CN212964780U - Many balls hollowing detector convenient to measure high wall of building - Google Patents

Many balls hollowing detector convenient to measure high wall of building Download PDF

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Publication number
CN212964780U
CN212964780U CN202021813355.XU CN202021813355U CN212964780U CN 212964780 U CN212964780 U CN 212964780U CN 202021813355 U CN202021813355 U CN 202021813355U CN 212964780 U CN212964780 U CN 212964780U
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China
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control box
screw rod
detector
bracing piece
bevel gear
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CN202021813355.XU
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Chinese (zh)
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董新霞
张玉霞
韩立民
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Shenzhen Guoyuan Land Real Estate Assets Appraisal Co ltd
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Shenzhen Guoyuan Land Real Estate Assets Appraisal Co ltd
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Abstract

The utility model relates to a building engineering check out test set technical field, more specifically say, it relates to a many balls hollows detector convenient to measure high wall of building, and its technical scheme main points are: including the detector body, the detector body includes the casing and connects in the bracing piece of casing bottom, a plurality of long waist holes have been seted up to one side of casing, can stretch out in the long waist hole and be provided with the batting, the bracing piece bottom is stretched out and is provided with the actuating lever, the bottom of bracing piece still is provided with the motor, the output shaft and the actuating lever of motor are connected, the bracing piece is provided with the control box, the bar mouth has been seted up to the control box, it is provided with coupling assembling to slide in the bar mouth, be provided with the elevation structure who drives coupling assembling and go up and down in the control box, coupling assembling is connected with the subassembly that grips, the utility model discloses a many balls hollows detector convenient to.

