CN113494907B - Engineering quality detects with straightness detection device that hangs down - Google Patents

Engineering quality detects with straightness detection device that hangs down Download PDF

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Publication number
CN113494907B
CN113494907B CN202110743138.0A CN202110743138A CN113494907B CN 113494907 B CN113494907 B CN 113494907B CN 202110743138 A CN202110743138 A CN 202110743138A CN 113494907 B CN113494907 B CN 113494907B
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China
Prior art keywords
plate
frame
wall
detector
reflector
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CN202110743138.0A
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CN113494907A (en
Inventor
陈强
韦武丁
唐光球
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Guangxi Huadu Construction Technology Co ltd Chongzuo Branch
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Guangxi Huadu Construction Technology Co ltd Chongzuo Branch
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C15/00Surveying instruments or accessories not provided for in groups G01C1/00 - G01C13/00
    • G01C15/12Instruments for setting out fixed angles, e.g. right angles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B7/00Cleaning by methods not provided for in a single other subclass or a single group in this subclass
    • B08B7/02Cleaning by methods not provided for in a single other subclass or a single group in this subclass by distortion, beating, or vibration of the surface to be cleaned
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C15/00Surveying instruments or accessories not provided for in groups G01C1/00 - G01C13/00
    • G01C15/002Active optical surveying means

Abstract

The invention discloses a perpendicularity detection device for engineering quality detection, which structurally comprises a detector, a caliper and a fixing frame, wherein the caliper is welded with the bottom of the fixing frame, the detector is connected with the top of the fixing frame, a vibrating rod can repeatedly impact the inner wall of the frame under the matching of an elastic strip along the frame through inertia force generated when the detector slides and adjusts along the fixing frame up and down, so that generated vibration force can be transmitted to a lower connection surface, partial dust at the bottom of the lower connection surface can fall off, a reflector can slide and contract downwards along a bottoming frame through manual pressing of a stress plate on the reflector, the stress plate can be pushed to slide upwards along the bottoming frame through an elastic ring after the stress plate loses manual extrusion, an upper impact block can impact and vibrate the upper end of the inner wall of the bottom plate, and the dust at the upper end of the stress plate can slide towards two sides through vibration.

