Lifting and moving device and detection and calibration equipment

By designing a lifting and moving device, the automatic handling and installation of the test equipment was realized, which solved the safety hazards and poor installation quality caused by manual handling and improved the testing results.

CN223852230UActive Publication Date: 2026-01-30HANGZHOU CHANGCHUAN INTELLIGENT MFG CO LTD
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Patent Information

Application Number
CN202520605682.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-01-30
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

Manually handling heavy testing equipment poses safety hazards and results in poor installation quality, affecting testing effectiveness.

Method used

Design a lifting and moving device, including a frame, a load-bearing component and a power component, wherein the power component drives the load-bearing component to move in the vertical direction, thereby realizing the automatic handling and installation of the calibration fixture.

Benefits of technology

This reduces the number of workers, lowers labor intensity, reduces safety hazards, ensures the quality of equipment installation, and improves testing results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of testing tools, and particularly discloses a lifting and moving device and detection and calibration equipment, and the lifting and moving device comprises a rack, a bearing assembly and a power assembly. Wherein the rack is provided with a stand column extending in the vertical direction; the bearing assembly comprises a moving assembly and a bearing frame, and the moving assembly is movably matched with the stand column in the vertical direction through a moving piece and limits relative displacement of the moving assembly and the stand column in the horizontal direction. The bearing frame is connected with the moving assembly and moves synchronously with the moving assembly. The power assembly is arranged on the rack, and the output end is connected with the moving assembly or the bearing frame. By means of the arrangement, the number of workers can be reduced, the labor intensity is lowered, and the possibility of potential safety hazards is lowered; in addition, the installation quality of the temperature test calibration tool is ensured, so that the test effect is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to test frock technical field especially relates to hoist mobile device and detection calibration equipment. BACKGROUND

[0002] After the sorting machine is installed, it will enter the test stage, and the test content includes pressure and temperature test;And before the test, the test gauge needs to be embedded in the reserved interface of the sorting machine, because the pressure test gauge and the temperature test gauge are both about 80kg, 4 people with more strength are needed to lift from the storage trolley and embed in the reserved interface space of the equipment, and the gauge needs to be taken out after the test is completed. Because the gauge is heavy, frequent test process, manual handling is prone to fatigue and causes safety hazards, in addition, fatigue also easily causes quality problems in the installation process of the gauge, which affects the test effect of the sorting machine.

[0003] Therefore, it is urgent to research a hoist mobile device and detection calibration equipment to solve the safety hazards caused by manual handling and the poor installation quality leading to poor test effect. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a hoist mobile device and detection calibration equipment to solve the safety hazards caused by manual handling and the poor installation quality leading to poor test effect in the prior art.

[0005] To achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A hoist mobile device, comprising:

[0007] A rack having a vertical column extending in the vertical direction;

[0008] A bearing assembly, comprising a moving assembly and a bearing frame, the moving assembly is movably connected with the vertical column in the vertical direction through a moving piece, and the relative displacement of the moving assembly and the vertical column in the horizontal direction is limited;The bearing frame is connected with the moving assembly and moves synchronously with the moving assembly;

[0009] A power assembly is arranged in the rack, and the output end is connected with the moving assembly or the bearing frame.

[0010] As an optional technical scheme of the hoist mobile device, the vertical column comprises two wing plates and a waist plate connected between the two wing plates;The moving assembly comprises a roller frame, the moving piece comprises a main roller and a secondary roller, the main roller and the secondary roller are both rotatably arranged in the roller frame and are rotatably connected with the inner and outer sides of the same wing plate.

[0011] As an optional technical scheme of the lifting moving device, the main roller comprises a roller body and limiting parts arranged at both ends of the roller body, the limiting parts have a diameter greater than that of the roller body, the roller body is in rolling cooperation with the outer side of the wing plate, and the wing plate is located between the two limiting parts.