Description

Many balls hollowing detector convenient to measure high wall of building
Technical Field
The utility model belongs to the technical field of building engineering check out test set technique and specifically relates to a many balls hollowing detector convenient to measure high wall of building.
Background
In the building field, along with the improvement of the design standard of a building, the outer surface and the ground of the building are decorated by stone or ceramic tiles, due to the reasons of building materials and construction quality, the ceramic tiles are often pasted with the wall surface and the ground difficultly to form hollowing, air in the hollowing is affected by expansion with heat and contraction with cold, and the ceramic tiles can burst or fall off. In addition, the empty drum can be formed under the condition that the plastering of the wall substrate is not processed as required or the substrate garbage is not cleaned up. The common hollowing detection method is that the hand-held small hammer knocks the part to be detected one by one, and the general sound of the hollow part is stuffy, so that the detection method is time-consuming and labor-consuming and has low efficiency.
The current chinese patent that the bulletin number is CN207601022U of granting proposes a multisphere hollowing detector convenient to measure high wall of building, including the bracing piece, set up in the casing that upper end of the support bar and cavity set up and be used for knocking the ball of wall, casing horizontal interval has seted up a plurality ofly and the inside communicating long waist hole of casing, the equal activity of a plurality of long waist holes is pegged graft and is had the knocking rod that extends the casing outside, every knocking rod end connection strikes the ball, the inside interval of casing rotates and is connected with a plurality of drive gear, a plurality of knocking rods rotate respectively and connect in drive gear lateral wall edge, the inside a plurality of drive gear pivoted drive assembly of sequence drive that is provided with of casing, the utility model discloses a multisphere hollowing detector convenient to measure high wall of building has the effect that improves detection efficiency.
However, when it is necessary to detect whether there is a hollowing in a higher position of the building wall surface, there is a case where it is inconvenient to detect using the above detector.
SUMMERY OF THE UTILITY MODEL
In order to facilitate carrying out the detection of hollowing to the higher position of building wall, this application provides a many balls hollowing detector convenient to measure high wall of building.
The application provides a many balls empty drum detector convenient to measure high wall of building adopts following technical scheme:
a multi-ball hollowing detector convenient for measuring a high wall surface of a building comprises a detector body, wherein the detector body comprises a shell and a support rod connected to the bottom of the shell, a plurality of long waist holes are formed in one side of the shell, knocking balls are arranged in the long waist holes in an extensible mode, a drive rod is arranged at the bottom of the support rod in an extensible mode, a motor is further arranged at the bottom of the support rod, and an output shaft of the motor is connected with the drive rod;
the one side that the bracing piece deviates from long waist hole is provided with the control box, the bar mouth has been seted up to the one side that the control box deviates from the bracing piece, the length direction of bar mouth is parallel with the length direction of bracing piece, it is provided with coupling assembling to slide in the bar mouth, be provided with the elevation structure that drives coupling assembling and go up and down in the control box, coupling assembling is connected with the subassembly that grips.
Through adopting above-mentioned technical scheme, utilize motor drive detector body to strike work, when the higher position that needs detected building wall had the hollowing, utilize control box control connection subassembly to descend to the drive holds the subassembly and descends, thereby makes the distance of the casing of holding subassembly and detector body elongate, and then makes people can be convenient for carry out the hollowing and detect to building wall's higher position under the condition of holding the detector body.
Preferably, elevation structure includes first screw rod and first spiral shell piece, set up the cavity that is the rectangle in the control box, first screw rod rotates and sets up in the cavity, the axis of first screw rod is parallel with vertical direction, the vertical setting that slides of first spiral shell piece is in the cavity, first spiral shell piece and first screw rod threaded connection, first spiral shell piece is connected with coupling assembling.
Through adopting above-mentioned technical scheme, when first screw rod rotated, the cavity in the control box was gone up and down with first spiral shell piece of first screw rod threaded connection, and first spiral shell piece drives coupling assembling and goes up and down in the bar mouth to the drive grips the subassembly and goes up and down, grips the distance between the casing of subassembly and detector body with the adjustment.
Preferably, the side wall of the control box is rotatably provided with a screwing block, and a transmission structure is arranged between the screwing block and the first screw rod.
Through adopting above-mentioned technical scheme, the piece of twisting that sets up at the control box lateral wall is convenient for people to control the rotation of the interior first screw rod of control box.
Preferably, the transmission structure protects a first bevel gear, a second bevel gear and a transmission shaft, the transmission shaft penetrates through the side wall of the control box and is rotatably arranged on the side wall of the control box, the twisting block is connected to the outer end of the transmission shaft, the first bevel gear is connected to the inner end of the transmission shaft, the twisting block, the transmission shaft and the first bevel gear rotate coaxially, the second bevel gear is coaxially arranged on the first screw rod, and the first bevel gear is meshed with the second bevel gear.
