CN118639506A - Road crack detection device - Google Patents
Road crack detection device Download PDFInfo
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- CN118639506A CN118639506A CN202411129825.3A CN202411129825A CN118639506A CN 118639506 A CN118639506 A CN 118639506A CN 202411129825 A CN202411129825 A CN 202411129825A CN 118639506 A CN118639506 A CN 118639506A
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- fixed
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING SYSTEMS, e.g. PERSONAL CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B5/00—Visible signalling systems, e.g. visible personal calling systems or remote indication of seats occupied
- G08B5/22—Visible signalling systems, e.g. visible personal calling systems or remote indication of seats occupied using electric transmission; using electromagnetic transmission
- G08B5/36—Visible signalling systems, e.g. visible personal calling systems or remote indication of seats occupied using electric transmission; using electromagnetic transmission using visible light sources
- G08B5/38—Visible signalling systems, e.g. visible personal calling systems or remote indication of seats occupied using electric transmission; using electromagnetic transmission using visible light sources using flashing light
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- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
- E01C23/00—Auxiliary devices or arrangements for constructing, repairing, reconditioning, or taking-up road or like surfaces
- E01C23/01—Devices or auxiliary means for setting-out or checking the configuration of new surfacing, e.g. templates, screed or reference line supports; Applications of apparatus for measuring, indicating, or recording the surface configuration of existing surfacing, e.g. profilographs
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- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
- E01C23/00—Auxiliary devices or arrangements for constructing, repairing, reconditioning, or taking-up road or like surfaces
- E01C23/06—Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road
- E01C23/09—Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for forming cuts, grooves, or recesses, e.g. for making joints or channels for markings, for cutting-out sections to be removed; for cleaning, treating, or filling cuts, grooves, recesses, or fissures; for trimming paving edges
- E01C23/0966—Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for forming cuts, grooves, or recesses, e.g. for making joints or channels for markings, for cutting-out sections to be removed; for cleaning, treating, or filling cuts, grooves, recesses, or fissures; for trimming paving edges for filling or priming, with or without working the surface of the filling or applying particulate material thereto, e.g. for filling the joints of stone-sett paving
- E01C23/0973—Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for forming cuts, grooves, or recesses, e.g. for making joints or channels for markings, for cutting-out sections to be removed; for cleaning, treating, or filling cuts, grooves, recesses, or fissures; for trimming paving edges for filling or priming, with or without working the surface of the filling or applying particulate material thereto, e.g. for filling the joints of stone-sett paving with liquid or semi-liquid materials, e.g. crack sealants
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- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01H—STREET CLEANING; CLEANING OF PERMANENT WAYS; CLEANING BEACHES; DISPERSING OR PREVENTING FOG IN GENERAL CLEANING STREET OR RAILWAY FURNITURE OR TUNNEL WALLS
- E01H1/00—Removing undesirable matter from roads or like surfaces, with or without moistening of the surface
- E01H1/08—Pneumatically dislodging or taking-up undesirable matter or small objects; Drying by heat only or by streams of gas; Cleaning by projecting abrasive particles
- E01H1/0809—Loosening or dislodging by blowing ; Drying by means of gas streams
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- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Physics & Mathematics (AREA)
- Mining & Mineral Resources (AREA)
- Electromagnetism (AREA)
- General Physics & Mathematics (AREA)
- Road Repair (AREA)
- Geophysics And Detection Of Objects (AREA)
Abstract
Description
技术领域Technical Field
本发明涉及道路检测技术领域,尤其涉及一种道路裂隙检测装置。The present invention relates to the technical field of road detection, and in particular to a road crack detection device.
背景技术Background Art
市政道路是城市重要的交通设施之一,在市政道路使用过程,路面的裂缝需要及时维修维护,如不及时维护维修,不仅会快速造成路面破碎,而且也为对行驶过程中的车辆产生安全隐患,在对道路进行维护时,大多需要先采用裂隙检测设备对路面进行检测,在检测过程中通过微型滚轮与地面接触,在遇到裂隙时微型滚轮即可伸入其中,随着微型滚轮的下降可以带动报警设备报警,从而提示人们当前路面具有裂隙。Municipal roads are one of the important transportation facilities in the city. During the use of municipal roads, cracks in the road surface need to be repaired and maintained in time. If they are not repaired in time, it will not only quickly cause the road surface to break, but also create safety hazards for vehicles during driving. When maintaining the roads, most of them need to use crack detection equipment to detect the road surface first. During the detection process, the micro roller contacts the ground, and when encountering cracks, the micro roller can extend into it. As the micro roller descends, it can drive the alarm device to alarm, thereby reminding people that there are cracks in the current road surface.
目前现有设备只能检测出路面有无裂缝,无法进一步对裂缝进行填充修复,同时在微型滚轮进入裂缝内部后,由于裂缝的形状大多两头较窄,在向前推动的过程中滚轮两侧与裂缝两侧相互卡合,会导致滚轮无法转动,产生运动干涉。Currently, existing equipment can only detect whether there are cracks in the road surface, but cannot further fill and repair the cracks. At the same time, after the micro roller enters the crack, since the shape of the crack is mostly narrow at both ends, the two sides of the roller and the two sides of the crack are engaged with each other during the forward pushing process, which will cause the roller to be unable to rotate and produce motion interference.
发明内容Summary of the invention
本发明为了解决现有技术问题,提供一种道路裂隙检测装置。In order to solve the problems in the prior art, the present invention provides a road crack detection device.
