CN218864979U - Building energy conservation engineering quality flatness detection device - Google Patents

Building energy conservation engineering quality flatness detection device Download PDF

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CN218864979U
CN218864979U CN202221844089.6U CN202221844089U CN218864979U CN 218864979 U CN218864979 U CN 218864979U CN 202221844089 U CN202221844089 U CN 202221844089U CN 218864979 U CN218864979 U CN 218864979U
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groove
detection
platform
guide
testing platform
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甄清洲
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Abstract

The utility model discloses a building energy saving engineering quality flatness detection device, including testing platform, locate the clamping part on the testing platform and locate the determine module on the testing platform, the determine module is including offering standing groove on testing platform, offering two T shape spouts on testing platform, locating the inside bracing piece of T shape spout, locating the diaphragm on the bracing piece, the utility model discloses a set up testing platform, standing groove, T shape spout, bracing piece, diaphragm, first guide way, first direction slider, sleeve, telescopic link, spring, detection ball, slide bar, regulation leg, air level, clamping part and drawing part, solved because lack the platform of placing the determinand, examining time measuring, can not guarantee whether the platform that the determinand was located is level to make the detection precision of determinand roughness lower, the error is great, simultaneously because manual promotion gyro wheel, lead to measuring stability relatively poor, produce the problem of great error easily.

