A steel plate combined module specification measuring device and usage method

By designing a steel plate combination module specification measurement device, the combination of measurement perception components and reversing adjustment components is used to realize multi-directional manual detection of the steel plate combination module, solving the problem that laser detection is difficult to fully detect all parts, and improving the accuracy and completeness of the detection.

CN119803360BActive Publication Date: 2025-06-10CHINA TIESIJU CIVIL ENGINEERING GROUP CO LTD +1
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Patent Information

Application Number
CN202510293207.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2025-06-10
Estimated Expiration
2045-03-13

AI Technical Summary

Technical Problem

In the prior art, when detecting the flatness of the steel plate combination module, the laser equipment is easily blocked and disturbed by the external environment, and it is difficult to fully detect all parts of the beam body, resulting in manual resumption of inspection in some areas.

Method used

A steel plate combination module specification measurement device is designed, including a running frame, a connecting plate group, a measurement component, a reversing adjustment component and a measurement sensing component. Through the cooperation of these components, the sensing components move along the detection path is measured, the undulating configuration of the steel plate combination module is sensed and recorded, so as to realize multi-directional manual detection of the steel plate combination module and complete the blind spots of laser detection.

Benefits of technology

The comprehensive inspection of the steel plate combination module is achieved, which avoids the blind spots of laser detection, improves the accuracy and completeness of the detection, and ensures the service life and safety of the structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of measuring devices, and particularly relates to a measuring device and a using method for the specifications of a steel plate combined module. The present invention is provided with a running frame, a connecting plate group, a measuring component, a commutation adjustment component and a measuring sensing component. The measuring sensing component transmits the state of the steel plate combined module sensed to the measuring component, the measuring component measures and records the measured data, and the commutation adjustment component can cooperate with the measuring sensing component to perform lateral measurement, realizing multi-directional manual detection of the same part and complementing the measurement blind area of laser detection. In the present invention, the connecting plate group includes a connecting plate main body and a connecting hook. When the running frame is arranged upside down, the connecting hook can change the setting direction by rotating, so as to adapt to the upside-down sliding rod, realizing the all-round adaptation to inclined and upside-down sites.
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Description

Technical Field

[0001] The present invention relates to the technical field of measuring devices, and in particular to a steel plate combination module specification measuring device and a use method thereof. Background Art

[0002] The steel plate assembly module needs to be tested for flatness after assembly. Flatness within the design specifications can ensure that the structure is more evenly stressed. If the flatness does not meet the standards, it will lead to uneven stress on various parts of the steel plate assembly module. When a part is subjected to excessive stress and other parts are understressed, it will accelerate the fatigue damage of local components, reduce the service life of the structure, and even cause safety accidents.

[0003] At present, the flatness detection of steel plate combination modules mainly relies on laser measurement. However, for the assembled steel plate combination module body, the laser detection method has the problem of being greatly obstructed and easily disturbed by the external environment. It is difficult to fully detect all parts of the beam body, and some areas need to be supplemented by manual inspection. Therefore, a steel plate combination module specification measuring device and a use method are proposed. Summary of the invention

[0004] In order to solve the technical problems existing in the above-mentioned prior art, the present invention provides a steel plate combination module specification measuring device and a use method.

[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: a steel plate combined module specification measuring device, comprising a running frame, a connecting plate group, a measuring component, a reversing adjustment component and a measuring sensing component;

[0006] The running frame is set up at the joint of the steel plate combined module;

[0007] The connecting plate group is hung outside the running frame, and the running frame limits the sliding direction of the connecting plate group;

[0008] The measuring component and the reversing adjustment component are respectively arranged at the upper and lower ends of the running frame;

[0009] The measuring sensing component is arranged inside the reversing regulating component, and the end of the measuring sensing component is connected to the measuring component and detected by the measuring component;

[0010] The running frame and the connecting plate group cooperate to form a detection path. The measurement perception component moves along the detection path. The measurement perception component transmits the perceived undulating configuration of the steel plate combination module to the measurement component for measurement and recording.

[0011] Preferably, the running frame includes legs and sliding rods, and two groups of sliding rods are vertically arranged between the two groups of legs.

[0012] Preferably, the connecting plate group includes a connecting plate body and connecting hooks. Two sets of the connecting hooks are vertically arranged on the outer wall surface of the connecting plate body through a rotating shaft, and a notch for connecting with the sliding rod is formed at the bottom end of the connecting hook.