为实现上述目的,本发明采用了如下技术方案:一种道路裂隙检测装置,包括底盘、万向轮、空压机、两个泵体、软管和两个阀岛,所述底盘的顶部固定有集装块,所述底盘的底部开设有贯穿至集装块底部的梯形槽,所述集装块的内部开设有传动腔,所述传动腔的内部顶面等距开设有多个调节孔,多个所述调节孔的内部均设置有检测路面裂隙的感应组件;To achieve the above-mentioned purpose, the present invention adopts the following technical scheme: a road crack detection device, comprising a chassis, a universal wheel, an air compressor, two pump bodies, a hose and two valve islands, a container block is fixed on the top of the chassis, a trapezoidal groove penetrating to the bottom of the container block is provided at the bottom of the chassis, a transmission cavity is provided inside the container block, a plurality of adjustment holes are provided at equal intervals on the inner top surface of the transmission cavity, and a sensing component for detecting road cracks is provided inside each of the plurality of adjustment holes;
所述万向轮安装在底盘的底部位于四个拐角处,所述底盘的顶部靠近另一侧边缘处固定有推手,所述底盘的顶部设置有存储筒,所述空压机固定在底盘的顶部,两个所述泵体均固定在底盘的顶部,其中一个所述泵体与存储筒相互连接,另一个所述泵体与空压机相互连接,两个所述阀岛均固定在底盘的顶部,两个所述阀岛对应与两个泵体连接,所述感应组件包括往复杆,所述往复杆滑动设置在调节孔的内壁之间,所述往复杆的外表面设置有报警组件,所述往复杆的内部设置有反馈组件,所述往复杆的底部滑动贯穿至集装块的底部,且延伸至梯形槽内部,所述往复杆的顶部固定有六角标示杆,所述六角标示杆的顶部滑动贯穿至集装块的上方,所述往复杆的底部开设有贯穿至两侧外表面的底槽,所述底槽的两侧内壁之间转动连接有接触刀板,所述底槽的内部顶面靠近往复杆一侧外表面边缘处固定有挡板,所述挡板的一侧与接触刀板的一侧相互贴合,所述接触刀板的底部靠近一侧边缘处呈弧面状。The universal wheel is installed at the bottom of the chassis at the four corners, a push handle is fixed on the top of the chassis near the edge of the other side, a storage cylinder is arranged on the top of the chassis, the air compressor is fixed on the top of the chassis, the two pump bodies are fixed on the top of the chassis, one of the pump bodies is connected to the storage cylinder, the other pump body is connected to the air compressor, the two valve islands are fixed on the top of the chassis, the two valve islands are connected to the two pump bodies respectively, the sensing component includes a reciprocating rod, the reciprocating rod is slidably arranged between the inner walls of the adjustment hole, and the outer surface of the reciprocating rod is provided with an alarm component A feedback component is provided inside the reciprocating rod, the bottom of the reciprocating rod slides through the bottom of the assembly block and extends into the trapezoidal groove, a hexagonal marking rod is fixed on the top of the reciprocating rod, the top of the hexagonal marking rod slides through the top of the assembly block, a bottom groove is opened at the bottom of the reciprocating rod and penetrates the outer surfaces on both sides, a contact knife plate is rotatably connected between the inner walls on both sides of the bottom groove, a baffle is fixed on the inner top surface of the bottom groove near the edge of the outer surface of one side of the reciprocating rod, one side of the baffle is in contact with one side of the contact knife plate, and the bottom of the contact knife plate is in an arc shape near one side edge.
优选的,所述集装块的一侧等距固定有多个贯穿至另一侧的送料管,多个所述送料管均对应与调节孔相互连通,所述集装块的一侧等距固定有多个贯穿至另一侧的供气管,多个所述供气管均对应与调节孔相互连通,多个所述供气管均对应位于送料管的下方。Preferably, a plurality of feed pipes are equidistantly fixed on one side of the assembly block and extend to the other side, and the plurality of feed pipes are correspondingly connected to the adjusting holes. A plurality of air supply pipes are equidistantly fixed on one side of the assembly block and extend to the other side, and the plurality of air supply pipes are correspondingly connected to the adjusting holes, and the plurality of air supply pipes are correspondingly located below the feed pipes.
优选的,所述底盘的顶部位于集装块的一侧等距固定有多个出料管,多个所述出料管的一端均对应延伸至梯形槽的一侧内壁上,多个所述出料管的一端与多个送料管的一端之间均通过软管连接,所述底盘的顶部靠近另一侧边缘处等距固定有多个喷气管,多个所述喷气管的一端均倾斜向底盘的前侧延伸,多个所述供气管的一端与喷气管的一端之间均通过软管连接。Preferably, a plurality of discharge pipes are equidistantly fixed on the top of the chassis on one side of the assembly block, one end of the plurality of discharge pipes correspondingly extends to an inner wall of one side of the trapezoidal groove, one end of the plurality of discharge pipes is connected to one end of the plurality of feeding pipes by a hose, a plurality of injection pipes are equidistantly fixed on the top of the chassis near the other side edge, one end of the plurality of injection pipes is obliquely extended toward the front side of the chassis, and one end of the plurality of air supply pipes is connected to one end of the injection pipe by a hose.
优选的,所述往复杆的内部开设有气腔,所述气腔的两侧均贯穿至往复杆的外部,位于所述调节孔两侧的供气管通过气腔相互连通。Preferably, an air cavity is opened inside the reciprocating rod, both sides of the air cavity penetrate to the outside of the reciprocating rod, and the air supply pipes located on both sides of the regulating hole are connected to each other through the air cavity.
优选的,所述反馈组件包括调节块,所述往复杆的内部靠近顶部边缘处开设有调节腔,所述调节块滑动连接在调节腔的内壁之间,所述调节块的底部固定有第二弹簧,所述第二弹簧的底部固定在调节腔的内部底面,所述往复杆的一侧外表面开设有贯穿至另一侧的进料孔,所述进料孔与调节腔相互连通,所述调节块的一侧开设有贯穿至另一侧的通孔,所述通孔与进料孔相对。Preferably, the feedback assembly includes an adjusting block, an adjusting cavity is opened inside the reciprocating rod near the top edge, the adjusting block is slidably connected between the inner walls of the adjusting cavity, a second spring is fixed to the bottom of the adjusting block, the bottom of the second spring is fixed to the inner bottom surface of the adjusting cavity, a feed hole is opened on the outer surface of one side of the reciprocating rod and extends to the other side, the feed hole is connected to the adjusting cavity, and a through hole is opened on one side of the adjusting block and extends to the other side, and the through hole is opposite to the feed hole.
优选的,位于所述调节孔两侧的送料管通过进料孔和通孔相互连通,所述往复杆的内部靠近底部边缘处开设有下过渡腔,所述往复杆的内部位于下过渡腔的上方开设有上过渡腔,所述上过渡腔的内部底面开设有贯穿至下过渡腔内部的六角孔,所述六角孔的内部滑动连接有六角滑杆。Preferably, the feeding pipes located on both sides of the adjusting hole are connected to each other through the feeding hole and the through hole, a lower transition chamber is opened inside the reciprocating rod near the bottom edge, an upper transition chamber is opened inside the reciprocating rod above the lower transition chamber, a hexagonal hole is opened on the inner bottom surface of the upper transition chamber and passes through the lower transition chamber, and a hexagonal sliding rod is slidably connected to the inside of the hexagonal hole.
