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溫壓炸藥爆炸瞬態(tài)高溫測試技術(shù)研究
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中北大學(xué)

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TJ55;TK311

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國家自然科學(xué)基金資助項目(No. 62105305); 山西省基礎研究計劃資助項目 (No. 20210302123068); 基礎加強計劃重點(diǎn)基礎研究項目(2019-JCJQ-ZD-138-00)


Research on Transient High Temperature Testing Technology for Explosion of Thermostatic Explosives
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    摘要:

    為評估溫壓炸藥的熱毀傷性能,針對其爆炸瞬間產(chǎn)生高溫高壓場(chǎng)溫度變化劇烈、持續時(shí)間短、測量難度大、且難以測到爆炸瞬間火球溫度分布的問(wèn)題,提出了一種接觸式與非接觸式測溫混合測試方法,搭建了紅外熱像儀和熱電偶測溫系統,對洞內外兩發(fā)溫壓炸藥的爆炸過(guò)程進(jìn)行測試;使用兩臺紅外熱像儀分別以高低幀頻拍攝,同時(shí)在距離爆心一定距離處布置鎢錸熱電偶,從不同時(shí)間不同位置獲取了火球不同維度的信息,實(shí)現了爆炸溫度變化全過(guò)程的高幀頻、高分辨率完整記錄。對溫壓爆炸過(guò)程中溫度變化進(jìn)行了精細化研究;其中,洞內爆炸最高溫度可達1800℃以上,火球最大直徑約為8.3m,洞外爆炸最高溫度可達1700℃以上,火球最大直徑約為7.7m,山洞的限制作用使得火球最高溫度更高,1800℃以上持續時(shí)間為14ms,熱毀傷效果更強;洞內外溫壓彈爆炸最高溫度測試結果的最大偏差分別為5.1%和5.8%,平均偏差為5.45%,處于一定合理的范圍內,可以滿(mǎn)足爆炸場(chǎng)測試需求。

    Abstract:

    In order to evaluate the thermal damage performance of thermal pressure explosives and address the issues of intense temperature changes, short duration, high measurement difficulty, and difficulty in measuring the temperature distribution of the fireball at the moment of explosion, a mixed testing method of contact and non-contact temperature measurement was proposed. An infrared thermal imager and thermocouple temperature measurement system were built to test the explosion process of two thermal pressure explosives inside and outside the tunnel. Two infrared thermal imagers were used to shoot at high and low frame rates, and tungsten rhenium thermocouples were placed at a certain distance from the explosion center. Information from different dimensions of the fireball was obtained at different times and locations, achieving complete recording of the entire process of explosion temperature changes at high frame rates and high resolution. A refined study was conducted on the temperature changes during the temperature pressure explosion process. Among them, the maximum temperature of the explosion inside the cave can reach above 1800℃, the maximum diameter of the fireball is about 8.3m, the maximum temperature of the explosion outside the cave can reach above 1700℃, and the maximum diameter of the fireball is about 7.7m. The limiting effect of the cave makes the maximum temperature of the fireball higher, with a duration of 14ms above 1800℃, and the thermal damage effect is stronger. The maximum deviation of the highest temperature test results for temperature and pressure bombs inside and outside the tunnel is 5.1% and 5.8%, respectively, with an average deviation of 5.45%, which is within a reasonable range and can meet the requirements of explosion field testing.

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馬旭靜,孫鵬,張駿虎,劉睿辰,王高.溫壓炸藥爆炸瞬態(tài)高溫測試技術(shù)研究計算機測量與控制[J].,2024,32(3):204-210.

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歷史
  • 收稿日期:2023-10-13
  • 最后修改日期:2023-11-07
  • 錄用日期:2023-11-08
  • 在線(xiàn)發(fā)布日期: 2024-04-01
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