Building engineering detects laser range finder

文档序号:1488945 发布日期:2020-02-28 浏览:26次 中文

阅读说明:本技术 一种建筑工程检测激光测距仪 (Building engineering detects laser range finder ) 是由 郑亮 于 2019-12-05 设计创作,主要内容包括:本发明公开了一种建筑工程检测激光测距仪,其结构包括机体、衔接柱、三角支架、控制面板、显示屏、球形底座,三角支架正中间和球形底座活动配合,球形底座正中间和衔接柱固定,衔接柱和球形底座互相垂直,衔接柱另一端设有机体,机体一侧设有控制面板,控制面板正上方的机体上设有显示屏,本发明通过球形底座和软骨结构相互配合,细微地调整角度,保证激光射出和地面相互平行,本发明通过球形底座的突条,在地面较为平整的时候,可采用突条和契合槽相配合用来稳定固定。(The invention discloses a building engineering detection laser range finder, which structurally comprises a machine body, a connecting column, a triangular support, a control panel, a display screen and a spherical base, wherein the middle of the triangular support is movably matched with the spherical base, the middle of the spherical base is fixed with the connecting column, the connecting column is perpendicular to the spherical base, the other end of the connecting column is provided with the machine body, one side of the machine body is provided with the control panel, and the display screen is arranged on the machine body right above the control panel.)

1. The utility model provides a building engineering detects laser range finder which characterized in that: its structure includes organism (1), linking post (2), A-frame (3), control panel (5), display screen (6), spherical base (7), A-frame (3) is middle and spherical base (7) clearance fit, spherical base (7) is middle and linking post (2) are fixed, it is mutually perpendicular to link post (2) and spherical base (7), it is equipped with organism (1) to link up the post (2) other end, organism (1) one side is equipped with control panel (5), be equipped with display screen (6) on organism (1) directly over control panel (5).

2. The laser range finder for building engineering detection according to claim 1, wherein: the spherical base (7) is a hemisphere, and a protruded ridge (71) is arranged at the top end of the arc-shaped surface of the spherical base (7).

3. A construction detection laser rangefinder according to claim 1 or 2, wherein: a notch (74) is formed in the middle of the horizontal end face of the spherical base (7), and the notch (74) and the connecting column (2) are mutually embedded.

4. The laser range finder for building engineering detection according to claim 1, wherein: triangular support (3) are equipped with cartilage (31), plate body (32), rotate groove (33), agree with groove (36), open in the middle of plate body (32) is positive has a circular shape to rotate groove (33), it has one to agree with groove (36) to rotate groove (33) inner wall top, agree with groove (36) and spherical base (7) clearance fit, install cartilage (31) in the rotation groove (33) of agreeing with groove (36) bottom.

5. A construction detection laser rangefinder according to claim 3, wherein: the outer side face, close to the horizontal end face, of the spherical base (7) is provided with a circle of protruding strips (73), and the protruding strips (73) are matched with the matching grooves (36) of the triangular supports (3).

6. The laser range finder for building engineering detection according to claim 4, wherein: cartilage (31) comprise wire (311), draw-in groove (312), soft cloth (313), solid fixed ring (314), gu fixed ring (314) is equipped with two, links up each other through more than two wire (311) between two solid fixed ring (314) and forms, and these wire (311) are even equidistance and distribute, and soft cloth (313) have all been posted to these wire (311) positive and negative two-sided, gu be equipped with a set of symmetrical draw-in groove (312) of each other on fixed ring (314) terminal surface.

7. The laser range finder for building engineering detection according to claim 6, wherein: an inverted L-shaped fixture block (35) is arranged in the clamping groove (312), and the cartilage (31) is movably clamped with the triangular bracket (3) through the two fixture blocks (35).

8. The laser range finder for building engineering detection according to claim 6, wherein: a truss (34) is arranged in the middle of the cartilage (31), and two ends of the truss (34) are horizontally fixed on the inner wall of the triangular support (3) respectively.

Technical Field

The invention relates to the field of building detection equipment, in particular to a laser range finder for building engineering detection.

Background

Building engineering is when finding range, all measures the distance between two buildings through laser to replaced and carried out the heavy mode of measuring through the tape in the past, makeed the measuring precision more accurate, because the position of measuring is in the building engineering place, its ground unevenness can't adjust to the level completely, produces the measurement deviation easily.