Description

Building energy conservation engineering quality flatness detection device
Technical Field
The utility model belongs to the technical field of building engineering, especially, relate to a building energy saving engineering quality flatness detection device.
Background
The inspection of building energy-saving engineering quality is a very important part in the building inspection, wherein the flatness detection is an essential part, and the roughness determines the roughness of wall, ground and panel plane etc. and the building surface is more level and more pleasing to the eye.
The traditional patent number is CN202021908313.4, which discloses a building energy-saving engineering quality flatness detection device, comprising a mounting plate, wherein mounting frames are fixedly mounted at four corners of the bottom of the mounting plate, the building energy-saving engineering quality flatness detection device is characterized in that a piece of mesh paper and a marker pen are arranged, when the device is used, a roller is tightly attached to the side surface and then pushed by operating the mounting plate with two hands, a spring can enable a ball to be tightly attached to the plane, when the ball is pushed to a concave-convex position of the plane, the ball can sink or rise, the ball can push and pull a movable plate, so that the marker pen on a fixed plate can move up and down, the marker pen is in contact with the mesh paper, and meanwhile, an electric slide rail drives the movable plate with the mesh paper to move right, so that the concave-convex condition of the side surface can be represented as a line segment with undulation, and the mesh paper has a unit length, therefore, the undulation height can be measured, and is more obvious in observation, and the effect of visual observation can be achieved.
Above-mentioned patent is at the in-process of realizing, owing to lack the platform of placing the determinand, when examining, can not guarantee whether the platform that the determinand located levels to make the measuring precision of determinand roughness lower, the error is great, simultaneously because manual promotion gyro wheel, leads to measuring stability relatively poor, produces great error easily.
SUMMERY OF THE UTILITY MODEL
Problem to prior art exists, the utility model provides a building energy conservation engineering quality flatness detecting device, possess through waiting to detect the work piece and put into the standing groove, make testing platform keep the horizontality through the rotation regulation leg, thereby improve the accuracy nature that detects, then can promote the bracing piece motion along T shape spout, through can promote first direction slider motion along first guide way, thereby enlarge the detection range to the work piece, can improve the stability of examining time measuring and the advantage of accuracy nature simultaneously, solved because lack the platform of placing the determinand, examining time measuring examining, can not guarantee whether the platform that the determinand located levels, thereby make the measuring precision of determinand roughness lower, the error is great, simultaneously because the manual gyro wheel that promotes, lead to measuring stability relatively poor, produce the problem of great error easily.
The utility model relates to a realize like this, a building energy conservation engineering quality plane degree detection device, including testing platform, locate the clamping part on testing platform and locate the detection subassembly on testing platform, the detection subassembly is including seting up the standing groove on testing platform, seting up two T shape spouts on testing platform, locate the inside bracing piece of T shape spout, locate the diaphragm on the bracing piece, locate the part of drawing on the diaphragm, seting up the first guide way on the diaphragm, locate the inside first direction slider of first guide way, locate the sleeve of first direction slider bottom, locate the inside telescopic link of sleeve, locate the spring between sleeve and the telescopic link, locate the terminal detection ball of telescopic link, locate the inside a plurality of slide bars of sleeve and locate a plurality of regulation legs of testing platform bottom, regulation leg and testing platform spiro union, the telescopic link is located the sleeve and with sleeve sliding connection, the slide bar runs through the top of telescopic link and with telescopic link sliding connection, first direction slider and first guide way sliding connection, the end of bracing piece is located the inside of T shape spout and with T shape spout sliding connection.
As the utility model discloses preferred, the part of drawing is including locating two support columns on the diaphragm, locating the drawing board on the support column, seting up the draw-in groove on the drawing board, locating the dead lever on the telescopic link bottom surface, locating solid fixed ring on the dead lever and locating the drawing pen on solid fixed ring, drawing pen and solid fixed ring spiro union, the draw-in groove runs through the drawing board, the dead lever run through first direction slider and with first direction slider sliding connection.
As the utility model discloses it is preferred, the both ends of draw-in groove are equipped with two shutoff boards, the shutoff board is pegged graft with the board of drawing.
As the utility model discloses preferred, the screw rod on the grip block is located and locates the grip block to the centre gripping part including the grip block of locating the standing groove both sides, the screw rod runs through testing platform, screw rod and testing platform spiro union, the end and the grip block of screw rod rotate to be connected.
As the utility model discloses it is preferred, the second guide way has been seted up to the bottom surface of standing groove, the inside of second guide way is equipped with two second direction sliders, two the second direction slider all with grip block sliding connection.