Description

Engineering quality detects with straightness detection device that hangs down
Technical Field
The invention relates to the field of engineering detection, in particular to a perpendicularity detection device for engineering quality detection.
Background
The perpendicularity detector for engineering quality detection is mainly used for detecting engineering construction walls and the like, the caliper is fixed at a corner, laser is transmitted to a reflector of the caliper by a laser detector positioned at the upper end, the laser reflected by the reflector is received by the detector, and whether the wall is perpendicular or not can be detected, and based on the description, the inventor finds that the existing perpendicularity detection device for engineering quality detection mainly has the following defects, for example:
because building site's dust is more to detector printing opacity lens surface adhesion dust can appear when using for the straightness detector that hangs down for engineering quality detects, and a large amount of accumulations then can make the dust produce the refraction of certain degree to laser, thereby lead to the straightness detector that hangs down for engineering quality detects the condition that the deviation can appear to the perpendicular detection of wall body.
Disclosure of Invention
In order to solve the problems, the invention provides a perpendicularity detection device for engineering quality detection.
In order to achieve the purpose, the invention is realized by the following technical scheme: a perpendicularity detection device for engineering quality detection structurally comprises a detector, a caliper and a fixing frame, wherein the caliper is welded with the bottom of the fixing frame, and the detector is connected with the top of the fixing frame; the detector includes carrying handle, organism, laser lamp, printing opacity mechanism, lower frame, the bottom of carrying handle is connected with the top of organism, the bottom of organism laminates with the upper surface of lower frame mutually, the laser lamp is installed in the inner wall upper end position of lower frame, printing opacity mechanism is fixed in the bottom position of lower frame.
As a further optimization of the invention, the light transmission mechanism comprises a vibrating rod, a lower joint surface, a frame and elastic strips, the vibrating rod is hinged with the inner wall of the frame, the lower joint surface is embedded in the central position inside the frame, the elastic strips are arranged between the upper end of the vibrating rod and the upper end of the inner wall of the frame, and the vibrating rod is provided with two vibrating rods which are uniformly distributed symmetrically on the left side and the right side of the frame.
As a further optimization of the invention, the lower connecting surface comprises elastic pieces, lower swinging plates and connecting plates, the elastic pieces are fixed at the side positions of the lower swinging plates, the lower swinging plates are hinged with the bottoms of the connecting plates, and the two lower swinging plates are uniformly and symmetrically distributed at the bottoms of the connecting plates.
As a further optimization of the invention, the lower swing plate comprises an impact block, a ring body, a plate surface and a connecting sheet, the impact block is arranged at the inner position of the ring body, the ring body is embedded in the inner position of the plate surface, the connecting sheet is fixed between the bottom of the impact block and the inner wall of the ring body, and the impact block is made of alloy steel with high density.
According to the further optimization of the invention, the caliper comprises a reflector, a joining plate and fixed scales, the reflector is fixed at the upper end of the joining plate, the fixed scales and the joining plate are of an integrated structure, and the reflector is provided with holes distributed in a circular shape.
As a further optimization of the invention, the reflector comprises a stress plate, a bottoming frame, an elastic ring and a discharge cavity, wherein the stress plate is movably clamped with the inside of the bottoming frame, the elastic ring is arranged between the bottom of the stress plate and the upper end of the bottoming frame, the discharge cavity is embedded in the inner position of the bottoming frame, and the elastic ring is made of spring steel with strong elasticity.
As a further optimization of the invention, the stress plate comprises a contact plate, a bottom plate and an upper striking block, wherein the bottom of the contact plate is attached to the upper surface of the bottom plate, the upper striking block is arranged in the bottom plate, and the top of the upper striking block is provided with three arc-shaped convex blocks.
As a further optimization of the invention, the discharge cavity comprises a combination frame, a blocking plate, a rolling ball and an outer baffle, the bottom of the blocking plate is attached to the bottom of the inner wall of the combination frame, the rolling ball is mounted at the inner position of the blocking plate, the outer baffle is fixed at the position, close to the left side, of the upper end of the combination frame, and the blocking plate is of a triangular structure.
The invention has the following beneficial effects:
1. through the inertia force that produces when the detector slides the regulation from top to bottom along the mount, can make the vibrating arm along the inner wall of the striking frame that the frame is repeated under the cooperation of elasticity strip to can transmit the vibration power that produces to the face of connecting down on, thereby make the part dust of the face bottom of connecting down can drop, the effectual condition of dust of having avoided building site can be attached to in a large number in printing opacity mechanism department.
2. Through the stress board on the manual pressure reflector, then can make the reflector along the shrink of bottoming frame lapse, rethread elastic ring can lose manpower extrusion back promotion stress board at the stress board and rise along bottoming frame lapse to the piece can be put the inner wall upper end of board to the bottom and produce the striking vibration on making, thereby makes the dust of stress board upper end can receive the vibration to both sides landing, and the effectual condition that the dust that has avoided reflector surface on the slide caliper rule can adhere to and drop is difficult to clear away.
Drawings
Fig. 1 is a schematic structural diagram of a perpendicularity detecting apparatus for engineering quality detection according to the present invention.
FIG. 2 is a front view of a half-section of the detector of the present invention.
Fig. 3 is a schematic front view of a half-section of the light-transmitting mechanism of the present invention.
FIG. 4 is a schematic front view of a lower junction half-section according to the present invention.
FIG. 5 is a front view of a half-section of the lower swing plate of the present invention.
FIG. 6 is a schematic top view of a half-section of the caliper according to the present invention.
Fig. 7 is a schematic top view of a reflector in half section according to the present invention.
FIG. 8 is a schematic top view of a half-section of a stress plate according to the present invention.
FIG. 9 is a top half-sectional schematic view of the exhaust chamber of the present invention.
In the figure: the device comprises a detector-1, a caliper-2, a fixing frame-3, a carrying handle-11, a machine body-12, a laser lamp-13, a light transmission mechanism-14, a lower connecting frame-15, a vibrating rod-a 1, a lower connecting surface-a 2, a frame-a 3, an elastic strip-a 4, an elastic sheet-a 21, a lower swinging plate-a 22, a connecting plate-a 23, an impact block-b 1, a ring body-b 2, a plate surface-b 3, a connecting sheet-b 4, a reflector-c 1, an engagement plate-c 2, a fixing ruler-c 3, a stress plate-c 11, a bottoming frame-c 12, an elastic ring-c 13, a discharge cavity-c 14, a contact plate-d 1, a bottom plate-d 2, an upper impact block-d 3, a combination frame-e 1, a stop plate-e 2, a rolling ball-e 3 and an outer baffle-e 4.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be obtained by a person skilled in the art without making any creative effort based on the embodiments in the present invention, belong to the protection scope of the present invention.
