CN203069127U - Verticality detector - Google Patents

Verticality detector Download PDF

Info

Publication number
CN203069127U
CN203069127U CN2013200107423U CN201320010742U CN203069127U CN 203069127 U CN203069127 U CN 203069127U CN 2013200107423 U CN2013200107423 U CN 2013200107423U CN 201320010742 U CN201320010742 U CN 201320010742U CN 203069127 U CN203069127 U CN 203069127U
Authority
CN
China
Prior art keywords
rod
verticality
leaning
detection
significantly improve
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2013200107423U
Other languages
Chinese (zh)
Inventor
胡磊
蔡丽朋
郭鹏
邢庆泉
李瑾
孙小新
王晓颖
孙成城
王嘉杨
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Luoyang Institute of Science and Technology
Original Assignee
Luoyang Institute of Science and Technology
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Luoyang Institute of Science and Technology filed Critical Luoyang Institute of Science and Technology
Priority to CN2013200107423U priority Critical patent/CN203069127U/en
Application granted granted Critical
Publication of CN203069127U publication Critical patent/CN203069127U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • A Measuring Device Byusing Mechanical Method (AREA)

Abstract

本实用新型涉及一种垂直度检测仪,包括上靠杆、下靠杆、伸缩杆和设在伸缩杆上的圆水准器,所述的上靠杆和下靠杆分别与伸缩杆的两端垂直连接,上靠杆的一端同轴伸出有固定杆,检测杆与下靠杆为内外套筒结构,检测杆通过带刻度尺的弹簧装置与下靠杆的内部同轴连接,弹簧装置与检测杆的连接处设有指针,且指针的一端指向刻度尺。本实用新型不仅克服了传统检测方法效率低下、受风雨等天气影响严重的弊端,可以显著地提高工作效率,并且具有精准性,可以显著改善剪力墙、柱的垂直度的问题,明显提高工程的质量,并可加快施工速度,节省工期,降低施工成本。

The utility model relates to a verticality detector, which comprises an upper leaner rod, a lower leaner rod, a telescopic rod and a circular level arranged on the telescopic rod. Vertically connected, one end of the upper leaning rod is coaxially protruded with a fixed rod, the detection rod and the lower leaning rod are inner and outer sleeve structures, the detection rod is coaxially connected with the inner part of the lower leaning rod through a spring device with a scale, the spring device and the lower leaning rod are coaxially connected A pointer is arranged at the joint of the detection rod, and one end of the pointer points to the scale. The utility model not only overcomes the disadvantages of low efficiency of the traditional detection method and is seriously affected by wind, rain and other weather, but also can significantly improve the work efficiency, and has precision, can significantly improve the verticality of the shear wall and the column, and significantly improve the engineering quality. The quality, and can speed up the construction, save the construction period and reduce the construction cost.

Description

一种垂直度检测仪A verticality tester

技术领域 technical field

本实用新型属于土木工程技术领域,主要涉及一种垂直度检测仪。 The utility model belongs to the technical field of civil engineering, and mainly relates to a verticality detector.

背景技术 Background technique

建筑工程生产实践中,尤其是钢筋模板混凝土结构施工时,经常要对支设的钢筋混凝土柱子及墙的模板垂直度进行检查,只有垂直度偏差满足规范要求后,模板支设方才合格。目前,这一垂直度检查过程是这样完成的:借用原始的线坠,在重力作用下,从上部垂吊线坠下来的线绳就被当做基准的垂线,然后用钢卷尺比对柱子及板墙模板的上部、中部以及下部到该垂线的水平距离,如果三个尺寸一致,说明该模板与垂线平行,即为垂直,若不一致就要通过调整模板最终实现上中下顺直,垂正。但这一操作通常要三个人参与,并且还要到比较危险的脚手架外架上作业,不仅效率低,而且相当危险。因此大批量的柱子模板支设完毕后,垂直度检查就变成一件令人头痛的工作。 In the production practice of construction engineering, especially in the construction of reinforced formwork concrete structures, it is often necessary to check the verticality of the formwork of the supported reinforced concrete columns and walls. Only when the verticality deviation meets the requirements of the code can the formwork support be qualified. At present, this verticality inspection process is completed as follows: borrow the original wire pendant, and under the action of gravity, the wire rope falling from the upper suspension wire is used as the reference vertical line, and then use a steel tape measure to compare the pillars and slabs The horizontal distance from the upper, middle, and lower parts of the wall formwork to the vertical line. If the three dimensions are consistent, it means that the formwork is parallel to the vertical line, that is, vertical. just. However, this operation usually requires three people to participate, and it is necessary to work on the more dangerous scaffolding frame, which is not only inefficient, but also quite dangerous. Therefore, after a large number of column formworks are supported, verticality inspection becomes a headache.