优选的,所述调节腔的内部底面开设有两个贯穿至上过渡腔内部的贯穿孔,两个所述贯穿孔的内部均设置有第一牵引绳,两个所述第一牵引绳的顶部均固定在调节块的底部,两个所述第一牵引绳的底部均固定在六角滑杆的顶部,所述六角滑杆的底部固定有第二牵引绳,所述第二牵引绳的底部滑动贯穿至底槽的内部,所述第二牵引绳的底部固定在接触刀板的顶部靠近挡板一侧边缘处。Preferably, the inner bottom surface of the adjustment cavity is provided with two through holes which penetrate into the upper transition cavity, and the first traction rope is arranged inside the two through holes, and the tops of the two first traction ropes are fixed to the bottom of the adjustment block, and the bottoms of the two first traction ropes are fixed to the top of the hexagonal slide bar, and the second traction rope is fixed to the bottom of the hexagonal slide bar, and the bottom of the second traction rope slides through the interior of the bottom groove, and the bottom of the second traction rope is fixed to the top of the contact blade plate near the edge of one side of the baffle.
优选的,所述报警组件包括固定环,所述固定环固定在往复杆的外表面上,所述固定环的底部靠近两侧边缘处均固定有铜触点,所述固定环的顶部固定有第一弹簧,所述第一弹簧固定在传动腔的内部顶面。Preferably, the alarm assembly includes a fixed ring, which is fixed on the outer surface of the reciprocating rod, and copper contacts are fixed on the bottom of the fixed ring near the edges on both sides, and a first spring is fixed on the top of the fixed ring, and the first spring is fixed on the inner top surface of the transmission cavity.
优选的,所述传动腔的内部底面固定有绝缘环,所述绝缘环的顶部靠近两侧均开设有电接槽,两个所述电接槽均对应位于两个铜触点的正下方,所述集装块的一侧固定有多个指示灯,多个所述指示灯均对应位于送料管的上方。Preferably, an insulating ring is fixed to the inner bottom surface of the transmission cavity, and electrical connection grooves are opened on the top of the insulating ring near both sides, and the two electrical connection grooves are correspondingly located directly below the two copper contacts, and a plurality of indicator lights are fixed to one side of the assembly block, and the plurality of indicator lights are correspondingly located above the feeding pipe.
与现有技术相比,本发明的有益效果是:Compared with the prior art, the present invention has the following beneficial effects:
1、本发明通过设有感应组件、报警组件和反馈组件,有利于在检测出道路产生裂隙时向人们发出报警指示,同时对裂隙进行填充,还可以在对裂隙填充之后感应组件从裂隙中滑出时,及时阻断填充,防止填充物料洒落在裂隙外部;1. The present invention is provided with a sensing component, an alarm component and a feedback component, which is conducive to issuing an alarm indication to people when cracks are detected on the road, and filling the cracks at the same time. It can also stop the filling in time when the sensing component slides out of the cracks after the cracks are filled, so as to prevent the filling material from spilling outside the cracks;
2、本发明通过设有感应组件,可以检测路面有无产生裂隙,在感应组件工作时,通过接触刀板的底部伸入裂隙内部,从而会带动往复杆向下滑动,在往复杆向下滑动的过程中会使送料管导通,可以输送填充物料对裂缝进行填充;2. The present invention is provided with a sensing component, which can detect whether there are cracks on the road surface. When the sensing component is working, it will extend into the crack by contacting the bottom of the blade, thereby driving the reciprocating rod to slide downward. During the downward sliding process of the reciprocating rod, the feeding pipe will be connected, and the filling material can be delivered to fill the crack;
3、本发明通过设有报警组件,可以在感应组件检测到路面有裂隙时触发报警组件向人们示警,报警组件工作时,在感应组件检测到路面有裂隙时,由于接触刀板的底部伸入裂隙内部会带动往复杆向下滑动,在往复杆向下滑动时会将铜触点卡合在电接槽的内部,使对应的指示灯闪烁向人们报警;3. The present invention is provided with an alarm component, which can be triggered to warn people when the sensing component detects cracks in the road surface. When the alarm component is working, when the sensing component detects cracks in the road surface, the bottom of the contact blade extends into the crack, which drives the reciprocating rod to slide downward. When the reciprocating rod slides downward, the copper contact is engaged in the electrical connection slot, so that the corresponding indicator light flashes to warn people;
4、本发明通过设有反馈组件,可以在对裂隙填充之后感应组件从裂隙中滑出时,及时阻断填充,防止填充物料洒落在裂隙外部,反馈组件工作时,由于接触刀板的底部伸入裂隙内部,在滑动至裂隙端部时会对接触刀板的一侧产生干涉,这时会将接触刀板向一侧推动使接触刀板与往复杆之间产生转动,在转动时会向下拉拽第二牵引绳,进而向下拉拽第一牵引绳使调节块向调节腔下方滑动,从而使通孔与进料孔错位相对,使得可以截断填充物料的供应。4. The present invention is provided with a feedback component, which can timely block the filling when the sensing component slides out of the crack after the crack is filled, so as to prevent the filling material from spilling outside the crack. When the feedback component is working, since the bottom of the contact blade extends into the crack, it will interfere with one side of the contact blade when sliding to the end of the crack. At this time, the contact blade will be pushed to one side to cause the contact blade and the reciprocating rod to rotate. During the rotation, the second traction rope will be pulled downward, and then the first traction rope will be pulled downward to make the adjustment block slide toward the bottom of the adjustment cavity, so that the through hole and the feed hole are offset relative to each other, so that the supply of filling material can be cut off.
