CN215598293U - Vertical component verticality measuring instrument - Google Patents
Vertical component verticality measuring instrument Download PDFInfo
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- CN215598293U CN215598293U CN202121079951.4U CN202121079951U CN215598293U CN 215598293 U CN215598293 U CN 215598293U CN 202121079951 U CN202121079951 U CN 202121079951U CN 215598293 U CN215598293 U CN 215598293U
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Abstract
The utility model discloses a verticality measuring instrument for a vertical component, which comprises a main body, a folding and accommodating mechanism, a vertical telescopic mechanism and an elasticity measuring mechanism, wherein the folding and accommodating mechanism is arranged in the main body, the vertical telescopic mechanism is arranged in the folding and accommodating mechanism, and the elasticity measuring mechanism is arranged on the inner walls of two sides of the vertical telescopic mechanism. This vertical perpendicular component squareness measurement appearance, size and base size phase-match all around through the skid resistant course, in the use, the skid resistant course that acts on ground can place the instrument phenomenon such as skew appears in the use, after fixing the instrument, stretch out and draw back through the perpendicular telescopic machanism in the folding receiving mechanism, promote measurement length, when measuring component slope appears, the reset shelf at kicking block rear can drive the scale and extend to the telescopic ruler outside, the data contrast of two sets of elasticity measurement mechanism about the measurer accessible telescopic ruler, confirm its slope degree of measuring the component.
Description
Technical Field
The utility model relates to the technical field of vertical component perpendicularity measurement, in particular to a vertical component perpendicularity measuring instrument.
Background
The vertical member is also called a vertical member of a building, such as a column, a wall, a constructional column, an edge column of the wall and the like, while the structural members such as a beam, a plate and the like are horizontal members, and the verticality measuring instrument is equipment for measuring the condition that a measured element on a part keeps a correct 90-degree included angle relative to a reference element, namely the degree of orthogonality between the two elements is usually kept.
When the measuring instrument on the market is used for measuring the deviation of a building component, the measuring instrument generally needs two persons to complete the measuring operation by adopting old-fashioned hanging cones and other instruments, the measuring efficiency is not high, and the measuring accuracy is not enough, so that the vertical component verticality measuring instrument is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a verticality measuring instrument for a vertical component, which aims to solve the problems that when the deviation of a building component is measured, instruments such as an old hanging cone and the like are adopted in the background technology, the measurement operation can be completed by two persons generally, the measurement efficiency is not high, and the measurement accuracy is not enough.
In order to achieve the purpose, the utility model provides the following technical scheme: a vertical component verticality measuring instrument comprises a main body, a folding and accommodating mechanism, a vertical telescopic mechanism and an elasticity measuring mechanism, wherein the folding and accommodating mechanism is arranged inside the main body, the vertical telescopic mechanism is arranged inside the folding and accommodating mechanism, and the elasticity measuring mechanism is arranged on the inner walls of two sides of the vertical telescopic mechanism;
the elasticity measurement mechanism includes:
the connecting blocks are arranged on the inner walls of the two sides of the vertical telescopic mechanism;
the movable buckles are arranged on the outer walls of the two sides of the connecting block;
a reset frame disposed inside the joining block;
the springs are arranged on the inner walls of the two sides of the reset frame;
the top block is arranged at one end of the reset frame;
and the graduated scale is arranged at the other end of the reset frame.
Preferably, the graduated scale forms elastic structure through reset frame, spring and kicking block, and the graduated scale is provided with two sets ofly.
Preferably, the body comprises:
a base disposed at a bottom end of the main body;
the anti-skid layer is arranged on the outer wall of the bottom surface of the base;
a step provided on the right side of the main body.
Preferably, the peripheral size of the anti-skid layer is matched with the peripheral size of the base, and the pedal is connected with the main body in a welding mode.
Preferably, the folding storage mechanism includes:
a receiving groove disposed inside a top end of the main body;
a rotating buckle arranged on the left inner wall of the accommodating groove;
and the limiting block is arranged on the inner wall of the rotary buckle.
Preferably, the limiting block is movably connected with the rotating buckle, and the limiting block is perpendicular to the main body.
