CN205722370U - A kind of ultrasonic wave pore-forming grooving mass detecting instrument - Google Patents

A kind of ultrasonic wave pore-forming grooving mass detecting instrument Download PDF

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Publication number
CN205722370U
CN205722370U CN201620331483.8U CN201620331483U CN205722370U CN 205722370 U CN205722370 U CN 205722370U CN 201620331483 U CN201620331483 U CN 201620331483U CN 205722370 U CN205722370 U CN 205722370U
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signal
automatically controlled
winch
sensor
module
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CN201620331483.8U
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Chinese (zh)
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王润田
邹彬彬
陈晶晶
郭英歌
王晨
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Institute of Acoustics CAS
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Institute of Acoustics CAS
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Abstract

The utility model provides a kind of ultrasonic wave pore-forming grooving mass detecting instrument, comprising: sensor (1), automatically controlled winch (2), wireless module (3) and display control apparatus (4);Described wireless module (3) is arranged on automatically controlled winch (2), and be connected with hanging the sensor (1) being connected to automatically controlled winch (2) lower section by cable (5), the signal of telecommunication that sensor (1) is gathered by wireless module (3) with communication sends to display control apparatus (4);After described display control apparatus (4) receives its wireless signal sending by wireless module (3), control automatically controlled winch (2) and the operation of sensor (1), and receive the signal of telecommunication that wireless module (3) sends, obtain test result after carrying out imaging.Above-mentioned ultrasonic wave pore-forming grooving mass detecting instrument is by using communication so that need not be connected by cable between automatically controlled winch and display control apparatus, thus improve operating efficiency.

