CN105751636A - 人体安全检查探测仪的防辐射外壳 - Google Patents
人体安全检查探测仪的防辐射外壳 Download PDFInfo
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Abstract
人体安全检查探测仪的防辐射外壳,包括外层、外中层、内中层和内层,内中层和内层相互贴合,并紧密压合成整体层;外中层可拆卸的覆盖在内中层上,外层可拆卸的覆盖在外中层上;外层为全银纤维针织面料层,是由银离子与普通织物融合而成的一种复合纤维,全银纤维针织面料层具有良好的透气性,具有抑菌的作用,且其抗辐射的屏蔽值不低于70DB,能够消除静电,屏蔽性能稳定;外中层为深海沉淀面料层,深海沉淀面料层是采用深海沉淀技术开发的金属纤维或者银纤维材质与马克隆值在4.1~4.3之间的皮棉纤维混合纺织形成的面料层,有效屏蔽辐射值不低于80DB。
Description
技术领域
本发明涉及人体人体安全检查探测仪设备技术领域,尤其涉及人体安全检查探测仪的防辐射外壳。
背景技术
近年来,公共安全问题日益得到世界人民的关注,对反恐、安全检测和公安侦查系统的可靠性与智能化也提出了更高的要求。国内外通用的安检设备有金属安检门、手持式金属安检仪、行李安检仪、毫米波安检仪和背散式安检仪等几种,按照产生的时间和功能大致划分为两代产品:
第一代安检产品以金属安检门、手持式金属安检仪为代表,该类设备通过磁场技术侦测金属类物品,且只能检测到金属物品,无法有效的分辨出检测出非金属物品。无成像系统,无法对可疑物定位。
第二代安检产品以行李安检仪、毫米波安检仪和背散式安检仪为代表,其中行李安检仪使用大剂量X射线照射,可以清晰的检查出行李中的可疑物,速度快,极大改观了当时的安检现状,但随着犯罪手段的提高,该类设备因剂量和设计原因不能针对人体检查。随着技术的深入,又出现了利用毫米波和X背散技术制成的人体安检设备,开创了人体安检的时代。它因照射剂量可以控制在人体可以接受的安全范围内,而被世界大多数国家积极推广应用。
目前该类设备的剂量一直处在人体可接受剂量的安全节点,且毫米波的电磁辐射会破坏人体生物电场,会对安装心脏起搏器的心脏病患者有影响,存在巨大的安全隐患。
现场运行过程中,安检场所的工作人员面临着长时间的与安检设备接触,且距离较近,对身体造成很大的伤害。
发明内容
本发明正是针对现有技术存在的不足,提供了一种人体安全检查探测仪的防辐射外壳。
为解决上述问题,本发明所采取的技术方案如下:
人体安全检查探测仪的防辐射外壳,包括外层、外中层、内中层和内层,所述内中层和内层相互贴合,并紧密压合成整体层;所述外中层可拆卸的覆盖在所述内中层上,所述外层可拆卸的覆盖在所述外中层上;
所述外层为全银纤维针织面料层,是由银离子与普通织物融合而成的一种复合纤维,全银纤维针织面料层具有良好的透气性,具有抑菌的作用,且其抗辐射的屏蔽值不低于70DB,能够消除静电,屏蔽性能稳定;
所述外中层为深海沉淀面料层,深海沉淀面料层是采用深海沉淀技术开发的金属纤维或者银纤维材质与马克隆值在4.1~4.3之间的皮棉纤维混合纺织形成的面料层,有效屏蔽辐射值不低于80DB;
所述内中层的材料按照按照重量份比例包括:铅2-4份、锗3-6份、铝粉12-24份、有机硅1-5份、二季戊四醇4-5份、氢氧化钠0.1-3份、丁苯胶乳4-7份、氧化铋2-3.5份、硫酸钡2.5-7.5份、聚乙酸酯3.5-10份、白云石5-12份和硼化物10-20份;
所述铅、锗、铝粉、有机硅、二季戊四醇、氢氧化钠、丁苯胶乳、氧化铋、硫酸钡、聚乙酸酯、白云石和硼化物均为粉末状结构,粒度为20~30目,且通过热塑压铸形成厚度为2~10mm的板材结构;