Preferably, the vertical telescopic mechanism includes:
a telescopic ruler which is arranged inside the left side of the main body;
the reset buckle is arranged on the inner wall of the middle end of the telescopic ruler;
the angle ruler is arranged on the outer wall of one side of the telescopic ruler;
and the laser lamp is arranged at the top of the telescopic ruler.
Preferably, be swing joint between telescopic ruler and the knot that resets, and be fixed connection between telescopic ruler and the laser lamp.
Compared with the prior art, the utility model has the beneficial effects that: this vertical perpendicular component squareness measurement appearance, size and base size phase-match all around through the skid resistant course, in the use, the skid resistant course that acts on ground can place the instrument phenomenon such as skew appears in the use, after fixing the instrument, stretch out and draw back through the perpendicular telescopic machanism in the folding receiving mechanism, promote measurement length, also can open fixed connection's laser lamp with it and form parallel irradiation to measuring the main part, make things convenient for personnel to observe whether there is the slope phenomenon in the cylinder, and the angle square also can be when measuring the component and have the slope phenomenon, measure inclination, when the slope appears in the measuring component, the reset shelf at kicking block rear can drive the scale and extend to the telescopic rule outside, the data contrast of the upper and lower two sets of elasticity measurement mechanism of measurer's accessible telescopic rule, confirm its inclination of measuring the component.
The limiting block and the rotary buckle are movably connected, after the instrument is fixed, the vertical telescopic mechanism in the accommodating groove is opened through the movable connection between the limiting block and the rotary buckle, the limiting block can be perpendicular to the main body, the limiting block can play a role in limiting the whole body to keep vertical in the process of folding and unfolding the vertical telescopic mechanism, and the auxiliary personnel can carry out vertical component measurement operation.
The telescopic ruler is movably connected with the reset buckle, a user can stretch the telescopic ruler through the movable connection between the telescopic ruler and the reset buckle after turning over and opening the telescopic ruler to keep vertical, the measurement length is improved, a laser lamp fixedly connected with the telescopic ruler can be opened to form parallel irradiation on a measurement main body, a person can conveniently observe whether the column body has an inclination phenomenon, and the angle ruler can measure the inclination angle when the measurement component has the inclination phenomenon.
The scale passes through the reset frame, the spring constitutes elastic construction with the kicking block, carry out the measurement process at the telescopic ruler, the scale passes through the reset frame in through two sets of elasticity measuring mechanism, the elastic construction that spring and kicking block constitute, when slope appears in the measuring component, the reset frame at kicking block rear can drive the scale to the outside extension of telescopic ruler, the data contrast of two sets of elasticity measuring mechanism about the measurer accessible telescopic ruler, confirm its slope degree of measuring the component, through this kind of mode, make the measurement process portably just realize single measurement operation, use manpower sparingly and lifting efficiency.
Drawings
FIG. 1 is a schematic front view of the present invention;
FIG. 2 is a schematic front view of the vertical retracting mechanism of the present invention;
fig. 3 is a schematic perspective view of the elasticity measuring mechanism of the present invention.
In the figure: 1. a main body; 2. a base; 3. an anti-slip layer; 4. stepping; 5. a folding storage mechanism; 501. a receiving groove; 502. rotating the buckle; 503. a limiting block; 6. a vertical telescopic mechanism; 601. a telescopic ruler; 602. a reset button; 603. an angle ruler; 604. a laser light; 7. an elastic force measuring mechanism; 701. a joining block; 702. a movable buckle; 703. a reset frame; 704. a spring; 705. a top block; 706. a graduated scale.