[0013] Preferably, the measuring assembly includes a measuring part bracket, a fixed back plate, and a limit transmission assembly. The measuring part bracket is fixed above the inner wall surface of the connecting plate body by bolts. The fixed back plate is fixed to the side wall surface of the measuring part bracket. Two sets of the limit transmission assemblies are respectively arranged on both sides of the surface of the fixed back plate. The two sets of the limit transmission assemblies are arranged perpendicular to each other. Through holes are formed at positions corresponding to the movable ends of the two sets of the limit transmission assemblies in the measuring part bracket. The end part of the movable end of the limit transmission assembly is sleeved in the through hole and passes through the through hole.

[0014] Preferably, the measuring assembly further includes a measuring table frame and a measuring table. The measuring table frame is fixed to the back of the fixed back plate by bolts. The measuring table is fixed inside the end of the measuring table frame by bolts. The measuring end of the measuring table is connected to the transmission end of the limit transmission assembly.

[0015] Preferably, two fixing areas for threaded connection of the measuring table frame are arranged on the back of the fixed back plate. The two fixing areas correspond to the two sets of the limit transmission assemblies respectively. The fixing area is composed of four positioning holes and one bolt hole. The bolt hole is located in the middle of the positioning holes.

[0016] Preferably, the commutation adjustment assembly includes a connecting seat, a sleeve bracket, a limit sleeve, and a fixing knob. The connecting seat is fixed to the lower part of the inner wall surface of the connecting plate body by bolts. The sleeve bracket is arranged in the middle of the side wall surface of the connecting seat. The limit sleeve is installed inside the sleeve bracket through a rotating shaft. The fixing knob is threadedly connected to the upper part of the sleeve bracket, and the end part of the fixing knob passes through the sleeve bracket and abuts against the outer wall surface of the limit sleeve.

[0017] Preferably, the measuring and sensing assembly is sleeved inside the limit sleeve. The measuring and sensing assembly includes a transmission rod, a measuring head, a compression spring, and a measuring roller. The transmission rod is sleeved inside the limit sleeve. The measuring head is fixed to the bottom end of the transmission rod. The compression spring is sleeved outside the lower end of the transmission rod, and both ends of the compression spring are respectively fixed to the top end of the measuring head and the bottom end of the limit sleeve. The measuring roller is installed inside the measuring head through a rotating shaft.

[0018] Preferably, several groups of the measuring rollers are provided. The widths of different groups of the measuring rollers gradually decrease. The measuring rollers with large width are used for the inclined measuring operation condition of the measuring and sensing assembly, and the measuring rollers with small width are used for the vertical measuring operation condition of the measuring and sensing assembly.

[0019] The using method of the steel plate combination module specification measuring device includes the following steps:

[0020] Step S1, firstly, the main body of the steel plate assembly module is measured by a laser detection device, and the obstructed measurement part is marked according to the measurement result;

[0021] Step S2, placing the running frame at the marked position of the steel plate assembly module, and setting the connecting hook on the outside of the slide bar through the notch at the bottom of the connecting hook. When the slide bar is in a straight state, the connecting hook is directly hung on the outside of the slide bar. When the slide bar is in an inclined or inverted state, the setting direction of the connecting hook is changed by rotating to adapt the inverted slide bar.

[0022] Step S3, pushing the connecting plate body so that the connecting plate body slides along the sliding rod in cooperation with the connecting hook;

[0023] Step S4, during the stable sliding of the connecting plate body, the measuring roller contacts the surface of the steel plate assembly module, and when the measuring sensing component as a whole moves laterally along the connecting plate group, the measuring roller moves laterally along the connecting plate group along with the measuring sensing component as a whole by rolling. During the rolling process of the measuring roller, the undulation of the surface of the combined beam is transmitted to the measuring roller, and the measuring roller drives the measuring head and the transmission rod to move up and down along the limit sleeve, and the movement of the end of the transmission rod is transmitted to the limit transmission assembly;

[0024] Step S5, the limit transmission component is pushed by the measurement sensing component and directly transmitted to the measurement table, the measurement table detects the transmission of the limit transmission component, the measurement table displays and records the activity data of the limit transmission component, the activity data recorded by the measurement table can be exported to form a continuous data graph, and the ups and downs of the steel plate combination module are judged by the formed continuous data graph;