[0012] As an optional technical scheme of the lifting moving device, the moving part comprises two main rollers, and the two main rollers are arranged in a vertical direction.

[0013] The moving part comprises four auxiliary rollers, two auxiliary rollers in each group, and the two auxiliary rollers in each group are arranged in a vertical direction.

[0014] As an optional technical scheme of the lifting moving device, the lifting moving device comprises two bearing assemblies, wherein,

[0015] The two bearing assemblies are in cooperation with the stand, and the power assembly drives at least one bearing assembly to move relative to the stand.

[0016] And / or, one of the two bearing assemblies is used for installing a temperature test gauge, and the other is used for installing a signal test gauge.

[0017] As an optional technical scheme of the lifting moving device, the bearing assembly further comprises a bearing part, and the bearing part is arranged on the bearing frame and has a horizontally arranged bearing surface.

[0018] As an optional technical scheme of the lifting moving device, the bearing assembly further comprises a fixing part, the fixing part is detachably connected to the bearing frame, and the fixing part and the bearing frame form a bearing channel, and the bearing part is located below the bearing channel.

[0019] As an optional technical scheme of the lifting moving device, the bearing assembly comprises a mounting pin, the fixing part is provided with a fixing hole, the bearing frame is provided with a bearing hole, the mounting pin comprises a pin body and a magnetic attraction part arranged at the end of the pin body, the pin body is arranged in the bearing hole and the fixing hole, and the magnetic attraction part is magnetically connected to the bearing frame; and / or,

[0020] The fixing part has a connecting hole, and a connecting screw is arranged in the connecting hole and screwed to the part to be transferred.

[0021] As an optional technical scheme of the lifting moving device, the power assembly comprises a winch, a cable and a plurality of transmission wheels, the winch is arranged on the frame, the transmission wheels are arranged on the frame in a spaced manner, one end of the cable is connected to the winch, the other end of the cable passes through the plurality of transmission wheels and is connected to the bearing frame or the moving assembly.

[0022] As an alternative technical solution of the lifting moving device, comprising a temperature test gauge and a signal test gauge, and the lifting moving device of any of the above technical solutions, the temperature test gauge and / or the signal test gauge are installed on the carrier frame.

[0023] The utility model has at least the following beneficial effects:

[0024] The utility model provides a lifting moving device and detection calibration equipment, the lifting moving device includes frame, bearing assembly and power component, wherein, bearing assembly is cooperated on the stand of frame along vertical direction movably through moving component, and can limit horizontal direction's removal, and the carrier frame in bearing assembly is connected with moving component, and can move synchronously, power component is located in frame, and output end is connected with moving component or with carrier frame, to drive carrier frame reciprocatingly moves along vertical direction, so that can carry gauge to carrier frame when carrier frame is descending, then drives carrier frame to rise through power component, to drive gauge to rise to the designated position, and move gauge to the reserved interface of sorting machine, whole process can be completed by one person, needs the quantity of artificial is few, has reduced labor intensity, and has reduced the possibility of appearing security hidden danger, in addition, also help guarantee the quality of gauge installation, to guarantee test effect. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical scheme in the embodiment of the utility model, the following will be briefly introduced to the drawing needed to be used in the embodiment of the utility model, obviously, the drawing in the following description only some embodiments of the utility model, for the ordinary skilled person in the art, under the premise of not paying the creative labor, still can obtain other drawings according to the content of the embodiment of the utility model and these drawings.

[0026] Figure 1 It is the structural schematic diagram of the lifting moving device in the embodiment of the utility model;

[0027] Figure 2 It is the structural schematic diagram of the lifting moving device in the embodiment of the utility model; Figure 1 It is the enlarged view of A in the embodiment of the utility model;

[0028] Figure 3 It is the structural schematic diagram of the moving component in the embodiment of the utility model;

[0029] Figure 4 It is the structural schematic diagram of the carrier frame in the embodiment of the utility model;

[0030] Figure 5 It is the assembly drawing of the carrier frame and the temperature test gauge in the embodiment of the utility model;

[0031] Figure 6 It is the structural schematic diagram of the carrier frame in the embodiment of the utility model;Figure 1 Enlarged view at B.