实用新型内容 Utility model content

本实用新型针对上述技术的不足,提供了一种垂直度检测仪,该垂直度检测仪结构简单、操作方便、安全快捷。 The utility model provides a verticality detector aiming at the above technical deficiencies, the verticality detector is simple in structure, easy to operate, safe and fast.

本实用新型解决上述技术问题采用的技术方案是:一种垂直度检测仪,包括上靠杆、下靠杆、伸缩杆和设在伸缩杆上的圆水准器,所述的上靠杆和下靠杆分别与伸缩杆的两端垂直连接,上靠杆的一端同轴伸出有固定杆,检测杆与下靠杆为内外套筒结构,检测杆通过带刻度尺的弹簧装置与下靠杆的内部同轴连接,弹簧装置与检测杆的连接处设有指针,且指针的一端指向刻度尺。 The technical scheme adopted by the utility model to solve the above-mentioned technical problems is: a verticality detector, comprising an upper leaning rod, a lower leaning rod, a telescopic rod and a circular level arranged on the telescopic rod, the upper leaning rod and the lower leaning rod The leaning rods are vertically connected to the two ends of the telescopic rod respectively. A fixed rod protrudes from one end of the upper leaning rod coaxially. The detection rod and the lower leaning rod are inner and outer sleeve structures. The internal coaxial connection of the spring device and the detection rod is provided with a pointer, and one end of the pointer points to the scale.

所述的圆水准器设置在立杆的中间或中间以下部位。 The circular level is arranged in the middle or below the middle of the pole.

所述的圆水准器下方的立杆上设有手柄纹。 The vertical rod below the circular level is provided with a handle pattern.

所述的下靠杆的长度与初始状态检测杆的伸出长度之和与上靠杆的长度相等。 The sum of the length of the lower leaning rod and the protruding length of the initial state detection rod is equal to the length of the upper leaning rod.

本实用新型的有益效果: The beneficial effects of the utility model:

其一、垂直度检测仪通过圆水准器校正立杆的垂直度,带刻度的的弹性伸缩装置的下靠杆读取模板的垂直度,不仅克服了传统检测方法效率低下、受风雨等天气影响严重的弊端,可以显著地提高工作效率,并且具有精准性,可以显著改善剪力墙、柱的垂直度的问题,明显提高工程的质量,并可加快施工速度,节省工期,降低施工成本。 First, the verticality detector corrects the verticality of the vertical pole through the circular level, and the lower lever of the elastic telescopic device with scale reads the verticality of the template, which not only overcomes the low efficiency of traditional detection methods, and is affected by weather such as wind and rain Serious disadvantages, can significantly improve work efficiency, and has precision, can significantly improve the verticality of shear walls and columns, significantly improve the quality of the project, and can speed up construction, save construction time, and reduce construction costs.

其二、本实用新型采用工程测量学中的水准器校核原理,保证仪器的垂直度;采用带刻度的弹性伸缩装置,可以在复杂的环境(如风力影响、人不可及的环境下)下快速、准确的检测模板、墙等的垂直度。 Second, the utility model adopts the principle of level calibration in engineering surveying to ensure the verticality of the instrument; it adopts the elastic expansion device with scale, which can be used in complex environments (such as wind influence and inaccessible environment). Quickly and accurately detect the verticality of formwork, walls, etc.

其三、垂直度检测仪不仅可以用于检测模板的垂直度,而且可以在墙面、柱面垂直度的检测中使用,推广前景良好。 Third, the verticality detector can not only be used to detect the verticality of the template, but also can be used in the detection of the verticality of the wall surface and the cylinder surface, and the promotion prospect is good.

附图说明 Description of drawings

以下结合附图和具体实施方式对本实用新型做进一步说明: Below in conjunction with accompanying drawing and specific embodiment, the utility model is further described:

图1为本实用新型的结构示意图; Fig. 1 is the structural representation of the utility model;

图2为本实用新型的局部放大图; Fig. 2 is the local enlargement figure of the utility model;

附图标记:1、上靠杆,2、伸缩杆,3、圆水准器,4、手柄纹,5、下靠杆,6、固定杆,7、弹簧装置,8、检测杆,7-1刻度尺,7-2指针。 Reference signs: 1, upper leaning rod, 2, telescopic rod, 3, circular level, 4, handle pattern, 5, lower leaning rod, 6, fixed rod, 7, spring device, 8, detection rod, 7-1 Scale, 7-2 pointer.

