CN206497080U - A kind of supersonic wave test instrument probe fixing device - Google Patents
A kind of supersonic wave test instrument probe fixing device Download PDFInfo
- Publication number
- CN206497080U CN206497080U CN201720206504.8U CN201720206504U CN206497080U CN 206497080 U CN206497080 U CN 206497080U CN 201720206504 U CN201720206504 U CN 201720206504U CN 206497080 U CN206497080 U CN 206497080U
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- Prior art keywords
- pole
- fix bar
- bar
- test instrument
- fixing device
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- Investigating Or Analyzing Materials By The Use Of Ultrasonic Waves (AREA)
Abstract
The utility model discloses a kind of supersonic wave test instrument probe fixing device, solve supersonic wave test instrument probe when put down survey and be difficult to fix, the problem of easily influence detects data.Technical scheme is a kind of supersonic wave test instrument probe fixing device, including fix bar and fixture, the fixture is provided with two and is respectively fixedly connected with the two ends of the fix bar, the fix bar includes pole one and pole two, the boring of the pole one and pole two is socketed in the pole one, sidewall thread of the pole one close to described one end of pole two is connected with fitting, and the fitting is connected to the pole two.The utility model is rational in infrastructure, the probe of tester can be fixed and the distance after the probe fixation of controllable two.
Description
Technical field
The utility model is related to a kind of fixing device, more particularly to a kind of supersonic wave test instrument probe fixing device.
Background technology
Supersonic wave test instrument is used to test in concrete, rock, marble and the propagation in other nonmetallic materials it is vertical
Propagation time and speed to ultrasonic wave, counted by these, be capable of the intensity and quality of assessment material and structure.
As shown in figure 3, supersonic wave test instrument has two probes 1, by calculating nonmetallic materials after the detection of probe 1
The propagation time of interior longitudinal ultrasonic ripple and speed, then by these numerical value, are capable of the intensity and quality of assessment material and structure.
Above-mentioned prior art, when applicable evaluation and test method is tested, two probes should not be fixed, the fixed uneven meeting of two probes
Influence detection data.
Utility model content
The purpose of this utility model is to provide a kind of supersonic wave test instrument probe fixing device, and supersonic wave test instrument is carried out
Flat two probes to be fixed when surveying, reaching to be easy to fix probe makes the more accurate effect of detection data.
Above-mentioned technical purpose of the present utility model technical scheme is that:A kind of supersonic wave test instrument
Probe fixing device, including fix bar and fixture, the fixture is provided with two and is respectively fixedly connected with the fix bar
Two ends, the fix bar includes pole one and pole two, and the boring of pole one and the pole two are socketed in described
In pole one, sidewall thread of the pole one close to described one end of pole two is connected with fitting, and the fitting is connected to
The pole two.
By using such scheme, a kind of supersonic wave test instrument probe fixing device is set to include fix bar and fixation
Part, fixture is respectively fixedly connected with the two ends of fix bar provided with two, and fix bar is divided into pole one and pole two, and pole two
It is socketed in the pole one of boring, then can be socketed according to the actual conditions adjustment pole two during measurement in pole one
Length is so as to adjust the length that fix bar is overall, and probe is fixed again for the fixture at fix bar two ends, reaches two spies of adjustment
The effect of detecting distance between head, and the side wall in pole one close to the one end of pole two set fitting be threadedly connected to pole one,
Pole two is connected to, after the entire length of fix bar is adjusted, progress on pole two can be connected to by rotating fitting
It is fixed, prevent that occurring relative slide between pole one and pole two again changes the distance between fix bar two ends probe.
The utility model is further arranged to:The fixture is two parallel elastic webbings, the two ends of the elastic webbing
It is fixedly connected on the side wall of described fix bar one end.
By using such scheme, fixture is set to two parallel elastic webbings, and the two ends of elastic webbing are fixedly connected on
The side wall of fix bar one end, elastic webbing is set to be shorter than the diameter of probe, and when probe is fixed, tensile elasticity band is right
Probe is put into two elastic webbings afterwards, when elastic webbing is socketed on probe outer wall, the elastic force that elastic webbing is carried can be solid by probe
Surely be connected in fix bar, by the way of elastic webbing is fixed relatively simple convenience and can to it is different size of probe be consolidated
It is fixed.
The utility model is further arranged to:The both ends of the surface of the fix bar are provided with deep-slotted chip breaker, and the axle of the deep-slotted chip breaker
To direction perpendicular to rectilinear direction formed by the tie point of the elastic webbing two ends.
By using such scheme, fix bar both ends of the surface are provided with deep-slotted chip breaker, and the axial direction of deep-slotted chip breaker is perpendicular to elastic webbing
Rectilinear direction formed by the tie point of two ends, then pop one's head in after being fixed by elastic webbing, and probe can be stuck in limitation in deep-slotted chip breaker and visit
Head swings, therefore sets deep-slotted chip breaker to reach that fixed probe avoids popping one's head in the effect of influence detection of shifting.