Description

A kind of ultrasonic wave pore-forming grooving mass detecting instrument
Technical field
The utility model relates to ultrasonic listening technical field, is specifically related to a kind of ultrasonic wave pore-forming grooving quality testing Instrument.
Background technology
In the foundation construction of all kinds of heavy constructions, concrete drilling bored concrete pile technique has become as the one of underpinning Plant principal mode, be used widely in the Important Project such as railway, highway, urban track traffic.Except bridge, Outside the great foundation engineering such as station, reservoir, also begin at present use cast-in-situ bored pile in a large number in terms of civil buildings Technique improves the basic firmness degree of house owed by a citizen, and the drill-pouring technique of many abnormity also when have finding.With The degree of depth of cast-in-situ bored pile is increasingly deeper, and the length of the diaphram wall of City Subway Station is more and more longer, some ground The degree of depth of lower diaphragm wall is close to hundred meters, so that the perpendicularity of these borings and deep trouth and size are at digging process In it is difficult to ensure that with design require consistent, it is therefore necessary to carry out detecting to ensure its bearing capacity to these parameters.Mesh Before conventional detection method be supersonic testing method, with measurement winch by sonac from boring (groove) mouth with necessarily Speed hang at the bottom of hole, or from being lifted to aperture at the bottom of hole, by the reflection letter of sensor receiver hole (groove) wall Number detect hole (groove) wall-like state, thus reach the testing goal to hole (groove) wall.
Ultrasonic drilling (grooving) detector common in the market is usually and is made up of three parts: sensor, Automatically controlled winch and control cabinet.Sensor hangs on automatically controlled winch, is controlled its lifting by winch, and control cabinet leads to Crossing cable to be connected with automatically controlled winch, control cabinet sends order control winch by cable and performs corresponding actions, and connects Receive sensor and pass the reflected signal of hole (groove) wall back, after imaging is carried out to receipt signal, provide measurement result.
It is known that on-the-spot mixed and disorderly, the bad environments in construction site, and the detection to hole (groove) is on-the-spot, outdoor Operation, therefore, has higher requirements to the water proof and dust proof of equipment.The automatically controlled strand of ultrasonic drilling (grooving) detector Car and control cabinet are connected by cable, and usually can make due to reasons such as the dust of attachment, water inlets at the plug of cable Become the faults such as loose contact;And the mixed and disorderly sharppointed article existing on-site is easy to scratch cable.Additionally, by Needing to be positioned over when automatically controlled winch and sensor are in measurement treats directly over gaging hole (groove), and due to connection winch and The cable of control cabinet typically will not be oversize so that operating personnel also must operation near hole (groove);Such side Can there is potential safety hazard in face, on the other hand, seldom block facility, it is contemplated that control cabinet near hole (groove) Waterproof requirement, run into the rainy day may stop measure work, reduce operating efficiency.
Utility model content
The purpose of this utility model is, for overcoming existing supersonic reflectoscope due to control cabinet and automatically controlled hoist room Use cable connect and easily break down, awkward technical problem, provide one pass through communication pair Automatically controlled winch sends control command, and realizes the ultrasonic wave pore-forming grooving matter of data transmission between sensor and external equipment Amount detector.
For achieving the above object, a kind of ultrasonic wave pore-forming grooving mass detecting instrument provided by the utility model, comprising: Sensor, automatically controlled winch, wireless module and display control apparatus.Described wireless module is arranged at automatically controlled winch On, and be connected with hanging the sensor being connected to below automatically controlled winch by cable, described sensor is ultrasonic by gather After echo-signal is converted into the signal of telecommunication, sent this signal of telecommunication to display control with communication by wireless module Control equipment;After described display control apparatus receives its wireless signal sending by wireless module, control automatically controlled strand Car and the operation of sensor, and receive the signal of telecommunication that wireless module sends, obtain test result after carrying out imaging.
As the improvement further of technique scheme, described wireless module includes: control command passage and data Passage;Described control command passage is connected with the winch control module arranging on automatically controlled winch, and this control command is led to After what road reception display control apparatus sent contains the signal to automatically controlled winch order, control winch control module drives The operation of automatically controlled winch;Described data channel is connected by cable with the signal transmitting and receiving module arranging in sensor, After what this data channel reception display control apparatus sent contains to the signal of sensor command, control signal receives and dispatches mould Block performs to send ultrasonic signal and receives ultrasound echo signal, and ultrasound echo signal is converted into the behaviour of the signal of telecommunication Make, after the signal of telecommunication by the output of cable reception signal transmitting and receiving module for the described data channel, with communication Send this signal of telecommunication to display control apparatus.
As the improvement further of technique scheme, the communication that described wireless module uses includes: blue Tooth, infrared, WiFi and ZigBee.
As the improvement further of technique scheme, described automatically controlled winch uses stainless steel tube welding to make.
The advantage of a kind of ultrasonic wave pore-forming grooving mass detecting instrument of the present utility model is:
Ultrasonic wave pore-forming grooving mass detecting instrument of the present utility model is by using communication so that automatically controlled strand Need not be connected by cable between car with display control apparatus, thus without appearance owing to cable is damaged or electric Cable plug problem causes the situation of instrument failure;The current operating distance that is wirelessly transferred typically is attained by tens meters remote, Longer than the operating distance of the conventional automatically controlled winch of connection and the cable of control cabinet;Display control apparatus instead of control cabinet, For controlling automatically controlled winch and processing measurement data display measurement result, it is only necessary to a notebook computer or similar Portable set just can complete its function so that operating personnel can carry with, it is not necessary to does extra protective equipment, It is not only restricted to the impact of special weather, thus improve operating efficiency.
Brief description
Fig. 1 is the ultrasonic wave pore-forming grooving mass detecting instrument of the employing wireless transmission method in the utility model embodiment Structural representation.
Fig. 2 is the structure annexation figure of the ultrasonic wave pore-forming grooving mass detecting instrument in the utility model embodiment.
Reference:
1st, sensor the 2nd, automatically controlled winch the 3rd, wireless module
4th, display control apparatus the 5th, cable the 6th, steel wire rope
11st, signal transmitting and receiving module the 21st, winch control module the 31st, control command passage
32nd, data channel
Detailed description of the invention
With embodiment, a kind of ultrasonic wave pore-forming grooving mass detecting instrument described in the utility model is entered below in conjunction with the accompanying drawings Row describes in detail.
As it is shown in figure 1, a kind of ultrasonic wave pore-forming grooving mass detecting instrument that the utility model provides, including sensor is the 1st, Automatically controlled winch the 2nd, wireless module 3 and display control apparatus 4;Described wireless module 3 is arranged on automatically controlled winch 2, And be connected with hanging the sensor 1 being connected to below automatically controlled winch 2 by cable 5, described sensor 1 is by collection After ultrasound echo signal is converted into the signal of telecommunication, this signal of telecommunication is sent extremely with communication by wireless module 3 Display control apparatus 4;After described display control apparatus 4 receives its wireless signal sending by wireless module 3, Control the operation of automatically controlled winch 2 and sensor 1, and receive the telecommunications that wireless module 3 sends with communication Number, obtain test result after carrying out imaging.
As it is shown in figure 1, in the present embodiment, the turntable of described automatically controlled winch 2 can be by stainless steel tube welding system Become, it is provided with lowering or hoisting gear.Sensor 1 can by steel wire rope 6 with the lowering or hoisting gear on automatically controlled winch 2 even Connect.Wireless module 3 is fixed on an angle of automatically controlled winch 2, and communication has a variety of, comprising: blue Tooth, infrared, WiFi, ZigBee etc., select WiFi mode to realize radio communication in the present embodiment.
Described wireless module 3 includes: control command passage 31 and data channel 32;The letter arranging in sensor 1 Number transceiver module 11 is connected by cable 5 with the data channel 32 of wireless module 3, and automatically controlled winch 2 is arranged Winch control module 21 is fixed on turntable, electrically connects with the control command passage 31 of wireless module 3.Due to Display control apparatus 4 wirelessly communicates with wireless module 3, therefore display control apparatus 4 should have with The same wireless working method of wireless module 3, may select the panel computer with WiFi function in the present embodiment and makees For display control apparatus 4.
With reference to Fig. 1, shown in 2, when supersonic reflectoscope of the present utility model starts measurement work, first, display Control equipment 4 is sent containing controlling automatically controlled winch 2 to the control command passage 31 of wireless module 3 by WiFi The signal of order, control command is passed to winch control module 21 by control command passage 31, is controlled automatically controlled winch 2 The order that lowering or hoisting gear response winch control module 21 receives, with the lifting action of dynamic sensor 1;Meanwhile, number According to passage 32 receive display control apparatus 4 send containing to sensor 1 order signal after, control signal receive and dispatch Module 11 starts to convert electrical signals into ultrasonic signal and launches, and then receiver hole (groove) wall after having launched Reflection ultrasound echo signal and be converted to the signal of telecommunication, then this signal of telecommunication is transferred to data channel through cable 5 After 32, then being transferred to display control apparatus 4 by data channel 32 by WiFi, display control apparatus 4 receives After imaging being carried out to it after signal, last measurement result is shown.
It should be noted last that, above example is only in order to illustrate the technical solution of the utility model and unrestricted. Although the utility model being described in detail with reference to embodiment, it will be understood by those within the art that, The technical solution of the utility model is modified or equivalent, without departure from technical solutions of the utility model Spirit and scope, it all should be covered in the middle of right of the present utility model.

