CN207779289U - A kind of positioning device of slab thickness detector - Google Patents

A kind of positioning device of slab thickness detector Download PDF

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Publication number
CN207779289U
CN207779289U CN201820125206.0U CN201820125206U CN207779289U CN 207779289 U CN207779289 U CN 207779289U CN 201820125206 U CN201820125206 U CN 201820125206U CN 207779289 U CN207779289 U CN 207779289U
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China
Prior art keywords
connecting rod
clamping plate
rod
slab thickness
positioning device
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CN201820125206.0U
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Chinese (zh)
Inventor
张岫文
林爱莲
黄莉根
谭鸿超
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Shenzhen Qinghua Court Engineering Structure Identification Co Ltd
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Shenzhen Qinghua Court Engineering Structure Identification Co Ltd
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Priority to CN201820125206.0U priority Critical patent/CN207779289U/en
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Abstract

The utility model discloses a kind of positioning devices of slab thickness detector, common thickness detector is solved when carrying out slab thickness test, operator's labor intensity is very big, and probe can be caused to shake the problem of causing the data measured to have error, its key points of the technical solution are that including:Probe body;Probe sleeve on the probe body, for being installed for probe body;Set on the probe body lower end, the connecting rod for adjusting the probe body height;And set on the connecting rod lower end, be used to support the support construction of connecting rod, reach that reduce operator's labor intensity, stability preferable, reduce the purpose of measurement error.