[0025] Step S6, measure the tilt amplitude, first replace the wide width measuring roller, and release the rotation restriction of the fixed knob on the limit sleeve by rotating the fixed knob. In this state, the wide width measuring roller fits with the surface of the steel plate combination module under the action of the compression spring, and when the wide width measuring roller runs to an irregular concave or convex area, the wide width measuring roller adaptively rotates laterally as the irregular concave or convex area on the surface of the steel plate combination module changes. The resultant force of the lateral rotation of the wide width measuring roller is decomposed into vertical and lateral directions respectively, and the transmission rod is pushed by the vertical force to adaptively extend and retract, and the transmission rod is driven by the lateral force to drive the limit sleeve to rotate around the rotating shaft, and the rotating transmission rod drives the horizontal limit transmission assembly, thereby causing the limit transmission assembly to change its positional relationship with the end of the measuring meter. In this process, the measuring meter completes the measurement of the tilt amplitude.

[0026] Compared with the prior art, the beneficial effects of the present invention are:

[0027] 1. The present invention is provided with a running frame, a connecting plate group, a measuring component, a commutation adjusting component and a measuring and sensing component. The measuring and sensing component transmits the state of the steel plate combined module sensed to the measuring component. The measuring component measures and records the measured data. The commutation adjusting component can cooperate with the measuring and sensing component to perform lateral measurement, realizing multi-directional manual detection of the same part, complementing the measurement blind area of laser detection. At the same time, the inclination data in the transverse and longitudinal directions are respectively measured at the same measurement position of the steel plate combined module, which can avoid the situation that there is a long straight part in the longitudinal direction and a curved part in the transverse direction in the concave or convex area on the surface of the steel plate combined module. When there is no change in the longitudinal data, the measurer can judge whether there is deformation in this area by combining the change in lateral data, improving the judgment accuracy;

[0028] 2. In the present invention, the connecting plate group includes a connecting plate main body and a connecting hook. When the running frame is arranged upside down, the connecting hook can change the setting direction by rotating, so as to adapt to the inverted sliding rod, realizing the all-round adaptation to the inclined and inverted site. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 is a three-dimensional structural schematic diagram of the present invention;

[0030] Figure 2 is a three-dimensional structural schematic diagram of the connecting plate group of the present invention;

[0031] Figure 3 is a three-dimensional structural schematic of the measuring component of the present invention Figure 1 ;

[0032] Figure 4 is a three-dimensional structural schematic of the measuring component of the present invention Figure 2 ;

[0033] Figure 5 is a three-dimensional structural schematic of the commutation adjusting component and the measuring and sensing component of the present invention Figure 1 ;

[0034] Figure 6 is a three-dimensional structural schematic of the commutation adjusting component and the measuring and sensing component of the present invention Figure 2 ;

[0035] Figure 7 is a schematic diagram of the inverted use state of the present invention;

[0036] Figure 8 is a schematic diagram of the use state of the present invention Figure 1 ;

[0037] Figure 9 is a schematic diagram of the use state of the present invention Figure 2 .

[0038] The numbers in the figures represent:

[0039] 1. Running frame; 11. Leg; 12. Slide bar; 2. Connecting plate group; 21. Connecting plate body; 22. Connecting hook; 3. Measuring component; 31. Measuring part bracket; 32. Fixed back plate; 33. Limit drive component; 34. Measuring gauge frame; 35. Measuring gauge; 4. Reversing adjustment component; 41. Connecting seat; 42. Sleeve bracket; 43. Limit sleeve; 44. Fixed knob; 5. Measuring sensing component; 51. Drive rod; 52. Measuring head; 53. Compression spring; 54. Measuring roller. Detailed implementation manner

[0040] The following further elaborates the present invention in combination with the accompanying drawings and embodiments on the above and other technical features and advantages of the present invention. However, the following embodiments are only the preferred embodiments of the present invention and not all of them.