Example 1
As shown in fig. 1-5:
the invention provides a perpendicularity detection device for engineering quality detection, which structurally comprises a detector 1, a caliper 2 and a fixing frame 3, wherein the caliper 2 is welded with the bottom of the fixing frame 3, and the detector 1 is connected with the top of the fixing frame 3; detector 1 is including carrying handle 11, organism 12, laser lamp 13, light transmission mechanism 14, lower carriage 15, the bottom of carrying handle 11 is connected with organism 12's top, organism 12's bottom and the upper surface of lower carriage 15 laminate mutually, laser lamp 13 installs in the inner wall upper end position of lower carriage 15, light transmission mechanism 14 is fixed in the bottom position of lower carriage 15.
Wherein, light transmission mechanism 14 includes vibrating arm a1, lower joint face a2, frame a3, stretch strip a4, vibrating arm a1 and frame a 3's inner wall hinged joint, lower joint face a2 imbeds in frame a 3's inside central point and puts, stretch strip a4 is installed between the upper end of vibrating arm a1 and frame a 3's inner wall upper end, vibrating arm a1 is equipped with two and even left and right sides at frame a3 and is the symmetric distribution, and the inertia force that produces when the debugging goes up and down through the mechanism can make vibrating arm a1 carry out the luffing motion along frame a 3.
The lower connecting surface a2 comprises an elastic sheet a21, a lower swinging plate a22 and a connecting plate a23, the elastic sheet a21 is fixed at the side position of the lower swinging plate a22, the lower swinging plate a22 is hinged with the bottom of the connecting plate a23, the lower swinging plate a22 is provided with two lower swinging plates, the two lower swinging plates are uniformly and symmetrically distributed at the bottom of the connecting plate a23, and the lower swinging plates a22 can swing downwards along the connecting plate a23 through the inertia force generated by the descending of the mechanism, so that the dust on the surface of the lower swinging plates can be thrown off.
The lower swing plate a22 comprises an impact block b1, a ring body b2, a plate surface b3 and a connecting plate b4, the impact block b1 is installed at the inner position of the ring body b2, the ring body b2 is embedded into the inner position of the plate surface b3, the connecting plate b4 is fixed between the bottom of the impact block b1 and the inner wall of the ring body b2, the impact block b1 is made of alloy steel with high density, and impact vibration can be generated on the inner wall of the ring body b2 by the aid of swing of the mechanism through swing of the impact block b 1.
The detailed use method and action of the embodiment are as follows:
according to the invention, after the caliper 2 is manually fixed at a corner, laser can be downwards emitted to the caliper 2 through the laser lamp 13 on the detector 1, the verticality of a wall body can be detected through reflection of the caliper 2, the vibrating rod a1 can repeatedly impact the inner wall of the frame a3 along the frame a3 under the coordination of the elastic strip a4 through the inertia force generated when the detector 1 slides up and down along the fixing frame 3, so that the generated vibrating force can be transmitted to the lower connection surface a2, part of dust at the bottom of the lower connection surface a2 can fall off, the vibrating rod a1 can repeatedly impact the inner wall of the ring body b2 under the coordination of the fixing frame a3 through the inertia force generated by the detector 1 descending and adjusting along the fixing frame 3, the lower swing plate a22 can downwards swing along the connecting plate a23, the lower swing plate a22 can be upwards swung and reset under the coordination of the inner wall of the frame a3 through the elastic sheet a21, so that the inner wall of the striking block b1 can repeatedly impact the inner wall of the ring body b2 to generate vibration, and the dust at the bottom of the elastic sheet a21 can fall off and the transparent dust at the reserved on the transparent lens mechanism of the connecting sheet b4 can be effectively prevented from being adhered to the transparent lens 14.
Example 2
As shown in fig. 6-9:
the caliper 2 comprises a reflector c1, a holding plate c2 and a fixed ruler c3, the reflector c1 is fixed at the upper end of the holding plate c2, the fixed ruler c3 and the holding plate c2 are of an integrated structure, holes which are distributed in a circular shape are formed in the reflector c1, and dust falling on the surface of the reflector c1 can be discharged through the holes in the reflector c 1.
The reflector c1 comprises a stress plate c11, a backing frame c12, an elastic ring c13 and a discharge cavity c14, the stress plate c11 is movably clamped with the backing frame c12, the elastic ring c13 is installed between the bottom of the stress plate c11 and the upper end of the backing frame c12, the discharge cavity c14 is embedded into the inner position of the backing frame c12, the elastic ring c13 is made of spring steel with strong elasticity, the stress plate c11 is pressed down through manpower to be released, and the elastic ring c13 can rapidly push the stress plate c11 to slide upwards.
The stress plate c11 comprises a contact plate d1, a bottom plate d2 and an upper impact block d3, the bottom of the contact plate d1 is attached to the upper surface of the bottom plate d2, the upper impact block d3 is installed in the bottom plate d2, and three arc-shaped convex blocks are arranged at the top of the upper impact block d3 and can generate impact vibration on the contact plate d 1.
Discharge chamber c14 includes combination frame e1, barrier plate e2, rolling ball e3, outer baffle e4, the bottom of barrier plate e2 is laminated with combination frame e 1's inner wall bottom, rolling ball e3 is installed in barrier plate e 2's inside position, outer baffle e4 is fixed in combination frame e 1's upper end and leans on the left side position, barrier plate e2 is the triangle-shaped structure, can intercept outside dust through barrier plate e2 and outer baffle e4 to can guarantee the inside dust of object outwards discharges.
The detailed use method and action of the embodiment are as follows:
in the invention, as the dust cleaned at the bottom of the light transmission mechanism 14 falls downwards, so that the dust attached to the surface of the reflector c1 on the caliper 2 is difficult to clean, the reflector c1 can slide and contract downwards along the opening frame c12 by manually pressing the stress plate c11 on the reflector c1, and the elastic ring c13 can push the stress plate c11 to slide upwards along the opening frame c12 after the stress plate c11 loses manual extrusion, so that the upper impact block d3 can generate impact vibration on the upper end of the inner wall of the bottom plate d2, so that the dust at the upper end of the stress plate c11 can slide to two sides by vibration, and then slide outwards through the discharge cavity c14, and the rolling ball e3 can slide along the inner wall of the barrier plate e2 by the vibration generated by resetting of the stress plate c11, so that the rolling ball e3 can generate impact vibration on the barrier plate e2, thereby accelerating the discharge of the dust on the barrier plate e2, and the dust attached to the surface of the reflector c2 can be effectively prevented from falling by matching the outer barrier plate e4 with the outer barrier plate e 2.
The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention to achieve the above technical effects.