[0032] In the figure:

[0033] 1000, temperature test tool;

[0034] 100, rack; 110, stand column; 111, wing plate; 112, waist plate; 120, rolling element;

[0035] 200, bearing assembly; 210, moving assembly; 211, roller frame; 212, main roller; 2121, roller body; 2122, limiting part; 213, auxiliary roller; 220, bearing frame; 221, bearing hole; 230, bearing element; 240, fixing element; 241, connecting hole; 250, mounting pin;

[0036] 300, power assembly; 310, winch; 320, transmission wheel; 330, fixed rod;

[0037] 400, buffer assembly; 410, elastic element; 420, buffer element; 430, buffer connecting element;

[0038] 500, bearing frame. DETAILED DESCRIPTION

[0039] Before any embodiments of the application are explained in detail, it is to be understood that the application is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the above-described accompanying drawings.

[0040] In this application, the terms "comprise", "contain", "have" or any other variant thereof are intended to cover non-exclusive inclusions, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes elements inherent to such process, method, article or device. Without more limitations, the element defined by the statement "comprising a" does not exclude the presence of other identical elements in the process, method, article or device including the element.

[0041] In this application, the term "and / or", is a description of the association relationship between the associated objects, which means that there can be three kinds of relationships. For example, A and / or B, can represent the following three cases: A exists alone, A and B exist together, B exists alone. In addition, the character " / " in this application generally represents that the front and rear associated objects are in a "and / or" relationship.

[0042] In this application, the terms "connected", "coupled", "engage", "mounting" can be direct connection, coupling, engagement or mounting, but also can be indirect connection, coupling, engagement or mounting. Among them, for example, direct connection refers to the connection of two parts or components without the need to set up intermediate parts, indirect connection refers to the connection of two parts or components with at least one intermediate part. In addition, "connection" and "coupling" are not limited to physical or mechanical connection or coupling, and can include electrical connection or coupling.

[0043] In this application, those of ordinary skill in the art will understand that the relative terms used in connection with the quantity or condition (for example, "about", "approximately", "substantially" and the like) include the value described and have the meaning indicated by the context. For example, the relative terms at least include the degree of error related to the measurement of a specific value, the tolerance caused by manufacturing, assembly, use, etc. related to a specific value. Such terms should also be considered to disclose the range defined by the absolute values of the two endpoints. The relative term can refer to the indicated value plus or minus a certain percentage (for example, 1%, 5%, 10% or more). The numerical value without the relative term should also be disclosed as a specific value with a tolerance. In addition, "substantially" when expressing the relative angular positional relationship (for example, substantially parallel, substantially perpendicular), can refer to plus or minus a certain degree (for example, 1 degree, 5 degrees, 10 degrees or more) based on the indicated angle.

[0044] In this application, those of ordinary skill in the art will understand that the functions performed by the components can be performed by one component, multiple components, one part, or multiple parts. Similarly, the functions performed by the parts can also be performed by one part, one component, or multiple parts in combination.

[0045] In this application, the terms "upper", "lower", "left", "right", "front", "back" and the like are described in the orientation and positional relationship shown in the drawings, and should not be understood as limiting the embodiments of the application. In addition, it should also be understood in the context that when referring to one element connected to another element "on" or "under", it can not only be directly connected to another element "on" or "under", but also indirectly connected to another element "on" or "under" through an intermediate element. It should also be understood that the terms "upper", "lower", "left", "right", "front", "back" and the like not only represent the positive direction, but also can be understood as the side direction. For example, the lower side can include the directly below, left below, right below, front below and back below, etc.

