Bolt fastening force ultrasonic detection and key detection parameter determination method based on finite elements

A technology of ultrasonic testing and tightening force, applied in force/torque/work measuring instrument, measuring torque/torsion force during tightening, measuring device, etc., which can solve the problem of discrete torque coefficient and unfavorable bolt tightening force ultrasonic testing method engineering application , the problem of high cost

Active Publication Date: 2018-11-27
BEIJING INSTITUTE OF TECHNOLOGYGY
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Problems solved by technology

Among them, the resistance strain gauge method and the photomechanical method are rarely used in engineering due to the limitation of the detection principle and measurement conditions; the torque wrench method is currently the most commonly used bolt pretightening force control and measurement method in engineering, but due to the bolt and The discretization of the friction coefficient between the threaded surface of the nut and the contact surface between the nut and the connected part leads to the discretization of the torque coefficient. In practical applications, there will also be a large error, up to about 30%.
The key and premise of the ultrasonic measurement method is to obtain the accurate mathematical relationship between the ultrasonic propagation time and the fastening force, that is, the measurement coefficient. The general method is to obtain the measurement coefficient under different specifications of bolts and connection states through a large number of experiments. This method is expensive. , poor adaptability, which is not conducive to the engineering application of the bolt tightening force ultrasonic testing method

Method used

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  • Bolt fastening force ultrasonic detection and key detection parameter determination method based on finite elements
  • Bolt fastening force ultrasonic detection and key detection parameter determination method based on finite elements
  • Bolt fastening force ultrasonic detection and key detection parameter determination method based on finite elements

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Embodiment Construction

[0015] The specific embodiment of the present invention is described in detail below:

[0016] 1. Ultrasonic longitudinal wave detection principle of bolt fastening force based on finite element

[0017] According to the theory of acoustoelasticity, when an isotropic solid material is subjected to stress in one direction, the sound velocity of the ultrasonic longitudinal wave propagating along the stress direction can be deduced as:

[0018] V L (σ) = V L0 (1-K L σ) (1)

[0019] In formula (1):

[0020] V L - sound velocity of longitudinal wave;

[0021] V L0 — sound speed of longitudinal wave in zero stress state;

[0022] K L —— longitudinal wave acoustoelastic coefficient;

[0023] σ——Stress, it is stipulated that the tensile stress is a positive value and the compressive stress is a negative value.

[0024] Since the stress distribution inside the bolt is not uniform, and the ultrasonic propagation path is along the axis of the bolt, under the action of the fast...

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Abstract

The invention provides a bolt fastening force ultrasonic detection and key detection parameter determination method based on finite elements. The method is suitable for bolting force ultrasonic soundtime nondestructive measurement. The finite element theory and the acoustic elasticity principle are combined, and a bolt fastening force ultrasonic detection principle model is established. A bolt finite element model and a static simulation are established, the bolt axial stress distribution rule on the ultrasonic propagation path is obtained, so that the shape factor of the bolt is determined.The ultrasonic detection coefficient of the bolt fastening force is calculated by combining the acoustic elasticity coefficient of the bolt material measured by the critical refraction longitudinal wave. The method is low in cost and good in adaptability, and the detection coefficient can be accurately and quickly determined.

Description

1. Technical field [0001] The invention relates to the technical field of bolt fastener detection, and proposes a finite element-based ultrasonic detection of bolt fastening force and a method for determining key detection parameters. The method is suitable for nondestructive measurement of bolt fastening force by ultrasonic acoustic time method. 2. Background technology [0002] Bolted connections are widely used in industrial fields such as armored vehicles, aerospace, and special machinery because of their advantages such as simple assembly, convenient disassembly, high efficiency, low cost, and good adaptability. For different types of bolts, in order to ensure the working quality and reliability of mechanical equipment, a certain pre-tightening force must be given to the bolts. Bolts with too large pre-tightening force are prone to breakage under the action of axial load. The required clamping effect cannot be achieved, so accurately controlling the magnitude of the pre...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01L5/24
CPCG01L5/246
Inventor 潘勤学邵唱潘瑞鹏刘晓豪宋炜
Owner BEIJING INSTITUTE OF TECHNOLOGYGY
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