[0041] Embodiment:

[0042] As Figure 1 - Figure 9 shown, the present invention provides a measuring device for the specifications of a steel plate combined module, including a running frame 1, a connecting plate group 2, a measuring component 3, a reversing adjustment component 4, and a measuring sensing component 5;

[0043] The running frame 1 is erected at the joint of the steel plate combined module;

[0044] The connecting plate group 2 is hung outside the running frame 1, and the running frame 1 defines the sliding direction of the connecting plate group 2;

[0045] The measuring component 3 and the reversing adjustment component 4 are respectively arranged at the upper and lower ends of the running frame 1;

[0046] The measuring sensing component 5 is arranged inside the reversing adjustment component 4. The end of the measuring sensing component 5 is connected to the measuring component 3 and is detected by the measuring component 3. The running frame 1 and the connecting plate group 2 cooperate to form a detection path. The measuring sensing component 5 moves along the detection path, and the measuring sensing component 5 transmits the undulating configuration of the steel plate combined module it senses to the measuring component 3 for measurement and recording.

[0047] The running frame 1 includes legs 11 and slide bars 12. Two groups of slide bars 12 are arranged vertically between two groups of legs 11. Supported by the two groups of slide bars 12, the two groups of legs 11 cooperate with the slide bars 12 to form a support structure. The running frame 1 can be normally placed on the surface of the steel plate combined module, or can be connected to the surface of the inclined or inverted steel plate combined module by manual holding, so as to achieve accurate adaptation to each measurement position.

[0048] The connecting plate group 2 includes a connecting plate main body 21 and connecting hooks 22. Two sets of connecting hooks 22 are vertically arranged on the outer wall surface of the connecting plate main body 21 through a rotating shaft. A notch for connecting with the sliding rod 12 is provided at the bottom end of the connecting hook 22. Through the notch at the bottom of the connecting hook 22, the connecting hook 22 can be erected outside the sliding rod 12, and the connecting hook 22 can be horizontally moved along the outside of the sliding rod 12. At the same time, when the running frame 1 is arranged upside down, the connecting hook 22 can change the setting direction by rotating, so as to adapt to the upside-down sliding rod 12.

[0049] The measuring component 3 includes a measuring part support 31, a fixed back plate 32 and a limit transmission component 33;

[0050] The measuring part support 31 is fixed on the upper part of the inner wall surface of the connecting plate main body 21 by bolts. The fixed back plate 32 is fixed on the side wall surface of the measuring part support 31. Two sets of limit transmission components 33 are respectively arranged on both sides of the surface of the fixed back plate 32. The two sets of limit transmission components 33 are arranged perpendicular to each other. Through holes are opened at the corresponding positions of the two sets of limit transmission components 33 in the measuring part support 31. The end parts of the movable ends of the limit transmission components 33 are sleeved in the through holes and pass through the through holes. The two sets of limit transmission components 33 cooperate to form two detection positions, and the undulation and inclination of the steel plate combination module can be adapted through the two detection positions respectively.

[0051] The measuring component 3 further includes a measuring table frame 34 and a measuring table 35;

[0052] The measuring table frame 34 is fixed on the back of the fixed back plate 32 by bolts. The measuring table 35 is fixed in the end part of the measuring table frame 34 by bolts. The measuring end of the measuring table 35 is connected to the transmission end of the limit transmission component 33. The limit transmission component 33 can be directly transmitted to the measuring table 35 under the push of the measuring sensing component 5. The measuring table 35 detects the transmission of the limit transmission component 33. The measuring table 35 displays and records the movement data of the limit transmission component 33. The movement data recorded by the measuring table 35 can be exported to form a continuous data graph, and the undulation condition of the steel plate combination module can be judged through the formed continuous data graph.

[0053] Two fixing areas for threaded connection of the measuring table frame 34 are arranged on the back of the fixed back plate 32. The two fixing areas correspond to the two sets of limit transmission components 33 respectively. The fixing area consists of four positioning holes and one bolt hole. The bolt hole is located in the middle of the positioning holes. After measuring the flatness and finding the undulation position, rotate the fixing bolt, remove the measuring table frame 34 from the vertical fixing area, and then insert the measuring table frame 34 into the horizontal fixing area. During the insertion process, the positioning holes correspond to the protrusions on the surface of the measuring table frame 34. After completing the connection correspondence, fix the measuring table frame 34 by rotating the bolt. After the measuring table frame 34 is fixed, connect the measuring table 35 to the horizontally arranged limit transmission component 33 and reset it, and repeat the measurement along the previous measurement route.