Detailed Description
As shown in fig. 1, a vertical component perpendicularity measuring instrument includes: a main body 1; a base 2 disposed at a bottom end of the main body 1; the anti-skid layer 3 is arranged on the outer wall of the bottom surface of the base 2; a step 4 provided on the right side of the main body 1; a folding and housing mechanism 5 provided inside the main body 1; perpendicular telescopic machanism 6, it sets up in folding receiving mechanism 5's inside, size and base 2 size phase-match all around on skid resistant course 3, and be welded connection between step 4 and the main part 1, before using this measuring equipment, the user can step on and make its instrument rigidity with main part 1 between welded connection's step 4, and size and base 2 size phase-match all around through skid resistant course 3, in the use, the skid resistant course 3 that acts on ground can place phenomenons such as skew appear in the instrument use, ensure measuring accuracy, folding receiving mechanism 5 includes: a receiving groove 501 provided inside the top end of the main body 1; a rotating buckle 502 provided on the left inner wall of the accommodating groove 501; a limiting block 503 arranged on the inner wall of the rotating buckle 502; the limiting block 503 is movably connected with the rotating buckle 502, the limiting block 503 is perpendicular to the main body 1, after the instrument is fixed, the vertical telescopic mechanism 6 in the accommodating groove 501 is opened through the movable connection between the limiting block 503 and the rotating buckle 502, and because the limiting block 503 is perpendicular to the main body 1, the limiting block 503 can play a role in limiting the folding and unfolding process of the vertical telescopic mechanism 6 to enable the whole to keep perpendicular, and the vertical member measurement operation is performed by auxiliary personnel.
As shown in fig. 2, a vertical member perpendicularity measuring instrument, a vertical telescoping mechanism 6 includes: a telescopic scale 601 provided inside the left side of the main body 1; a reset button 602 disposed on the inner wall of the middle end of the telescopic rod 601; an angle scale 603 provided on one outer wall of the telescopic scale 601; a laser lamp 604 provided on the top of the telescopic rod 601; the elasticity measuring mechanism 7 is arranged inside two sides of the vertical telescopic mechanism 6, the telescopic ruler 601 and the reset buckle 602 are movably connected, the telescopic ruler 601 and the laser lamp 604 are fixedly connected, a user can stretch the telescopic ruler 601 through the movable connection between the telescopic ruler 601 and the reset buckle 602 after turning over and opening the telescopic ruler 601 to be vertical, the measuring length is increased, the laser lamp 604 fixedly connected with the telescopic ruler can be opened to form parallel irradiation on a measuring main body, a person can conveniently observe whether the column body is inclined, and the angle ruler 603 can measure the inclination angle when the measuring component is inclined.
As shown in fig. 3, the elasticity measuring mechanism 7 of the vertical component perpendicularity measuring instrument includes: a joint block 701 provided on both side inner walls of the vertical telescopic mechanism 6; the movable buckles 702 are arranged on the outer walls of the two sides of the connecting block 701; a reset frame 703 provided inside the joining block 701; springs 704 disposed on both inner walls of the reset frame 703; a top block 705 provided at one end of the reset frame 703; the graduated scale 706 is arranged at the other end of the reset frame 703, the graduated scale 706 forms an elastic structure through the reset frame 703, the spring 704 and the top block 705, and the graduated scale 706 is provided with two groups, in the process of measuring by the telescopic scale 601, the graduated scale 706 passes through the reset frame 703 in the two groups of elastic force measuring mechanisms 7, the elastic structure formed by the spring 704 and the top block 705, when the measured member inclines, the reset frame 703 at the rear of the top block 705 can drive the graduated scale 706 to extend towards the outside of the telescopic scale 601, and a measurer can determine the inclination degree of the measured member through data comparison of the upper elastic force measuring mechanism 7 and the lower elastic force measuring mechanism 7 of the telescopic scale 601.
In summary, when the vertical component verticality measuring instrument is used, firstly, a user can step on the step 4 welded with the main body 1 to fix the instrument position, and the peripheral size of the anti-slip layer 3 is matched with that of the base 2, in the using process, the anti-slip layer 3 acting on the ground can cause the phenomenon of deviation and the like in the instrument using process, after the instrument is fixed, the vertical telescopic mechanism 6 in the accommodating groove 501 is opened through the movable connection between the limit block 503 and the rotating buckle 502, because the limit block 503 is perpendicular to the main body 1, the limit block 503 can play a role of limiting in the process of turning over and unfolding the vertical telescopic mechanism 6 to keep the whole vertical, after the user turns over and opens the telescopic ruler 601 to keep vertical, the telescopic ruler 601 can be stretched through the movable connection between the telescopic ruler 601 and the reset buckle 602 to improve the measurement length, the laser lamp 604 fixedly connected with the measuring device can be turned on to irradiate the measuring body in parallel, so that a person can observe whether the column body is inclined or not, the angle ruler 603 can measure the inclination angle when the measuring component is inclined, the reset frame 703 at the rear of the top block 705 can drive the graduated scale 706 to extend towards the outside of the telescopic ruler 601 when the measuring component is inclined, and a measurer can determine the inclination degree of the measuring component by comparing the data of the upper elastic force measuring mechanism 7 and the lower elastic force measuring mechanism 7 of the telescopic ruler 601.
