CN207487862U - A kind of on-line continuous detection device of struction machine structures part stress and torque - Google Patents

A kind of on-line continuous detection device of struction machine structures part stress and torque Download PDF

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Publication number
CN207487862U
CN207487862U CN201721733934.1U CN201721733934U CN207487862U CN 207487862 U CN207487862 U CN 207487862U CN 201721733934 U CN201721733934 U CN 201721733934U CN 207487862 U CN207487862 U CN 207487862U
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China
Prior art keywords
end outer
torque
detection device
continuous detection
machine structures
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Expired - Fee Related
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CN201721733934.1U
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Chinese (zh)
Inventor
刘成文
石延平
彭安华
周庆贵
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Huaihai Institute of Techology
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Huaihai Institute of Techology
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Priority to CN201721733934.1U priority Critical patent/CN207487862U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses the on-line continuous detection devices of a kind of struction machine structures part stress and torque, including electrical cabinet and stent, the leading exterior surface of the electrical cabinet is installed with electricity leakage sensor, and the upper end outer surface of electrical cabinet is provided with sliding rail, the upper end outer surface of the sliding rail is provided with data computation module, and the leading exterior surface of data computation module is provided with control module, the upper end outer surface of the control module is provided with liquid crystal display, and one end outer surface of the data computation module is installed with torque sensor.The on-line continuous detection device of a kind of struction machine structures part stress and torque described in the utility model, equipped with electricity leakage sensor, data computation module and shielding line, it can find to leak electricity in time, avoid dangerous generation, and the torque measured can be utilized to be worth to stress value, the transmission of external signal interference measurement data is also prevented from, brings better prospect of the application.

