CN220751800U - A road bridge concrete detection device - Google Patents
A road bridge concrete detection device Download PDFInfo
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- CN220751800U CN220751800U CN202322069866.5U CN202322069866U CN220751800U CN 220751800 U CN220751800 U CN 220751800U CN 202322069866 U CN202322069866 U CN 202322069866U CN 220751800 U CN220751800 U CN 220751800U
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Abstract
Description
技术领域Technical Field
本实用新型涉及混凝土检测技术领域,特别是一种道路桥梁混凝土检测装置。The utility model relates to the technical field of concrete detection, in particular to a road bridge concrete detection device.
背景技术Background technique
混凝土,简称是指由胶凝材料将骨料胶结成整体的工程复合材料的统称,通常讲的混凝土一词是指用水泥作胶凝材料,砂、石作骨料,与水(可含外加剂和掺合料)按一定比例配合,经搅拌而得的水泥混凝土,也称普通混凝土,它广泛应用于土木工程,道路桥梁,一般由路基、路面、桥梁、隧道工程和交通工程设施等几大部分组成,道路桥梁在施工的过程中需要用到混凝土,为了保证道路桥梁的质量,通常需要用到混凝土检测装置对混凝土进行检测。Concrete, in short, is a general term for engineering composite materials in which aggregates are bonded into a whole by cementitious materials. The term concrete usually refers to cement as a cementitious material, sand and stone as aggregates, and water (which may contain admixtures and additives) mixed in a certain proportion and obtained by mixing. It is also called ordinary concrete. It is widely used in civil engineering and roads and bridges. It is generally composed of several major parts such as roadbed, pavement, bridges, tunnel engineering and traffic engineering facilities. Concrete is needed in the construction process of roads and bridges. In order to ensure the quality of roads and bridges, concrete testing equipment is usually required to test the concrete.
现有技术中通过混凝土检测装置对混凝土进行强度检测时,在检测的过程中混凝土因压力的作用会破碎,并且破碎的碎屑可能会出现飞溅的情况,飞溅的碎块不便于后续的清理工作,并且在对混凝土样块检测完毕后,在对破碎的混凝土样块进行清理时,便需要人工对工作台进行清扫,从而使得整个清理操作较为麻烦,降低了检测装置的使用实用性,因此需要一种道路桥梁混凝土检测装置来解决上述问题。In the prior art, when the strength of concrete is tested by a concrete testing device, the concrete will be broken due to the pressure during the test, and the broken debris may splash. The splashed debris is not convenient for subsequent cleaning work, and after the concrete sample is tested, when the broken concrete sample is cleaned, it is necessary to manually clean the workbench, which makes the entire cleaning operation more troublesome and reduces the practicality of the testing device. Therefore, a road and bridge concrete testing device is needed to solve the above problems.
实用新型内容Utility Model Content
本实用新型的目的旨在至少解决所述技术缺陷之一。The purpose of the present invention is to solve at least one of the above technical deficiencies.
为此,本实用新型的一个目的在于提出一种道路桥梁混凝土检测装置,以解决背景技术中所提到的问题,克服现有技术中存在的不足。Therefore, one purpose of the utility model is to provide a road bridge concrete detection device to solve the problems mentioned in the background technology and overcome the deficiencies in the prior art.