[0046] As Figures 1 to 6As shown, the embodiment provides a lifting moving device to lift the to-be-transferred member to the reserved interface height of the sorting machine, the to-be-transferred member including the temperature test gauge 1000 and / or the signal test gauge, wherein the signal test gauge can be a pressure test gauge. The lifting moving device includes a rack 100, a bearing assembly 200 and a power assembly 300. The rack 100 has a column 110 extending in the vertical direction; the bearing assembly 200 includes a moving assembly 210 and a bearing frame 220, the moving assembly 210 is movably connected with the column 110 in the vertical direction through a moving member and limits the relative displacement of the moving assembly 210 and the column 110 in the horizontal direction; the bearing frame 220 is connected with the moving assembly 210 and moves synchronously with the moving assembly 210; the power assembly 300 is arranged on the rack 100 and the output end is connected with the moving assembly 210 or the bearing frame 220.

[0047] With the above structure, the temperature test gauge 1000 can be carried onto the bearing frame 220 when the bearing frame 220 is lowered, and then the bearing frame 220 is driven to rise by the power assembly 300 to drive the temperature test gauge 1000 to rise to the specified position and move the temperature test gauge 1000 into the reserved interface of the sorting machine, avoiding the process of multiple operators participating in disassembly, carrying and assembly of the gauge, reducing the labor intensity and the possibility of safety hazards; in addition, it also helps to ensure the installation quality of the temperature test gauge 1000 to ensure the test effect.

[0048] In some embodiments, in combination with Figure 2 and Figure 3 As shown, the column 110 includes two wing plates 111 and a waist plate 112 connected between the two wing plates 111; the moving assembly 210 includes a roller frame 211, and the moving member includes a main roller 212 and a secondary roller 213, both of which are rotatably arranged on the roller frame 211 and rollingly fit on the inner and outer sides of the same wing plate 111. In other words, the column 110 can be an I-beam, which is simple in structure, easy to obtain and high in strength. In use, the main roller 212 and the secondary roller 213 can be clamped on the inner and outer sides of the wing plate 111, limiting the relative position between the moving assembly 210 and the column 110 in the length direction of the rack 100 and ensuring the stability of the lifting process; in addition, the thickness of the wing plate 111 is small, so that the gap between the main roller 212 and the secondary roller 213 is small, which is conducive to reducing the volume of the roller frame 211 and reducing the production cost.

[0049] Further, the main roller 212 comprises a roller body 2121 and limiting portions 2122 arranged at both ends of the roller body 2121, the limiting portions 2122 have a larger diameter than the roller body 2121, the roller body 2121 is in rolling cooperation with the outer side of the wing plate 111, and the wing plate 111 is located between the two limiting portions 2122. The above structure limits the relative position between the main roller 212 and the wing plate 111 in the width direction of the rack 100, avoiding the relative movement of the main roller 212 and the wing plate 111 in the width direction.

[0050] In order to ensure the stability of lifting, in some embodiments, the moving part comprises two main rollers 212, and the two main rollers 212 are arranged in a vertical direction. In addition, the moving part comprises four auxiliary rollers 213, two auxiliary rollers 213 in each group, and the two groups of auxiliary rollers 213 are located on both sides of the waist plate 112, and the two auxiliary rollers 213 in the same group are arranged in a vertical direction. The above arrangement ensures the stability of the moving process of the roller frame 211, ensures that the roller frame 211 can only move in a vertical direction, and avoids the occurrence of eversion.

[0051] Further, the two moving assemblies 210 are arranged in a vertical direction on the bearing frame 220, thereby ensuring that the bearing frame 220 is balanced in force and avoiding the occurrence of eversion.

[0052] In order to complete the assembly of the temperature test fixture 1000 and the signal test fixture during testing, in some embodiments, the lifting moving device comprises two bearing assemblies 200, one of the two bearing assemblies 200 is used to bear the temperature test fixture 1000, and the other is used to bear the signal test fixture. When in use, the temperature test fixture 1000 can be lifted to the height corresponding to one reserved interface of the sorting machine by one of the bearing assemblies 200; and the signal test fixture can be lifted to the height corresponding to another reserved interface of the sorting machine by the other bearing assembly 200. The two bearing assemblies 200 are respectively matched with the two wing plates 111 of the column 110 to form a symmetrical structure.

