Material high-pressure impact heat insulation data measurement method based on continuous resistance probe

A resistance probe and measurement method technology, applied in the direction of material inspection products, fuel oil testing, ammunition testing, etc., can solve the problems of high experimental cost, complicated operation, complicated equipment, etc., and achieve wide application range, simple experimental system and low cost low effect

Inactive Publication Date: 2019-09-10
DALIAN UNIV OF TECH
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  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

[0004] (1) The measurement principle of the electric probe method is relatively simple. The average velocity of the shock wave is obtained by recording the travel time of the shock wave in a sample of known thickness, which has poor applicability and can only be used for the measurement of metal flyers. The low-pressure trigger response of the needle is slow, and it is not suitable for the precise measurement of impact insulation data in the low-pressure area of ​​the material
[0005] (2) The optical measurement method has wide applicability and is more objective and credible in principle, but the equipment is complicated, the test conditions are harsh, and the experimental cost is also high. For the test of the shock insulation line of the chemical explosion method, strict protection of the equipment is required , so it is relatively difficult for field measurement operations
[0006] (3) Most of the measurement methods use a light gas gun to drive the flyer to hit the sample for measurement. Due to the limitation of the driving ability of the light gas gun, the thickness of the general flyer is only 2-5mm, so for materials with large non-uniformity, such as Concrete mortar, etc., cannot be accurately measured; in addition, the light gas gun driving device occupies a large area, is expensive, and the operation is relatively complicated

Method used

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  • Material high-pressure impact heat insulation data measurement method based on continuous resistance probe
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  • Material high-pressure impact heat insulation data measurement method based on continuous resistance probe

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Embodiment 1

[0022] (1) Make a probe element for measuring the high-pressure impact insulation data of materials: take a PVC plastic pipe with a diameter of 110mm and a wall thickness of 3mm as a cylindrical container, and the length of the charge section is 200-250mm; the standard material is plexiglass, with a diameter of 110mm , the length is 20mm; the material to be tested is liquid water, the length is 100-300mm; the diameter of the continuous resistance probe is 2mm, and the resistance per unit length is 558Ω / m. First, drill a small hole with a diameter of 2mm in the center of the plexiglass, and bond the PVC cylindrical container of the charge section and the material section to be tested on both sides of the plexiglass and ensure the seal. Pass the continuous resistance probe through the small hole of the plexiglass. The probe head faces the charge section and is 50mm away from the detonating end face. The gap between the continuous resistance probe and the plexiglass end face is fi...

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Abstract

The invention belongs to the technical field of explosion and impact tests, and particularly relates to a material high-pressure impact heat insulation data measurement method based on a continuous resistance probe. The material high-pressure impact heat insulation data measurement method comprises the following specific measuring steps that (1) the continuous resistance wire probe penetrates through an explosive, a standard material and a to-be-measured material in sequence along the central axis of a cylindrical container, and a coaxial cable is used for connecting the continuous resistancewire probe with a signal recorder; (2) the signal recorder is started, and recording is performed to obtain a dynamic voltage or current signal caused by the change of the resistance value of the continuous resistance wire probe after the explosive is ignited; and (3) the electric signal is converted into a time travel curve, the data of each section undergoes fitting and derivation to obtain theshock wave speed of a corresponding portion, and the impact heat insulation data of the to-be-measured material is solved and obtained according to an impedance matching technology. The material high-pressure impact heat insulation data measurement method has the effects and advantages that a measuring element is a universal sensing element, so that the application range is wide; the experiment system is simple, and the cost is low; and the size of the material is not limited, and the method is suitable for measuring a large-size sample.

Description

technical field [0001] The invention belongs to the technical field of explosion and impact testing, and relates to a method for measuring high-voltage impact heat insulation data of materials based on a continuous resistance probe. Background technique [0002] The shock adiabatic line of the material refers to the three conservation relations on the shock wave front and the five unknown parameters (pressure p, relative specific volume V, internal energy E, particle velocity U p and the shock wave velocity U s ) The relationship curve between any two of them, where p-V line, p-U p Line and U s -U p Lines are the three most commonly used forms. They are the basis for studying the phase transition and equation of state of materials under high pressure, and are the basis for solving impact dynamics problems and performing related numerical calculations. Most of the measurement methods of material impact adiabatic line adopt the flyer technology driven by chemical explosion...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F42B35/00G01N33/22
CPCF42B35/00G01N33/22
Inventor 李晓杰李科斌闫鸿浩王小红王宇新孙明陈翔曾翔宇
Owner DALIAN UNIV OF TECH
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