附图说明BRIEF DESCRIPTION OF THE DRAWINGS
图1为本发明提出一种道路裂隙检测装置的主视立体结构示意图;FIG1 is a schematic diagram of a front perspective structure of a road crack detection device provided by the present invention;
图2为本发明提出一种道路裂隙检测装置的俯视立体结构示意图;FIG2 is a top view of a three-dimensional structure diagram of a road crack detection device proposed by the present invention;
图3为本发明提出一种道路裂隙检测装置的仰视立体结构示意图;FIG3 is a bottom-up perspective structural diagram of a road crack detection device provided by the present invention;
图4为本发明提出一种道路裂隙检测装置的局部剖视立体结构示意图;FIG4 is a partial cross-sectional perspective structural diagram of a road crack detection device proposed by the present invention;
图5为本发明提出一种道路裂隙检测装置中集装块的内部结构一侧剖视图;FIG5 is a side cross-sectional view of the internal structure of a container block in a road crack detection device provided by the present invention;
图6为本发明提出一种道路裂隙检测装置中集装块的内部结构另一侧剖视图;FIG6 is a cross-sectional view of another side of the internal structure of a container block in a road crack detection device provided by the present invention;
图7为本发明提出一种道路裂隙检测装置中集装块的剖视立体结构示意图;FIG7 is a schematic cross-sectional perspective view of a container block in a road crack detection device according to the present invention;
图8为本发明提出一种道路裂隙检测装置中往复杆的一侧剖视立体结构示意图;FIG8 is a schematic diagram of a cross-sectional perspective structure of a reciprocating rod in a road crack detection device provided by the present invention;
图9为本发明提出一种道路裂隙检测装置中往复杆的另一侧剖视立体结构示意图;FIG9 is a schematic diagram of a cross-sectional perspective structure of a reciprocating rod in a road crack detection device according to the present invention from another side;
图10为本发明图4中A处的局部放大视图;FIG10 is a partial enlarged view of point A in FIG4 of the present invention;
图11为本发明图5中B处的局部放大视图;FIG11 is a partial enlarged view of point B in FIG5 of the present invention;
图12为本发明图6中C处的局部放大视图。FIG. 12 is a partial enlarged view of point C in FIG. 6 of the present invention.
图中:1、底盘;2、推手;3、存储筒;4、万向轮;5、空压机;6、泵体;7、集装块;8、软管;9、喷气管;10、阀岛;11、出料管;12、送料管;13、供气管;14、传动腔;15、六角标示杆;16、指示灯;17、梯形槽;18、调节孔;19、绝缘环;20、电接槽;21、往复杆;22、气腔;23、固定环;24、铜触点;25、第一弹簧;26、接触刀板;27、底槽;28、上过渡腔;29、下过渡腔;30、六角孔;31、六角滑杆;32、贯穿孔;33、第一牵引绳;34、调节腔;35、调节块;36、通孔;37、第二弹簧;38、进料孔;39、第二牵引绳;40、挡板。In the figure: 1, chassis; 2, push handle; 3, storage cylinder; 4, universal wheel; 5, air compressor; 6, pump body; 7, assembly block; 8, hose; 9, jet pipe; 10, valve island; 11, discharge pipe; 12, feed pipe; 13, air supply pipe; 14, transmission chamber; 15, hexagonal marking rod; 16, indicator light; 17, trapezoidal groove; 18, adjustment hole; 19, insulation ring; 20, electrical connection groove; 21, reciprocating rod; 22. Air cavity; 23. Fixed ring; 24. Copper contact; 25. First spring; 26. Contact blade; 27. Bottom groove; 28. Upper transition cavity; 29. Lower transition cavity; 30. Hexagonal hole; 31. Hexagonal slide bar; 32. Through hole; 33. First traction rope; 34. Adjustment cavity; 35. Adjustment block; 36. Through hole; 37. Second spring; 38. Feed hole; 39. Second traction rope; 40. Baffle.
具体实施方式DETAILED DESCRIPTION
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
请参阅图1-12,本发明提供一种技术方案:一种道路裂隙检测装置,包括底盘1、万向轮4、空压机5、两个泵体6、软管8和两个阀岛10,底盘1的顶部固定有集装块7,底盘1的底部开设有贯穿至集装块7底部的梯形槽17,集装块7的内部开设有传动腔14,传动腔14的内部顶面等距开设有多个调节孔18,多个调节孔18的内部均设置有检测路面裂隙的感应组件;Referring to FIGS. 1-12 , the present invention provides a technical solution: a road crack detection device, comprising a chassis 1, a universal wheel 4, an air compressor 5, two pump bodies 6, a hose 8 and two valve islands 10, a container block 7 is fixed on the top of the chassis 1, a trapezoidal groove 17 penetrating to the bottom of the container block 7 is provided at the bottom of the chassis 1, a transmission cavity 14 is provided inside the container block 7, a plurality of adjustment holes 18 are equidistantly provided on the inner top surface of the transmission cavity 14, and a sensing component for detecting road cracks is provided inside each of the plurality of adjustment holes 18;
万向轮4安装在底盘1的底部位于四个拐角处,底盘1的顶部靠近另一侧边缘处固定有推手2,底盘1的顶部设置有存储筒3,空压机5固定在底盘1的顶部,两个泵体6均固定在底盘1的顶部,其中一个泵体6与存储筒3相互连接,另一个泵体6与空压机5相互连接,两个阀岛10均固定在底盘1的顶部,两个阀岛10对应与两个泵体6连接,集装块7的一侧等距固定有多个贯穿至另一侧的送料管12,多个送料管12均对应与调节孔18相互连通,集装块7的一侧等距固定有多个贯穿至另一侧的供气管13,多个供气管13均对应与调节孔18相互连通,多个供气管13均对应位于送料管12的下方,底盘1的顶部位于集装块7的一侧等距固定有多个出料管11,多个出料管11的一端均对应延伸至梯形槽17的一侧内壁上,多个出料管11的一端与多个送料管12的一端之间均通过软管8连接,底盘1的顶部靠近另一侧边缘处等距固定有多个喷气管9,多个喷气管9的一端均倾斜向底盘1的前侧延伸,多个供气管13的一端与喷气管9的一端之间均通过软管8连接。Universal wheels 4 are installed at the bottom of the chassis 1 at the four corners, a push handle 2 is fixed on the top of the chassis 1 near the edge of the other side, a storage cylinder 3 is arranged on the top of the chassis 1, an air compressor 5 is fixed on the top of the chassis 1, two pump bodies 6 are fixed on the top of the chassis 1, one pump body 6 is interconnected with the storage cylinder 3, and the other pump body 6 is interconnected with the air compressor 5, two valve islands 10 are fixed on the top of the chassis 1, and the two valve islands 10 are connected with the two pump bodies 6 accordingly, a plurality of feed pipes 12 penetrating to the other side are equidistantly fixed on one side of the assembly block 7, and the plurality of feed pipes 12 are correspondingly connected with the adjustment hole 18, and a plurality of feed pipes 12 penetrating to the other side are equidistantly fixed on one side of the assembly block 7 To the air supply pipe 13 on the other side, multiple air supply pipes 13 are correspondingly connected to the adjustment hole 18, and multiple air supply pipes 13 are correspondingly located below the feeding pipe 12. The top of the chassis 1 is located on one side of the assembly block 7, and multiple discharge pipes 11 are equidistantly fixed thereon. One ends of the multiple discharge pipes 11 extend to the inner wall of one side of the trapezoidal groove 17, and one end of the multiple discharge pipes 11 is connected to one end of the multiple feeding pipes 12 through a hose 8. Multiple injection pipes 9 are equidistantly fixed at the top of the chassis 1 near the edge of the other side, and one ends of the multiple injection pipes 9 extend obliquely toward the front side of the chassis 1. One end of the multiple air supply pipes 13 is connected to one end of the injection pipe 9 through a hose 8.