Claims (8)
1. The utility model provides a vertical component squareness measurement appearance, includes main part (1), folding receiving mechanism (5), perpendicular telescopic machanism (6) and elasticity measurement mechanism (7), its characterized in that: a folding and accommodating mechanism (5) is arranged in the main body (1), a vertical telescopic mechanism (6) is arranged in the folding and accommodating mechanism (5), and elastic force measuring mechanisms (7) are arranged on the inner walls of two sides of the vertical telescopic mechanism (6);
the elastic force measuring mechanism (7) includes:
the connecting blocks (701) are arranged on the inner walls of the two sides of the vertical telescopic mechanism (6);
the movable buckles (702) are arranged on the outer walls of the two sides of the connecting block (701);
a return frame (703) provided inside the joint block (701);
springs (704) disposed on both side inner walls of the return frame (703);
a top block (705) arranged at one end of the reset frame (703);
and the scale (706) is arranged at the other end of the reset frame (703).
2. The verticality measuring instrument for vertical members according to claim 1, wherein: the graduated scale (706) forms an elastic structure through the reset frame (703), the spring (704) and the top block (705), and the graduated scale (706) is provided with two groups.
3. The verticality measuring instrument for vertical members according to claim 1, wherein: the main body (1) comprises:
a base (2) provided at the bottom end of the main body (1);
the anti-skid layer (3) is arranged on the outer wall of the bottom surface of the base (2);
a step (4) provided on the right side of the main body (1).
4. A vertical component perpendicularity measuring instrument according to claim 3, wherein: the size all around of skid resistant course (3) matches with the size all around of base (2), and is welded connection between step (4) and main part (1).
5. The verticality measuring instrument for vertical members according to claim 1, wherein: the folding storage mechanism (5) comprises:
a storage groove (501) provided inside the top end of the main body (1);
a rotating buckle (502) arranged on the left inner wall of the accommodating groove (501);
and the limiting block (503) is arranged on the inner wall of the rotating buckle (502).
6. The verticality measuring instrument for vertical members according to claim 5, wherein: the limiting block (503) is movably connected with the rotating buckle (502), and the limiting block (503) is perpendicular to the main body (1).
7. The verticality measuring instrument for vertical members according to claim 1, wherein: the vertical telescopic mechanism (6) comprises:
a telescopic scale (601) provided inside the left side of the main body (1);
the reset buckle (602) is arranged on the inner wall of the middle end of the telescopic ruler (601);
an angle scale (603) which is arranged on one outer wall of the telescopic scale (601);
and the laser lamp (604) is arranged at the top of the telescopic ruler (601).
8. The verticality measuring instrument for vertical members according to claim 7, wherein: the telescopic ruler (601) is movably connected with the reset buckle (602), and the telescopic ruler (601) is fixedly connected with the laser lamp (604).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121079951.4U CN215598293U (en) | 2021-05-20 | 2021-05-20 | Vertical component verticality measuring instrument |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121079951.4U CN215598293U (en) | 2021-05-20 | 2021-05-20 | Vertical component verticality measuring instrument |
Publications (1)
Publication Number | Publication Date |
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CN215598293U true CN215598293U (en) | 2022-01-21 |
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Family Applications (1)
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CN202121079951.4U Active CN215598293U (en) | 2021-05-20 | 2021-05-20 | Vertical component verticality measuring instrument |
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CN (1) | CN215598293U (en) |
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2021
- 2021-05-20 CN CN202121079951.4U patent/CN215598293U/en active Active
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