[0054] The commutation adjustment assembly 4 includes a connecting seat 41, a sleeve bracket 42, a limiting sleeve 43 and a fixing knob 44;

[0055] The connecting seat 41 is fixed to the lower inner wall surface of the connecting plate main body 21 by bolts. The sleeve bracket 42 is arranged in the middle of the side wall surface of the connecting seat 41. The limiting sleeve 43 is installed inside the sleeve bracket 42 through a rotating shaft. The fixing knob 44 is threadedly connected to the upper part of the sleeve bracket 42, and the end of the fixing knob 44 passes through the sleeve bracket 42 and abuts against the outer wall surface of the limiting sleeve 43. When measuring the undulating data, the fixing knob 44 abuts against the limiting sleeve 43, and the limiting sleeve 43 is restricted by the abutment of the fixing knob 44. At this time, the relative position of the limiting sleeve 43 remains fixed, and the measurement sensing assembly 5 can only move vertically along the limiting sleeve 43 to complete the measurement of the undulating data. When measuring the inclination amplitude, the rotation restriction of the fixing knob 44 on the limiting sleeve 43 can be released by rotating the fixing knob 44. In this state, the limiting sleeve 43 can rotate around the rotating shaft according to the force received by the measurement sensing assembly 5. After rotation, the limiting sleeve 43 drives the measurement sensing assembly 5 to rotate synchronously, and the rotating measurement sensing assembly 5 pushes the horizontally arranged limiting transmission assembly 33, thereby enabling the limiting transmission assembly 33 to push the measuring table 35 to complete the measurement of the inclination amplitude.

[0056] The measurement sensing assembly 5 is sleeved inside the limiting sleeve 43. The measurement sensing assembly 5 includes a transmission rod 51, a measurement head 52, a compression spring 53 and measurement rollers 54;

[0057] The transmission rod 51 is sleeved inside the limiting sleeve 43. The measurement head 52 is fixed to the bottom end of the transmission rod 51. The compression spring 53 is sleeved outside the lower end of the transmission rod 51, and both ends of the compression spring 53 are fixedly connected to the top end of the measurement head 52 and the bottom end of the limiting sleeve 43 respectively. The measurement rollers 54 are installed inside the measurement head 52 through rotating shafts. When measuring the undulating data, the measurement rollers 54 are in contact with the surface of the steel plate combination module. When the measurement sensing assembly 5 as a whole moves horizontally with the connecting plate group 2, the measurement rollers 54 change their positions by rolling. During the rolling process, the undulation on the surface of the combined beam can be transmitted to the measurement rollers 54, and the measurement rollers 54 drive the measurement head 52 and the transmission rod 51 to move up and down along the limiting sleeve 43, and the movement of the end of the transmission rod 51 is transmitted to the limiting transmission assembly 33.

[0058] A number of groups of measurement rollers 54 are provided, and the widths of different groups of measurement rollers 54 gradually decrease. When measuring the inclination amplitude, the measurement rollers 54 with a wide size are selected. When measuring the undulation degree, the measurement rollers 54 with a narrow size are selected for measurement. The measurement rollers 54 with a wide size can better sense the inclination amplitude, and the measurement rollers 54 with a narrow size can reduce the interference when measuring the undulation amplitude.

[0059] Usage method of a steel plate combined module specification measuring device, including the following steps:

[0060] First, measure the main body of the steel plate combined module through a laser detection device, mark the obstructed measurement parts according to the measurement results, and mark the obstructed measurement parts;

[0061] Place the running frame 1 at the marked position of the steel plate combined module. Through the notch at the bottom of the connecting hook 22, place the connecting hook 22 outside the sliding rod 12. When the sliding rod 12 is in a straight state, the connecting hook 22 is directly hung outside the sliding rod 12. When the sliding rod 12 is in an inclined or inverted state, change the setting direction of the connecting hook 22 by rotating to adapt to the inverted sliding rod 12;

[0062] Push the connecting plate main body 21 to make the connecting plate main body 21 slide along the sliding rod 12 under the cooperation of the connecting hook 22;

[0063] During the stable sliding of the connecting plate main body 21, the measuring roller 54 contacts the surface of the steel plate combined module. As the measuring sensing component 5 moves horizontally with the connecting plate group 2 as a whole, the measuring roller 54 moves horizontally along the connecting plate group 2 by rolling as the measuring sensing component 5 as a whole. During the rolling of the measuring roller 54, the undulation of the combined beam surface is transmitted to the measuring roller 54, and the measuring roller 54 drives the measuring head 52 and the transmission rod 51 to move up and down along the limit sleeve 43. The movement of the end of the transmission rod 51 is transmitted to the limit transmission component 33;

