Railway beam yard construction environment detection equipment

The use of flexible bags and inclined rods enhances the stability of the testing equipment on gravel surfaces, solving the problem of easy shaking of the equipment on gravel surfaces and improving the service life and testing stability of the equipment.

CN223565030UActive Publication Date: 2025-11-18WUHAN ENGINEERING CO LTD OF CHINA RAILWAY SEVENTH GROUP
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Patent Information

Application Number
CN202423246635.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-18
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing environmental monitoring equipment has poor stability on gravel surfaces, and is prone to bumps and swaying, which affects its service life.

Method used

The system employs a flexible soft bag and diagonal bar structure. The flexible soft bag contains a flowing medium, which is in close contact with the crushed stone. The diagonal bar and slotted bar enhance the support stability, and the elastic protrusions and slotted bars are combined to stabilize the equipment.

Benefits of technology

This technology enables the testing equipment to stand stably on gravel surfaces, improving the equipment's lifespan and the stability of the testing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides railway beam yard construction environment detection equipment, which belongs to the technical field of environment detection equipment, and comprises a detector and a supporting base, a supporting rod is arranged on the top surface of the supporting base, the supporting rod is fixedly connected with the bottom surface of the detector, a flexible soft bag is arranged on the bottom surface of the supporting base, and a flowing medium is arranged in the flexible soft bag. The bottom face of the flexible soft bag abuts against the gravel ground, inclined rods are arranged on the supporting rods, the bottom ends of the inclined rods are arranged on the peripheral side of the supporting base, and the bottom ends of the inclined rods abut against the gravel ground. The flexible soft bag is arranged on the bottom face of the supporting base, and the flowing medium is arranged in the flexible soft bag, so that when the flexible soft bag abuts against the rubble ground, the flexible soft bag can deform according to the shape of rubble and make closer contact with the rubble, and the flowing medium is used for transmitting supporting force of the rubble to the supporting base; and the inclined rods are supported on the peripheral side of the supporting base, so that the environment detection equipment can stably stand on the gravel bottom surface.
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Description

TECHNICAL FIELD

[0001] The utility model relates to environmental detection equipment technical field, specifically, relate to a railway beam field construction environment detection equipment. BACKGROUND

[0002] Informationization, digitization, intelligent technology have been widely applied to the intelligent management and control of railway beam field construction safety and environment. Advanced technologies such as Internet of Things, big data and artificial intelligence play a key role in the intelligent management and control of railway beam field construction safety and environment. Through video monitoring and AI recognition technology, the behavior of construction personnel can be monitored comprehensively, and potential risks can be warned in advance. The state of important operating equipment is monitored by video and Beidou satellite, realizing intelligent sensing and early warning. In terms of construction environment, the Internet of Things is used to efficiently monitor the state of beam field weather, dust, noise and sewage, which helps to grasp the environmental changes in real time and provides accurate data for formulating environmental protection measures.

[0003] However, the ground in the railway beam field construction site is usually composed of many gravel, making the flatness of the ground poor. The existing environmental detection equipment has poor stability when placed on the gravel plane, and is prone to shaking during the detection of the construction environment, reducing its service life. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a railway beam field construction environment detection equipment, which can be applied to the ground composed of gravel in the railway beam field and adapt to the use environment of the detection equipment.

[0005] The embodiment of the utility model realizes the following technical scheme: a railway beam field construction environment detection equipment, which comprises a detection equipment and a supporting base, the top surface of the supporting base is provided with a supporting rod, the supporting rod is fixedly connected with the bottom surface of the detection equipment, a flexible soft bag is arranged on the bottom surface of the supporting base, a flow medium is arranged in the flexible soft bag, the bottom surface of the flexible soft bag abuts against the gravel ground, an inclined rod is arranged on the supporting rod, the bottom end of the inclined rod is arranged on the side of the supporting base, and the bottom end of the inclined rod abuts against the gravel ground.

[0006] Further, the bottom surface of the flexible soft bag is provided with an elastic protruding point, and the elastic protruding point abuts against the gravel ground.

[0007] Further, the bottom end of the inclined rod is rotatably provided with an abutting plate, and the bottom surface of the abutting plate abuts against the gravel ground.

[0008] Further, the bottom surface of the abutting plate is rotatably provided with a joint rod, and the joint rod is inserted into the gap between the gravels.

[0009] Further, the inclined rod comprises a sleeve and an inner rod, the sleeve is rotationally connected with the support rod, and the inner rod is slidingly arranged in the sleeve.

[0010] Further, a rotation cam is rotationally arranged on the sleeve and abuts against the side surface of the inner rod.

[0011] Further, an elastic spring is arranged in the sleeve, a first end of the elastic spring abuts against the end of the sleeve, and the other end of the elastic spring abuts against the end of the inner rod extending into the sleeve.