The utility model is further arranged to:The centre position of the elastic webbing is fixedly connected with the fixation of elastomeric material
Pad.
By using such scheme, the fixed pad of elastomeric material is fixed in the centre position of elastic webbing, then elastic webbing is solid
Pad is fixed when popping one's head in surely can be fitted in detecting head surface, and the coefficient of friction between the fixed pad and probe of elastomeric material is larger, so that
It can limit to pop one's head in move up and down after being held by the elastomeric band and detection is impacted.
The utility model is further arranged to:The homonymy two ends of the fix bar are additionally provided with supporting mechanism, the support machine
Structure includes support bar, sliding component and slide bar, and the sliding component is slidably connected to the slide bar, and the support bar is connected to the cunning
Move part.
By using such scheme, supporting mechanism is set at the homonymy two ends of fix bar, supporting mechanism includes support bar, cunning
Part and slide bar are moved, sliding component is slidably connected to slide bar, and support bar is connected to sliding component, therefore support bar can be by sliding component in cunning
The enterprising line slip adjustment of bar, the support bar collective effect at fix bar two ends can be that fix bar and probe are supported fixed raising
Overall endurance.
The utility model is further arranged to:The two ends of the fix bar are provided with along the axially arranged sensing court of the fix bar
Outer T-slot, the axis perpendicular of the axle center of the T-slot and the deep-slotted chip breaker, the slide bar is located in the T-slot and along institute
State that T-slot is axially arranged there are two, the sliding component and the support bar are also correspondingly arranged on two and two.
By using such scheme, set at the two ends of fix bar along the axially arranged outwardly directed T-slot of fix bar, T
The axle center of type groove and deep-slotted chip breaker axis perpendicular, slide bar are axially arranged along T-slot provided with two, and sliding component and support bar are correspondingly arranged
There are two and two, then two support bars are respectively to T-shaped when reaching T-slot tip position after two support bars are moved along slide bar
Fork is embedded in the level branch groove of T-slot and is connected on cell wall outside groove both sides, so that two support bars are in splayed configuration, the branch of splayed configuration
Strut support can prevent overall offset from improving the stability of support on the ground.
The utility model is further arranged to:On the sliding component along its it is axially arranged have a hinged seat, the support bar hinge
It is connected to the hinged seat.
By using such scheme, its axial color is provided with hinged seat on sliding component, support bar is hinged on hinged seat,
Then support bar can be recovered in T-slot and carrying will not be impacted by being hinged rotation, and fix bar can stretch control
Length processed, therefore it is easy to the storage and carrying of device.
The utility model is further arranged to:Branch groove of the T-slot along fix bar axial direction runs through the fix bar,
And the slide bar is that bolt thread is connected to the fix bar.
By using such scheme, branch groove of the T-slot along fix bar axial direction runs through fix bar, and slide bar is bolt and screw thread connects
It is connected in fix bar, when slide bar is that bolt thread is connected in fix bar, the nut portion of sliding component slide bolt on bolt
Sliding component, which can be abutted, prevents sliding component and support bar from falling off, and T-slot branch groove runs through fix bar, then bolt can be from
Fix bar is filled in T-slot by through part and is threadedly coupled, therefore can be in order to the connection of slide bar.
In summary, the utility model has the advantages that:One is easy to for that can provide fixed support for probe
Probe carries out flat survey;Secondly for that can adapt to measure by controlling the distance between the probe of rod adjustment two.
Brief description of the drawings
Fig. 1 is the general structure schematic diagram of embodiment;
Fig. 2 is the part-structure explosive view of embodiment;
Fig. 3 is the structural representation of prior art.
Reference:1st, fix bar;2nd, pole one;3rd, pole two;4th, fitting;5th, elastic webbing;6th, deep-slotted chip breaker;7th, it is fixed
Pad;8th, supporting mechanism;9th, support bar;10th, sliding component;11st, slide bar;12nd, T-slot;13rd, hinged seat.
Embodiment
The utility model is described in further detail below in conjunction with accompanying drawing.
With reference to shown in Fig. 1 and Fig. 2, a kind of supersonic wave test instrument probe fixing device, including fix bar 1 and fixture, Gu
The two ends of fixed pole 1 are respectively fixed with a fixture, and fix bar 1 is divided into pole 1 and pole 23 again, and pole 23 is socketed in interior
In the hollow pole 1 in portion, pole 1 and pole 23, then can be by controlling pole 23 to be socketed in pole in being slidably connected
Length in one 2 adjusts the overall length of fix bar 1, so that between the probe being fixed on the two ends fixture of fix bar 1
Distance adapt to actual measuring environment, and the fitting 4 that is provided with pole 1 close to the one end of pole 23 runs through pole 1,
Fitting 4 is typically threadedly connected to pole 1 using stove bolt and is connected to pole 23, and fix bar is adjusted in telescopic strut 23
The relative slip that fitting 4 pushes against the limitation pole 1 of pole 23 and pole 23 can be screwed after 1 overall length, so that anti-
Only relative slide occurs again change the two ends of fix bar 1 and pop one's head in it determining between the back stay 1 of regular length and pole 23
Between distance influence detection.