为了实现上述目的,本实用新型一方面的实施例提供一种道路桥梁混凝土检测装置,包括检测台,所述检测台的一侧开设有排屑槽,所述检测台的下方设置有收集箱,所述检测台的顶侧固定连接有支撑座,所述支撑座的一侧固定连接有导向杆,所述导向杆的外表面滑动连接有刮板,所述刮板的一侧固定连接有把手,所述检测台的顶侧固定连接有支架,所述支架的顶侧固定安装有液压缸,所述液压缸的输出端固定连接有移动盘,所述移动盘远离液压缸的一侧固定连接有连接杆,所述连接杆的底端固定连接有安装盘,所述安装盘远离连接杆的一侧固定安装有压力传感器,所述安装盘的一侧插接有横截面形状为T形的检测头连接杆,所述检测头连接杆的底端固定连接有检测头,所述移动盘的一侧固定连接有延伸板,所述延伸板的一侧插接有活动杆,所述活动杆的底端固定连接有防溅罩,所述防溅罩的一侧固定连接有与延伸板固定连接的压紧弹簧,所述支架的一侧设置有数字显示器和模数转换器。In order to achieve the above-mentioned purpose, an embodiment of one aspect of the utility model provides a road bridge concrete inspection device, including an inspection platform, a chip removal groove is opened on one side of the inspection platform, a collection box is arranged under the inspection platform, a support seat is fixedly connected to the top side of the inspection platform, a guide rod is fixedly connected to one side of the support seat, a scraper is slidably connected to the outer surface of the guide rod, a handle is fixedly connected to one side of the scraper, a bracket is fixedly connected to the top side of the inspection platform, a hydraulic cylinder is fixedly installed on the top side of the bracket, a movable disk is fixedly connected to the output end of the hydraulic cylinder, and the movable disk is away from the hydraulic A connecting rod is fixedly connected to one side of the cylinder, and a mounting plate is fixedly connected to the bottom end of the connecting rod, a pressure sensor is fixedly installed on the side of the mounting plate away from the connecting rod, a detection head connecting rod with a T-shaped cross-section is inserted into one side of the mounting plate, and a detection head is fixedly connected to the bottom end of the detection head connecting rod, an extension plate is fixedly connected to one side of the movable plate, a movable rod is inserted into one side of the extension plate, a splash guard is fixedly connected to the bottom end of the movable rod, a compression spring fixedly connected to the extension plate is fixedly connected to one side of the splash guard, and a digital display and an analog-to-digital converter are provided on one side of the bracket.
由上述任一方案优选的是,所述防溅罩的顶侧开设有穿孔,所述连接杆从穿孔的内部穿过,所述连接杆的直径小于穿孔的直径,避免所述连接杆在移动的过程中与防溅罩发生干涉现象,使所述连接杆顺利的进行移动。Preferably, any of the above schemes is that a through hole is opened on the top side of the splash guard, and the connecting rod passes through the inside of the through hole. The diameter of the connecting rod is smaller than the diameter of the through hole, so as to avoid interference between the connecting rod and the splash guard during movement, thereby allowing the connecting rod to move smoothly.
由上述任一方案优选的是,所述防溅罩的一侧设置有防弹玻璃窗,从而能够便于观察所述防溅罩内部的具体情况。Preferably, any of the above schemes is provided with a bulletproof glass window on one side of the splash shield, so as to facilitate observation of the specific conditions inside the splash shield.
由上述任一方案优选的是,所述刮板的形状为Π形,所述刮板的底侧与检测台的顶侧相贴合,所述刮板与检测台滑动连接,所述刮板与排屑槽的位置相对应,所述刮板的长度大于排屑槽的长度,所述收集箱与排屑槽的位置相对应,所述收集箱的尺寸大于排屑槽的尺寸,使得所述刮板能够顺利的进行移动并刮取检测台上的碎屑,并推动碎屑进行移动通过所述排屑槽将碎屑排放至收集箱的内部。Preferably, in any of the above schemes, the scraper is Π-shaped, the bottom side of the scraper is in contact with the top side of the detection table, the scraper is slidably connected to the detection table, the scraper corresponds to the position of the chip groove, the length of the scraper is greater than the length of the chip groove, the position of the collection box corresponds to the chip groove, the size of the collection box is greater than the size of the chip groove, so that the scraper can move smoothly and scrape the debris on the detection table, and push the debris to move through the chip groove to discharge the debris into the interior of the collection box.
由上述任一方案优选的是,所述压力传感器与模数转换器电性连接,所述模数转换器与数字显示器电性连接,通过所述模数转换器使得所述压力传感器测得的压力在数字显示器上进行显示。Preferably, any of the above schemes is that the pressure sensor is electrically connected to an analog-to-digital converter, the analog-to-digital converter is electrically connected to a digital display, and the pressure measured by the pressure sensor is displayed on the digital display through the analog-to-digital converter.
由上述任一方案优选的是,所述检测头的横截面形状为T形,所述检测头的顶侧与压力传感器的底侧相贴合,通过所述检测头使得压力传感器能够产生压力信号。Preferably, any of the above schemes has a T-shaped cross section of the detection head, a top side of the detection head fits with a bottom side of the pressure sensor, and the pressure sensor is able to generate a pressure signal through the detection head.