其达到的效果为,在路面上推动本装置移动,通过万向轮4可以带动底盘1在路面上方一定高度的位置水平向前滑动,在滑动过程中通过设感应组件,可以检测路面有无产生裂隙,通过设置报警组件,可以在感应组件检测到路面有裂隙时触发报警组件向人们示警,通过设置反馈组件,可以在对裂隙填充之后感应组件从裂隙中滑出时,及时阻断填充,防止填充物料洒落在裂隙外部,在底盘1上通过空压机5可以向喷气管9的内部供应高压空气,使底盘1在前进时将路面和裂隙内部的灰尘清除,便于后续检测到裂隙时对裂隙进行填充,在高压空气输送时通过阀岛10可以分流输送,通过泵体6可以提高空气输送的压力,在底盘1上通过泵体6与存储筒3连接,可以将存储筒3内部的填充物质输送至出料管11,使得可以对裂隙进行填充,在对填充物质进行输送时可以通过阀岛10进行分流输送,便于同步对多个裂隙进行填充。The effect achieved is that the device is pushed to move on the road surface, and the universal wheel 4 can drive the chassis 1 to slide forward horizontally at a certain height above the road surface. During the sliding process, the sensing component can be set to detect whether there are cracks in the road surface. By setting the alarm component, the alarm component can be triggered to warn people when the sensing component detects that there are cracks in the road surface. By setting the feedback component, the filling can be blocked in time when the sensing component slides out of the crack after filling the crack, so as to prevent the filling material from spilling outside the crack. On the chassis 1, the air compressor 5 can supply high-pressure air to the inside of the jet pipe 9, so that the chassis 1 can remove dust on the road surface and the inside of the crack when moving forward, so as to facilitate the filling of the crack when the crack is detected later. When the high-pressure air is delivered, the valve island 10 can be used for diversion delivery, and the pump body 6 can be used to increase the pressure of the air delivery. The pump body 6 is connected to the storage cylinder 3 on the chassis 1, and the filling material inside the storage cylinder 3 can be delivered to the discharge pipe 11, so that the crack can be filled. When the filling material is delivered, the valve island 10 can be used for diversion delivery, so as to facilitate the simultaneous filling of multiple cracks.
如图4-9所示,感应组件包括往复杆21,往复杆21滑动设置在调节孔18的内壁之间,往复杆21的外表面设置有报警组件,往复杆21的内部设置有反馈组件,往复杆21的底部滑动贯穿至集装块7的底部,且延伸至梯形槽17内部,往复杆21的顶部固定有六角标示杆15,六角标示杆15的顶部滑动贯穿至集装块7的上方,往复杆21的底部开设有贯穿至两侧外表面的底槽27,底槽27的两侧内壁之间转动连接有接触刀板26,底槽27的内部顶面靠近往复杆21一侧外表面边缘处固定有挡板40,挡板40的一侧与接触刀板26的一侧相互贴合,接触刀板26的底部靠近一侧边缘处呈弧面状,往复杆21的内部开设有气腔22,气腔22的两侧均贯穿至往复杆21的外部,位于调节孔18两侧的供气管13通过气腔22相互连通。As shown in Fig. 4-9, the sensing component includes a reciprocating rod 21, which is slidably arranged between the inner walls of the adjustment hole 18, an alarm component is arranged on the outer surface of the reciprocating rod 21, and a feedback component is arranged inside the reciprocating rod 21. The bottom of the reciprocating rod 21 slides through the bottom of the assembly block 7 and extends to the inside of the trapezoidal groove 17. The top of the reciprocating rod 21 is fixed with a hexagonal marking rod 15, and the top of the hexagonal marking rod 15 slides through the top of the assembly block 7. The bottom of the reciprocating rod 21 is provided with a plurality of holes extending to the outer surfaces on both sides. A bottom groove 27 is formed on the surface of the reciprocating rod 21, and a contact blade 26 is rotatably connected between the inner walls on both sides of the bottom groove 27. A baffle 40 is fixed to the edge of the outer surface of one side of the reciprocating rod 21 on the inner top surface of the bottom groove 27. One side of the baffle 40 is in contact with one side of the contact blade 26. The bottom of the contact blade 26 is in an arc shape near the edge of one side. An air cavity 22 is opened inside the reciprocating rod 21, and both sides of the air cavity 22 penetrate to the outside of the reciprocating rod 21. The air supply pipes 13 located on both sides of the adjusting hole 18 are connected to each other through the air cavity 22.
