The recrystallization technique was used to prepare submicron 3,3’-diamino-4,4’-azofurazan (DAAzF) with good performance, and DAAzF/VitonA polymer-bonded explosive (PBX) was prepared using solvent-slurry technique. The morphology and structure, as well as thermal property of samples were characterized and analyzed, and the apparent activation energy of thermal explosion was calculated.The results show that the particle size of DAAzF prepared at 0°C is smaller than that prepared at 35°C and 50°C. The apparent activation energy of the obtained PBX (650μm) is 182.68kJ·mol-1, indicating the better thermal stability than that of raw DAAzF.
var swiper = new Swiper('.swiper_xq', {
navigation: {
nextEl: '.swiper-button-next',
prevEl: '.swiper-button-prev',
},
});
$(function(){
$('img').bigic();
});
";
}
$("#ImagesList").html(strImagesList);
}
var strAttachmentsJson="";
if(strAttachmentsJson!=""){
var strAttachmentsList="";
var attachmentsJson = jQuery.parseJSON(strAttachmentsJson);
var intLength=attachmentsJson.attachments.length;
for(var i=0;i"+strAttacheName+"下 载";
}
$("#AttacheList").html(strAttachmentsList);
}
var strCnAuthorsList="";
var strEnAuthorsList="";
var strAuthorsJson="{\"authors\":[{\"cn_name\":\"刘淑杰\",\"en_name\":\"LIU Shu-jie\",\"cn_institution\":\"中北大学 环境与安全工程学院\",\"en_institution\":\"School of Environment and Safety Engineering, North University of China\",\"email\":\"\",\"is_first_author\":\"1\",\"is_contact_author\":\"\",\"sequence\":\"1\",\"first_name\":\"\",\"middle_name\":\"\",\"last_name\":\"\",\"resume\":\"\",\"institute_superscript\":\"\"}]}";
if(strAuthorsJson!=""){
var authorsJson = jQuery.parseJSON(strAuthorsJson);
var intLength=authorsJson.authors.length;
for(var i=0;i"+cn_name+""+institute_superscript+"";
strCnAuthorsList=strCnAuthorsList+" ";
if(is_contact_author==""){
strCnAuthorsList=strCnAuthorsList+"";
}
if(email.indexOf("@")>0){
strCnAuthorsList=strCnAuthorsList+"";
}
strCnAuthorsList=strCnAuthorsList+"";
strCnAuthorsList=strCnAuthorsList+"