Description

A kind of positioning device of slab thickness detector
Technical field
The utility model is related to slab thickness detection field, more particularly to a kind of positioning device of slab thickness detector.
Background technology
Slab thickness detector is a kind of portable, for non-destructive testing concrete or other non-ferromagnetic dielectric thicknesses Measuring instrument, using electromagnetic field decay principle, in use, transmitting, receiving sensor to be individually positioned in two couple of tested component Survey face, emission sensor launch stable alternating electromagnetic field, and intensity decays with the increase of distance, the reception on host Sensor receives electromagnetic field, and according to the signal strength received, measures the thickness value of the components such as floor, wall, the prior art In slab thickness detector when detecting, a detection probe is lifted upwards by operator is adjacent to floor lower surface, Ling Yicao Another detection probe is held as member and is placed in floor upper surface, realizes and measures, however this measurement method makes operator's labour strong Degree is very big, and probe can be caused, which to shake, causes the data measured to have error, so needing a kind of positioning of high stability Detection probe is manually affixed on slab surfaces by device to substitute.
Utility model content
The purpose of this utility model is to provide a kind of positioning device of slab thickness detector, and having reduces operator's labour The advantages of intensity, stability are preferable, reduction measurement error.
The above-mentioned technical purpose of the utility model technical scheme is that:A kind of slab thickness detection The positioning device of instrument, including:Probe body;Probe sleeve on the probe body, for being installed for probe body;If In the probe body lower end, the connecting rod for adjusting the probe body height;And set on the connecting rod lower end, It is used to support the support construction of connecting rod.
By using above-mentioned technical proposal, when testing slab thickness, support construction is stood on ground, will be connected The height of bar is turned down, and then probe is installed in the probe sleeve of connecting rod upper end, then probe body and connecting rod are fixed, Connecting rod height is adjusted to the position for being close to floor after installation is complete by probe body, to measure slab thickness Work, reduces the labor intensity of operator, and support construction is supported probe body with connecting rod, and stability is preferable, from And be not easy to shake in measurement process, it avoids probe and shakes to reduce measurement error.
The further setting of the utility model, the connecting rod include head rod and are sheathed on head rod Second connecting rod, the head rod are equipped with external screw thread, and second connecting rod is equipped with the outer spiral shell with head rod Line realizes the internal thread being threadedly coupled.
By using above-mentioned technical proposal, head rod is connected through a screw thread with the second connecting rod, to the first connection Bar can stretch in the second connecting rod, to realize the adjusting to connecting rod height.
The further setting of the utility model, the connecting rod include head rod and are sheathed on head rod Second connecting rod, second connecting rod are equipped with nut, and the nut is equipped with the bolt being connected on head rod.
The bolt on nut is turned, is made after connecting rod height is adjusted to appropriate location by using above-mentioned technical proposal Bolt is connected on head rod, to make head rod be fixedly connected with the second connecting rod.
The further setting of the utility model, the head rod, which is equipped with, drives head rod in the second connecting rod The driving lever inside moved up and down, the head rod are equipped with storage tank and the snap ring in storage tank, and the driving lever is logical Snap ring is crossed to be fixedly connected on head rod.
By using above-mentioned technical proposal, stirring driving lever makes head rod rotation connect second to reach head rod The purpose stretched in extension bar, when adjusting, are more laborsaving, and operation is more convenient;Snap ring is mounted in storage tank so that driving lever drives When head rod rotates, snap ring is effectively avoided to be detached from head rod.
The further setting of the utility model, the support construction include being held on the clamping structure of the second connecting rod lower end And multiple supporting rods for being supported in ground to play a supportive role to clamping structure.
By using above-mentioned technical proposal, clamping structure by the second connecting rod fixed clamp, then by they sup-port in Ground is to achieve the purpose that connecting rod stands on ground so that the installation of connecting rod is relatively stable, avoids artificial support connecting rod, To reduce labor intensity.
The further setting of the utility model, the clamping structure include first clamping plate and second clamping plate, first folder The through-hole that the equal hollow out setting in the middle part of plate and second clamping plate and formation are housed for the second connecting rod, the first clamping plate and the second folder The latch to fit is equipped on plate, the first clamping plate, which is fixed with the latch in second clamping plate by bolt, nut, to be connected It connects.
By using above-mentioned technical proposal, the through-hole formed between first clamping plate and second clamping plate connects bar cramp by second It holds, increases the contact area of first clamping plate and second clamping plate and the second connecting rod, improve the peace of connecting rod and support construction Fill stability;First clamping plate is fixed with second clamping plate by bolt, the nut on latch so that connecting rod is tied with support Structure is fixed together, while being convenient for the dismounting between connecting rod and support construction.
The further setting of the utility model, the supporting rod are set as four and are distributed in the position at four angles of clamping structure Set place.
By using above-mentioned technical proposal, four supporting rods stand on first clamping plate and second clamping plate support on ground, compared with For stabilization.
The one side of the further setting of the utility model, the first clamping plate and second clamping plate close to second connecting rod Equipped with improved mat.
By using above-mentioned technical proposal, the second connecting rod is made to be not easy to slide between first clamping plate and second clamping plate It is dynamic, to improve the mounting stability between connecting rod and support construction.
In conclusion the utility model has the advantages that:
1. probe body is close to the position of floor, the work measured slab thickness is carried out, is reduced by will manually visit Head ontology is lifted to the labour of the high intensity caused by floor, and support construction is supported probe body with connecting rod, stability Preferably, it to be not easy to shake in measurement process, avoids probe and shakes to reduce measurement error;
2. clamping structure stands on ground in ground by the second connecting rod fixed clamp, by they sup-port to reach connecting rod The purpose in face so that the installation of connecting rod is relatively stable, artificial support connecting rod is avoided, to reduce labor intensity.
Description of the drawings
Fig. 1 is the overall structure diagram of embodiment 1;
Fig. 2 is the connection relationship diagram of connecting rod and support construction in embodiment 1;
Fig. 3 is the connection relationship diagram of the head rod and the second connecting rod in embodiment 2.
Reference numeral:1, probe body;2, probe sleeve;3, improved mat;4, connecting rod;41, head rod;411、 Driving lever;412, snap ring;413, storage tank;42, the second connecting rod;421, nut;422, bolt;5, support construction;51, knot is clamped Structure;511, first clamping plate;512, second clamping plate;513, latch;52, supporting rod.
Specific implementation mode
The utility model is described in further detail below in conjunction with attached drawing.
Embodiment 1:A kind of positioning device of slab thickness tester, as shown in Figure 1, including probe body 1, probe sleeve 2, connecting rod 4 and support construction 5, probe sleeve 2 are used to install for probe body 1, and connecting rod 4 is set to 1 lower end of probe body, uses In adjusting 1 height of probe body, support construction 5 is set to 4 lower end of connecting rod, is used to support connecting rod 4.
Connecting rod 4 includes head rod 41 and the second connecting rod 42 for being sheathed on 41 lower end of head rod, and first connects 41 lower end of extension bar is equipped with external screw thread, and 42 upper end of the second connecting rod, which is equipped with, to be realized with the external screw thread of head rod 41 and be threadedly coupled Internal thread, head rod 41 are connected through a screw thread with the second connecting rod 42, to which head rod 41 can be in the second connecting rod It stretches in 42, to realize the adjusting to 4 height of connecting rod.
Head rod 41 is equipped with the driving lever 411 for driving head rod 41 to stretch in the second connecting rod 42, in conjunction with Shown in Fig. 2, head rod 41 is equipped with storage tank 413 and the snap ring 412 in storage tank 413, driving lever 411 pass through card Ring 412 is fixedly connected on head rod 41, and stirring driving lever 411 makes the rotation of head rod 41 to reach head rod 41 The purpose stretched in the second connecting rod 42, when adjusting, are more laborsaving, and operation is more convenient;Snap ring 412 is mounted on storage tank 413 It is interior so that when driving lever 411 drives head rod 41 to rotate, snap ring 412 effectively to be avoided to be detached from head rod 41.
Support construction 5 include be held on 42 lower end of the second connecting rod clamping structure 51 and it is multiple be supported in ground with to folder The supporting rod 52 that locking structure 51 plays a supportive role, clamping structure 51 is by 42 fixed clamp of the second connecting rod, then passes through supporting rod 52 Ground is supported in achieve the purpose that connecting rod 4 stands on ground so that the installation of connecting rod 4 is relatively stable, avoids and manually helps Connecting rod 4 is held, to reduce labor intensity.
As shown in Fig. 2, supporting rod 52 is set as four and is distributed at the position at 51 4 angles of clamping structure, four supports Bar 52 stands on first clamping plate 511 and the support of second clamping plate 512 on ground, relatively stable.
Clamping structure 51 includes first clamping plate 511 and second clamping plate 512, the middle part of first clamping plate 511 and second clamping plate 512 Equal hollow out setting and the through-hole housed for the second connecting rod 42 is formed, first clamping plate 511 is affixed with being equipped in second clamping plate 512 The latch 513 of conjunction, first clamping plate 511, which is fixed with the latch 513 in second clamping plate 512 by bolt 422, nut 421, to be connected It connects.
Second connecting rod 42 is clamped the through-hole formed between first clamping plate 511 and second clamping plate 512, increases the first folder The contact area of plate 511 and second clamping plate 512 and the second connecting rod 42, improves connecting rod 4 and the installation of support construction 5 is stablized Property;First clamping plate 511 is fixed with second clamping plate 512 by bolt 422, the nut 421 on latch 513 so that connection Bar 4 is fixed together with support construction 5, while being convenient for the dismounting between connecting rod 4 and support construction 5.
First clamping plate 511 and second clamping plate 512 are equipped with improved mat 3 close to the one side of the second connecting rod 42, make the second company Extension bar 42 is not easy to slide between first clamping plate 511 and second clamping plate 512, to improve connecting rod 4 and support construction 5 Between mounting stability.
Test process:When testing slab thickness, support construction 5 is stood on ground, by the height tune of connecting rod 4 It is low, then probe is installed in the probe sleeve 2 of 4 upper end of connecting rod, then probe body 1 and connecting rod 4 are fixed, probe is originally 4 height of connecting rod is adjusted to the position for being close to floor by body 1 after installation is complete, to carry out the work measured slab thickness Make, reduces by manually lifting probe body 1 to the labour of the high intensity caused by floor, support construction 5 is with connecting rod 4 to visiting Head ontology 1 is supported, and stability is preferable, to being not easy to shake in measurement process, avoid probe shake to Reduce measurement error.
Embodiment 2:A kind of positioning device of slab thickness tester, difference from Example 1 be, as shown in figure 3, Connecting rod 4 is close including head rod 41 and the second connecting rod 42 being sheathed on head rod 41, the second connecting rod 42 One end of head rod 41 is equipped with nut 421, and nut 421 is equipped with the bolt 422 being connected on head rod 41.
After 4 height of connecting rod is adjusted to appropriate location, the bolt 422 on nut 421 is turned, bolt 422 is made to be connected to On head rod 41, to make head rod 41 be fixedly connected with the second connecting rod 42.
This specific embodiment is only the explanation to the utility model, is not limitations of the present invention, ability Field technique personnel can as needed make the present embodiment the modification of not creative contribution after reading this specification, but As long as all being protected by Patent Law in the right of the utility model.

