Coupled external mounted steel stay rope force detection device and method

A steel cable force and detection device technology, which is applied in the direction of measuring device, tension measurement, and electrical variable measurement, can solve the problems of difficulty, poor repeatability, and low tension sensitivity, so as to improve measurement sensitivity and repeatability , good measurement repeatability and high sensitivity

Inactive Publication Date: 2012-09-19
SOUTHEAST UNIV
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  • Summary
  • Abstract
  • Description
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  • Application Information

AI Technical Summary

Problems solved by technology

[0015] The more mature cable force detection sensors at home and abroad are all sleeve-type magnetic flux sensors, which can only be put on during tension construction to meet the online detection in the use stage , not only wastes a lot, but also has a limited lifespan. More importantly, a large number of active steel cables are not equipped with such sensors
Although it is possible to make magnetic flux sensors or inductance sensors by on-site winding, this method has problems such as difficulty, time-consuming, inconsistent detection and calibration states, etc.
[0016]2. Low detection sensitivity and poor repeatability
[0017] Although magnetic flux sensors or inductance sensors utilize magnetomechanical effects, they only measure a single point parameter on the magnetization characteristic curve of ferromagnetic materials, that is, a certain operating point Nearby magnetic permeability or inductance, so there must be problems of low sensitivity to pulling force and poor measurement repeatability

Method used

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  • Coupled external mounted steel stay rope force detection device and method
  • Coupled external mounted steel stay rope force detection device and method
  • Coupled external mounted steel stay rope force detection device and method

Examples

Experimental program
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Effect test

Embodiment 1

[0043] A coupling-type exterior-mounted steel cable force detection device, comprising: an excitation assembly and a wire-type coupling inductor, the excitation assembly includes a magnetic core 2, an excitation coil 3 is sleeved on the magnetic core 2, and the excitation coil 3 The two ends of the capacitive discharge circuit are connected in parallel, and the capacitive discharge circuit can adopt the common capacitive discharge circuit in the prior art, but the effect of the capacitive discharge circuit in the present invention is different from that of the prior art. , is used to instantly convert the stored electric field energy into magnetic field energy to realize the magnetization of the measured steel cable. The two ends of the magnetic core 2 are respectively provided with a first magnetic pole 41 and a second magnetic pole 42. At the first magnetic pole 41 and the second magnetic pole 42 are respectively provided with a first pressing plate 61 and a second pressing p...

Embodiment 2

[0045] A method for detecting cable force using a coupled external steel cable force detecting device,

[0046] Step 1 Clamp the excitation component on the outside of the steel cable to be tested and form an excitation circuit by the excitation component and the steel cable to be tested, and wrap the rows of wires 8 in the line-type coupling inductor on the to-be-tested part of the excitation circuit On the steel cable, insert the pin on each wire in the row of wires 8 into the jack on the adjacent wire, open the capacitive discharge circuit connected with the excitation assembly and send the excitation assembly to the excitation assembly by the capacitive discharge circuit The excitation coil 3 in the discharge is discharged, thereby the magnetic field intensity is generated in the steel cable to be detected, and at the same time, the excitation current in the excitation coil 3 is detected and obtained. The magnetic induction intensity in the steel cable is detected and obta...

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Abstract

The invention discloses a coupled external mounted steel stay rope force detection device and a method. The device comprises an excitation assembly and a winding displacement coupling sensor, wherein the excitation assembly comprises a magnetic core, an excitation coil with a capacitive discharge circuit is sheathed on the magnetic core, a first magnetic pole and a second magnetic pole are arranged at two ends of the magnetic core and are respectively provided with a first press plate and a second press plate, the first magnetic pole and the first press plate are detachably connected, the second magnetic pole and the second press plate are detachably connected, a first clamp hole is arranged at a connecting part of the first magnetic pole and the first press plate, a second clamp hole is arranged at a connecting part of the second magnetic pole and the second press plate, and round lining pads are arranged on the inner walls of the first clamping hole and the second clamping hole. The method comprises the following steps that the device is used for detection, and in addition, magnetic feature curves of a steel stay rope to be detected are obtained; the device is used for detection, in addition, a group of standard magnetic feature curves are obtained; and the magnetic feature curves of the steel stay rope to be detected are compared with the group of standard magnetic feature curves to obtain the tension in the steel stay rope to be detected.

Description

technical field [0001] The invention relates to magnetic physics, electrical engineering, and intelligent detection technology of ferromagnetic materials, in particular to the measurement of tensile stress or tensile force of steel cables or steel rods in the field of structural health monitoring, and also to the magnetic mechanics effect and magnetization of ferromagnetic materials characteristic. technical background [0002] As the core component of various bridges, stadiums and other important building structures, the safety of steel cables is very important. Monitoring the tension of steel cables is an important means to ensure their safety. The current detection methods mainly include: [0003] 1. Pressure measurement method [0004] Also known as the jack method, it detects the tension by measuring the oil pressure when using a jack to stretch the steel cable. The oil pressure can be measured by a pressure gauge or a pressure sensor. This method is suitable for det...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01L5/04G01R33/02G01R27/26
Inventor 倪江生郭正兴金伟明刘兴曲谛
Owner SOUTHEAST UNIV
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