其达到的效果为,通过在往复杆21底部设置接触刀板26,可以通过接触刀板26的底部与路面接触,从而检测路面有无产生裂隙,在路面上没有产生裂隙时接触刀板26的底部会在路面上滑动,这时往复杆21不会向下滑动,通过气腔22将供气管13导通,使得高压空气可以输送至喷气管9内部,对底盘1前方路面上的灰尘进行清除,在路面上产生裂隙时,接触刀板26的底部伸入裂隙内部,从而会带动往复杆21向下滑动,在往复杆21向下滑动的过程中会使气腔22与供气管13相互错位,从而将供气管13截断,同时在往复杆21向下滑动的过程中会使进料孔38与送料管12相对,使填充物料通过出料管11填充至裂隙中。The effect achieved is that, by arranging a contact blade 26 at the bottom of the reciprocating rod 21, the bottom of the contact blade 26 can contact the road surface, thereby detecting whether there are cracks in the road surface. When there are no cracks on the road surface, the bottom of the contact blade 26 will slide on the road surface, and the reciprocating rod 21 will not slide downward. The air supply pipe 13 is connected through the air cavity 22, so that high-pressure air can be transported to the inside of the jet pipe 9 to remove dust on the road surface in front of the chassis 1. When cracks appear on the road surface, the bottom of the contact blade 26 extends into the crack, thereby driving the reciprocating rod 21 to slide downward. In the process of the reciprocating rod 21 sliding downward, the air cavity 22 and the air supply pipe 13 will be misaligned with each other, thereby cutting off the air supply pipe 13. At the same time, in the process of the reciprocating rod 21 sliding downward, the feed hole 38 will be opposite to the feed pipe 12, so that the filling material is filled into the crack through the discharge pipe 11.
如图2、图5和图11所示,报警组件包括固定环23,固定环23固定在往复杆21的外表面上,固定环23的底部靠近两侧边缘处均固定有铜触点24,固定环23的顶部固定有第一弹簧25,第一弹簧25固定在传动腔14的内部顶面,传动腔14的内部底面固定有绝缘环19,绝缘环19的顶部靠近两侧均开设有电接槽20,两个电接槽20均对应位于两个铜触点24的正下方,集装块7的一侧固定有多个指示灯16,多个指示灯16均对应位于送料管12的上方。As shown in Figures 2, 5 and 11, the alarm component includes a fixed ring 23, which is fixed on the outer surface of the reciprocating rod 21, and copper contacts 24 are fixed to the bottom of the fixed ring 23 near the edges on both sides, and a first spring 25 is fixed to the top of the fixed ring 23, and the first spring 25 is fixed to the inner top surface of the transmission cavity 14, and an insulating ring 19 is fixed to the inner bottom surface of the transmission cavity 14. Electric connection grooves 20 are opened on the top of the insulating ring 19 near both sides, and the two electric connection grooves 20 are correspondingly located directly below the two copper contacts 24, and a plurality of indicator lights 16 are fixed to one side of the assembly block 7, and the plurality of indicator lights 16 are correspondingly located above the feeding pipe 12.
其达到的效果为,在实际使用时,指示灯16的两端分别与固定环23上的两个铜触点24之间电性连接,绝缘环19上的两个电接槽20分别与外部电源的正负极之间电性连接,所以在感应组件检测到路面有裂隙时,在第一弹簧25的弹性压力作用下将往复杆21向下压,从而使接触刀板26的底部伸入裂隙内部,在往复杆21向下滑动时会将铜触点24卡合在电接槽20的内部,使对应的指示灯16闪烁向人们报警。The effect achieved is that, in actual use, the two ends of the indicator light 16 are electrically connected to the two copper contacts 24 on the fixing ring 23, and the two electrical connection grooves 20 on the insulating ring 19 are electrically connected to the positive and negative poles of the external power supply, so when the sensing component detects a crack in the road surface, the reciprocating rod 21 is pressed downward under the elastic pressure of the first spring 25, so that the bottom of the contact blade 26 extends into the crack, and when the reciprocating rod 21 slides downward, the copper contact 24 will be engaged in the electrical connection groove 20, causing the corresponding indicator light 16 to flash to alert people.
如图4、图6、图8、图9、图10和图12所示,反馈组件包括调节块35,往复杆21的内部靠近顶部边缘处开设有调节腔34,调节块35滑动连接在调节腔34的内壁之间,调节块35的底部固定有第二弹簧37,第二弹簧37的底部固定在调节腔34的内部底面,往复杆21的一侧外表面开设有贯穿至另一侧的进料孔38,进料孔38与调节腔34相互连通,调节块35的一侧开设有贯穿至另一侧的通孔36,通孔36与进料孔38相对,位于调节孔18两侧的送料管12通过进料孔38和通孔36相互连通,往复杆21的内部靠近底部边缘处开设有下过渡腔29,往复杆21的内部位于下过渡腔29的上方开设有上过渡腔28,上过渡腔28的内部底面开设有贯穿至下过渡腔29内部的六角孔30,六角孔30的内部滑动连接有六角滑杆31,调节腔34的内部底面开设有两个贯穿至上过渡腔28内部的贯穿孔32,两个贯穿孔32的内部均设置有第一牵引绳33,两个第一牵引绳33的顶部均固定在调节块35的底部,两个第一牵引绳33的底部均固定在六角滑杆31的顶部,六角滑杆31的底部固定有第二牵引绳39,第二牵引绳39的底部滑动贯穿至底槽27的内部,第二牵引绳39的底部固定在接触刀板26的顶部靠近挡板40一侧边缘处。As shown in Figures 4, 6, 8, 9, 10 and 12, the feedback assembly includes an adjustment block 35, an adjustment cavity 34 is opened inside the reciprocating rod 21 near the top edge, the adjustment block 35 is slidably connected between the inner walls of the adjustment cavity 34, a second spring 37 is fixed at the bottom of the adjustment block 35, and the bottom of the second spring 37 is fixed to the inner bottom surface of the adjustment cavity 34, a feed hole 38 is opened on the outer surface of one side of the reciprocating rod 21 to the other side, the feed hole 38 is connected with the adjustment cavity 34, a through hole 36 is opened on one side of the adjustment block 35 to the other side, the through hole 36 is opposite to the feed hole 38, the feeding pipes 12 located on both sides of the adjustment hole 18 are connected with each other through the feed hole 38 and the through hole 36, a lower transition cavity 29 is opened inside the reciprocating rod 21 near the bottom edge, and the reciprocating rod An upper transition chamber 28 is provided inside the block 21 above the lower transition chamber 29, a hexagonal hole 30 is provided on the inner bottom surface of the upper transition chamber 28 and penetrates into the lower transition chamber 29, a hexagonal slide bar 31 is slidably connected to the inner surface of the hexagonal hole 30, two through holes 32 are provided on the inner bottom surface of the adjustment chamber 34 and penetrate into the upper transition chamber 28, a first traction rope 33 is provided inside the two through holes 32, the tops of the two first traction ropes 33 are fixed to the bottom of the adjustment block 35, the bottoms of the two first traction ropes 33 are fixed to the top of the hexagonal slide bar 31, a second traction rope 39 is fixed to the bottom of the hexagonal slide bar 31, the bottom of the second traction rope 39 slides through the inside of the bottom groove 27, and the bottom of the second traction rope 39 is fixed to the top of the contact blade 26 near the edge of one side of the baffle 40.