具体实施方式 Detailed ways

如图1所示:一种垂直度检测仪,包括上靠杆1、下靠杆5、伸缩杆2和设在伸缩杆2上的圆水准器3,所述的上靠杆1和下靠杆5分别与伸缩杆2的两端垂直连接,上靠杆1的一端同轴伸出有固定杆6,检测杆8与下靠杆5为内外套筒结构,检测杆8通过带刻度尺7-1的弹簧装置7与下靠杆5的内部同轴连接,弹簧装置7与检测杆8的连接处设有指针7-2,且指针7-2的一端指向刻度尺7-1。 As shown in Figure 1: a verticality detector, including an upper leaning rod 1, a lower leaning rod 5, a telescopic rod 2 and a circular level 3 arranged on the telescopic rod 2, the upper leaning rod 1 and the lower leaning rod The rods 5 are vertically connected to the two ends of the telescopic rod 2 respectively. A fixed rod 6 protrudes coaxially from one end of the upper leaning rod 1. The detection rod 8 and the lower leaning rod 5 are inner and outer sleeve structures. The spring device 7 of -1 is coaxially connected with the inside of the lower lever 5, and the connection between the spring device 7 and the detection rod 8 is provided with a pointer 7-2, and one end of the pointer 7-2 points to the scale 7-1.

所述的圆水准器3设置在立杆2的中间或中间以下部位。 The circular level 3 is arranged in the middle of the vertical pole 2 or below the middle.

所述的圆水准器3下方的立杆2上设有手柄纹4。 The vertical rod 2 below the circular level 3 is provided with a handle pattern 4 .

所述的下靠杆5的长度与初始状态检测杆8的伸出长度之和与上靠杆1的长度相等。 The sum of the length of the lower leaning rod 5 and the protruding length of the initial state detection rod 8 is equal to the length of the upper leaning rod 1 .

垂直度检测仪通过圆水准器3校正伸缩杆2的垂直度,带刻度的下靠杆5读取垂直度偏差。首先将与上靠杆1同轴的固定杆6固定在脚手架或者方木上,调节圆水准器3上的水准泡位于圆内中央位置时,伸缩杆2竖直,此时检测杆8上指向刻度尺7-1的指针7-2位置稳定,读取刻度值即为垂直度偏差,刻度值为0时无垂直度偏差,刻度值为正值或负值时垂直度有偏差,刻度值即为偏差值。 The verticality detector corrects the verticality of the telescopic rod 2 through the circular level 3, and the verticality deviation is read by the lower support rod 5 with scale. First, fix the fixed rod 6 coaxial with the upper support rod 1 on the scaffold or square wood, adjust the level bubble on the circular level 3 to be in the center of the circle, the telescopic rod 2 is vertical, and the detection rod 8 is pointing upward at this time. The pointer 7-2 of the scale 7-1 is in a stable position, and reading the scale value is the verticality deviation. When the scale value is 0, there is no verticality deviation. When the scale value is positive or negative, there is a deviation in the verticality. The scale value is is the deviation value.

本装置克服了传统检测方法效率低下、受风雨等天气影响严重的弊端,可以显著地提高工作效率,并且具有精准性,可以显著改善剪力墙、柱的垂直度的问题,明显提高工程的质量,并可加快施工速度,节省工期,降低施工成本。本实用新型采用工程测量学中的水准器校核原理,保证仪器的垂直度;采用带刻度尺7-1的弹簧装置7,可以在复杂的环境(如风力影响、人不可及的环境下)下快速、准确的检测模板、墙等的垂直度。垂直度检测仪不仅可以用于检测模板的垂直度,而且可以在墙面、柱面垂直度的检测中使用,推广前景良好。  This device overcomes the disadvantages of low efficiency of traditional detection methods and is seriously affected by wind, rain and other weather. It can significantly improve work efficiency and has accuracy. It can significantly improve the verticality of shear walls and columns, and significantly improve the quality of the project. , and can speed up the construction, save the construction period and reduce the construction cost. The utility model adopts the level checking principle in engineering surveying to ensure the verticality of the instrument; adopts the spring device 7 with a scale 7-1, which can be used in complex environments (such as wind influence and inaccessible environments) Fast and accurate detection of the verticality of templates, walls, etc. The verticality detector can not only be used to detect the verticality of the formwork, but also can be used in the detection of the verticality of the wall and cylinder, and the promotion prospect is good. the

Claims (4)

