Semi-automatic assembling device for seismic image detector

By designing a semi-automatic assembly device for seismic image detectors, using components such as boost and buck-pressure assembly and clamping cylinders to achieve semi-automatic assembly, solving the problem of low manual assembly efficiency and error proneness, improving assembly efficiency and reducing error rate.

CN223235572UActive Publication Date: 2025-08-19WUXI ACOUSTIC IMAGE GATHERING SENSING DETECTION TECH CO LTD
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Patent Information

Application Number
CN202422459681.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-08-19
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

In the prior art, the assembly of seismic image detectors relies on manual operation, is inefficient and prone to errors.

Method used

A semi-automatic assembly device for seismic image detectors is designed, using components such as boost and buck-pressure mounting cylinders, pressing heads, transverse moving guides, sliders and connecting plates to realize the semi-automatic assembly process, combining clamping cylinders and jaws to position and press the detector.

Benefits of technology

It improves the assembly efficiency of detectors, reduces the risk of assembly errors, and realizes a highly automated assembly process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a semi-automatic assembling device for a seismic imaging detector, which comprises a semi-automatic assembling mechanism, the semi-automatic assembling mechanism comprises a lifting press-fitting cylinder, a press-fitting head, a transverse moving guide rail, a sliding block, a connecting plate and a detector bearing disc, the press-fitting head is fixedly connected with the lifting press-fitting cylinder, and the transverse moving guide rail is fixedly connected with the transverse moving guide rail. Therefore, the lifting press-fitting air cylinder drives the press-fitting head to ascend and descend in the vertical direction. The sliding block is connected to the transverse moving guide rail in a sliding mode, the connecting plate is fixedly connected with the sliding block, and the detector bearing disc is fixedly connected with the connecting plate, so that the connecting plate or the detector bearing disc is manually pushed, the connecting plate drives the sliding block to slide on the transverse moving guide rail, and the detector bearing disc can move on the transverse moving guide rail. Therefore, the to-be-assembled detector on the detector bearing disc is conveyed to the position below the press-fitting head.
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Description

Technical Field

[0001] The utility model relates to the field of assembly equipment, in particular to a semi-automatic assembly device for a seismic imaging geophone. Background Art

[0002] Seismic imaging, also known as high-density seismic exploration and seismic multi-wave exploration, is a commonly used shallow-strata exploration method developed based on the optimal offset technology in the reflection wave method. It can use multiple waves as effective waves for detection, or it can use only one specific wave as the effective wave according to the detection requirements. Common waves include refracted waves, reflected waves, diffracted waves, surface waves, shear waves, and converted waves. The seismic imaging test method uses a hammer to generate a source, a detector to receive the signal, and then uses dedicated indoor software to process and judge the formation conditions. At present, the detection wave assembly in the existing technology is mostly completed manually, which is inefficient and prone to errors. Summary of the Invention

[0003] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a semi-automatic assembly device for a seismic imaging geophone.

[0004] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solutions: a semi-automatic assembly device for seismic imaging detectors, including a semi-automatic assembly mechanism, the semi-automatic assembly mechanism including a lifting and pressing cylinder, a pressing head, a transversely movable guide rail, a slider, a connecting plate, and a detector support tray, wherein the pressing head is fixedly connected to the lifting and pressing cylinder, so that the lifting and pressing cylinder drives the pressing head to rise and fall in the vertical direction; the slider is slidably connected to the transversely movable guide rail, the connecting plate and the slider are fixedly connected, and the detector support tray and the connecting plate are fixedly connected, so that by manually pushing the connecting plate or the detector support tray, the connecting plate drives the slider to slide on the transversely movable guide rail, thereby sending the detector to be assembled on the detector support tray to the bottom of the pressing head.

[0005] Furthermore, the semi-automatic assembly mechanism also includes a clamping cylinder and a clamping jaw. The clamping cylinder is connected to the clamping jaw, and the clamping cylinder drives the clamping jaw to close or open. The clamping jaw is located below the pressing head. The clamping cylinder drives the clamping jaw to hold the detector to be assembled so that the detector remains vertical, and the pressing head presses the vertical detector.