[0053] Regarding the driving of the bearing assembly 200, in some embodiments, both bearing assemblies 200 are matched with the column 110, and the power assembly 300 drives at least one bearing assembly 200 to move relative to the column 110. For example, the power assembly 300 is selectively connected with one of the bearing assemblies 200. In other words, the output end of the power assembly 300 can be connected with only one of the bearing assemblies 200 at a time. Before testing, the output end of the power assembly 300 is connected with one of the bearing assemblies 200 to complete the lifting and installation of the temperature test gauge 1000, and then the output end of the power assembly 300 is connected with the other bearing assembly 200 to complete the lifting and installation of the signal test gauge. After testing, the output end of the power assembly 300 is connected with one of the bearing assemblies 200 to complete the disassembly and lowering of the temperature test gauge 1000, and then the output end of the power assembly 300 is connected with the other bearing assembly 200 to complete the disassembly and lowering of the signal test gauge. The output end of the power assembly 300 is connected with the roller frame 211. In another example, the output end of the power assembly 300 is connected with both bearing assemblies 200 to complete the synchronous lifting and lowering of the bearing assemblies 200.

[0054] To ensure the stability of the connection between the temperature test gauge 1000 and the bearing frame 220 during the disassembly and assembly process, in some embodiments, the bearing assembly 200 further comprises a bearing member 230, which is arranged on the bearing frame 220 and has a horizontally arranged bearing surface. The bearing surface can support the temperature test gauge 1000, thereby providing support for the temperature test gauge 1000 and ensuring the stability of the stress during the lifting and lowering process. Figure 4 and Figure 5 As shown in Figs. 1 and 2, the bearing assembly 200 further comprises a bearing member 230, which is arranged on the bearing frame 220 and has a horizontally arranged bearing surface. The bearing surface can support the temperature test gauge 1000, thereby providing support for the temperature test gauge 1000 and ensuring the stability of the stress during the lifting and lowering process.

[0055] To avoid the temperature test gauge 1000 from overturning during the lifting and lowering or transferring process, in some embodiments, the bearing assembly 200 further comprises a fixing member 240, which is detachably connected with the bearing frame 220 and forms a bearing channel with the bearing frame 220, and the bearing member 230 is located below the bearing channel. The temperature test gauge 1000 is limited at the bottom and the periphery, thereby protecting the temperature test gauge 1000 from overturning during the lifting and lowering or transferring process.

[0056] Due to the testing process, two temperature test gauges 1000 need to be installed on the sorting machine, and the two temperature test gauges 1000 are arranged in a vertical direction. Therefore, the distance between the two temperature test gauges 1000 in the vertical direction needs to be ensured. In some embodiments, two fixing members 240 are provided, and the fixing member 240 has a connecting hole 241, and a connecting screw is arranged in the connecting hole 241 and screwed with the temperature test gauge 1000. Two fixing members 240 are provided and are arranged at two specified positions of the bearing frame 220, thereby ensuring the distance between the two temperature test gauges 1000 in the vertical direction.

[0057] Specifically, the bearing assembly 200 comprises a mounting pin 250, the fixing member 240 is provided with a fixing hole, the bearing frame 220 is provided with a bearing hole 221, and the mounting pin 250 can be inserted into the fixing hole and the bearing hole 221 to ensure the connection effect and efficiency of the fixing member 240 and the bearing frame 220. Further, the mounting pin 250 comprises a pin body and a magnetic member provided at the end of the pin body, the pin body is arranged in the bearing hole 221 and the fixing hole, and the magnetic member is magnetically connected with the bearing frame 220. This kind of arrangement can ensure the connection stability of the mounting pin 250 and the bearing frame 220 without designing additional limiting structure, and further improves the connection efficiency of the mounting pin 250.