所述内层的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯5-10份、石墨7-20份、木屑10-30份、乳胶5-15份、石英粉3-8份、硬化棉籽单甘醇1-4份、烷基苯氧基丙烷磺酸钠12-15份、烷基二苯醚磺酸钾2-4份和聚氧乙烯烷基胺复合物12-24份;
所述聚对苯二甲酸二乙酯、石墨、木屑、乳胶、石英粉、硬化棉籽单甘醇、烷基苯氧基丙烷磺酸钠、烷基二苯醚磺酸钾和聚氧乙烯烷基胺复合物相互充分混合,其中固态配方均研磨形成粒度为20~25目的粉末再进行混合,混合后,通过高压压铸形成厚度为5~8mm的板材结构,高压压铸的压铸温度控制在50~60摄氏度。
进一步的,所述硼化物为碳化硼、氮化硼和磷化硼中的任意一种或者多种的组合。
进一步的,所述内层的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯5份、石墨7份、木屑10份、乳胶5份、石英粉3份、硬化棉籽单甘醇1份、烷基苯氧基丙烷磺酸钠12份、烷基二苯醚磺酸钾2份和聚氧乙烯烷基胺复合物12份。
进一步的,所述内层的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯10份、石墨20份、木屑30份、乳胶15份、石英粉8份、硬化棉籽单甘醇4份、烷基苯氧基丙烷磺酸钠15份、烷基二苯醚磺酸钾4份和聚氧乙烯烷基胺复合物24份。
进一步的,所述内层的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯7.5份、石墨14份、木屑20份、乳胶10份、石英粉5份、硬化棉籽单甘醇2.5份、烷基苯氧基丙烷磺酸钠13份、烷基二苯醚磺酸钾3份和聚氧乙烯烷基胺复合物18份。
进一步的,所述内中层的材料按照按照重量份比例包括:铅2份、锗3份、铝粉12份、有机硅1份、二季戊四醇4份、氢氧化钠0.1份、丁苯胶乳4份、氧化铋2份、硫酸钡2.5份、聚乙酸酯3.5份、白云石5份和硼化物10份。
进一步的,所述内中层的材料按照按照重量份比例包括:铅4份、锗6份、铝粉24份、有机硅5份、二季戊四醇5份、氢氧化钠3份、丁苯胶乳7份、氧化铋3.5份、硫酸钡7.5份、聚乙酸酯10份、白云石12份和硼化物20份。
进一步的,所述内中层的材料按照按照重量份比例包括:铅3份、锗4.5份、铝粉18份、有机硅3份、二季戊四醇4.5份、氢氧化钠1.5份、丁苯胶乳5份、氧化铋3份、硫酸钡5份、聚乙酸酯7份、白云石8份和硼化物15份。
本发明与现有技术相比较,本发明的实施效果如下:
本发明所述的人体安全检查探测仪的防辐射外壳,材料配方易得,且价格便宜,便于制造,而且通过设计外层、外中层、内中层和内层,外层为全银纤维针织面料层,是由银离子与普通织物融合而成的一种复合纤维,全银纤维针织面料层具有良好的透气性,具有抑菌的作用,且其抗辐射的屏蔽值不低于70DB,能够消除静电,屏蔽性能稳定,而且便于拆卸下来清洗,并重新利用,外中层为深海沉淀面料层,深海沉淀面料层是采用深海沉淀技术开发的金属纤维或者银纤维材质与马克隆值在4.1~4.3之间的皮棉纤维混合纺织形成的面料层,有效屏蔽辐射值不低于80DB,大大提高了抗辐射性能,大大降低了安检人员的身体不受安检设备的辐射侵害,而且深海沉淀面料抗压耐磨,使用寿命大大提高,内中层通过抗辐射材料配方通过一定的配比进行研制而成,其抗辐射效果结合外层和外中层的抗辐射,大大降低了安检设备对外的辐射程度,使长时间在安检设备四周工作的人员避免大量辐射干扰而导致损坏身体的现象发生,内层通过防静电材料按照一定的配比研制而成,有效防止产生静电,从而降低内部的微尘积聚在内部,达到洁净的效果。
附图说明
图1为本发明人体安全检查探测仪的防辐射外壳的结构示意图。
具体实施方式
下面将结合具体的实施例来说明本发明的内容。
请参阅图1,图1为本发明人体安全检查探测仪的防辐射外壳的结构示意图。
实施例一:
人体安全检查探测仪的防辐射外壳,包括外层10、外中层20、内中层30和内层40,所述内中层30和内层40相互贴合,并紧密压合成整体层;所述外中层20可拆卸的覆盖在所述内中层30上,所述外层10可拆卸的覆盖在所述外中层20上;
所述外层10为全银纤维针织面料层,是由银离子与普通织物融合而成的一种复合纤维,全银纤维针织面料层具有良好的透气性,具有抑菌的作用,且其抗辐射的屏蔽值不低于70DB,能够消除静电,屏蔽性能稳定;
所述外中层20为深海沉淀面料层,深海沉淀面料层是采用深海沉淀技术开发的金属纤维或者银纤维材质与马克隆值在4.1~4.3之间的皮棉纤维混合纺织形成的面料层,有效屏蔽辐射值不低于80DB;
所述内中层30的材料按照按照重量份比例包括:铅2份、锗3份、铝粉12份、有机硅1份、二季戊四醇4份、氢氧化钠0.1份、丁苯胶乳4份、氧化铋2份、硫酸钡2.5份、聚乙酸酯3.5份、白云石5份和硼化物10份;
所述硼化物为碳化硼、氮化硼和磷化硼中的任意一种或者多种的组合。
所述铅、锗、铝粉、有机硅、二季戊四醇、氢氧化钠、丁苯胶乳、氧化铋、硫酸钡、聚乙酸酯、白云石和硼化物均为粉末状结构,粒度为20~30目,且通过热塑压铸形成厚度为2~10mm的板材结构;
所述内层40的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯5份、石墨7份、木屑10份、乳胶5份、石英粉3份、硬化棉籽单甘醇1份、烷基苯氧基丙烷磺酸钠12份、烷基二苯醚磺酸钾2份和聚氧乙烯烷基胺复合物12份;
所述聚对苯二甲酸二乙酯、石墨、木屑、乳胶、石英粉、硬化棉籽单甘醇、烷基苯氧基丙烷磺酸钠、烷基二苯醚磺酸钾和聚氧乙烯烷基胺复合物相互充分混合,其中固态配方均研磨形成粒度为20~25目的粉末再进行混合,混合后,通过高压压铸形成厚度为5~8mm的板材结构,高压压铸的压铸温度控制在50~60摄氏度。
实施例二:
人体安全检查探测仪的防辐射外壳,包括外层10、外中层20、内中层30和内层40,所述内中层30和内层40相互贴合,并紧密压合成整体层;所述外中层20可拆卸的覆盖在所述内中层30上,所述外层10可拆卸的覆盖在所述外中层20上;
所述外层10为全银纤维针织面料层,是由银离子与普通织物融合而成的一种复合纤维,全银纤维针织面料层具有良好的透气性,具有抑菌的作用,且其抗辐射的屏蔽值不低于70DB,能够消除静电,屏蔽性能稳定;
所述外中层20为深海沉淀面料层,深海沉淀面料层是采用深海沉淀技术开发的金属纤维或者银纤维材质与马克隆值在4.1~4.3之间的皮棉纤维混合纺织形成的面料层,有效屏蔽辐射值不低于80DB;
所述内中层30的材料按照按照重量份比例包括:铅4份、锗6份、铝粉24份、有机硅5份、二季戊四醇5份、氢氧化钠3份、丁苯胶乳7份、氧化铋3.5份、硫酸钡7.5份、聚乙酸酯10份、白云石12份和硼化物20份;
所述硼化物为碳化硼、氮化硼和磷化硼中的任意一种或者多种的组合。
所述铅、锗、铝粉、有机硅、二季戊四醇、氢氧化钠、丁苯胶乳、氧化铋、硫酸钡、聚乙酸酯、白云石和硼化物均为粉末状结构,粒度为20~30目,且通过热塑压铸形成厚度为2~10mm的板材结构;
所述内层40的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯10份、石墨20份、木屑30份、乳胶15份、石英粉8份、硬化棉籽单甘醇4份、烷基苯氧基丙烷磺酸钠15份、烷基二苯醚磺酸钾4份和聚氧乙烯烷基胺复合物24份;
所述聚对苯二甲酸二乙酯、石墨、木屑、乳胶、石英粉、硬化棉籽单甘醇、烷基苯氧基丙烷磺酸钠、烷基二苯醚磺酸钾和聚氧乙烯烷基胺复合物相互充分混合,其中固态配方均研磨形成粒度为20~25目的粉末再进行混合,混合后,通过高压压铸形成厚度为5~8mm的板材结构,高压压铸的压铸温度控制在50~60摄氏度。