[0006] Furthermore, the semi-automatic assembly mechanism also includes a holding member, a support and a connecting plate, the clamping cylinder is fixedly mounted on the support and connecting plate, and the support and connecting plate are fixedly connected to the holding member; the holding member is detachably fixedly connected to the pressing head, so that when the pressing head is raised or lowered, the holding member is driven to rise or fall synchronously, and when the holding member is raised or lowered synchronously, the clamping cylinder is driven to rise or fall synchronously.

[0007] Furthermore, the holding member includes a first fixed connection end and a second fixed connection end, and there is a preset distance between the first fixed connection end and the second fixed connection end, so that an expandable groove is formed between the first fixed connection end and the second fixed connection end; the holding member is provided with a clamping hole adapted to the press-fitting head, the clamping hole passes through the holding member, and the clamping hole and the expandable groove are connected, so that the press-fitting head extends into the clamping hole, and the first fixed connection end and the second fixed connection end are fixedly connected, so that the press-fitting head and the holding member are fixedly connected.

[0008] Furthermore, it also includes a frame, and the semi-automatic assembly mechanism is fixedly installed on the frame.

[0009] Furthermore, the semi-automatic assembly mechanism also includes a lifting cylinder support plate and a supporting column. The lifting and pressing cylinder is fixedly installed on the lifting cylinder support plate. One end of the supporting column is fixedly connected to the lifting cylinder support plate, and the other end of the supporting column is fixedly connected to the frame.

[0010] Furthermore, the semi-automatic assembly mechanism also includes a guide column, a guide slider, and a connecting piece. The guide slider is slidably connected to the guide column, one end of the connecting piece is fixedly connected to the guide slider, and the other end of the connecting piece is fixedly connected to the connecting plate. The length direction of the guide column is parallel to the length direction of the transverse moving guide rail, so that when the slider slides on the transverse moving guide rail, it drives the guide slider to slide on the guide column, so that the guide slider and the guide column provide stability for the sliding of the slider.

[0011] Furthermore, the semi-automatic assembly mechanism also includes a first fixed connecting ear and a second fixed connecting ear, and the first fixed connecting ear and the second fixed connecting ear are respectively fixedly connected to the two ends of the guide column. On the other hand, the first fixed connecting ear and the second fixed connecting ear are both fixedly mounted on the frame.

[0012] The beneficial effects of the present application are as follows: the semi-automatic assembly device for seismic imaging geophones provided by the present application has a simple structure, is easy to assemble, and has a high degree of automation, which greatly improves the efficiency of geophone assembly and reduces the risk of errors in geophone assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 The present invention provides a structural schematic diagram of a semi-automatic assembly device for seismic imaging geophones.

[0014] Figure 2 for Figure 1 A partially enlarged view of a semi-automatic assembly device for a seismic imaging geophone is shown.

[0015] Figure 3 for Figure 1 Another partially enlarged view of a semi-automatic assembly device for a seismic imaging geophone shown in .

[0016] Figure 4 for Figure 1 Another partially enlarged view of a semi-automatic assembly device for a seismic imaging geophone shown in . DETAILED DESCRIPTION

[0017] The present application is further described in detail below by means of specific embodiments in conjunction with the accompanying drawings. Similar elements in different embodiments are numbered with associated similar elements. In the following embodiments, many detailed descriptions are provided to enable the present application to be better understood. However, those skilled in the art will readily appreciate that some of the features may be omitted in different circumstances, or may be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification. This is to avoid the core portion of the present application being overwhelmed by excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail. They can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.

[0018] In addition, the features, operations, or characteristics described in the specification may be combined in any appropriate manner to form various implementations, and the operational steps involved in each embodiment may be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing a particular embodiment and do not imply a required composition and / or sequence.

[0019] The serial numbers assigned to components herein, such as "first," "second," etc., are used solely to distinguish the objects being described and do not convey any sequential or technical meaning. References to "connection" and "coupling" herein, unless otherwise specified, include both direct and indirect connections (couplings).