Through adopting above-mentioned technical scheme, when twisting and moving and twist the piece, twist the piece and drive first bevel gear through the transmission shaft and rotate, first bevel gear drives the second bevel gear rather than the meshing and rotates for first screw rod rotates, thereby realizes twisting the piece and drive first screw rod pivoted process.
Preferably, the lower extreme lateral wall of bracing piece is connected with the platform of placing that is used for placing the motor, place the platform and include a first diaphragm and two risers, the first diaphragm transversely sets up, and two risers are equal vertical setting at the top of first diaphragm, and two risers intervals set up, the motor supports on the first diaphragm, two relative lateral walls of bracing piece lower extreme are connected with two risers respectively.
Through adopting above-mentioned technical scheme, the platform of placing that comprises first diaphragm and first riser makes the motor stably set up in the below of bracing piece to make this detector of motor stable drive work.
Preferably, the subassembly that grips includes second riser and two second diaphragms, the vertical setting of second riser, the subassembly that grips is connected with the control box through the second riser, two the equal level of second diaphragm sets up on the face that the second riser deviates from the control box, two the second diaphragm interval sets up, two be connected with the handle between the second diaphragm, the length direction and the vertical direction of handle are parallel.
By adopting the technical scheme, when the detector is used, after the distance between the holding assembly and the shell is adjusted, people can use the detector conveniently by holding the grip.
Preferably, the handle sleeve is provided with a rubber sleeve.
Through adopting above-mentioned technical scheme, the setting of rubber sleeve can avoid people easily to slide the hand when holding the handle.
Preferably, coupling assembling is including sliding the second screw rod that sets up the slider in the bar mouth and connect and deviate from first screw rod one end at the slider, second screw rod threaded connection has the second spiral shell piece, the slider passes through second screw rod and second spiral shell piece and is connected with the second riser.
Through adopting above-mentioned technical scheme for first spiral shell piece with hold the subassembly and be connected steadily, thereby make the subassembly that holds follow elevation structure and go up and down, so that the control holds the distance between subassembly and the casing.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the motor is used for driving the detector body to knock, when whether hollowing exists at the higher position of the building wall surface needs to be detected, the control box is used for controlling the connecting assembly to descend so as to drive the holding assembly to descend, so that the distance between the holding assembly and the shell of the detector body is prolonged, and people can conveniently detect the hollowing at the higher position of the building wall surface under the condition of holding the detector body;
2. when the first screw rod rotates, a first screw block in threaded connection with the first screw rod is lifted in a cavity in the control box, and the first screw block drives the connecting assembly to lift in the strip-shaped opening, so that the holding assembly is driven to lift, and the distance between the holding assembly and the shell of the detector body is adjusted;
3. when the detector is used, after the distance between the holding assembly and the shell is adjusted, people can use the detector conveniently by holding the grip.
Drawings
FIG. 1 is an overall schematic diagram of a detector in an embodiment of the present application;
FIG. 2 is a partial structural sectional view of a detector in the embodiment of the present application
Figure 3 is a schematic structural diagram of a transmission structure in the embodiment of the application,
description of reference numerals: 1. a detector body; 11. a housing; 12. a support bar; 13. a long waist hole; 14. knocking and hitting the ball; 15. a drive rod; 16. a motor; 2. a placing table; 21. a first transverse plate; 22. a first vertical plate; 3. a control box; 31. a strip-shaped opening; 32. twisting the block; 4. a lifting structure; 41. a first screw; 42. a first screw block; 5. a transmission structure; 51. a first bevel gear; 52. a second bevel gear; 53. a drive shaft; 6. a connecting assembly; 61. a slider; 62. a second screw; 63. a second screw block; 7. a gripping assembly; 71. a second vertical plate; 72. a second transverse plate; 73. a grip; 74. a rubber sleeve.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses many balls hollowing detector convenient to measure high wall of building. Referring to fig. 1, the multi-ball hollowing detector convenient for measuring the high wall surface of a building comprises a detector body 1, the detector body 1 comprises a shell 11 and a support rod 12 connected to the bottom of the shell 11, one side of the shell 11 is provided with a plurality of long waist holes 13, knocking balls 14 are arranged in the long waist holes 13 in a stretching mode, a drive rod 15 is arranged at the bottom of the support rod 12 in a stretching mode, a motor 16 is further arranged at the bottom of the support rod 12, an output shaft of the motor 16 is connected with the drive rod 15, and when the motor 16 works, the detector body 1 is started. The lower extreme lateral wall of bracing piece 12 is connected with the platform 2 of placing that is used for placing motor 16, place platform 2 and include a first diaphragm 21 and two risers 22, first diaphragm 21 and riser 22 all are rectangular plate-like, wherein, first diaphragm 21 transversely sets up, two equal vertical settings of riser 22 are at the top of first diaphragm 21, two risers 22 intervals set up, make and place platform 2 and be the spill, motor 16 sets up on first diaphragm 21, two relative lateral walls of bracing piece 12 lower extreme respectively with two riser 22 fixed connection, place platform 2 by what first diaphragm 21 and riser 22 formed makes motor 16 stably set up in the below of bracing piece 12, thereby make this detector work of motor 16 stable drive.