The two ends of fix bar 1 are all provided with the vertical deep-slotted chip breaker 6 in axle center, and fixture is set to two parallel elastic webbings
5, the two ends of elastic webbing 5 are fixedly connected on the straight line where the side wall at the two ends of fix bar 1 and the connection of elastic webbing 5 and fix bar 1
It is mutually perpendicular to the axis direction of deep-slotted chip breaker 6, the fixation pad 7 of elastomeric material is additionally provided with the centre position of elastic webbing 5.
Fixture is set to elastic webbing 5, using the probe of the flexible fastening tester of elastic webbing 5, need to only consolidated
Regularly pull elastic webbing 5 and then probe is put into alignment deep-slotted chip breaker 6 in elastic webbing 5, then loosen elastic webbing 5, therefore fix behaviour
Make simple and convenient, and the shrinkage of elastic webbing 5 is adapted to different size of probe, and different size of probe can be consolidated
It is fixed;And deep-slotted chip breaker 6 is set at the two ends of fixture, after probe is fixed by elastic webbing 5, probe card is embedded in deep-slotted chip breaker 6,
Deep-slotted chip breaker 6 can limit the movement of probe, prevent the probe of circle from being rolled after being fixed on fixture two ends, influence probe
Stability so as to being impacted to the data of test;And the fixation of elastomeric material is fixedly installed in the centre position of elastic webbing 5
Pad 7, after probe is fixed in elastic webbing 5, fixed pad 7 can be fitted in above the side wall of probe, and is fixed pad 7 and used
Elastomeric material, the coefficient of friction between elastomeric material and probe is larger, so that the fixation pad 7 of elastomeric material can limit probe
It is mobile to prevent the relative slip for being fixed on and occurring vertical direction in deep-slotted chip breaker 6 afterwards of popping one's head in.
T-slot 12, the axis direction of T-slot 12 and the axis direction of fix bar 1 are provided with the downside of the two ends of fix bar 1
Parallel and deep-slotted chip breaker 6 axis direction is perpendicular, and the branch groove of the axial direction of T-slot 12, which runs through to be provided with fix bar 1, T-slot 12, to be carried
The supporting mechanism 8 of the overall ability to bear of high device, supporting mechanism 8 includes slide bar 11, sliding component 10 and support bar 9, and slide bar 11 is
Bolt, bolt is along the axially arranged of T-slot 12 and is threaded in fix bar 1, and sliding component 10 is then slidably connected at bolt
Screw portion, be additionally provided with along its axial hinged seat 13 on sliding component 10, support bar 9 is connected to sliding component by hinged seat 13
On 10, it is hinged between support bar 9 and hinged seat 13.
Use bolt to be arranged on the internal thread of T-slot 12 for slide bar 11 and be connected to fix bar 1, be easy to the connection of slide bar 11 and tear open
Unload, and sliding component 10 on bolt when sliding, the nut portion of bolt can abut the shifting that sliding component 10 limits sliding component 10
It is dynamic, prevent sliding component 10 from being split away off from slide bar 11, by the axial branch groove of T-slot 12 be set to through fix bar 1 be also for
The installation and removal for being easy to supporting construction overall.
Slide bar 11 in T-slot 12 is provided with along fix bar 1 on axially arranged parallel two, two slide bars 11 and slided respectively
It is dynamic to be connected with sliding component 10, and support bar 9 has also been respectively articulated with sliding component 10, the sliding component 10 on mobile slide bar 11 is mobile
To at the branch groove of the both sides of T-slot 12, because sliding component 10 is slidably connected on slide bar 11, it is possible to which sliding component 10 is entered
Row is rotated, and making two support bars 9, inlay card in the branch groove of the both sides of T-slot 12 and is connected on the cell wall of branch groove respectively, then will
Support bar 9 is supported on the ground, and now support bar 9 is also prevented from splayed configuration while being integrally supported to device
Device entirety is turned on one's side with probe after fixing probe, greatly improves the stability of device fixation.