由上述任一方案优选的是,所述活动杆的横截面形状为T形,所述活动杆的一部分位于压紧弹簧的内部,通过所述活动杆对压紧弹簧起限位作用,避免所述压紧弹簧在产生弹性形变的过程中出现弯折的现象。Preferably, any of the above schemes has a T-shaped cross-section, a portion of the movable rod is located inside the compression spring, and the movable rod acts as a limit on the compression spring to prevent the compression spring from bending during elastic deformation.
与现有技术相比,本实用新型所具有的优点和有益效果为:Compared with the prior art, the advantages and beneficial effects of the utility model are:
通过所述检测台、移动盘、延伸板、活动杆、防溅罩和压紧弹簧的配合设置,在进行检测工作时混凝土样品位于所述防溅罩的内部,并且使得所述防溅罩与检测台贴合紧密,从而避免了在加工的过程中出现混凝土飞溅的情况,使得混凝土碎块始终位于所述防溅罩的内部,并通过与所述排屑槽、收集箱、支撑座、导向杆、刮板和把手的配合设置,能够便于清理和收集检测后的混凝土碎块,使得清理所述检测台的操作较为简便,提高了该道路桥梁混凝土检测装置的实用性。Through the coordinated arrangement of the detection platform, movable plate, extension plate, movable rod, splash shield and compression spring, the concrete sample is located inside the splash shield during detection, and the splash shield is tightly fitted to the detection platform, thereby avoiding concrete splashing during the processing process, so that concrete fragments are always located inside the splash shield, and through the coordinated arrangement with the chip trough, collection box, support seat, guide rod, scraper and handle, it is easy to clean and collect the concrete fragments after detection, making the operation of cleaning the detection platform relatively simple, thereby improving the practicality of the road and bridge concrete detection device.
附图说明BRIEF DESCRIPTION OF THE DRAWINGS
图1为本实用新型的结构示意图;Fig. 1 is a schematic diagram of the structure of the utility model;
图2为本实用新型的剖面结构示意图;Fig. 2 is a schematic diagram of the cross-sectional structure of the utility model;
图3为本实用新型未装配支架的结构示意图;FIG3 is a schematic diagram of the structure of the unassembled bracket of the utility model;
图4为本实用新型移动盘及其连接构件的结构示意图;FIG4 is a schematic structural diagram of the movable plate and its connecting components of the utility model;
图5为本实用新型图2中A处的放大结构示意图。FIG5 is an enlarged schematic diagram of the structure of point A in FIG2 of the present invention.
图中:1-检测台,2-排屑槽,3-收集箱,4-支撑座,5-导向杆,6-刮板,7-把手,8-支架,9-液压缸,10-移动盘,11-连接杆,12-安装盘,13-压力传感器,14-检测头连接杆,15-检测头,16-延伸板,17-活动杆,18-防溅罩,19-压紧弹簧,20-数字显示器,21-模数转换器,22-穿孔,23-防弹玻璃窗。In the figure: 1-testing table, 2-chip groove, 3-collection box, 4-support seat, 5-guide rod, 6-scraper, 7-handle, 8-bracket, 9-hydraulic cylinder, 10-moving plate, 11-connecting rod, 12-mounting plate, 13-pressure sensor, 14-testing head connecting rod, 15-testing head, 16-extension plate, 17-movable rod, 18-splash cover, 19-compression spring, 20-digital display, 21-analog-to-digital converter, 22-perforation, 23-bulletproof glass window.
实施方式Implementation
下面结合附图对本实用新型做进一步的描述,但本实用新型的保护范围不局限于以下所述。The present invention is further described below in conjunction with the accompanying drawings, but the protection scope of the present invention is not limited to the following description.