Referring to fig. 1 and 2, the one side that bracing piece 12 deviates from long waist hole 13 is provided with control box 3, and control box 3 is the rectangle boxlike, and bar mouth 31 has been seted up to the one side that control box 3 deviates from bracing piece 12, and bar mouth 31 is the rectangle mouth, and the length direction of bar mouth 31 is parallel with the length direction of bracing piece 12. Further, the bar-shaped opening 31 is internally provided with a connecting assembly 6 in a sliding manner, the connecting assembly 6 is connected with a holding assembly 7, the holding assembly 7 is positioned outside the control box 3, a rectangular cavity is formed in the control box 3, and a lifting structure 4 for driving the connecting assembly 6 to lift is arranged in the cavity of the control box 3.
Referring to fig. 1 and 2, the lifting structure 4 includes a first screw rod 41 and a first screw block 42, the first screw rod 41 is rotatably disposed in the cavity, the axis of the first screw rod 41 is parallel to the vertical direction, the first screw block 42 is vertically slidably disposed in the cavity, specifically, the first screw block 42 is rectangular block-shaped, the side wall of the first screw block 42 is attached to the inner wall of the control box 3, and therefore the cavity of the first screw block 42 in the control box 3 is vertically slidably disposed. First spiral shell piece 42 and first screw rod 41 threaded connection, elevation structure 4 is connected with coupling assembling 6 through first spiral shell piece 42, when first screw rod 41 rotated, the cavity with first spiral shell piece 42 of first screw rod 41 threaded connection in control box 3 goes up and down, first spiral shell piece 42 drives coupling assembling 6 and goes up and down in bar mouth 31 to the drive grips the subassembly 7 lift with coupling assembling 6 is connected, with the adjustment grip the subassembly 7 and the distance between the casing 11 of detector body 1.
Referring to fig. 1 to 3, the side wall of the control box 3 is rotatably provided with a screwing block 32, a transmission structure 5 is arranged between the screwing block 32 and the first screw rod 41, specifically, the screwing block 32 is in a circular block shape, and the rotation of the first screw rod 41 in the control box 3 is conveniently controlled by people due to the screwing block 32. The transmission structure 5 protects the first bevel gear 51, the second bevel gear 52 and the transmission shaft 53, the transmission shaft 53 penetrates through the side wall of the control box 3 and is rotatably arranged on the side wall of the control box 3, the twisting block 32 is fixedly connected to the outer end of the transmission shaft 53, the first bevel gear 51 is fixedly connected to the inner end of the transmission shaft 53, the twisting block 32, the transmission shaft 53 and the first bevel gear 51 rotate coaxially, the second bevel gear 52 is coaxially arranged on the first screw rod 41, and the first bevel gear 51 is meshed with the second bevel gear 52. When the screwing block 32 is screwed, the screwing block 32 drives the first bevel gear 51 to rotate through the transmission shaft 53, and the first bevel gear 51 drives the second bevel gear 52 engaged with the first bevel gear to rotate, so that the first screw rod 41 rotates, and the process that the screwing block 32 drives the first screw rod 41 to rotate is realized.
Referring to fig. 1 and 2, the connecting assembly 6 includes a sliding block 61 slidably disposed in the bar-shaped opening 31 and a second screw 62 connected to one end of the sliding block 61 away from the first screw 41, the second screw 62 is in threaded connection with a second screw 63, the second screw 63 is in a circular block shape, the sliding block 61 is connected with the holding assembly 7 through the second screw 62 and the second screw 63, and by the above structure, the first screw 42 is stably connected with the holding assembly 7, so that the holding assembly 7 goes up and down along with the lifting structure 4, and the distance between the holding assembly 7 and the housing 11 is controlled.
Referring to fig. 1, the holding assembly 7 includes a second vertical plate 71 and two second transverse plates 72, the second vertical plate 71 and the second transverse plates 72 are both rectangular plate-shaped, the second vertical plate 71 is vertically disposed, a through hole for the second screw 62 to pass through is formed in the second vertical plate 71, and the second screw 62 is in threaded connection with the second screw 63 after passing through the through hole. The two second transverse plates 72 are horizontally arranged on the surface of the second vertical plate 71 departing from the control box 3, and the two second transverse plates 72 are arranged at intervals, so that the second vertical plate 71 and the two second transverse plates 72 are in a concave shape. A handle 73 is connected between the two second transverse plates 72, the handle 73 is in a shape of a cylindrical rod, and the handle 73 is fixedly connected with the two second transverse plates 72 through two ends of the handle 73, so that the length direction of the handle 73 is parallel to the vertical direction. When the detector is used, a person can use the detector conveniently by holding the grip 73 after adjusting the distance between the grip member 7 and the housing 11. Further, the grip 73 is sleeved with a rubber sleeve 74, and the rubber sleeve 74 is arranged to prevent a user from easily slipping his hand when holding the grip 73.
