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Preparation method of low-detonation-velocity and low-density explosive applicable to nickel-steel compounding

A technology with low detonation velocity and low density, which is applied to explosives, non-explosive/non-thermal agent components, offensive equipment, etc., and can solve the problems of nickel-steel clad plates not sticking together, and achieve the effect of eliminating adverse effects

Inactive Publication Date: 2017-03-22
安徽宝泰特种材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] Due to the above reasons, it is necessary to independently innovate and develop a new type of explosive with low detonation velocity and low density suitable for nickel-steel composites, which will play a role in improving production efficiency and solving the problem of non-fitting of large-area nickel-steel clad plates. important meaning

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] A preparation method suitable for nickel-steel composite low-detonation-velocity-low-density explosives, comprising the following steps:

[0026] (1) Detect whether the density, intensity and detonation velocity of the emulsion explosive pure chemical meet the factory explosion parameters of the emulsion explosive, and if they meet, proceed to the following steps;

[0027] (2) Add emulsified explosive and perlite simultaneously in the mixer, stir evenly, the stirring time is 4min, wherein, the weight ratio of emulsified explosive and perlite is 58:38;

[0028] (3) Add bran into the mixer, fully stir evenly, and the stirring time is 18min, wherein, the weight ratio of emulsion explosive, perlite and bran is 58:38:15;

[0029] (4) Detect the density and detonation velocity of the product in the mixing machine, the density is 0.84g / cm 3 , The products whose detonation velocity is between 2000m / s and 2200m / s are qualified products.

[0030] Wherein, the detonation paramet...

Embodiment 2

[0032] A preparation method suitable for nickel-steel composite low-detonation-velocity-low-density explosives, comprising the following steps:

[0033] (1) Detect whether the density, intensity and detonation velocity of the emulsion explosive pure chemical meet the factory explosion parameters of the emulsion explosive, and if they meet, proceed to the following steps;

[0034] (2) Add emulsified explosive and perlite in the mixing machine at the same time, stir evenly, and the stirring time is 5min, wherein the weight ratio of emulsified explosive and perlite is 58:38;

[0035] (3) Add bran into the mixer, fully stir evenly, and the stirring time is 20min, wherein, the weight ratio of emulsion explosive, perlite and bran is 58:38:15;

[0036] (4) Detect the density and detonation velocity of the product in the mixing machine, the density is 0.84g / cm 3 , The products whose detonation velocity is between 2000m / s and 2200m / s are qualified products.

[0037] Wherein, the deto...

Embodiment 3

[0039] A preparation method suitable for nickel-steel composite low-detonation-velocity-low-density explosives, comprising the following steps:

[0040] (1) Detect whether the density, intensity and detonation velocity of the emulsion explosive pure chemical meet the factory explosion parameters of the emulsion explosive, and if they meet, proceed to the following steps;

[0041] (2) Add emulsified explosive and perlite in the mixing machine at the same time, stir evenly, and the stirring time is 6min, wherein, the weight ratio of emulsified explosive and perlite is 58:38;

[0042] (3) Add bran into the mixer, fully stir evenly, and the stirring time is 22min, wherein, the weight ratio of the emulsion explosive, perlite and bran is 58:38:15;

[0043] (4) Detect the density and detonation velocity of the product in the mixing machine, the density is 0.84g / cm 3 , The products whose detonation velocity is between 2000m / s and 2200m / s are qualified products.

[0044] Wherein, the...

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PUM

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Abstract

The invention relates to a preparation method of a low-detonation-velocity and low-density explosive applicable to nickel-steel compounding. The preparation method comprises the following steps: detecting detonation parameters of an emulsified explosive; if the detonation parameters accord with pre-set parameters, carrying out the following steps: adding the emulsified explosive and pearlite into an explosive mixing machine at the same time and uniformly stirring, wherein the weight ratio of the emulsified explosive to the pearlite is 58 to 38; adding bran into the explosive mixing machine and sufficiently and uniformly mixing, wherein the weight ratio of the emulsified explosive to the pearlite to the bran is 58 to 38 to 15; detecting the density and detonation velocity of a product in the explosive mixing machine; and considering the product with the density of 0.84g / cm<3> and the detonation velocity of 2000m / s-2200m / s as a qualified product. A nickel-steel compound plate obtained by detonation compounding of the explosive has the minimum shearing strength tau b which is more than or equal to 210Mpa; except a detonator shadow region, the fitting rate reaches 100%; and adverse effects on the detonator shadow region are eliminated through avoiding a useless part of a detonating point in the compound plate.

Description

technical field [0001] The invention belongs to the field of new energy development, and in particular relates to a method for preparing a nickel-steel composite low-detonation-velocity-low-density explosive. Background technique [0002] Nickel and nickel alloys have excellent corrosion resistance and heat resistance, and are widely used in harsh corrosive environments, showing effective resistance. In many cases, these corrosive conditions are irresistible to materials such as stainless steel or super stainless steel. Nickel itself is a multifunctional corrosion-resistant material with the characteristics of high strength, high plasticity, good ductility and forgeability. As an alloying element, nickel has metallurgical compatibility with other metal elements in most composition ranges, and has become many binary, ternary alloys and other complex alloy systems. Nickel and nickel alloys are widely used in chemical industry, alkali making, metallurgy, Pressure vessels, hea...

Claims

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Application Information

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IPC IPC(8): C06B23/00
CPCC06B23/002
Inventor 张杰孙建蒋济仁严翔潘玉龙许成武邓宁嘉
Owner 安徽宝泰特种材料有限公司
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