[0020] Please refer to Figure 1-4The present application provides a semi-automatic assembly device for seismic imaging geophones (hereinafter referred to as the semi-automatic assembly device), which includes a semi-automatic assembly mechanism 2, the semi-automatic assembly mechanism 2 including a lifting and pressing cylinder 21, a pressing head 22, a transverse movable guide rail 28, a slider 29, a connecting plate 210, and a geophone tray 211, wherein the pressing head 22 is fixedly connected to the lifting and pressing cylinder 21, so that the lifting and pressing cylinder 21 drives the pressing head 22 to move up and down in the vertical direction; the slider 29 is slidably connected to the transverse movable guide rail 28, the connecting plate 210 and the slider 29 are fixedly connected, and the geophone tray 211 and the connecting plate 210 are fixedly connected, so that by manually pushing the connecting plate 210 or the geophone tray 211, the connecting plate 210 drives the slider 29 to slide on the transverse movable guide rail 28, thereby sending the geophone to be assembled on the geophone tray 211 to the bottom of the pressing head 22.

[0021] In one embodiment of the present application, the semi-automatic assembly mechanism 2 also includes a clamping cylinder 26 and a clamping jaw 27. The clamping cylinder 26 and the clamping jaw 27 are connected, and the clamping cylinder 26 drives the clamping jaw 27 to close or open. The clamping jaw 27 is located below the pressing head 22. The clamping cylinder 26 drives the clamping jaw 27 to hold the detector to be assembled so that the detector remains vertical, and the pressing head 22 presses the vertical detector.

[0022] In one embodiment of the present application, the semi-automatic assembly mechanism 2 also includes a holding member 25 and a support and connecting plate 217. The clamping cylinder 26 is fixedly mounted on the support and connecting plate 217, and the support and connecting plate 217 is fixedly connected to the holding member 25. The holding member 25 is detachably fixedly connected to the pressing head 22, so that when the pressing head 22 is raised or lowered, the holding member 25 is driven to rise or fall synchronously, and when the holding member 25 is raised or lowered synchronously, the clamping cylinder 26 is driven to rise or fall synchronously.

[0023] In one embodiment of the present application, the retaining member 25 includes a first fixed connection end 251 and a second fixed connection end 252, and there is a preset distance between the first fixed connection end 251 and the second fixed connection end 252, so that an expandable groove 253 is formed between the first fixed connection end 251 and the second fixed connection end 252; the retaining member 25 is provided with a clamping hole 250 adapted to the press-fitting head 22, the clamping hole 250 passes through the retaining member 25, and the clamping hole 250 and the expandable groove 253 are communicated, so that the press-fitting head 22 extends into the clamping hole 250, and the first fixed connection end 251 and the second fixed connection end 252 are fixedly connected, so that the press-fitting head 22 and the retaining member 25 are fixedly connected.

[0024] In one embodiment of the present application, the semi-automatic assembly device further includes a frame 1 , and the semi-automatic assembly mechanism 2 is fixedly mounted on the frame 1 .

[0025] In one embodiment of the present application, the semi-automatic assembly mechanism 2 also includes a lifting cylinder support plate 23 and a receiving column 24. The lifting and pressing cylinder 21 is fixedly installed on the lifting cylinder support plate 23. One end of the receiving column 24 is fixedly connected to the lifting cylinder support plate 23, and the other end of the supporting column 24 is fixedly connected to the frame 1.

[0026] In one embodiment of the present application, the semi-automatic assembly mechanism 2 also includes a guide column 212, a guide slider 213, and a connecting member 214. The guide slider 213 is slidably connected to the guide column 212, one end of the connecting member 214 is fixedly connected to the guide slider 213, and the other end of the connecting member 214 is fixedly connected to the connecting plate 210. The length direction of the guide column 212 is parallel to the length direction of the transverse moving guide rail 28, so that when the slider 29 slides on the transverse moving guide rail 28, it drives the guide slider 213 to slide on the guide column 212, so that the guide slider 213 and the guide column 212 provide stability for the sliding of the slider 29.

[0027] In one embodiment of the present application, the semi-automatic assembly mechanism 2 also includes a first fixed connecting ear 215 and a second fixed connecting ear 216. The first fixed connecting ear 215 and the second fixed connecting ear 216 are respectively fixedly connected to the two ends of the guide column 212. On the other hand, the first fixed connecting ear 215 and the second fixed connecting ear 216 are both fixedly installed on the frame 1.

[0028] The semi-automatic assembly device for seismic imaging geophones provided in the present application has a simple structure, is easy to assemble, and has a high degree of automation, which greatly improves the efficiency of geophone assembly and reduces the risk of errors in geophone assembly.