如图1至图5所示,一种道路桥梁混凝土检测装置,它包括检测台1,检测台1的一侧开设有排屑槽2,检测台1的下方设置有收集箱3,检测台1的顶侧固定连接有支撑座4,支撑座4的一侧固定连接有导向杆5,导向杆5的外表面滑动连接有刮板6,刮板6的一侧固定连接有把手7,检测台1的顶侧固定连接有支架8,支架8的顶侧固定安装有液压缸9,液压缸9的输出端固定连接有移动盘10,移动盘10远离液压缸9的一侧固定连接有连接杆11,连接杆11的底端固定连接有安装盘12,安装盘12远离连接杆11的一侧固定安装有压力传感器13,安装盘12的一侧插接有横截面形状为T形的检测头连接杆14,检测头连接杆14的底端固定连接有检测头15,压力传感器13位于安装盘12与检测头15的中部位置,移动盘10的一侧固定连接有延伸板16,延伸板16的一侧插接有活动杆17,活动杆17的底端固定连接有防溅罩18,安装盘12、压力传感器13、检测头连接杆14和检测头15位于防溅罩18的内部,防溅罩18的一侧固定连接有与延伸板16固定连接的压紧弹簧19,支架8的一侧设置有数字显示器20和模数转换器21,在对混凝土样品进行检测时,将混凝土样品置于检测台1的上方,并使混凝土样品与防溅罩18的位置相对应,然后启动液压缸9使移动盘10进行移动,此时连接杆11带动安装盘12进行移动,并且延伸板16带动活动杆17和防溅罩18进行移动,并使防溅罩18与检测台1的顶侧相贴合,此时检测头15与混凝土样品相贴合,随着移动盘10的移动,压紧弹簧19处于被压缩的状态,在压紧弹簧19的反作用力下使防溅罩18与检测台1贴合紧密,并且随着移动盘10的移动,检测头15对混凝土样品施加压力并对混凝土样品进行检测,在检测的过程中压力传感器13产生信号并将信号传递给模数转换器21,通过模数转换器21将压力传感器13的信号转换为数字信号并在数字显示器20上显示,当检测头15将混凝土样品挤压破碎后,飞溅的混凝土碎片将会被防溅罩18阻挡并避免混凝土碎片飞溅,当检测工作完成后,启动液压缸9使防溅罩18向上移动并将混凝土样品暴漏在外界,然后通过把手7使刮板6沿导向杆5的方向进行移动,使刮板刮取检测台1上的混凝土碎屑并将碎屑推送至排屑槽2的位置,通过排屑槽2将碎屑输送至收集箱3的内部,从而完成对检测台1的清理操作。As shown in Figures 1 to 5, a road bridge concrete testing device includes a testing platform 1, a chip removal groove 2 is opened on one side of the testing platform 1, a collection box 3 is arranged below the testing platform 1, a support seat 4 is fixedly connected to the top side of the testing platform 1, a guide rod 5 is fixedly connected to one side of the support seat 4, a scraper 6 is slidably connected to the outer surface of the guide rod 5, a handle 7 is fixedly connected to one side of the scraper 6, a bracket 8 is fixedly connected to the top side of the testing platform 1, a hydraulic cylinder 9 is fixedly installed on the top side of the bracket 8, a moving disk 10 is fixedly connected to the output end of the hydraulic cylinder 9, a connecting rod 11 is fixedly connected to the side of the moving disk 10 away from the hydraulic cylinder 9, a mounting plate 12 is fixedly connected to the bottom end of the connecting rod 11, and a mounting plate 12 is fixedly installed on the side of the mounting plate 12 away from the connecting rod 11. A pressure sensor 13 is provided. A detection head connecting rod 14 with a T-shaped cross section is plugged into one side of the mounting plate 12. A detection head 15 is fixedly connected to the bottom end of the detection head connecting rod 14. The pressure sensor 13 is located in the middle of the mounting plate 12 and the detection head 15. An extension plate 16 is fixedly connected to one side of the movable plate 10. A movable rod 17 is plugged into one side of the extension plate 16. A splash guard 18 is fixedly connected to the bottom end of the movable rod 17. The mounting plate 12, the pressure sensor 13, the detection head connecting rod 14 and the detection head 15 are located inside the splash guard 18. A compression spring 19 fixedly connected to the extension plate 16 is fixedly connected to one side of the splash guard 18. A digital display 20 and an analog-to-digital converter 21 are provided on one side of the bracket 8. When measuring the concrete sample, a pressure sensor 13 is provided. When testing, the concrete sample is placed above the testing platform 1, and the position of the concrete sample is made to correspond to the splash shield 18, and then the hydraulic cylinder 9 is started to move the movable plate 10, at which time the connecting rod 11 drives the mounting plate 12 to move, and the extension plate 16 drives the movable rod 17 and the splash shield 18 to move, and the splash shield 18 is made to fit with the top side of the testing platform 1, at which time the testing head 15 fits with the concrete sample, and as the movable plate 10 moves, the compression spring 19 is in a compressed state, and the splash shield 18 is made to fit closely with the testing platform 1 under the reaction force of the compression spring 19, and as the movable plate 10 moves, the testing head 15 applies pressure to the concrete sample and tests the concrete sample, and during the testing process The pressure sensor 13 generates a signal and transmits the signal to the analog-to-digital converter 21. The analog-to-digital converter 21 converts the signal of the pressure sensor 13 into a digital signal and displays it on the digital display 20. When the detection head 15 squeezes and crushes the concrete sample, the splashing concrete fragments will be blocked by the splash shield 18 to prevent the concrete fragments from splashing. When the detection work is completed, the hydraulic cylinder 9 is started to move the splash shield 18 upward and expose the concrete sample to the outside. Then, the handle 7 is used to move the scraper 6 along the direction of the guide rod 5, so that the scraper scrapes the concrete debris on the detection table 1 and pushes the debris to the position of the chip discharge groove 2. The debris is transported to the inside of the collection box 3 through the chip discharge groove 2, thereby completing the cleaning operation of the detection table 1.