[0058] In some embodiments, the power assembly 300 comprises a winch 310, a cable and a plurality of transmission wheels 320, the winch 310 is arranged on the rack 100 in a rotating manner, the transmission wheels 320 are arranged on the rack 100 at intervals, one end of the cable is connected with the winch 310, and the other end of the cable passes through the plurality of transmission wheels 320 and is connected with the bearing frame 220 or the moving assembly 210. Among them, the highest transmission wheel 320 is higher than the bearing frame 220 or the moving assembly 210, through the forward rotation of the winch 310, the winding of the cable is completed, so that the bearing frame 220 rises, and through the reverse rotation of the winch 310, the release of the cable is completed, so that the bearing frame 220 descends.

[0059] In some embodiments, the power assembly 300 further comprises a fixing rod 330, the fixing rod 330 is arranged on the rack 100, and the transmission wheels 320 are installed on the fixing rod 330. Among them, the fixing rod 330 is arranged at intervals with the stand column 110 to avoid the interference between the stand column 110 and the cable. In this embodiment, the transmission wheel 320 comprises a transmission bracket and a rolling wheel rotatably connected with the transmission bracket, the cable passes through the rolling wheel and is in rolling fit with the rolling wheel.

[0060] In the descending process, in order to avoid the impact between the bearing frame 220 and the rack 100, in some embodiments, in combination with Figure 1 As shown, the lifting moving device further comprises a buffer assembly 400, the buffer assembly 400 is arranged on the rack 100 and below the bearing frame 220 or the moving assembly 210. Specifically, in combination with Figure 6As shown, the buffer assembly 400 comprises a buffer piece 420, elastic pieces 410 and a buffer connecting piece 430, wherein the buffer connecting piece 430 is installed on the rack 100, the elastic pieces 410 are arranged between the buffer piece 420 and the buffer connecting piece 430, and the buffer piece 420 is used for receiving the bearing frame 220. In order to ensure force balance, the elastic pieces 410 are arranged in plurality, and the plurality of elastic pieces 410 are arranged at intervals between the buffer piece 420 and the buffer connecting piece 430. Specifically, the elastic pieces 410 are springs, the springs are sleeved on the vertical rods of the buffer connecting piece 430, and the two ends thereof are respectively abutted against the base of the buffer connecting piece 430 and the buffer piece 420, and the base is installed on the rack 100.

[0061] In other embodiments, in combination with Figure 1 As shown, the rack 100 is installed with a bearing frame 500 for bearing a digital display box, so as to facilitate a worker to watch test data. In order to facilitate the translation of the lifting moving device, in some embodiments, the bottom of the rack 100 is provided with rolling pieces 120. The rolling pieces 120 are universal wheels. The bottom of the rack 100 is provided with four rolling pieces 120, and the projection of the bearing assembly 200 on the ground is located inside the quadrilateral contour formed by the four rolling pieces 120. The above-mentioned arrangement of the rolling pieces 120 is beneficial to ensure the force stability of the lifting moving device and avoid side leaning during movement.

[0062] The embodiment also provides a detection calibration device, which comprises a temperature test gauge 1000 and a signal test gauge, and the lifting moving device in any one of the above-mentioned embodiments, and the temperature test gauge 1000 and / or the signal test gauge are installed on the bearing frame 220.

[0063] Obviously, the above-mentioned embodiments of the utility model are only for clearly illustrating the utility model, and are not the limitation of the embodiments of the utility model. For the ordinary skilled in the art, various obvious changes, re-adjustments and replacements can be made without departing from the protection scope of the utility model. Here, it is unnecessary and impossible to enumerate all the embodiments. Any modification, equivalent replacement and improvement made in the spirit and principle of the utility model should be included in the protection scope of the utility model claim.