实施例三:
人体安全检查探测仪的防辐射外壳,包括外层10、外中层20、内中层30和内层40,所述内中层30和内层40相互贴合,并紧密压合成整体层;所述外中层20可拆卸的覆盖在所述内中层30上,所述外层10可拆卸的覆盖在所述外中层20上;
所述外层10为全银纤维针织面料层,是由银离子与普通织物融合而成的一种复合纤维,全银纤维针织面料层具有良好的透气性,具有抑菌的作用,且其抗辐射的屏蔽值不低于70DB,能够消除静电,屏蔽性能稳定;
所述外中层20为深海沉淀面料层,深海沉淀面料层是采用深海沉淀技术开发的金属纤维或者银纤维材质与马克隆值在4.1~4.3之间的皮棉纤维混合纺织形成的面料层,有效屏蔽辐射值不低于80DB;
所述内中层30的材料按照按照重量份比例包括:铅3份、锗4.5份、铝粉18份、有机硅3份、二季戊四醇4.5份、氢氧化钠1.5份、丁苯胶乳5份、氧化铋3份、硫酸钡5份、聚乙酸酯7份、白云石8份和硼化物15份;
所述硼化物为碳化硼、氮化硼和磷化硼中的任意一种或者多种的组合。
所述铅、锗、铝粉、有机硅、二季戊四醇、氢氧化钠、丁苯胶乳、氧化铋、硫酸钡、聚乙酸酯、白云石和硼化物均为粉末状结构,粒度为20~30目,且通过热塑压铸形成厚度为2~10mm的板材结构;
所述内层40的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯7.5份、石墨14份、木屑20份、乳胶10份、石英粉5份、硬化棉籽单甘醇2.5份、烷基苯氧基丙烷磺酸钠13份、烷基二苯醚磺酸钾3份和聚氧乙烯烷基胺复合物18份;
所述聚对苯二甲酸二乙酯、石墨、木屑、乳胶、石英粉、硬化棉籽单甘醇、烷基苯氧基丙烷磺酸钠、烷基二苯醚磺酸钾和聚氧乙烯烷基胺复合物相互充分混合,其中固态配方均研磨形成粒度为20~25目的粉末再进行混合,混合后,通过高压压铸形成厚度为5~8mm的板材结构,高压压铸的压铸温度控制在50~60摄氏度。
本发明所述的人体安全检查探测仪的防辐射外壳,材料配方易得,且价格便宜,便于制造,而且通过设计外层、外中层、内中层和内层,外层为全银纤维针织面料层,是由银离子与普通织物融合而成的一种复合纤维,全银纤维针织面料层具有良好的透气性,具有抑菌的作用,且其抗辐射的屏蔽值不低于70DB,能够消除静电,屏蔽性能稳定,而且便于拆卸下来清洗,并重新利用,外中层为深海沉淀面料层,深海沉淀面料层是采用深海沉淀技术开发的金属纤维或者银纤维材质与马克隆值在4.1~4.3之间的皮棉纤维混合纺织形成的面料层,有效屏蔽辐射值不低于80DB,大大提高了抗辐射性能,大大降低了安检人员的身体不受安检设备的辐射侵害,而且深海沉淀面料抗压耐磨,使用寿命大大提高,内中层通过抗辐射材料配方通过一定的配比进行研制而成,其抗辐射效果结合外层和外中层的抗辐射,大大降低了安检设备对外的辐射程度,使长时间在安检设备四周工作的人员避免大量辐射干扰而导致损坏身体的现象发生,内层通过防静电材料按照一定的配比研制而成,有效防止产生静电,从而降低内部的微尘积聚在内部,达到洁净的效果。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。
Claims (8)
1.人体安全检查探测仪的防辐射外壳,其特征在于,包括外层(10)、外中层(20)、内中层(30)和内层(40),所述内中层(30)和内层(40)相互贴合,并紧密压合成整体层;所述外中层(20)可拆卸的覆盖在所述内中层(30)上,所述外层(10)可拆卸的覆盖在所述外中层(20)上;
所述外层(10)为全银纤维针织面料层,是由银离子与普通织物融合而成的一种复合纤维,全银纤维针织面料层具有良好的透气性,具有抑菌的作用,且其抗辐射的屏蔽值不低于70DB,能够消除静电,屏蔽性能稳定;