Claims (4)

1. a ultrasonic wave pore-forming grooving mass detecting instrument, including sensor (1) and automatically controlled winch (2), it is special Levy and be, also include: wireless module (3) and display control apparatus (4);Described wireless module (3) is arranged On automatically controlled winch (2), and pass through cable (5) and hang the sensor (1) being connected to automatically controlled winch (2) lower section Connect, after the ultrasound echo signal of collection is converted into the signal of telecommunication by described sensor (1), by wireless module (3) Send this signal of telecommunication to display control apparatus (4) with communication;Described display control apparatus (4) leads to After crossing wireless signal that wireless module (3) receives its transmission, control automatically controlled winch (2) and the fortune of sensor (1) OK, and receive the signal of telecommunication that wireless module (3) sends, test result is obtained after carrying out imaging.
2. ultrasonic wave pore-forming grooving mass detecting instrument according to claim 1, it is characterised in that described nothing Wire module (3) includes: control command passage (31) and data channel (32);Described control command passage (31) The winch control module (21) that arrange upper with automatically controlled winch (2) is connected, and this control command passage (31) receives aobvious Show that control equipment (4) sends containing the signal that automatically controlled winch (2) is ordered after, control winch control module (21) Drive the operation of automatically controlled winch (2);Described data channel (32) signal that arrange middle with sensor (1) is received Sending out module (11) to be connected by cable (5), this data channel (32) receives display control apparatus (4) and sends Containing after signal that sensor (1) is ordered, control signal transceiver module (11) performs to send ultrasonic signal With receive ultrasound echo signal, and ultrasound echo signal is converted into the operation of the signal of telecommunication, described data channel (32) By after the signal of telecommunication that cable (5) receipt signal transceiver module (11) exports, with communication by this telecommunications Number send to display control apparatus (4).
3. ultrasonic wave pore-forming grooving mass detecting instrument according to claim 1, it is characterised in that described wireless The communication that module (3) uses includes: bluetooth, infrared, WiFi and ZigBee.
4. ultrasonic wave pore-forming grooving mass detecting instrument according to claim 1, it is characterised in that described electricity Control winch (2) uses stainless steel tube welding to make.
CN201620331483.8U 2016-04-19 2016-04-19 A kind of ultrasonic wave pore-forming grooving mass detecting instrument Active CN205722370U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107905269A (en) * 2017-11-24 2018-04-13 武汉中岩科技股份有限公司 A kind of paired cable winch gear for ultrasonic wave pore-forming grooving quality testing
CN108316286A (en) * 2018-03-28 2018-07-24 中交公局第三工程有限公司 Based on the construction process for bored pile under complicated geological hydrologic condition
CN109596079A (en) * 2018-12-29 2019-04-09 武汉固德超前高新科技研发有限公司 A kind of measurement method of pore-forming grooving

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107905269A (en) * 2017-11-24 2018-04-13 武汉中岩科技股份有限公司 A kind of paired cable winch gear for ultrasonic wave pore-forming grooving quality testing
CN107905269B (en) * 2017-11-24 2019-10-25 武汉中岩科技股份有限公司 A kind of paired cable winch gear for ultrasonic wave pore-forming grooving quality testing
CN108316286A (en) * 2018-03-28 2018-07-24 中交公局第三工程有限公司 Based on the construction process for bored pile under complicated geological hydrologic condition
CN108316286B (en) * 2018-03-28 2020-04-21 中交一公局集团有限公司 Cast-in-situ bored pile construction process based on complex geological hydrological condition
CN109596079A (en) * 2018-12-29 2019-04-09 武汉固德超前高新科技研发有限公司 A kind of measurement method of pore-forming grooving

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