Claims

1. A lifting movement device, characterized in that The crane moving device comprises a rack (100), a carrying assembly (200) and a power assembly (300). The rack (100) comprises a column (110) extending in a vertical direction. The carrying assembly (200) comprises a moving assembly (210) and a carrying frame (220), the moving assembly (210) is movably connected with the column (110) in the vertical direction by a moving piece, and the moving assembly (210) is limited to move relative to the column (110) in a horizontal direction; the carrying frame (220) is connected with the moving assembly (210) and moves synchronously with the moving assembly (210). The power assembly (300) is arranged on the rack (100) and is connected with the moving assembly (210) or the carrying frame (220).

2. A mobile lifting device according to claim 1, characterised in that The column (110) comprises two wing plates (111) and a waist plate (112) connected between the two wing plates (111); the moving assembly (210) comprises a roller frame (211), the moving piece comprises a main roller (212) and an auxiliary roller (213), the main roller (212) and the auxiliary roller (213) are both rotatably arranged on the roller frame (211) and are rollingly connected with the inner and outer sides of the same wing plate (111).

3. A mobile lifting device according to claim 2, characterised in that The main roller (212) comprises a roller body (2121) and a limiting part (2122) arranged at both ends of the roller body (2121), the diameter of the limiting part (2122) is larger than the diameter of the roller body (2121), the roller body (2121) is rollingly connected with the outer side of the wing plate (111), and the wing plate (111) is located between the two limiting parts (2122).

4. The mobile lifting device of claim 2, wherein, The moving piece comprises two main rollers (212), and the two main rollers (212) are arranged in a vertical direction. The moving piece comprises four auxiliary rollers (213), two auxiliary rollers (213) in each group, and the two auxiliary rollers (213) in each group are arranged in a vertical direction.

5. The mobile lifting device of claim 1, wherein, The crane moving device comprises two carrying assemblies (200), wherein The two carrying assemblies (200) are connected with the column (110), and the power assembly (300) drives at least one of the carrying assemblies (200) to move relative to the column (110). The two carrying assemblies (200) are connected with the column (110), and the power assembly (300) drives at least one of the carrying assemblies (200) to move relative to the column (110).

6. A lifting movement device according to any one of claims 1-5, characterized in that The carrying assembly (200) further comprises a carrying piece (230), the carrying piece (230) is arranged on the carrying frame (220) and has a horizontally arranged carrying surface.

7. A mobile lifting device according to claim 6, characterised in that The carrying assembly (200) further comprises a fixing piece (240), the fixing piece (240) is detachably connected with the carrying frame (220) and forms a carrying channel together with the carrying frame (220), and the carrying piece (230) is located below the carrying channel.

8. A mobile lifting device according to claim 7, characterised in that The bearing assembly (200) comprises a mounting pin (250), the fixing member (240) is provided with a fixing hole, the bearing frame (220) has a bearing hole (221), the mounting pin (250) comprises a pin body and a magnetic attraction member arranged at the end of the pin body, the pin body is arranged in the bearing hole (221) and the fixing hole, and the magnetic attraction member is magnetically connected with the bearing frame (220); and / or, The fixing member (240) has a connecting hole (241), a connecting screw is arranged in the connecting hole (241) and is screwed to the part to be transferred.

9. A lifting movement device according to any one of claims 1-5, characterized in that The power assembly (300) comprises a winch (310), a cable and a plurality of transmission wheels (320), the winch (310) is rotationally arranged on the rack (100), the transmission wheels (320) are arranged at intervals on the rack (100), one end of the cable is connected with the winch (310), the other end of the cable passes through a plurality of the transmission wheels (320) and is connected with the bearing frame (220) or the moving assembly (210).

10. A detection calibration device, characterized by The hoisting moving device comprises a temperature test tool (1000) and a signal test tool, and the temperature test tool (1000) and / or the signal test tool are installed on the bearing frame (220).