Claims (1)

1. The utility model provides an engineering quality detects with straightness detection device that hangs down, its structure includes detector (1), slide caliper rule (2), mount (3), slide caliper rule (2) weld with the bottom of mount (3) its characterized in that: the detector (1) is connected with the top of the fixing frame (3);
the detector (1) comprises a carrying handle (11), a machine body (12), a laser lamp (13), a light transmission mechanism (14) and a lower connecting frame (15), wherein the bottom of the carrying handle (11) is connected with the top of the machine body (12), the bottom of the machine body (12) is attached to the upper surface of the lower connecting frame (15), the laser lamp (13) is installed at the upper end of the inner wall of the lower connecting frame (15), and the light transmission mechanism (14) is fixed at the bottom of the lower connecting frame (15);
the light transmission mechanism (14) comprises a vibrating rod (a 1), a lower joint face (a 2), a frame (a 3) and an elastic strip (a 4), the vibrating rod (a 1) is hinged with the inner wall of the frame (a 3), the lower joint face (a 2) is embedded in the center of the inner part of the frame (a 3), and the elastic strip (a 4) is installed between the upper end of the vibrating rod (a 1) and the upper end of the inner wall of the frame (a 3);
the lower connecting surface (a 2) comprises an elastic sheet (a 21), a lower swinging plate (a 22) and a connecting plate (a 23), the elastic sheet (a 21) is fixed at the side position of the lower swinging plate (a 22), and the lower swinging plate (a 22) is hinged with the bottom of the connecting plate (a 23);
the lower swinging plate (a 22) comprises an impact block (b 1), a ring body (b 2), a plate surface (b 3) and a connecting piece (b 4), the impact block (b 1) is installed at the inner position of the ring body (b 2), the ring body (b 2) is embedded in the inner position of the plate surface (b 3), and the connecting piece (b 4) is fixed between the bottom of the impact block (b 1) and the inner wall of the ring body (b 2);
the caliper (2) comprises a reflector (c 1), a holding plate (c 2) and a fixed ruler (c 3), the reflector (c 1) is fixed at the upper end of the holding plate (c 2), and the fixed ruler (c 3) and the holding plate (c 2) are of an integrated structure;
the reflector (c 1) comprises a stress plate (c 11), a backing frame (c 12), an elastic ring (c 13) and a discharge cavity (c 14), the stress plate (c 11) is movably clamped with the interior of the backing frame (c 12), the elastic ring (c 13) is installed between the bottom of the stress plate (c 11) and the upper end of the backing frame (c 12), and the discharge cavity (c 14) is embedded in the interior of the backing frame (c 12);
the stress plate (c 11) comprises a contact plate (d 1), a bottom plate (d 2) and an upper striking block (d 3), the bottom of the contact plate (d 1) is attached to the upper surface of the bottom plate (d 2), and the upper striking block (d 3) is arranged in the bottom plate (d 2);
the discharge cavity (c 14) comprises a combination frame (e 1), a blocking plate (e 2), rolling balls (e 3) and an outer baffle (e 4), the bottom of the blocking plate (e 2) is attached to the bottom of the inner wall of the combination frame (e 1), the rolling balls (e 3) are installed at the inner position of the blocking plate (e 2), and the outer baffle (e 4) is fixed to the position, close to the left side, of the upper end of the combination frame (e 1).
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