Description

A kind of on-line continuous detection device of struction machine structures part stress and torque
Technical field
The utility model is related to stress and torque on-line measuring device field, more particularly to a kind of struction machine structures part The on-line continuous detection device of stress and torque.
Background technology
The torque of struction machine structures part and two important indicators that stress is the detection part quality, therefore, stress It is just particularly important with the on-line measuring device of torque, but current detection process is comparatively laborious, more wastes time;It is existing Torque on-line continuous detection device when in use there are certain drawbacks, first, electrical cabinet electric leakage can not be in time to people Prompting is sent out, is easy to cause happening for staff's electric shock, there are security risks, and secondly, which can not measure specified The stress of part, it is impossible to the needs of meeting people in actual use, in addition, the data that measurement process obtains are being transmitted across It is easily interfered in journey by external signal, influences the accuracy of measurement result, be unfavorable for the use of people, to the use of people Process brings certain influence, for this purpose, it is proposed that the on-line continuous of a kind of struction machine structures part stress and torque is examined Survey device.
Utility model content
The main purpose of the utility model is that provide the on-line continuous of a kind of struction machine structures part stress and torque Detection device can effectively solve the problems in background technology.
To achieve the above object, the technical solution that the utility model is taken is:
The on-line continuous detection device of a kind of struction machine structures part stress and torque, including electrical cabinet and stent, institute The leading exterior surface for stating electrical cabinet is installed with electricity leakage sensor, and the upper end outer surface of electrical cabinet is provided with sliding rail, described The upper end outer surface of sliding rail is provided with data computation module, and the leading exterior surface of data computation module is provided with control module, The lower end outer surface of the data computation module is slidably connected by a side external surface of sliding rail and the upper end outer surface of electrical cabinet, The upper end outer surface of the control module is provided with liquid crystal display, and one end outer surface of the data computation module is fixedly mounted There is torque sensor, and the upper end outer surface of torque sensor is provided with shielding line, the torque sensor is internally provided with Transmission shaft, and the upper end outer surface of transmission shaft is provided with magnet exciting coil and measuring coil, a side external surface of the transmission shaft is set TM-M type Fe base amorphous alloy pieces are equipped with, and one end outer surface of transmission shaft offers link slot, the side of the link slot Inner surface is provided with anti-skidding gear piece, and the side inner surface of the stent is provided with baffle, and a side external surface of baffle is provided with Bearing, one end outer surface of the bearing are provided with shaft, and be provided with handle, the side of the handle on the outside of one end of shaft Outer surface is provided with antiskid thread.
Preferably, the magnet exciting coil is located at the side of measuring coil, and magnet exciting coil is wrapped in transmission with measuring coil One side external surface of axis.
Preferably, the TM-M types Fe base amorphous alloys piece by strong paste adhesive transmission shaft a side external surface, And TM-M type Fe base amorphous alloy pieces are between measuring coil and transmission shaft.
Preferably, the quantity of the handle is two groups, and handle is symmetrically distributed in the both sides up and down of shaft.
Preferably, the quantity of the stent is two groups, and for the baffle between two pack supports, the bearing runs through baffle Inside.
Preferably, the upper end outer surface of the electrical cabinet is consolidated by one end outer surface of bolt and the bottom outer surface of stent Fixed connection, and stent is located at the side of data computation module.
Compared with prior art, the utility model has the advantages that:The struction machine structures part stress is with turning round The on-line continuous detection device of square by the electricity leakage sensor of setting, can timely find to leak electricity, effectively avoid staff That gets an electric shock happens, practical, by the data computation module of setting, can calculate stress according to the torque value measured Value, saves the trouble repeatedly measured, the setting of shielding line effectively can prevent external environmental factor from causing to do to measurement data It disturbs so that measurement result is more accurate, and entire structure of the detecting device is simple, easy to operate, and the effect used is relative to tradition side Formula is more preferable.
Description of the drawings
Fig. 1 is the entirety of the on-line continuous detection device of a kind of struction machine structures part stress of the utility model and torque Structure diagram.
Fig. 2 is the part of the on-line continuous detection device of a kind of struction machine structures part stress of the utility model and torque View.
Fig. 3 is Fig. 2 of the on-line continuous detection device of a kind of struction machine structures part stress of the utility model and torque The sectional view of middle A.
Fig. 4 is the shaft of the on-line continuous detection device of a kind of struction machine structures part stress of the utility model and torque Structure chart.
In figure:1st, electrical cabinet;2nd, electricity leakage sensor;3rd, sliding rail;4th, data computation module;5th, control module;6th, liquid crystal Display screen;7th, torque sensor;8th, shielding line;9th, transmission shaft;10th, magnet exciting coil;11st, measuring coil;12nd, TM-M types Fe base amorphous State alloy sheet;13rd, link slot;14th, anti-skidding gear piece;15th, stent;16th, baffle;17th, bearing;18th, shaft;19th, handle;20th, prevent Sliding screw thread.
Specific embodiment
To be easy to understand technical means, creative features, achievable purpose and effectiveness of the utility model, below With reference to specific embodiment, the utility model is expanded on further.
As shown in Figs 1-4, the on-line continuous detection device of a kind of struction machine structures part stress and torque, including electrical Cabinet 1 and stent 15, the leading exterior surface of electrical cabinet 1 are installed with electricity leakage sensor 2, and electricity leakage sensor 2 can timely be sent out It now leaks electricity, effectively avoids happening for staff's electric shock, it is practical, and the upper end outer surface of electrical cabinet 1 is provided with cunning Rail 3, the upper end outer surface of sliding rail 3 are provided with data computation module 4, and data computation module 4 can be according to the torque value meter measured Stress value is calculated, saves the trouble repeatedly measured, and the leading exterior surface of data computation module 4 is provided with control module 5, data The lower end outer surface of computing module 4 is slidably connected by a side external surface of sliding rail 3 and the upper end outer surface of electrical cabinet 1, control The upper end outer surface of module 5 is provided with liquid crystal display 6, and one end outer surface of data computation module 4 is installed with torque biography Sensor 7, and the upper end outer surface of torque sensor 7 is provided with shielding line 8, the setting of shielding line 8 can effectively prevent outside Environmental factor interferes measurement data so that measurement result is more accurate, and torque sensor 7 is internally provided with transmission shaft 9, and the upper end outer surface of transmission shaft 9 is provided with magnet exciting coil 10 and measuring coil 11, a side external surface of transmission shaft 9 is provided with TM-M type Fe base amorphous alloys piece 12, and one end outer surface of transmission shaft 9 offers link slot 13, in the side of link slot 13 Surface is provided with anti-skidding gear piece 14, and the side inner surface of stent 15 is provided with baffle 16, and the side external surface setting of baffle 16 There is bearing 17, one end outer surface of bearing 17 is provided with shaft 18, and be provided with handle 19, handle 19 on the outside of one end of shaft 18 A side external surface be provided with antiskid thread 20.
Magnet exciting coil 10 is located at the side of measuring coil 11, and magnet exciting coil 10 is wrapped in transmission shaft 9 with measuring coil 11 A side external surface;TM-M type Fe base amorphous alloys piece 12 by strong paste adhesive transmission shaft 9 a side external surface, and TM-M type Fe base amorphous alloys pieces 12 are between measuring coil 11 and transmission shaft 9;The quantity of handle 19 is two groups, and handle 19 are symmetrically distributed in the both sides up and down of shaft 18;The quantity of stent 15 is two groups, and baffle 16 is between two pack supports 15, bearing 17 run through the inside of baffle 16;The upper end outer surface of electrical cabinet 1 passes through one end outer surface of bolt and the bottom end appearance of stent 15 Face is fixedly connected, and stent 15 is located at the side of data computation module 4.
It should be noted that the utility model is detected for the on-line continuous of a kind of struction machine structures part stress and torque Part to be measured when in use, is placed between two pack supports 15 and fixed, then, utilize sliding rail 3 that data is pushed to calculate by device Module 4 is moved to the direction of stent 15, and after part is combined with link slot 13, fixed data computing module 4 utilizes 19 turns of handle Turn axis 18 proceeds by measurement by torque sensor 7, and the stress of part can pass to TM-M type Fe base amorphous in rotation process On state alloy sheet 12, according to piezomagnetism, torque value can be obtained, the effect of data computation module 4 is recycled, calculates stress Value, is eventually displayed on liquid crystal display 6, electricity leakage sensor 2 can timely find to leak electricity, and effectively staff be avoided to get an electric shock Happen, shielding line 8 effectively can prevent external environmental factor from being interfered to measurement data so that measurement result is more It is accurate to add, more practical.
The basic principle of the utility model and main feature and the advantages of the utility model has been shown and described above.One's own profession The technical staff of industry is it should be appreciated that the present utility model is not limited to the above embodiments, described in above embodiments and description Only illustrate the principle of the utility model, on the premise of not departing from the spirit and scope of the utility model, the utility model is also Various changes and modifications are had, these various changes and improvements fall within the scope of the claimed invention.The utility model Claimed range is defined by the appending claims and its equivalent thereof.