Claims (8)

1. a kind of positioning device of slab thickness detector, which is characterized in that including:
Probe body (1);
Probe sleeve (2) on the probe body (1), for being installed for probe body (1);
Set on the probe body (1) lower end, the connecting rod (4) for adjusting the probe body (1) height;And
Set on the connecting rod (4) lower end, it is used to support the support constructions (5) of connecting rod (4).
2. a kind of positioning device of slab thickness detector according to claim 1, which is characterized in that the connecting rod (4) include head rod (41) and the second connecting rod (42) being sheathed on head rod (41), the head rod (41) it is equipped with external screw thread, second connecting rod (42) is equipped with to be threadedly coupled with the realization of the external screw thread of head rod (41) Internal thread.
3. a kind of positioning device of slab thickness detector according to claim 1, which is characterized in that the connecting rod (4) include head rod (41) and the second connecting rod (42) being sheathed on head rod (41), second connecting rod (42) it is equipped with nut (421), the nut (421) is equipped with the bolt (422) being connected on head rod (41).
4. a kind of positioning device of slab thickness detector according to claim 2, which is characterized in that first connection Bar (41) is equipped with the driving lever (411) for driving head rod (41) to stretch in the second connecting rod (42), first connection Bar (41) is equipped with storage tank (413) and the snap ring (412) in storage tank (413), the driving lever (411) pass through snap ring (412) it is fixedly connected on head rod (41).
5. a kind of positioning device of slab thickness detector according to claim 2, which is characterized in that the support construction (5) include be held on the second connecting rod (42) lower end clamping structure (51) and multiple ground that are supported in to clamping structure (51) The supporting rod (52) to play a supportive role.
6. a kind of positioning device of slab thickness detector according to claim 5, which is characterized in that the clamping structure (51) include first clamping plate (511) and second clamping plate (512), the middle part of the first clamping plate (511) and second clamping plate (512) is equal In the through-hole that hollow out is arranged and formation is housed for the second connecting rod (42), the first clamping plate (511) and second clamping plate (512) Equipped with the latch (513) to fit, the first clamping plate (511) passes through spiral shell with the latch (513) in second clamping plate (512) Bolt (422), nut (421) are fixedly connected.
7. a kind of positioning device of slab thickness detector according to claim 5, which is characterized in that the supporting rod (52) four are set as and is distributed at the position at (51) four angles of clamping structure.
8. a kind of positioning device of slab thickness detector according to claim 6, which is characterized in that the first clamping plate (511) and second clamping plate (512) is equipped with improved mat (3) close to the one side of second connecting rod (42).
CN201820125206.0U 2018-01-24 2018-01-24 A kind of positioning device of slab thickness detector Active CN207779289U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820125206.0U CN207779289U (en) 2018-01-24 2018-01-24 A kind of positioning device of slab thickness detector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820125206.0U CN207779289U (en) 2018-01-24 2018-01-24 A kind of positioning device of slab thickness detector

Publications (1)

Publication Number Publication Date
CN207779289U true CN207779289U (en) 2018-08-28

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Application Number Title Priority Date Filing Date
CN201820125206.0U Active CN207779289U (en) 2018-01-24 2018-01-24 A kind of positioning device of slab thickness detector

Country Status (1)

Country Link
CN (1) CN207779289U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110540061A (en) * 2019-08-15 2019-12-06 广东嘉仪仪器集团有限公司 full-automatic comprehensive detector for tank front end size

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110540061A (en) * 2019-08-15 2019-12-06 广东嘉仪仪器集团有限公司 full-automatic comprehensive detector for tank front end size

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