Disclosure of Invention

Aiming at the defects of the prior art, the invention is realized by the following technical scheme: the utility model provides a building engineering detects laser range finder, its structure includes the organism, links up post, A-frame, control panel, display screen, spherical base, the positive middle and spherical base clearance fit of A-frame, spherical base is positive middle fixed with linking the post, it is mutually perpendicular to link up post and spherical base, it is equipped with the organism to link up the post other end, organism one side is equipped with control panel, be equipped with the display screen on the organism directly over the control panel.

As a further optimization of the technical scheme, the spherical base is a hemisphere, a protruded ridge is arranged on the top end of the arc-shaped surface of the spherical base, and the first two ends of the protruded ridge do not extend to the horizontal end surface of the protruded ridge.

As a further optimization of the technical scheme, a notch is formed in the right middle of the horizontal end face of the spherical base, and the notch and the connecting column are mutually embedded.

As the further optimization of this technical scheme, the A-frame is equipped with cartilage, plate body, rotation groove, agrees with the groove, open in the middle of the plate body is positive has a circular shape to rotate the groove, it has an agreeing with groove to rotate inslot wall top, agree with groove and spherical base clearance fit, install cartilage in the rotation groove of agreeing with the tank bottom portion, cartilage both ends and plate body horizontally connect.

As a further optimization of the technical scheme, a circle of protruding strips are arranged on the outer side surface of the spherical base, which is close to the horizontal end surface, and the protruding strips are matched with the matching grooves of the triangular supports.

As the further optimization of this technical scheme, the cartilage comprises wire, draw-in groove, soft cloth, solid fixed ring, gu fixed ring is equipped with two, links up each other through the wire more than two between two solid fixed rings and forms, and these wires are even equidistance and distribute, and soft cloth has all been pasted to the positive and negative two-sided of these wires, gu fixed ring is equipped with a set of symmetrical draw-in groove of each other on the terminal surface, whole cartilage is curved column structure, and the flexible extension, the space between two liang valley peaks of cartilage is as the fixed adjustment groove of spherical base, with abrupt arris clearance fit.

As a further optimization of the technical scheme, an inverted L-shaped clamping block is arranged in the clamping groove, and the cartilage is movably clamped with the triangular bracket through the two clamping blocks.

As a further optimization of the technical scheme, a truss is arranged in the middle of the cartilage, and two ends of the truss are horizontally fixed on the inner wall of the triangular support respectively.

Advantageous effects

Compared with the prior art, the laser range finder for building engineering detection has the following advantages:

1. the invention finely adjusts the angle by mutually matching the spherical base and the cartilage structure, and ensures that the laser emission and the ground are mutually parallel.

2. According to the invention, through the convex strip of the spherical base, when the ground is relatively flat, the convex strip and the fit groove can be matched for stable fixation.

3. The cartilage adopts the space between every two valleys as a fixing and adjusting groove of the spherical base, and the adjusting direction of the cartilage is determined by changing the extension scale of the cartilage in movable cooperation with the convex edges, so that the aim of manual adjustment is fulfilled.

4. The cartilage of the invention is fixed by bending more than two metal wires and soft cloth, and the metal wires can be conveniently extended to be bent outwards due to the elasticity of the metal wires and can be recovered to the problem in the later period.

5. The truss is arranged in the middle of the cartilage, not only plays the roles of guiding the cartilage and supporting the cartilage, but also serves as a supporting point of the spherical base, and the integral bearing capacity of the cartilage is improved.

6. The two ends of the cartilage are movably clamped with the bracket through the L-shaped clamping block, so that the cartilage is convenient to disassemble and assemble during disassembling and assembling.

Drawings

Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:

fig. 1 is a schematic view of a partial three-dimensional structure of a laser range finder for building engineering detection according to the present invention.

Fig. 2 is a schematic perspective view of the spherical base of the present invention.

Fig. 3 is a schematic perspective view of the triangular bracket of the present invention.

Fig. 4 is a schematic view of the inside of the triangular bracket of the invention.

Fig. 5 is a schematic perspective view of the cartilage according to the present invention.

In the figure: the device comprises a machine body 1, a connecting column 2, a triangular support 3, a control panel 5, a display screen 6, a spherical base 7, a notch 74, a cartilage 31, a plate body 32, a rotating groove 33, a truss 34, a clamping block 35, a matching groove 36, a protruding edge 71, a protruding strip 73, a notch 74, a metal wire 311, a clamping groove 312, soft cloth 313 and a fixing ring 314.

Detailed Description

In order to make the technical means, the original characteristics, the achieved purposes and the effects of the invention easy to understand, the following description and the accompanying drawings further illustrate the preferred embodiments of the invention.

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