If support bar 9 keeps extending perpendicularly out T-slot 12 always with sliding component 10, then shadow can be caused to carrying and storage
Ring, so being set on sliding component 10 along its axial hinged seat 13, being hinged between support bar 9 and hinged seat 13 can be around hinge
Contact is rotated, then when device needs to be carried and deposited, support bar 9 can by rotating folding and unfolding in T-slot 12,
And fix bar 1 is divided into pole 1 and pole 23 can carry out flexible storage, therefore effect easy to carry and store can be reached
Really.
This specific embodiment is only to explain of the present utility model, and it is not to limitation of the present utility model, ability
Field technique personnel can make the modification without creative contribution to the present embodiment as needed after this specification is read, but
As long as all being protected in right of the present utility model by Patent Law.
Claims (8)
1. a kind of supersonic wave test instrument probe fixing device, it is characterised in that:Including fix bar(1)And fixture, the fixation
Part is provided with two and is respectively fixedly connected with the fix bar(1)Two ends, the fix bar(1)Including pole one(2)And branch
Bar two(3), the pole one(2)Boring and the pole two(3)It is socketed in the pole one(2)It is interior, the pole one
(2)Close to the pole two(3)The sidewall thread of one end is connected with fitting(4), the fitting(4)It is connected to the pole
Two(3).
2. a kind of supersonic wave test instrument probe fixing device according to claim 1, it is characterised in that:The fixture is
Two parallel elastic webbings(5), the elastic webbing(5)Two ends be fixedly connected on the fix bar(1)The side wall of one end.
3. a kind of supersonic wave test instrument probe fixing device according to claim 2, it is characterised in that:The fix bar
(1)Both ends of the surface be provided with deep-slotted chip breaker(6), and the deep-slotted chip breaker(6)Axial direction perpendicular to the elastic webbing(5)Two ends are connected
The formed rectilinear direction of point.
4. a kind of supersonic wave test instrument probe fixing device according to claim 3, it is characterised in that:The elastic webbing
(5)Centre position be fixedly connected with the fixed pad of elastomeric material(7).
5. a kind of supersonic wave test instrument probe fixing device according to claim 4, it is characterised in that:The fix bar
(1)Homonymy two ends be additionally provided with supporting mechanism(8), the supporting mechanism(8)Including support bar(9), sliding component(10)And slide bar
(11), the sliding component(10)It is slidably connected to the slide bar(11), the support bar(9)It is connected to the sliding component(10).
6. a kind of supersonic wave test instrument probe fixing device according to claim 5, it is characterised in that:The fix bar
(1)Two ends be provided with along the fix bar(1)Axially arranged outwardly directed T-slot(12), the T-slot(12)Axle center with
The deep-slotted chip breaker(6)Axis perpendicular, the slide bar(11)Positioned at the T-slot(12)It is interior and along the T-slot(12)Axially
It is provided with two, the sliding component(10)With the support bar(9)Also two and two are correspondingly arranged on.
7. a kind of supersonic wave test instrument probe fixing device according to claim 6, it is characterised in that:The sliding component
(10)On axially arranged have hinged seat along its(13), the support bar(9)It is articulated with the hinged seat(13).
8. a kind of supersonic wave test instrument probe fixing device according to claim 7, it is characterised in that:The T-slot
(12)Along the fix bar(1)The branch groove of axial direction runs through the fix bar(1), and the slide bar(11)It is connected to for bolt thread
The fix bar(1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720206504.8U CN206497080U (en) | 2017-03-06 | 2017-03-06 | A kind of supersonic wave test instrument probe fixing device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720206504.8U CN206497080U (en) | 2017-03-06 | 2017-03-06 | A kind of supersonic wave test instrument probe fixing device |
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Publication Number | Publication Date |
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CN206497080U true CN206497080U (en) | 2017-09-15 |
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ID=59806318
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CN201720206504.8U Expired - Fee Related CN206497080U (en) | 2017-03-06 | 2017-03-06 | A kind of supersonic wave test instrument probe fixing device |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108490074A (en) * | 2018-03-22 | 2018-09-04 | 湖南致力工程科技有限公司 | A kind of bridge prestress pore channel slip casting density nondestructive testing instrument |
CN109540249A (en) * | 2018-12-27 | 2019-03-29 | 佛山科学技术学院 | A kind of clearance adjustment mechanism of detection probe |
-
2017
- 2017-03-06 CN CN201720206504.8U patent/CN206497080U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108490074A (en) * | 2018-03-22 | 2018-09-04 | 湖南致力工程科技有限公司 | A kind of bridge prestress pore channel slip casting density nondestructive testing instrument |
CN108490074B (en) * | 2018-03-22 | 2020-12-15 | 湖南致力工程科技有限公司 | Nondestructive detector for grouting compactness of bridge prestressed duct |
CN109540249A (en) * | 2018-12-27 | 2019-03-29 | 佛山科学技术学院 | A kind of clearance adjustment mechanism of detection probe |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170915 |
|
CF01 | Termination of patent right due to non-payment of annual fee |