作为本实用新型的一种可选技术方案,防溅罩18的顶侧开设有穿孔22,连接杆11从穿孔22的内部穿过,连接杆11的直径小于穿孔22的直径,避免连接杆11在移动的过程中与防溅罩18发生干涉现象,使连接杆11顺利的进行移动。As an optional technical solution of the present invention, a through hole 22 is opened on the top side of the splash guard 18, and the connecting rod 11 passes through the inside of the through hole 22. The diameter of the connecting rod 11 is smaller than the diameter of the through hole 22, so as to avoid interference between the connecting rod 11 and the splash guard 18 during movement, so that the connecting rod 11 can move smoothly.
作为本实用新型的一种可选技术方案,防溅罩18的一侧设置有防弹玻璃窗23,从而能够便于观察防溅罩18内部的具体情况。As an optional technical solution of the present invention, a bulletproof glass window 23 is provided on one side of the splash shield 18 , so that the specific conditions inside the splash shield 18 can be easily observed.
作为本实用新型的一种可选技术方案,刮板6的形状为Π形,刮板6的底侧与检测台1的顶侧相贴合,刮板6与检测台1滑动连接,刮板6与排屑槽2的位置相对应,刮板6的长度大于排屑槽2的长度,收集箱3与排屑槽2的位置相对应,收集箱3的尺寸大于排屑槽2的尺寸,使得刮板6能够顺利的进行移动并刮取检测台1上的碎屑,并推动碎屑进行移动通过排屑槽2将碎屑排放至收集箱3的内部。As an optional technical solution of the present utility model, the scraper 6 is Π-shaped, the bottom side of the scraper 6 is in contact with the top side of the inspection table 1, the scraper 6 is slidably connected to the inspection table 1, the scraper 6 corresponds to the position of the chip groove 2, the length of the scraper 6 is greater than the length of the chip groove 2, the position of the collection box 3 corresponds to the chip groove 2, the size of the collection box 3 is greater than the size of the chip groove 2, so that the scraper 6 can move smoothly and scrape the debris on the inspection table 1, and push the debris to move through the chip groove 2 to discharge the debris into the interior of the collection box 3.
作为本实用新型的一种可选技术方案,压力传感器13与模数转换器21电性连接,模数转换器21与数字显示器20电性连接,通过模数转换器21使得压力传感器13测得的压力在数字显示器20上进行显示。As an optional technical solution of the present invention, the pressure sensor 13 is electrically connected to the analog-to-digital converter 21, and the analog-to-digital converter 21 is electrically connected to the digital display 20, so that the pressure measured by the pressure sensor 13 is displayed on the digital display 20 through the analog-to-digital converter 21.
作为本实用新型的一种可选技术方案,检测头15的横截面形状为T形,检测头15的顶侧与压力传感器13的底侧相贴合,通过检测头15使得压力传感器13能够产生压力信号。As an optional technical solution of the present invention, the cross-sectional shape of the detection head 15 is T-shaped, and the top side of the detection head 15 fits with the bottom side of the pressure sensor 13, so that the pressure sensor 13 can generate a pressure signal through the detection head 15.
