assembly, one end of each probe (2) is in abutment with a titanium sheet (14), and the other end is connected with a power supply; the two probes (2) at the two ends of the same titanium sheet (14) are connected with negative and positive power supplies respectively; a pressure gauge (3) is arranged at the power supply connection of the probe (2); the detection main body (1) is further provided with a control assembly (4), a display assembly (5) and an alarm assembly (6); the control assembly (4) is connected with the control of the assemblies in the detection main body (1); the pressure gauge (3) is signal-connected with the control assembly (4); the control assembly (4) is signal-connected with the display assembly (5); and the control assembly (4) is signal-connected with the alarm assembly (6).

2. The titanium sheet misalignment prevention detection apparatus according to claim 1, characterized by: The probe (2) is fixedly arranged on a moving plate (7), the moving plate (7) is movably and power-connected with a moving power device (8), the moving power device (8) drives the probe (2) to move through the moving plate (7), and the moving power device (8) is signal-controlled and connected with the control assembly (4).

3. The titanium sheet misalignment prevention detection apparatus according to claim 1, characterized by: The stabilizing assembly comprises a stabilizing cylinder (9), the stabilizing cylinder (9) is in a cylindrical structure, the carrier (15) can be stably positioned in the stabilizing cylinder (9), detection ports (10) are arranged at the two ends of the titanium sheet (14) of the stabilizing cylinder (9) correspondingly, the detection ports (10) are through holes, and the probe (2) is in abutment with the titanium sheet (14) through the detection port (10).

4. The titanium sheet misalignment prevention detection apparatus according to claim 3, characterized by: A stabilizing base (11) is arranged at the bottom of the stabilizing cylinder (9), a plurality of stabilizing holes (12) are arranged at the bottom of the stabilizing cylinder (9), a plurality of stabilizing columns (13) are arranged at the corresponding positions of the stabilizing base (11), and the stabilizing columns (13) are inserted into the stabilizing holes (12) to realize the position stabilization of the stabilizing cylinder (9).

5. The titanium sheet misalignment prevention detection apparatus according to claim 2, characterized by: The moving power device (8) comprises a cylinder.

6. The titanium sheet misalignment prevention detection apparatus according to claim 1, characterized by: The control assembly (4) comprises a programmable logic controller.

7. The titanium sheet misalignment prevention detection apparatus according to claim 1, characterized by: The display assembly (5) comprises a touch display screen.

8. The titanium sheet misalignment prevention detection apparatus according to claim 1, characterized by: The alarm assembly (6) comprises a three-color alarm lamp.