[0012] The technical scheme of the embodiment of the utility model has at least the following advantages and beneficial effects:

[0013] 1. The utility model discloses a flexible soft bag is arranged on the bottom surface of the support base, and flow medium is arranged in the flexible soft bag, so that when the flexible soft bag abuts against the gravel ground, the flexible soft bag can be deformed according to the shape of the gravel, and the flexible soft bag is in close contact with the gravel, and the support force of the gravel on the support base is transmitted through the flow medium, and the inclined rod is supported on the circumferential side of the support base, so that the detection equipment can be stably stood on the gravel bottom surface.

[0014] 2. The utility model discloses a slit rod is arranged on the abutting plate of the end of the inclined rod, when the slit rod is inserted into the gap of the gravel, the support stability between the inclined rod and the gravel is increased, and the inclined rod can more firmly support the support rod. DRAWINGS

[0015] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment, and it should be understood that the following drawings only show some embodiments of the utility model, and should not be regarded as the limitation to the scope, and for the ordinary skilled person in the art, other related drawings can be obtained without the creative labor on the basis of the drawings.

[0016] Figure 1 The whole structure schematic diagram of the railway beam field construction environment detection equipment provided by the utility model is shown in the figure.

[0017] Figure 2 The structure schematic diagram of the bottom surface of the flexible soft bag in the utility model is shown in the figure.

[0018] Figure 3 The explosion schematic diagram of the inclined rod structure in the utility model is shown in the figure.

[0019] Figure 4 The schematic diagram of part A in the utility model is shown in the figure. Figure 3

[0020] ​Icon: 100 - support base, 110 - level, 120 - flexible soft bag, 121 - elastic convex point, 200 - support rod, 210 - mounting ring, 220 - inclined rod, 221 - sleeve, 2211 - strip-shaped groove, 2212 - rotating cam, 2213 - abutting arc surface, 222 - inner rod, 2221 - elastic strip, 2222 - abutting plate, 2223 - rotating seat, 2224 - insertion seam rod, 230 - elastic spring, 300 - detector. DETAILED DESCRIPTION

[0021] To make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described below in connection with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.

[0022] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0023] EMBODIMENT

[0024] The following will be further described in connection with specific embodiments, referring to Figures 1-4 The present application is a railway beam yard construction environment detection device, which comprises a support base 100, a support rod 200 and a detector 300. The support base 100 is used for abutting to the gravel ground. The support rod 200 is arranged between the support base 100 and the detector 300. The bottom end of the support rod 200 is fixedly connected with the top surface of the support base 100, and the detector 300 is arranged at the top end of the support rod 200. The detector 300 can be one or more of an air collection instrument, a noise detector 300 or an image collection instrument.

[0025] Referring to Figure 1 and Figure 2As shown, the top surface of the support base 100 is provided with a level 110, which is used to detect the level state of the support base 100, so as to adjust the posture of the detector 300. The bottom surface of the support base 100 is installed with a flexible soft bag 120, and the material of the flexible soft bag 120 is wear-resistant material. The flexible soft bag 120 abuts against the gravel ground, and the flexible soft bag 120 can deform according to the surface of the gravel, so that the flexible soft bag 120 can be more closely contacted with the gravel. The inside of the flexible soft bag 120 is provided with a flowing medium, and the capacity of the flexible soft bag 120 is greater than the volume of the flowing medium. The flowing medium flows in the flexible soft bag 120. The bottom surface of the flexible soft bag 120 is provided with a plurality of elastic convex points 121, which are uniformly distributed on the bottom surface of the flexible soft bag 120. The elastic convex points 121 are used to increase the friction between the flexible soft bag 120 and the gravel.

[0026] Referring to Figure 1 , Figure 3 and Figure 4 As shown, the support rod 200 is slidingly installed with a mounting ring 210, which moves up and down along the support rod 200. A plurality of inclined rods 220 are rotatably installed on the circumferential side of the mounting ring 210, and the plurality of inclined rods 220 are distributed on the circumferential side of the mounting ring 210. The inclined rod 220 includes a sleeve 221 and an inner rod 222, and the top end of the sleeve 221 is rotatably connected with the mounting ring 210. The inside of the sleeve 221 is hollow, and an elastic spring 230 is fixedly installed in the inside of the sleeve 221. The first end of the elastic spring 230 is fixed to the end of the sleeve 221 facing the mounting ring 210, the other end of the elastic spring 230 abuts against the end of the inner rod 222, and the elastic spring 230 is in a compressed state. A strip-shaped groove 2211 is formed in the end of the sleeve 221 away from the mounting ring 210, the strip-shaped groove 2211 is formed along the length direction of the sleeve 221, and the strip-shaped groove 2211 penetrates through the side wall of the sleeve 221. A rotating cam 2212 is rotatably installed between the two side walls of the strip-shaped groove 2211, and an abutting arc surface 2213 is formed in the side of the rotating cam 2212 away from the rotating shaft, and the curvature of the abutting arc surface 2213 is matched with the curvature of the side surface of the inner rod 222. The abutting arc surface 2213 abuts against the inner rod 222.