所述外中层(20)为深海沉淀面料层,深海沉淀面料层是采用深海沉淀技术开发的金属纤维或者银纤维材质与马克隆值在4.1~4.3之间的皮棉纤维混合纺织形成的面料层,有效屏蔽辐射值不低于80DB;
所述内中层(30)的材料按照按照重量份比例包括:铅2-4份、锗3-6份、铝粉12-24份、有机硅1-5份、二季戊四醇4-5份、氢氧化钠0.1-3份、丁苯胶乳4-7份、氧化铋2-3.5份、硫酸钡2.5-7.5份、聚乙酸酯3.5-10份、白云石5-12份和硼化物10-20份;
所述铅、锗、铝粉、有机硅、二季戊四醇、氢氧化钠、丁苯胶乳、氧化铋、硫酸钡、聚乙酸酯、白云石和硼化物均为粉末状结构,粒度为20~30目,且通过热塑压铸形成厚度为2~10mm的板材结构;
所述内层(40)的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯5-10份、石墨7-20份、木屑10-30份、乳胶5-15份、石英粉3-8份、硬化棉籽单甘醇1-4份、烷基苯氧基丙烷磺酸钠12-15份、烷基二苯醚磺酸钾2-4份和聚氧乙烯烷基胺复合物12-24份;
所述聚对苯二甲酸二乙酯、石墨、木屑、乳胶、石英粉、硬化棉籽单甘醇、烷基苯氧基丙烷磺酸钠、烷基二苯醚磺酸钾和聚氧乙烯烷基胺复合物相互充分混合,其中固态配方均研磨形成粒度为20~25目的粉末再进行混合,混合后,通过高压压铸形成厚度为5~8mm的板材结构,高压压铸的压铸温度控制在50~60摄氏度。
2.根据权利要求1所述的人体安全检查探测仪的防辐射外壳,其特征在于,所述硼化物为碳化硼、氮化硼和磷化硼中的任意一种或者多种的组合。
3.根据权利要求1所述的人体安全检查探测仪的防辐射外壳,其特征在于,所述内层(40)的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯5份、石墨7份、木屑10份、乳胶5份、石英粉3份、硬化棉籽单甘醇1份、烷基苯氧基丙烷磺酸钠12份、烷基二苯醚磺酸钾2份和聚氧乙烯烷基胺复合物12份。
4.根据权利要求1所述的人体安全检查探测仪的防辐射外壳,其特征在于,所述内层(40)的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯10份、石墨20份、木屑30份、乳胶15份、石英粉8份、硬化棉籽单甘醇4份、烷基苯氧基丙烷磺酸钠15份、烷基二苯醚磺酸钾4份和聚氧乙烯烷基胺复合物24份。
5.根据权利要求1所述的人体安全检查探测仪的防辐射外壳,其特征在于,所述内层(40)的材料按照按照重量份比例包括:聚对苯二甲酸二乙酯7.5份、石墨14份、木屑20份、乳胶10份、石英粉5份、硬化棉籽单甘醇2.5份、烷基苯氧基丙烷磺酸钠13份、烷基二苯醚磺酸钾3份和聚氧乙烯烷基胺复合物18份。
6.根据权利要求1所述的人体安全检查探测仪的防辐射外壳,其特征在于,所述内中层(30)的材料按照按照重量份比例包括:铅2份、锗3份、铝粉12份、有机硅1份、二季戊四醇4份、氢氧化钠0.1份、丁苯胶乳4份、氧化铋2份、硫酸钡2.5份、聚乙酸酯3.5份、白云石5份和硼化物10份。
7.根据权利要求1所述的人体安全检查探测仪的防辐射外壳,其特征在于,所述内中层(30)的材料按照按照重量份比例包括:铅4份、锗6份、铝粉24份、有机硅5份、二季戊四醇5份、氢氧化钠3份、丁苯胶乳7份、氧化铋3.5份、硫酸钡7.5份、聚乙酸酯10份、白云石12份和硼化物20份。
8.根据权利要求1所述的人体安全检查探测仪的防辐射外壳,其特征在于,所述内中层(30)的材料按照按照重量份比例包括:铅3份、锗4.5份、铝粉18份、有机硅3份、二季戊四醇4.5份、氢氧化钠1.5份、丁苯胶乳5份、氧化铋3份、硫酸钡5份、聚乙酸酯7份、白云石8份和硼化物15份。
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