As the utility model discloses it is preferred, the rolling groove has been seted up to the bottom of detection ball, the inside in rolling groove is equipped with the ball, the ball rolls with the rolling groove and is connected.
As the utility model discloses preferred, testing platform's surface is equipped with the air level.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model discloses a set up testing platform, the standing groove, T shape spout, the bracing piece, the diaphragm, first guide way, first direction slider, the sleeve, the telescopic link, a spring, detect the ball, slide bar and regulation leg, it puts into the standing groove through waiting to detect the work piece to have reached, make testing platform keep the horizontality through the rotation regulation leg, thereby improve the accuracy nature that detects, then can follow T shape spout and promote the bracing piece motion, through can follow the motion of first direction slider of first guide way promotion, thereby enlarge the detection range to the work piece, can improve the effect of examining the stability and the accuracy nature of time measuring simultaneously.
2. The utility model discloses a set up the support column, the board of drawing, the draw-in groove, the dead lever, solid fixed ring and drawing pen, can insert the draw-in groove internal fixation with the net paper, adjust and the net paper distance through the rotatory drawing pen simultaneously, after the ball that detects contacts with the work piece, promote bracing piece or sleeve and make the ball that detects remove, when the ball that detects passes through the concavo-convex department of work piece, the ball that detects reciprocates to drive the telescopic link, dead lever and drawing pen reciprocate, therefore the corrugated surface on the work piece represents the line segment that fluctuates on the net paper.
3. The utility model discloses a set up the shutoff board, can be through inserting the shutoff board, can prevent roll-off from the draw-in groove with the complete shutoff in both sides of draw-in groove from the net paper.
4. The utility model discloses a set up grip block and screw rod, can be through rotating the screw rod, with the work piece centre gripping of equidimension not in the standing groove, the stability of work piece when improving the detection improves and detects the precision.
5. The utility model discloses a set up second guide way and second direction slider, can restrict the slip direction of grip block, improve the sliding stability of grip block.
6. The utility model discloses a set up roll groove and ball, can make when ball and work piece contact and make the detection ball remove, the ball can with work piece rolling contact, make the frictional force between detection ball and the work piece reduce, the protection effect of the work piece of improvement.
7. The utility model discloses a set up the air level, can confirm whether detection platform is in horizontal position through the air level, further improved the accuracy nature that detects.
Drawings
Fig. 1 is a schematic structural diagram provided in an embodiment of the present invention;
fig. 2 is a left side view provided by an embodiment of the present invention;
fig. 3 isbase:Sub>A cross-sectional view taken along linebase:Sub>A-base:Sub>A of fig. 2 in accordance with an embodiment of the present invention;
fig. 4 is an enlarged view of a portion a in fig. 3 according to an embodiment of the present invention;
fig. 5 is a front view provided by the embodiment of the present invention;
fig. 6 is a cross-sectional view taken along line B-B of fig. 5 in accordance with an embodiment of the present invention;
fig. 7 is an enlarged view of a portion B in fig. 6 according to an embodiment of the present invention.
In the figure: 1. a detection platform; 2. a placement groove; 3. a T-shaped chute; 4. a support bar; 5. a transverse plate; 6. a first guide groove; 7. a first guide slider; 8. a sleeve; 9. a telescopic rod; 10. a spring; 11. detecting the ball; 12. a slide bar; 13. adjusting the legs; 14. a support pillar; 15. a drawing board; 16. a card slot; 17. a fixing rod; 18. a fixing ring; 19. a drawing pen; 20. a plugging plate; 21. a clamping plate; 22. a screw; 23. a second guide groove; 24. a second guide slider; 25. a rolling groove; 26. a ball bearing; 27. a level bubble.
Detailed Description
In order to further understand the contents, features and effects of the present invention, the following embodiments are illustrated and described in detail with reference to the accompanying drawings.
The structure of the present invention will be described in detail with reference to the accompanying drawings.
As shown in fig. 1 to 7, the embodiment of the utility model provides a building energy-saving engineering quality flatness detection device, including testing platform 1, locate the clamping part on testing platform 1 and locate the detection subassembly on testing platform 1, the detection subassembly is including offering standing groove 2 on testing platform 1, offering two T shape spouts 3 on testing platform 1, locating the inside bracing piece 4 of T shape spout 3, locating diaphragm 5 on bracing piece 4, locating the drawing part on diaphragm 5, offering first guide way 6 on diaphragm 5, locating the inside first guide block 7 of first guide way 6, locating the sleeve 8 of first guide block 7 bottom, locating the inside telescopic link 9 of sleeve 8, locating spring 10 between sleeve 8 and telescopic link 9, locating the terminal detection ball 11 of telescopic link 9, locating the inside a plurality of slide bars 12 of sleeve 8 and locating a plurality of regulation legs 13 of testing platform 1 bottom, regulation legs 13 and testing platform 1, telescopic link 9 is located sleeve 8 and with sleeve 8 sliding connection, the top of telescopic link 9 runs through 9 and with first slide bar 12 sliding connection 9, the slide bar sliding connection of first guide block 12 and the slide bar 6 is located the inside of T shape spout 3 and the spiro union of telescopic link 3, the slide block 3 is located the inside of sleeve 8 spiro union of sliding connection.