The implementation principle of the multi-ball hollowing detector convenient for measuring the high wall surface of the building is as follows: utilize 16 drive detector bodies of motor 1 to strike work, when the higher position that needs detected building wall had the hollowing, utilize control box 3 control connection subassembly 6 to descend to the drive holds the decline of subassembly 7, thereby makes the distance of holding subassembly 7 and detector body 1's casing 11 elongate, and then makes people can be convenient for carry out the hollowing detection to building wall's higher position under the condition of holding detector body 1.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a many balls hollowing detector convenient to measure high wall of building which characterized in that: the detector comprises a detector body (1), wherein the detector body (1) comprises a shell (11) and a support rod (12) connected to the bottom of the shell (11), one side of the shell (11) is provided with a plurality of long waist holes (13), knocking balls (14) are arranged in the long waist holes (13) in a stretching mode, a drive rod (15) is arranged at the bottom of the support rod (12) in a stretching mode, a motor (16) is further arranged at the bottom of the support rod (12), and an output shaft of the motor (16) is connected with the drive rod (15);
the one side that bracing piece (12) deviate from long waist hole (13) is provided with control box (3), bar mouth (31) have been seted up to the one side that control box (3) deviate from bracing piece (12), the length direction of bar mouth (31) is parallel with the length direction of bracing piece (12), the bar mouth (31) internal slipping is provided with coupling assembling (6), be provided with in control box (3) and drive elevation structure (4) that coupling assembling (6) go up and down, coupling assembling (6) are connected with grips subassembly (7).
2. The multi-spherical hollowing detector for facilitating measurement of high wall surfaces of buildings according to claim 1, wherein: elevation structure (4) include first screw rod (41) and first spiral shell piece (42), seted up in control box (3) and be the cavity of rectangle, first screw rod (41) rotate the setting in the cavity, the axis of first screw rod (41) is parallel with vertical direction, vertical the sliding setting in the cavity of first spiral shell piece (42), first spiral shell piece (42) and first screw rod (41) threaded connection, first spiral shell piece (42) are connected with coupling assembling (6).
3. The multi-spherical hollowing detector convenient for measuring the high wall surface of a building according to claim 2, wherein: the side wall of the control box (3) is rotatably provided with a screwing block (32), and a transmission structure (5) is arranged between the screwing block (32) and the first screw rod (41).
4. The multi-spherical hollowing detector convenient for measuring the high wall surface of a building according to claim 3, wherein: the transmission structure (5) protects a first bevel gear (51), a second bevel gear (52) and a transmission shaft (53), the transmission shaft (53) penetrates through the side wall of the control box (3) and is rotatably arranged on the side wall of the control box (3), the screwing block (32) is connected to the outer end of the transmission shaft (53), the first bevel gear (51) is connected to the inner end of the transmission shaft (53), the screwing block (32), the transmission shaft (53) and the first bevel gear (51) rotate coaxially, the second bevel gear (52) is coaxially arranged on the first screw rod (41), and the first bevel gear (51) is meshed with the second bevel gear (52).
5. The multi-spherical hollowing detector convenient for measuring the high wall surface of a building according to claim 4, wherein: the utility model discloses a motor support, including bracing piece (12), place platform (2) and two first risers (22), the lower extreme lateral wall of bracing piece (12) is connected with the platform of placing (2) that is used for placing motor (16), place platform (2) including a first diaphragm (21) and two first risers (22), first diaphragm (21) transversely sets up, and two equal vertical settings of first riser (22) are at the top of first diaphragm (21), and two first risers (22) interval sets up, motor (16) support is on first diaphragm (21), two relative lateral walls of bracing piece (12) lower extreme are connected with two first risers (22) respectively.
6. The multi-spherical hollowing detector for facilitating measurement of high wall surfaces of buildings according to claim 5, wherein: the utility model discloses a control box, it includes that the subassembly (7) that grips includes second riser (71) and two second diaphragms (72), the vertical setting of second riser (71), the subassembly (7) that grips is connected, two through second riser (71) and control box (3) the equal level setting of second diaphragm (72) is two on second riser (71) face that deviates from control box (3) second diaphragm (72) interval sets up, two be connected with handle (73) between second diaphragm (72), the length direction of handle (73) is parallel with vertical direction.
7. The multi-spherical hollowing detector for facilitating measurement of high wall surfaces of buildings according to claim 6, wherein: the grip (73) is sleeved with a rubber sleeve (74).
8. The multi-spherical hollowing detector for facilitating measurement of high wall surfaces of buildings according to claim 7, wherein: coupling assembling (6) including slide slider (61) of setting in strip mouth (31) and connect second screw rod (62) that deviates from first screw rod (41) one end in slider (61), second screw rod (62) threaded connection has second spiral shell piece (63), slider (61) are connected with second riser (71) through second screw rod (62) and second spiral shell piece (63).
CN202021813355.XU 2020-08-24 2020-08-24 Many balls hollowing detector convenient to measure high wall of building Active CN212964780U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021813355.XU CN212964780U (en) 2020-08-24 2020-08-24 Many balls hollowing detector convenient to measure high wall of building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021813355.XU CN212964780U (en) 2020-08-24 2020-08-24 Many balls hollowing detector convenient to measure high wall of building

Publications (1)

Publication Number Publication Date
CN212964780U true CN212964780U (en) 2021-04-13

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CN202021813355.XU Active CN212964780U (en) 2020-08-24 2020-08-24 Many balls hollowing detector convenient to measure high wall of building

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