其达到的效果为,在接触刀板26的底部伸入裂隙内部后,随着人们对底盘1的推动,接触刀板26会在裂隙的内部滑动,这时由于第二弹簧37对调节块35具有向上的弹性力,所以会带动第一牵引绳33向上拉拽六角滑杆31,六角滑杆31向上拉拽时会通过第二牵引绳39拉动接触刀板26向挡板40一侧翻转,使得接触刀板26的一侧与挡板40一侧紧密贴合,并且此时接触刀板26与往复杆21竖直相对,当接触刀板26滑动至裂隙端部时会对接触刀板26与挡板40相互贴合的一侧产生干涉,这时会将接触刀板26向远离挡板40一侧推动使接触刀板26与往复杆21之间产生转动,在转动时会向下拉拽第二牵引绳39,进而向下拉拽第一牵引绳33使调节块35向调节腔34下方滑动,从而使通孔36与进料孔38错位相对,使得可以截断填充物料的供应,在实际使用时第二弹簧37的弹性力远远大于第一弹簧25的弹性力,所以在接触刀板26从裂隙内部滑出时,对接触刀板26产生干涉的同时也会对接触刀板26产生向上的推力,从而使往复杆21向上滑动复位;The effect achieved is that after the bottom of the contact blade 26 extends into the crack, as people push the chassis 1, the contact blade 26 will slide inside the crack. At this time, since the second spring 37 has an upward elastic force on the adjustment block 35, it will drive the first traction rope 33 to pull the hexagonal slide bar 31 upward. When the hexagonal slide bar 31 is pulled upward, the contact blade 26 will be pulled to the side of the baffle 40 through the second traction rope 39, so that one side of the contact blade 26 is tightly fitted with one side of the baffle 40, and at this time, the contact blade 26 is vertically opposite to the reciprocating rod 21. When the contact blade 26 slides to the end of the crack, the side of the contact blade 26 and the baffle 40 that are in contact with each other will be Interference occurs, and the contact blade 26 is pushed to the side away from the baffle 40 to cause rotation between the contact blade 26 and the reciprocating rod 21. During the rotation, the second traction rope 39 is pulled downward, and then the first traction rope 33 is pulled downward to make the adjustment block 35 slide below the adjustment cavity 34, so that the through hole 36 and the feed hole 38 are offset relative to each other, so that the supply of filling material can be cut off. In actual use, the elastic force of the second spring 37 is much greater than the elastic force of the first spring 25, so when the contact blade 26 slides out of the crack, interference occurs to the contact blade 26, and an upward thrust is also generated on the contact blade 26, so that the reciprocating rod 21 slides upward and resets;
当接触刀板26正常在路面上滑动时,第一弹簧25处于压缩状态、第二弹簧37对调节块35的作用力为初始顶升状态、在第二弹簧37的弹性顶升力作用下第一牵引绳33对六角滑杆31向上拉动,进而带动第二牵引绳39拉动接触刀板26向挡板40一侧翻转,使接触刀板26一侧与挡板40一侧相互贴合,此时进料孔38与通孔36相对,且均位于送料管12的上方;When the contact blade 26 slides normally on the road surface, the first spring 25 is in a compressed state, the force of the second spring 37 on the adjustment block 35 is in an initial lifting state, and the first traction rope 33 pulls the hexagonal slide bar 31 upward under the elastic lifting force of the second spring 37, thereby driving the second traction rope 39 to pull the contact blade 26 to flip toward the side of the baffle 40, so that one side of the contact blade 26 and one side of the baffle 40 are in contact with each other. At this time, the feed hole 38 is opposite to the through hole 36, and both are located above the feed pipe 12;
当接触刀板26伸入裂隙内部时,第一弹簧25处于弹出状态、第二弹簧37对调节块35的作用力依然为初始顶升状态、在第二弹簧37的弹性顶升力作用下第一牵引绳33对六角滑杆31向上拉动,进而带动第二牵引绳39拉动接触刀板26向挡板40一侧翻转,使接触刀板26一侧与挡板40一侧相互贴合,此时进料孔38与通孔36相对,且与送料管12相互连通,使送料管12导通;When the contact blade 26 extends into the crack, the first spring 25 is in the pop-up state, the force of the second spring 37 on the adjustment block 35 is still in the initial lifting state, and the first traction rope 33 pulls the hexagonal slide bar 31 upward under the elastic lifting force of the second spring 37, thereby driving the second traction rope 39 to pull the contact blade 26 to flip toward the side of the baffle 40, so that one side of the contact blade 26 and one side of the baffle 40 are in contact with each other. At this time, the feed hole 38 is opposite to the through hole 36 and is connected to the feed pipe 12, so that the feed pipe 12 is turned on;
当接触刀板26从裂隙一端滑出时,由于在滑出过程中裂隙一端会与接触刀板26的一侧产生干涉,将接触刀板26向挡板40的反方向推动,在将接触刀板26向挡板40的反方向推动的过程中,由于接触刀板26向一侧转动,从而会将第二牵引绳39向下拉,进而带动六角滑杆31向下滑动,在六角滑杆31向下滑动的过程中会向下拉动第一牵引绳33使调节块35向调节腔34的内部底面滑动,这时第一弹簧25依然处于弹出状态、第二弹簧37处于压缩状态,此时进料孔38与通孔36相互错位将送料管12截断,在接触刀板26从裂隙一端滑出时,由于接触刀板26一侧底部呈弧面状,弧面与裂隙接触会产生向上的顶升力,在顶升力的作用下会将往复杆21向上顶升,这时第一弹簧25处于压缩状态,在往复杆21向上顶升后,接触刀板26即可从裂隙内部滑出,滑出后接触刀板26一侧的干涉力消失,此时在第二弹簧37的弹性力作用下带动调节块35复位,在调节块35向上滑动时会向上牵拉第一牵引绳33,从而对六角滑杆31向上拉动,进而带动第二牵引绳39拉动接触刀板26向挡板40一侧翻转复位,使接触刀板26一侧与挡板40一侧相互贴合,此时进料孔38与通孔36相对,且均位于送料管12的上方。When the contact blade 26 slides out from one end of the crack, due to the interference between one end of the crack and one side of the contact blade 26 during the sliding process, the contact blade 26 is pushed in the opposite direction of the baffle 40. In the process of pushing the contact blade 26 in the opposite direction of the baffle 40, due to the rotation of the contact blade 26 to one side, the second traction rope 39 is pulled downward, thereby driving the hexagonal slide bar 31 to slide downward. In the process of the hexagonal slide bar 31 sliding downward, the first traction rope 33 is pulled downward to make the adjustment block 35 slide toward the inner bottom surface of the adjustment cavity 34. At this time, the first spring 25 is still in the pop-up state and the second spring 37 is in the compressed state. At this time, the feed hole 38 and the through hole 36 are misaligned with each other to cut off the feed pipe 12. When the contact blade 26 slides out from one end of the crack, due to the contact blade The bottom of one side of the plate 26 is in an arc shape. The contact between the arc surface and the crack will generate an upward lifting force. Under the action of the lifting force, the reciprocating rod 21 will be lifted upward. At this time, the first spring 25 is in a compressed state. After the reciprocating rod 21 is lifted upward, the contact knife plate 26 can slide out from the inside of the crack. After sliding out, the interference force on one side of the contact knife plate 26 disappears. At this time, the elastic force of the second spring 37 drives the adjustment block 35 to reset. When the adjustment block 35 slides upward, it will pull the first traction rope 33 upward, thereby pulling the hexagonal slide rod 31 upward, and then drive the second traction rope 39 to pull the contact knife plate 26 to flip and reset to the side of the baffle 40, so that one side of the contact knife plate 26 and one side of the baffle 40 are in contact with each other. At this time, the feed hole 38 is opposite to the through hole 36, and both are located above the feeding pipe 12.