[0027] Referring to Figure 3 As shown, the inner rod 222 is slidingly arranged in the inside of the sleeve 221, and an elastic strip 2221 is fixedly installed on the side wall of the inner rod 222. The elastic strip 2221 is arranged along the length direction of the inner rod 222, and the elastic strip 2221 is opposite to the strip-shaped groove 2211. The abutting arc surface 2213 is used to abut against the elastic strip 2221.

[0028] Referring to Figure 3As shown, the inner rod 222 is rotatably installed with an abutting plate 2222 at one end away from the sleeve 221. Specifically, a rotating seat 2223 is installed on the top surface of the abutting plate 2222, and a rotating shaft is arranged on the rotating seat 2223 and rotatably connected with the end of the inner rod 222. A plurality of slit rods 2224 are rotatably installed on the bottom surface of the abutting plate 2222, and are evenly distributed on the bottom surface of the abutting plate 2222, and the end of the slit rod 2224 away from the abutting plate 2222 is a pointed end. The slit rod 2224 is used for being inserted into the gap between the gravel, so as to make the abutting plate 2222 more stably abut against the gravel ground.

[0029] The working process of the embodiment is as follows: when the detection device is used to detect the beam yard environment, the support base 100 is placed on the gravel ground, and the flexible soft bag 120 is adhered to the shape of the gravel ground by the flexible characteristic, so that the flexible soft bag 120 is in full contact with the gravel. The flowing medium in the flexible soft bag 120 is used to transmit the support force of the gravel to the support base 100.

[0030] The length of the inclined rod 220 around the installation ring 210 is adjusted, the length of the inner rod 222 overlapping with the sleeve 221 is changed, the rotating cam 2212 is rotated around the rotating shaft, the rotating cam 2212 abuts against the side surface of the inner rod 222, and the sliding of the inner rod 222 in the sleeve 221 is limited. The abutting plate 2222 at the end of the inner rod 222 abuts against the gravel ground, and the slit rod 2224 on the abutting plate 2222 is stably inserted into the gap between the gravel. By adjusting the length of each inclined rod 220, the indication of the level meter 110 is used, so that the support rod 200 is in a vertical state under the joint action of the plurality of inclined rods 220, and the posture of the detector 300 is in a correct direction.

[0031] The above is only a preferred embodiment of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A railway girders yard construction environment detection device, characterized in that: The utility model provides a kind of detection instrument (300) and support base (100), the top surface of the support base (100) is provided with support rod (200), the bottom surface of the detection instrument (300) is fixedly connected with the support rod (200), the bottom surface of the support base (100) is provided with flexible soft bag (120), flow medium is provided in the flexible soft bag (120), the bottom surface of the flexible soft bag (120) is abutted to gravel ground, the support rod (200) is provided with inclined rod (220), the bottom end of the inclined rod (220) is arranged in the circumferential side of the support base (100), and the bottom end of the inclined rod (220) is abutted to gravel ground.

2. A railway girders yard construction environment detection device according to claim 1, characterized in that: The bottom surface of the flexible soft bag (120) is provided with elastic convex point (121), and the elastic convex point (121) is abutted to gravel ground.

3. The railway girder yard construction environment detection device according to claim 1, characterized in that: The bottom end of the inclined rod (220) is rotatably provided with abutment plate (2222), and the bottom surface of the abutment plate (2222) is abutted to gravel ground.

4. A railway girders yard construction environment detection device according to claim 3, characterized in that: The bottom surface of the abutment plate (2222) is rotatably provided with insertion seam rod (2224), and the insertion seam rod (2224) is inserted into the gap between gravels.

5. The railway girder yard construction environment detection device according to claim 1, characterized in that: The inclined rod (220) includes sleeve pipe (221) and inner rod (222), the sleeve pipe (221) is rotatably connected with the support rod (200), and the inner rod (222) is slidably arranged in the sleeve pipe (221).

6. A railway girders yard construction environment detection device according to claim 5, characterized in that: The sleeve pipe (221) is rotatably provided with rotating cam (2212), and the rotating cam (2212) is abutted to the side surface of the inner rod (222).

7. A railway girders yard construction environment detection device according to claim 5, characterized in that: The sleeve pipe (221) is provided with elastic spring (230), one end of the elastic spring (230) is abutted to the end of the sleeve pipe (221), and the other end of the elastic spring (230) is abutted to the end of the inner rod (222) extending into the sleeve pipe (221).