Referring to fig. 3 and 7, the drawing component includes two supporting columns 14 disposed on the horizontal plate 5, a drawing board 15 disposed on the supporting columns 14, a clamping groove 16 disposed on the drawing board 15, a fixing rod 17 disposed on the bottom surface of the telescopic rod 9, a fixing ring 18 disposed on the fixing rod 17, and a drawing pen 19 disposed on the fixing ring 18, the drawing pen 19 is screwed with the fixing ring 18, the clamping groove 16 penetrates through the drawing board 15, and the fixing rod 17 penetrates through the first guiding slider 7 and is slidably connected with the first guiding slider 7.
Adopt above-mentioned scheme: through setting up support column 14, depict board 15, draw-in groove 16, dead lever 17, solid fixed ring 18 and drawing pen 19, can insert the check box 16 internal fixation with the net paper, adjust and the distance between the net paper through rotatory drawing pen 19 simultaneously, after detecting ball 11 and work piece contact, promote bracing piece 4 or sleeve 8 and make and detect ball 11 and remove, when detecting ball 11 through the unsmooth department of work piece, it reciprocates to detect ball 11, thereby drive telescopic link 9, dead lever 17 reciprocates with drawing pen 19, consequently, the corrugated surface on the work piece shows the line segment that is undulant on the net paper.
Referring to fig. 7, two plugging plates 20 are provided at both ends of the card slot 16, and the plugging plates 20 are inserted into the drawing plate 15.
Adopt above-mentioned scheme: through setting up shutoff board 20, can be through inserting shutoff board 20, can block up the both sides of draw-in groove 16 completely, prevent that the net paper from following the roll-off in draw-in groove 16.
Referring to fig. 3, the clamping component includes a clamping plate 21 disposed on both sides of the placing groove 2 and a screw 22 disposed on the clamping plate 21, the screw 22 penetrates through the detection platform 1, the screw 22 is screwed with the detection platform 1, and the end of the screw 22 is rotatably connected with the clamping plate 21.
The scheme is adopted: through setting up grip block 21 and screw rod 22, can be through rotating screw rod 22, with the work piece centre gripping of equidimension not in standing groove 2, the stability of work piece when improving the detection improves and detects the precision.
Referring to fig. 3, a second guide groove 23 is formed in the bottom surface of the placing groove 2, two second guide sliders 24 are arranged inside the second guide groove 23, and both the second guide sliders 24 are slidably connected with the clamping plate 21.
Adopt above-mentioned scheme: by providing the second guide groove 23 and the second guide slider 24, the sliding direction of the chucking plate 21 can be restricted, and the sliding stability of the chucking plate 21 can be improved.
Referring to fig. 4, a rolling groove 25 is formed at the bottom of the detection ball 11, a ball 26 is disposed inside the rolling groove 25, and the ball 26 is in rolling connection with the rolling groove 25.
The scheme is adopted: by providing the rolling groove 25 and the ball 26, when the ball 26 is in contact with the workpiece and the detection ball 11 is moved, the ball 26 can be in rolling contact with the workpiece, so that the frictional force between the detection ball 11 and the workpiece is reduced, and the workpiece protection effect is improved.
Referring to fig. 1, the surface of the detection platform 1 is provided with a level bubble 27.
Adopt above-mentioned scheme: by arranging the level bubble 27, whether the detection platform 1 is in a horizontal position or not can be determined through the level bubble 27, and the detection accuracy is further improved.
The utility model discloses a theory of operation:
when the detection device is used, the adjusting legs 13 are firstly rotated, whether the detection platform 1 is in a horizontal position or not is determined through the air level 27, the adjustment is continuously carried out until the detection platform 1 keeps the horizontal position, so that the detection accuracy is improved, then the gridding paper is inserted into the clamping groove 16, then the plugging plate 20 is inserted, two sides of the clamping groove 16 can be completely plugged, the gridding paper is prevented from sliding out of the clamping groove 16, meanwhile, the distance between the gridding paper and the gridding paper is adjusted through the rotating drawing pen 19, then a workpiece to be detected is placed into the placing groove 2, workpieces with different sizes are clamped in the placing groove 2 through the rotating screw rod 22, the stability of the workpiece during detection is improved, the detection accuracy is improved, meanwhile, the detection ball 11 is in contact with the workpiece, then the supporting rod 4 is pushed to move along the T-shaped sliding groove 3, the first guide slider 7 can be pushed to move along the first guide groove 6, so that the detection range of the workpiece is expanded, when the detection ball 11 passes through the concave and convex parts of the workpiece, the detection ball 11 moves up and down, so that the telescopic rod 9, the fixing rod 17 and the drawing pen 19 move up and down, so that the concave and the concave-convex surfaces on the gridding paper are expressed as fluctuant line segments, the operation are improved, the stability and the accuracy of the detection accuracy and the detection accuracy of the detection time can be improved.