作为本实用新型的一种可选技术方案,活动杆17的横截面形状为T形,活动杆17的一部分位于压紧弹簧19的内部,通过活动杆17对压紧弹簧19起限位作用,避免压紧弹簧19在产生弹性形变的过程中出现弯折的现象。As an optional technical solution of the present invention, the cross-sectional shape of the movable rod 17 is T-shaped, and a part of the movable rod 17 is located inside the compression spring 19. The movable rod 17 limits the compression spring 19 to prevent the compression spring 19 from bending during the elastic deformation process.
一种道路桥梁混凝土检测装置,工作原理如下:A road bridge concrete detection device, the working principle is as follows:
1)将混凝土样品置于检测台1的上方,并使混凝土样品与防溅罩18的位置相对应;1) Place the concrete sample on the testing platform 1 and make the concrete sample correspond to the position of the splash shield 18;
2)启动液压缸9使移动盘10进行移动,此时连接杆11带动安装盘12进行移动,并且延伸板16带动活动杆17和防溅罩18进行移动,并使防溅罩18与检测台1的顶侧相贴合,并且随着移动盘10的移动,检测头15对混凝土样品施加压力并对混凝土样品进行检测,检测的过程中防溅罩18在压紧弹簧19的作用下始终与检测台1贴合紧密,并且这个过程中压力传感器13产生信号并将信号传递给模数转换器21,通过模数转换器21将压力传感器13的信号转换为数字信号并在数字显示器20上显示;2) Start the hydraulic cylinder 9 to move the movable plate 10, at which time the connecting rod 11 drives the mounting plate 12 to move, and the extension plate 16 drives the movable rod 17 and the splash shield 18 to move, and the splash shield 18 is made to fit with the top side of the test bench 1, and as the movable plate 10 moves, the detection head 15 applies pressure to the concrete sample and detects the concrete sample. During the detection process, the splash shield 18 is always tightly fitted with the test bench 1 under the action of the compression spring 19, and during this process, the pressure sensor 13 generates a signal and transmits the signal to the analog-to-digital converter 21, and the signal of the pressure sensor 13 is converted into a digital signal by the analog-to-digital converter 21 and displayed on the digital display 20;
3)当检测工作完成后,启动液压缸9使防溅罩18向上移动并将混凝土样品暴漏在外界,并通过把手7使刮板6沿导向杆5的方向进行移动,使刮板刮取检测台1上的混凝土碎屑并将碎屑推送至排屑槽2的位置,通过排屑槽2将碎屑输送至收集箱3的内部,从而完成对检测台1的清理操作。3) When the inspection work is completed, the hydraulic cylinder 9 is started to move the splash shield 18 upward to expose the concrete sample to the outside, and the scraper 6 is moved along the direction of the guide rod 5 through the handle 7, so that the scraper scrapes the concrete debris on the inspection table 1 and pushes the debris to the position of the chip discharge groove 2, and the debris is transported to the inside of the collection box 3 through the chip discharge groove 2, thereby completing the cleaning operation of the inspection table 1.
综上所述,该道路桥梁混凝土检测装置,通过检测台1、移动盘10、延伸板16、活动杆17、防溅罩18和压紧弹簧19的配合设置,在进行检测工作时混凝土样品位于防溅罩18的内部,并且使得防溅罩18与检测台1贴合紧密,从而避免了在加工的过程中出现混凝土飞溅的情况,使得混凝土碎块始终位于防溅罩18的内部,并通过与排屑槽2、收集箱3、支撑座4、导向杆5、刮板6和把手7的配合设置,能够便于清理和收集检测后的混凝土碎块,使得清理检测台1的操作较为简便,提高了该道路桥梁混凝土检测装置的实用性。To sum up, the road and bridge concrete detection device, through the coordinated arrangement of the detection platform 1, the movable disk 10, the extension plate 16, the movable rod 17, the splash shield 18 and the clamping spring 19, when the detection work is carried out, the concrete sample is located inside the splash shield 18, and the splash shield 18 is tightly fitted with the detection platform 1, thereby avoiding the situation of concrete splashing during the processing process, so that the concrete fragments are always located inside the splash shield 18, and through the coordinated arrangement with the chip trough 2, the collection box 3, the support seat 4, the guide rod 5, the scraper 6 and the handle 7, it is easy to clean and collect the concrete fragments after the inspection, so that the operation of cleaning the detection platform 1 is relatively simple, thereby improving the practicality of the road and bridge concrete detection device.
Claims (7)
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