工作原理:在使用本装置时,通过在往复杆21底部设置接触刀板26,可以通过接触刀板26的底部与路面接触,从而检测路面有无产生裂隙,在路面上没有产生裂隙时接触刀板26的底部会在路面上滑动,这时往复杆21不会向下滑动,通过气腔22将供气管13导通,使得高压空气可以输送至喷气管9内部,对底盘1前方路面上的灰尘进行清除,在路面上产生裂隙时,接触刀板26的底部伸入裂隙内部,从而会带动往复杆21向下滑动,在往复杆21向下滑动的过程中会使气腔22与供气管13相互错位,从而将供气管13截断,在往复杆21向下滑动时会将铜触点24卡合在电接槽20的内部,使对应的指示灯16闪烁向人们报警,同时在往复杆21向下滑动的过程中会使进料孔38与送料管12相对,使填充物料通过出料管11填充至裂隙中,当接触刀板26滑动至裂隙端部时会对接触刀板26与挡板40相互贴合的一侧产生干涉,这时会将接触刀板26向远离挡板40一侧推动使接触刀板26与往复杆21之间产生转动,在转动时会向下拉拽第二牵引绳39,进而向下拉拽第一牵引绳33使调节块35向调节腔34下方滑动,从而使通孔36与进料孔38错位相对,使得可以截断填充物料的供应。Working principle: When using the device, by setting a contact blade 26 at the bottom of the reciprocating rod 21, the bottom of the contact blade 26 can contact the road surface, so as to detect whether there are cracks on the road surface. When there are no cracks on the road surface, the bottom of the contact blade 26 will slide on the road surface, and the reciprocating rod 21 will not slide downward. The air supply pipe 13 is connected through the air cavity 22, so that high-pressure air can be transported to the inside of the jet pipe 9 to remove dust on the road surface in front of the chassis 1. When cracks appear on the road surface, the bottom of the contact blade 26 extends into the crack, thereby driving the reciprocating rod 21 to slide downward. In the process of the reciprocating rod 21 sliding downward, the air cavity 22 and the air supply pipe 13 are misaligned with each other, thereby cutting off the air supply pipe 13, and when the reciprocating rod 21 slides downward When it moves, the copper contact 24 will be engaged with the inside of the electrical connection groove 20, causing the corresponding indicator light 16 to flash to warn people. At the same time, when the reciprocating rod 21 slides downward, the feed hole 38 will be opposite to the feeding tube 12, so that the filling material can be filled into the crack through the discharge tube 11. When the contact blade 26 slides to the end of the crack, it will interfere with the side where the contact blade 26 and the baffle 40 are in contact with each other. At this time, the contact blade 26 will be pushed away from the baffle 40 to cause the contact blade 26 and the reciprocating rod 21 to rotate. During the rotation, the second traction rope 39 will be pulled downward, and then the first traction rope 33 will be pulled downward to make the adjustment block 35 slide downward to the adjustment chamber 34, so that the through hole 36 and the feed hole 38 are offset relative to each other, so that the supply of filling material can be cut off.
尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims (9)
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| JP2020041403A (en) * | 2018-09-05 | 2020-03-19 | 国立大学法人 熊本大学 | Crack repair method and crack repair system |
| CN213681626U (en) * | 2020-10-23 | 2021-07-13 | 兴化市建设工程质量检测有限公司 | Town road crack repairing detection device |
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| CN221167362U (en) * | 2023-11-15 | 2024-06-18 | 缙云恒正工程检测有限公司 | Traffic road surface roughness detection device |
| CN221398615U (en) * | 2023-12-06 | 2024-07-23 | 和林格尔县交通运输综合行政执法大队 | Highway construction crack processing apparatus |
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| JP2020041403A (en) * | 2018-09-05 | 2020-03-19 | 国立大学法人 熊本大学 | Crack repair method and crack repair system |
| CN213681626U (en) * | 2020-10-23 | 2021-07-13 | 兴化市建设工程质量检测有限公司 | Town road crack repairing detection device |
| CN215405476U (en) * | 2021-08-12 | 2022-01-04 | 李俊洋 | Road and bridge bituminous pavement crack detection device |
| CN220565011U (en) * | 2023-08-07 | 2024-03-08 | 寇祎凡 | Municipal road roughness detection device |
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| CN221167362U (en) * | 2023-11-15 | 2024-06-18 | 缙云恒正工程检测有限公司 | Traffic road surface roughness detection device |
| CN221398615U (en) * | 2023-12-06 | 2024-07-23 | 和林格尔县交通运输综合行政执法大队 | Highway construction crack processing apparatus |
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