In summary, the following steps: this building energy saving engineering quality flatness detection device, through setting up testing platform 1, standing groove 2, T shape spout 3, bracing piece 4, diaphragm 5, first guide way 6, first direction slider 7, sleeve 8, telescopic link 9, spring 10, detection ball 11, slide bar 12, adjust leg 13, air level 27, hold assembly and drawing part, solved because lack the platform of placing the determinand, examining time measuring, can not guarantee whether the platform that the determinand locates levels, thereby make the detection precision of determinand roughness lower, the error is great, simultaneously because manual promotion gyro wheel, it is relatively poor to lead to measuring stability, produce the problem of great error easily.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a building energy saving engineering quality flatness detection device, includes testing platform (1), locates the clamping part on testing platform (1) and locates the determine module on testing platform (1), its characterized in that: the detection assembly comprises a placement groove (2) arranged on a detection platform (1), two T-shaped sliding grooves (3) arranged on the detection platform (1), a support rod (4) arranged inside the T-shaped sliding grooves (3), a transverse plate (5) arranged on the support rod (4), a drawing part arranged on the transverse plate (5), a first guide groove (6) arranged on the transverse plate (5), a first guide slider (7) arranged inside the first guide groove (6), a sleeve (8) arranged at the bottom of the first guide slider (7), a telescopic rod (9) arranged inside the sleeve (8), a spring (10) arranged between the sleeve (8) and the telescopic rod (9), a detection ball (11) arranged at the tail end of the telescopic rod (9), a plurality of sliding rods (12) arranged inside the sleeve (8) and a plurality of adjusting legs (13) arranged at the bottom of the detection platform (1), the adjusting legs (13) are in threaded connection with the detection platform (1), the telescopic rod (9) is arranged in the sleeve (8) and is in sliding connection with the sleeve (8), the top end of the sliding rod (9) penetrates through the first guide groove (6) and is connected with the T-shaped sliding groove (7), and the first guide slider (6) is connected with the T-shaped sliding groove (7), and the telescopic rod (6) 3) And (4) sliding connection.
2. The construction energy conservation project quality flatness detecting device of claim 1, characterized in that: the drawing part comprises two supporting columns (14) arranged on a transverse plate (5), a drawing plate (15) arranged on the supporting columns (14), a clamping groove (16) formed in the drawing plate (15), a fixing rod (17) arranged on the bottom surface of a telescopic rod (9), a fixing ring (18) arranged on the fixing rod (17) and a drawing pen (19) arranged on the fixing ring (18), wherein the drawing pen (19) is in threaded connection with the fixing ring (18), the clamping groove (16) penetrates through the drawing plate (15), and the fixing rod (17) penetrates through a first guide sliding block (7) and is in sliding connection with the first guide sliding block (7).
3. The construction energy conservation project quality flatness detecting apparatus as claimed in claim 2, wherein: two plugging plates (20) are arranged at two ends of the clamping groove (16), and the plugging plates (20) are connected with the describing plate (15) in an inserted mode.
4. The construction energy conservation project quality flatness detecting device of claim 1, characterized in that: the clamping component comprises clamping plates (21) arranged on two sides of the placing groove (2) and screw rods (22) arranged on the clamping plates (21), the screw rods (22) penetrate through the detection platform (1), the screw rods (22) are in threaded connection with the detection platform (1), and the tail ends of the screw rods (22) are rotatably connected with the clamping plates (21).
5. The construction energy conservation project quality flatness detecting device of claim 4, characterized in that: a second guide groove (23) is formed in the bottom face of the placing groove (2), two second guide sliding blocks (24) are arranged inside the second guide groove (23), and the two second guide sliding blocks (24) are connected with the clamping plate (21) in a sliding mode.
6. The construction energy conservation project quality flatness detecting device of claim 1, characterized in that: the bottom of the detection ball (11) is provided with a rolling groove (25), a rolling ball (26) is arranged in the rolling groove (25), and the rolling ball (26) is in rolling connection with the rolling groove (25).
7. The construction energy conservation project quality flatness detecting device of claim 1, characterized in that: the surface of the detection platform (1) is provided with a level bubble (27).
CN202221844089.6U 2022-07-18 2022-07-18 Building energy conservation engineering quality flatness detection device Active CN218864979U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221844089.6U CN218864979U (en) 2022-07-18 2022-07-18 Building energy conservation engineering quality flatness detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221844089.6U CN218864979U (en) 2022-07-18 2022-07-18 Building energy conservation engineering quality flatness detection device

Publications (1)

Publication Number Publication Date
CN218864979U true CN218864979U (en) 2023-04-14

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Application Number Title Priority Date Filing Date
CN202221844089.6U Active CN218864979U (en) 2022-07-18 2022-07-18 Building energy conservation engineering quality flatness detection device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117268238A (en) * 2023-11-23 2023-12-22 上海狄兹精密机械有限公司 Ball screw raceway measuring equipment and method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117268238A (en) * 2023-11-23 2023-12-22 上海狄兹精密机械有限公司 Ball screw raceway measuring equipment and method
CN117268238B (en) * 2023-11-23 2024-01-26 上海狄兹精密机械有限公司 Ball screw raceway measuring equipment and method

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