[0064] The limit transmission component 33 is directly transmitted to the measuring table 35 by the push of the measuring sensing component 5. The measuring table 35 detects the transmission of the limit transmission component 33, the measuring table 35 displays and records the activity data of the limit transmission component 33, and the activity data recorded by the measuring table 35 can be exported to form a continuous data graph. The undulation situation of the steel plate combined module is judged through the formed continuous data graph;

[0065] For the measurement of the tilt amplitude, first replace the large-width measurement roller 54. By rotating the fixing knob 44, the rotational restriction of the fixing knob 44 on the limit sleeve 43 is released. In this state, the large-width measurement roller 54 is in contact with the surface of the steel plate combination module under the action of the compression spring 53. When the large-width measurement roller 54 runs to an irregular concave or convex area, the large-width measurement roller 54 makes an adaptive lateral rotation along with the irregular concave or convex area of the surface of the steel plate combination module. The resultant force of the lateral rotation of the large-width measurement roller 54 is decomposed into two directions: vertical and lateral. The transmission rod 51 is pushed to adaptively expand and contract by the force in the vertical direction, and the transmission rod 51 drives the limit sleeve 43 to rotate around the rotating shaft by the force on the side. The rotating transmission rod 51 drives the horizontally arranged limit transmission component 33, thereby changing the positional relationship between the limit transmission component 33 and the end of the measuring gauge 35. During this process, the measuring gauge 35 completes the measurement of the tilt amplitude.

[0066] The above are only the preferred embodiments of the present invention, which are illustrative rather than restrictive to the present invention. Those skilled in the art understand that many changes, modifications, and even equivalents can be made within the spirit and scope defined by the claims of the present invention, but all will fall within the protection scope of the present invention.

Claims

1. A steel plate combined module specification measuring device, characterized in that: It includes a running frame, a connecting plate group, a measuring component, a reversing adjustment component and a measuring sensing component; The running frame is set up at the joint of the steel plate combined module; The connecting plate group is hung outside the running frame, and the running frame limits the sliding direction of the connecting plate group; The measuring assembly and the reversing adjustment assembly are respectively arranged at the upper and lower ends of the running frame, the measuring assembly includes a measuring part bracket, a fixed back plate and a limit transmission assembly, the measuring part bracket is fixed above the inner wall surface of the connecting plate body by bolts, the fixed back plate is fixed to the side wall surface of the measuring part bracket, two groups of the limit transmission assemblies are respectively arranged on both sides of the surface of the fixed back plate, and the two groups of the limit transmission assemblies are arranged perpendicular to each other, through holes are opened in the measuring part bracket at positions corresponding to the movable ends of the two groups of limit transmission assemblies, and the movable end of the limit transmission assembly is sleeved in the through hole and passes through the through hole; The measuring sensing component is arranged inside the reversing regulating component, and the end of the measuring sensing component is connected to the measuring component and detected by the measuring component; The running frame and the connecting plate group cooperate to form a detection path. The measurement perception component moves along the detection path. The measurement perception component transmits the perceived undulating configuration of the steel plate combination module to the measurement component for measurement and recording.

2. A steel plate combined module specification measuring device as claimed in claim 1, characterized in that: The running frame comprises supporting legs and sliding rods, and two groups of sliding rods are vertically arranged between the two groups of supporting legs.

3. A steel plate combined module specification measuring device as claimed in claim 2, characterized in that: The connecting plate group includes a connecting plate body and connecting hooks. Two groups of connecting hooks are vertically arranged on the outer wall surface of the connecting plate body through a rotating shaft. The bottom end of the connecting hook is provided with a notch for connecting with the sliding rod.

4. A steel plate combined module specification measuring device as claimed in claim 1, characterized in that: The measuring assembly also includes a measuring meter frame and a measuring meter. The measuring meter frame is fixed to the back of the fixed back plate by bolts, and the measuring meter is fixed to the end of the measuring meter frame by bolts. The measuring end of the measuring meter is connected to the transmission end of the limit transmission assembly.

5. The steel plate combined module specification measuring device according to claim 1, characterized in that: The back of the fixed back plate is provided with two groups of fixing areas for threaded connection of the measuring table frame, and the two groups of fixing areas correspond to two groups of limit transmission components respectively. The fixing areas are composed of four groups of positioning holes and one group of bolt holes, and the bolt holes are located in the middle of the positioning holes.