Claims (6)

1. a kind of on-line continuous detection device of struction machine structures part stress and torque, including electrical cabinet (1) and stent (15), it is characterised in that:The leading exterior surface of the electrical cabinet (1) is installed with electricity leakage sensor (2), and electrical cabinet (1) Upper end outer surface be provided with sliding rail (3), the upper end outer surface of the sliding rail (3) is provided with data computation module (4), and data The leading exterior surface of computing module (4) is provided with control module (5), and the lower end outer surface of the data computation module (4) passes through One side external surface of sliding rail (3) and the upper end outer surface of electrical cabinet (1) are slidably connected, the upper end appearance of the control module (5) Face is provided with liquid crystal display (6), and one end outer surface of the data computation module (4) is installed with torque sensor (7), And the upper end outer surface of torque sensor (7) is provided with shielding line (8), the torque sensor (7) is internally provided with transmission Axis (9), and the upper end outer surface of transmission shaft (9) is provided with magnet exciting coil (10) and measuring coil (11), the transmission shaft (9) One side external surface is provided with TM-M type Fe base amorphous alloys pieces (12), and one end outer surface of transmission shaft (9) offers connection Slot (13), the side inner surface of the link slot (13) are provided with anti-skidding gear piece (14), the side inner surface of the stent (15) Baffle (16) is provided with, and a side external surface of baffle (16) is provided with bearing (17), one end outer surface of the bearing (17) Shaft (18) is provided with, and handle (19) is provided on the outside of one end of shaft (18), a side external surface of the handle (19) is set It is equipped with antiskid thread (20).
2. the on-line continuous detection device of a kind of struction machine structures part stress according to claim 1 and torque, It is characterized in that:The magnet exciting coil (10) is positioned at the side of measuring coil (11), and magnet exciting coil (10) and measuring coil (11) It is wrapped in a side external surface of transmission shaft (9).
3. the on-line continuous detection device of a kind of struction machine structures part stress according to claim 1 and torque, It is characterized in that:The TM-M types Fe base amorphous alloys piece (12) by strong paste adhesive transmission shaft (9) a side external surface, And TM-M type Fe base amorphous alloys pieces (12) are between measuring coil (11) and transmission shaft (9).
4. the on-line continuous detection device of a kind of struction machine structures part stress according to claim 1 and torque, It is characterized in that:The quantity of the handle (19) is two groups, and handle (19) is symmetrically distributed in the both sides up and down of shaft (18).
5. the on-line continuous detection device of a kind of struction machine structures part stress according to claim 1 and torque, It is characterized in that:The quantity of the stent (15) is two groups, and the baffle (16) is between two pack supports (15), the bearing (17) through the inside of baffle (16).
6. the on-line continuous detection device of a kind of struction machine structures part stress according to claim 1 and torque, It is characterized in that:The upper end outer surface of the electrical cabinet (1) passes through one end outer surface of bolt and the bottom outer surface of stent (15) It is fixedly connected, and stent (15) is positioned at the side of data computation module (4).
CN201721733934.1U 2017-12-13 2017-12-13 A kind of on-line continuous detection device of struction machine structures part stress and torque Expired - Fee Related CN207487862U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721733934.1U CN207487862U (en) 2017-12-13 2017-12-13 A kind of on-line continuous detection device of struction machine structures part stress and torque

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721733934.1U CN207487862U (en) 2017-12-13 2017-12-13 A kind of on-line continuous detection device of struction machine structures part stress and torque

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CN207487862U true CN207487862U (en) 2018-06-12

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112345137A (en) * 2019-08-07 2021-02-09 上海金艺检测技术有限公司 Flexible transmission system torque monitoring method based on stress testing technology

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112345137A (en) * 2019-08-07 2021-02-09 上海金艺检测技术有限公司 Flexible transmission system torque monitoring method based on stress testing technology

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20180612

Termination date: 20201213