[0029] The above embodiments are intended only to illustrate the technical concepts and features of the present invention. Their purpose is to enable those familiar with the art to understand the contents of the present invention and implement them accordingly. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications based on the spirit of the present invention are intended to be included in the scope of protection of the present invention.

Claims

1. A semi-automatic assembly device for seismic imaging geophones, characterized in that: It includes a semi-automatic assembly mechanism, which includes a lifting and pressing cylinder, a pressing head, a transverse moving guide rail, a slider, a connecting plate, and a detector supporting tray, wherein the pressing head is fixedly connected to the lifting and pressing cylinder, so that the lifting and pressing cylinder drives the pressing head to rise and fall in the vertical direction; the slider is slidably connected to the transverse moving guide rail, the connecting plate and the slider are fixedly connected, and the detector supporting tray and the connecting plate are fixedly connected, so that by manually pushing the connecting plate or the detector supporting tray, the connecting plate drives the slider to slide on the transverse moving guide rail, thereby sending the detector to be assembled on the detector supporting tray to the bottom of the pressing head.

2. The semi-automatic assembly device for seismic imaging geophones according to claim 1, characterized in that: The semi-automatic assembly mechanism also includes a clamping cylinder and a clamping jaw. The clamping cylinder is connected to the clamping jaw, and the clamping cylinder drives the clamping jaw to close or open. The clamping jaw is located below the pressing head. The clamping cylinder drives the clamping jaw to hold the detector to be assembled so that the detector remains vertical, and the pressing head presses the vertical detector.

3. The semi-automatic assembly device for seismic imaging geophones according to claim 2, characterized in that: The semi-automatic assembly mechanism also includes a holding member, a support and a connecting plate, the clamping cylinder is fixedly mounted on the support and connecting plate, and the support and connecting plate are fixedly connected to the holding member; the holding member is detachably fixedly connected to the pressing head, so that when the pressing head is raised or lowered, the holding member is driven to rise or fall synchronously, and when the holding member is raised or lowered synchronously, the clamping cylinder is driven to rise or fall synchronously.

4. The semi-automatic assembly device for seismic imaging geophones according to claim 3, characterized in that: The holding member includes a first fixed connection end and a second fixed connection end, and there is a preset distance between the first fixed connection end and the second fixed connection end, so that an expandable groove is formed between the first fixed connection end and the second fixed connection end; the holding member is provided with a clamping hole adapted to the press-fitting head, the clamping hole passes through the holding member, and the clamping hole and the expandable groove are communicated, so that the press-fitting head extends into the clamping hole, and the first fixed connection end and the second fixed connection end are fixedly connected, so that the press-fitting head and the holding member are fixedly connected.

5. The semi-automatic assembly device for seismic imaging geophones according to claim 4, characterized in that: It also includes a frame, and the semi-automatic assembly mechanism is fixedly installed on the frame.

6. The semi-automatic assembly device for seismic imaging geophones according to claim 5, characterized in that: The semi-automatic assembly mechanism also includes a lifting cylinder support plate and a receiving column. The lifting and pressing cylinder is fixedly installed on the lifting cylinder support plate. One end of the receiving column is fixedly connected to the lifting cylinder support plate, and the other end of the supporting column is fixedly connected to the frame.

7. The semi-automatic assembly device for seismic imaging geophones according to claim 6, characterized in that: The semi-automatic assembly mechanism also includes a guide column, a guide slider, and a connecting piece. The guide slider is slidably connected to the guide column, one end of the connecting piece is fixedly connected to the guide slider, and the other end of the connecting piece is fixedly connected to the connecting plate. The length direction of the guide column is parallel to the length direction of the transverse moving guide rail, so that when the slider slides on the transverse moving guide rail, it drives the guide slider to slide on the guide column, so that the guide slider and the guide column provide stability for the sliding of the slider.

8. The semi-automatic assembly device for seismic imaging geophones according to claim 7, characterized in that: The semi-automatic assembly mechanism also includes a first fixed connecting ear and a second fixed connecting ear, and the first fixed connecting ear and the second fixed connecting ear are respectively fixedly connected to the two ends of the guide column. On the other hand, the first fixed connecting ear and the second fixed connecting ear are both fixedly mounted on the frame.