1. verticality detector, it is characterized in that: comprise rod (1), following rod (5), expansion link (2) and be located at circular bubble (3) on the expansion link (2), described go up rod (1) and following rod (5) respectively with vertical connection of two ends of expansion link (2), the coaxial fixed bar (6) that is extended with of one end of last rod (1), test rod (8) is the inside and outside sleeve structure with following rod (5), test rod (8) is by the spring assembly (7) of band rule (7-1) and coaxial connection of inside of following rod (5), spring assembly (7) is provided with pointer (7-2) with the junction of test rod (8), and an end of pointer (7-2) points to rule (7-1).
2. a kind of verticality detector as claimed in claim 1 is characterized in that: described circular bubble (3) is arranged on centre or the middle following position of vertical rod (2).
3. a kind of verticality detector as claimed in claim 1 is characterized in that: the vertical rod (2) of described circular bubble (3) below is provided with handle line (4).
4. a kind of verticality detector as claimed in claim 1 is characterized in that: described length and the extension elongation sum of original state test rod (8) and the equal in length of last rod (1) of rod (5) down.
CN2013200107423U 2013-01-10 2013-01-10 Verticality detector Expired - Fee Related CN203069127U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2013200107423U CN203069127U (en) 2013-01-10 2013-01-10 Verticality detector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2013200107423U CN203069127U (en) 2013-01-10 2013-01-10 Verticality detector

Publications (1)

Publication Number Publication Date
CN203069127U true CN203069127U (en) 2013-07-17

Family

ID=48767905

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2013200107423U Expired - Fee Related CN203069127U (en) 2013-01-10 2013-01-10 Verticality detector

Country Status (1)

Country Link
CN (1) CN203069127U (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104457687A (en) * 2014-12-08 2015-03-25 上海建工集团股份有限公司 Novel laser tilt checking device and novel laser tilt checking method thereof
CN104864860A (en) * 2015-06-09 2015-08-26 洛阳理工学院 Concrete framework perpendicularity detector provided with windproof hood
CN104864861A (en) * 2015-06-09 2015-08-26 洛阳理工学院 Concrete formwork perpendicularity detector provided with elastic device
CN105180912A (en) * 2015-06-09 2015-12-23 洛阳理工学院 Concrete template verticality detector
CN108387164A (en) * 2018-03-22 2018-08-10 北京城建七建设工程有限公司 A kind of cursor type component testing apparatus for verticality and method
CN108592883A (en) * 2018-05-29 2018-09-28 中冶建工集团有限公司 A kind of mold plate verticality measurement method
CN113984030A (en) * 2021-11-17 2022-01-28 中铁一局集团有限公司 Simple verticality tester

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104457687A (en) * 2014-12-08 2015-03-25 上海建工集团股份有限公司 Novel laser tilt checking device and novel laser tilt checking method thereof
CN104864860A (en) * 2015-06-09 2015-08-26 洛阳理工学院 Concrete framework perpendicularity detector provided with windproof hood
CN104864861A (en) * 2015-06-09 2015-08-26 洛阳理工学院 Concrete formwork perpendicularity detector provided with elastic device
CN105180912A (en) * 2015-06-09 2015-12-23 洛阳理工学院 Concrete template verticality detector
CN108387164A (en) * 2018-03-22 2018-08-10 北京城建七建设工程有限公司 A kind of cursor type component testing apparatus for verticality and method
CN108387164B (en) * 2018-03-22 2024-04-30 北京城建七建设工程有限公司 Vernier type component verticality detection device and method
CN108592883A (en) * 2018-05-29 2018-09-28 中冶建工集团有限公司 A kind of mold plate verticality measurement method
CN113984030A (en) * 2021-11-17 2022-01-28 中铁一局集团有限公司 Simple verticality tester

Similar Documents

Publication Publication Date Title
CN203069127U (en) Verticality detector
CN202853617U (en) Telescopic and convenient plumb bob scale
CN203464889U (en) Special-purpose building template verticality detection ruler
CN105180912A (en) Concrete template verticality detector
CN206002038U (en) A kind of wall column formwork vertical gauge
CN202092614U (en) Verticality measuring tool for vertical rod of scaffold
CN202599633U (en) Bridge deflection test instrument
CN205506057U (en) Measuring scale for building
CN203687932U (en) Verticality measurement tool
CN206160849U (en) Stand height measurement chi
CN202002625U (en) Template verticality inspection device
CN205679225U (en) Rectangular column apparatus for measuring degree of inclination
CN104864860A (en) Concrete framework perpendicularity detector provided with windproof hood
CN204649193U (en) A kind of Steel Tubes For Bridge Application performance of concrete column confined testing apparatus for verticality
CN204286338U (en) Convenient verticality measuring instrument
CN204788399U (en) Concrete form perpendicularity detector with wind cap
CN204788398U (en) Concrete form perpendicularity detector with resilient means
CN205449734U (en) Portable slump and extension measuring device
CN205879174U (en) Simple and easy type slope measurement appearance
CN202188814U (en) Verticality and flatness detecting device used in installation of shear wall template
CN202255403U (en) Upper centering bracket for gyroscopic total station
CN203657810U (en) Special perpendicularity detection device for frame column and shear wall
CN205373716U (en) Portable template straightness detector that hangs down
CN204461421U (en) Novel steel column slope measurement instrument
CN203116744U (en) Forced centering chassis for measurement

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130717

Termination date: 20140110