6. A steel plate combined module specification measuring device as claimed in claim 1, characterized in that: The reversing adjustment assembly includes a connecting seat, a sleeve bracket, a limiting sleeve and a fixing knob. The connecting seat is fixed below the inner wall surface of the connecting plate body by bolts, the sleeve bracket is arranged in the middle of the side wall surface of the connecting seat, the limiting sleeve is installed inside the sleeve bracket through a rotating shaft, the fixing knob is threadedly connected to the upper part of the sleeve bracket, and the end of the fixing knob passes through the sleeve bracket and contacts the outer wall surface of the limiting sleeve.

7. A steel plate combined module specification measuring device as claimed in claim 1, characterized in that: The measurement sensing component is sleeved inside the limiting sleeve, and the measurement sensing component includes a transmission rod, a measuring head, a compression spring and a measuring roller. The transmission rod is sleeved inside the limiting sleeve, the measuring head is fixed to the bottom end of the transmission rod, the compression spring is sleeved outside the lower end of the transmission rod, and the two ends of the compression spring are respectively fixedly connected to the top end of the measuring head and the bottom end of the limiting sleeve, and the measuring roller is installed inside the measuring head through a rotating shaft.

8. A steel plate combined module specification measuring device as claimed in claim 7, characterized in that: The measuring rollers are arranged in several groups, and the widths of the measuring rollers in different groups decrease step by step. The large-width measuring rollers are used to measure the tilt measurement working condition of the sensing component, and the small-width measuring rollers are used to measure the vertical measurement working condition of the sensing component.

9. A method for using the steel plate combined module specification measuring device according to any one of claims 1 to 8, characterized in that: The following steps are involved: Step S1, firstly, the main body of the steel plate assembly module is measured by a laser detection device, and the obstructed measurement part is marked according to the measurement result; Step S2, placing the running frame at the marked position of the steel plate assembly module, and setting the connecting hook on the outside of the slide bar through the notch at the bottom of the connecting hook. When the slide bar is in a straight state, the connecting hook is directly hung on the outside of the slide bar. When the slide bar is in an inclined or inverted state, the setting direction of the connecting hook is changed by rotating to adapt the inverted slide bar. Step S3, pushing the connecting plate body so that the connecting plate body slides along the sliding rod in cooperation with the connecting hook; Step S4, during the stable sliding of the connecting plate body, the small width measuring roller contacts the surface of the steel plate combination module, and when the measuring sensing component as a whole moves laterally along the connecting plate group, the measuring roller moves laterally along the connecting plate group along with the measuring sensing component as a whole by rolling. During the rolling process of the measuring roller, the undulation of the surface of the combined beam is transmitted to the measuring roller, and the measuring roller drives the measuring head and the transmission rod to move up and down along the limit sleeve, and the movement of the end of the transmission rod is transmitted to the limit transmission assembly; Step S5, the limit transmission component is pushed by the measurement sensing component and directly transmitted to the measurement table, the measurement table detects the transmission of the limit transmission component, the measurement table displays and records the activity data of the limit transmission component, the activity data recorded by the measurement table can be exported to form a continuous data graph, and the ups and downs of the steel plate combination module are judged by the formed continuous data graph; Step S6, measure the tilt amplitude, first replace the wide width measuring roller, and release the rotation restriction of the fixed knob on the limit sleeve by rotating the fixed knob. In this state, the wide width measuring roller fits with the surface of the steel plate combination module under the action of the compression spring, and when the wide width measuring roller runs to an irregular concave or convex area, the wide width measuring roller adaptively rotates laterally as the irregular concave or convex area on the surface of the steel plate combination module changes. The resultant force of the lateral rotation of the wide width measuring roller is decomposed into vertical and lateral directions respectively, and the transmission rod is pushed by the vertical force to adaptively extend and retract, and the transmission rod is driven by the lateral force to drive the limit sleeve to rotate around the rotating shaft, and the rotating transmission rod drives the horizontal limit transmission assembly, thereby causing the limit transmission assembly to change its positional relationship with the end of the measuring meter. In this process, the measuring meter completes the measurement of the tilt amplitude.

Citation Information

Patent Citations

  • Flatness detection device for iron workpiece

    CN222013002U