CN108407833A - 轻质隔热安全型轨道车辆蜂窝面板及其生产方法 - Google Patents

轻质隔热安全型轨道车辆蜂窝面板及其生产方法 Download PDF

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CN108407833A
CN108407833A CN201710071156.2A CN201710071156A CN108407833A CN 108407833 A CN108407833 A CN 108407833A CN 201710071156 A CN201710071156 A CN 201710071156A CN 108407833 A CN108407833 A CN 108407833A
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黄伟忠
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Jiangsu Ops Auto Parts Co Ltd
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    • B32B37/00Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
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    • B32B37/00Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding
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Abstract

本发明涉及一种轻质隔热安全型轨道车辆蜂窝面板及其生产方法,所述蜂窝面板包含有蜂窝板本体(1),所述蜂窝板本体(1)外包裹有内衬层(2),所述内衬层(2)外包裹有内壳体(5),所述内壳体(5)上贴附有柔性线路板(6),所述内壳体(5)和柔性线路板(6)外裹覆有保护层(7),所述柔性线路板(6)上贴装有纽扣电池、处理器、GPS模块、温度传感器和无线网络模块。本发明一种轻质隔热安全型轨道车辆蜂窝面板及其生产方法,重量轻且具有防火性能。

Description

轻质隔热安全型轨道车辆蜂窝面板及其生产方法
技术领域
本发明涉及一种轻质隔热安全型轨道车辆蜂窝面板及其生产方法,尤其是涉及一种应用于轨道车辆上的蜂窝面板的制备工艺,属于轨道车辆技术领域。
背景技术
目前,轨道车辆因其快速、舒适、安全而在国内获得了高速发展;同时,为了降低能耗,需要在不降低轨道车辆内部构建强度的基础上降低了质量;为此,需要尝试新型材料并将其应用于轨道车辆上使得其既能够满足强度要求,又能够有效的降低重量;而且处于防火的考虑,需要新型面板具有防火能力。
发明内容
本发明的目的在于克服上述不足,提供一种重量轻且具有防火性能的轻质隔热安全型轨道车辆蜂窝面板及其生产方法。
本发明的目的是这样实现的:
一种轻质隔热安全型轨道车辆蜂窝面板,所述蜂窝面板包含有蜂窝板本体,所述蜂窝板本体外包裹有内衬层,所述内衬层外包裹有内壳体,所述内壳体上贴附有柔性线路板,所述内壳体和柔性线路板外裹覆有保护层,所述柔性线路板上贴装有纽扣电池、处理器、GPS模块、温度传感器和无线网络模块,所述处理器内存储有与该面板对应的唯一身份识别信息,所述纽扣电池通过印刷于柔性电路板上的铜箔线为处理器、GPS模块和无线网络模块供电,所述处理器通过印刷于柔性电路板上的铜箔线与GPS模块、温度传感器和无线网络模块通讯相连;所述内衬层和保护层内嵌置有真空吸嘴和预埋螺母,且真空吸嘴插置于蜂窝板本体内。
一种轻质隔热安全型轨道车辆蜂窝面板的生产方法,所述生产方法包含有以下步骤:
步骤1、备料,准备纸质蜂窝板本体,并且在蜂窝板本体内贴附一气压传感器;
步骤2、在纸质蜂窝板本体的外表面贴附内衬层,上述气压传感器的引出线穿出内衬层;
步骤3、在内衬层上固定安装预埋螺母,且内衬层上插接上真空吸嘴;
步骤4、将浸润有树脂的纱线裹覆缠绕在内衬层外,待浸润有树脂的纱线凝固后构成内壳体,且内壳体环绕在预埋螺母和真空吸嘴四周,上述气压传感器的引出线穿出内壳体;
步骤5、将抽真空设备连接至真空吸嘴上,将纸质蜂窝板内部的空气抽出形成真空,从而使得其具有保温隔热的功效;
步骤6、在内壳体上贴附有柔性电路板,所述柔性电路板上贴装有纽扣电池、处理器、GPS模块、温度传感器和无线网络模块,上述气压传感器的引出线焊接在柔性线路板上后通过印刷在柔性线路板上的铜箔线连接至处理器,所述处理器内存储与该面板对应的唯一身份识别信息,所述纽扣电池通过印刷于柔性电路板上的铜箔线为处理器、GPS模块和无线网络模块供电,所述处理器通过印刷于柔性电路板上的铜箔线与GPS模块、温度传感器和无线网络模块通讯相连;当气压传感器监测到气压增大时说明面板存在破裂的风险,此时无线网络模块将提示信息发送给后台服务器;当温度传感器监测到温度过高时,无线网络模块将GPS模块感知到的地理位置信息、本面板的身份识别信息以及高温报警信息通过无线网络模块发送至后台服务器;
步骤7、在内壳体外继续裹覆浸润有树脂的纱线,待其凝固后构成保护层,且保护层覆盖住柔性线路板、真空吸嘴和预埋螺母;
步骤8、在保护层上喷涂石棉耐火涂层进行防火处理;
步骤9、打孔,在耐火涂层和保护层上打孔至预埋螺母的螺母孔;
步骤10、安装,通过预埋螺母将步骤8制备完成的蜂窝面板安装于至所需位置处。
与现有技术相比,本发明的有益效果是:
本发明通过蜂窝板极大的降低了面板的重量,并且通过将蜂窝板包裹后抽真空,使得其具有防火保温性能;并且通过预埋的柔性电路板使得面板能够对环境温度进行监测并及时反馈温度超标处的报警信息,从而便于对该面板(通过每块面板赋予的唯一身份识别信息进行识别)进行防火预处理。
附图说明
图1为本发明一种轻质隔热安全型轨道车辆蜂窝面板的剖视图。
其中:
蜂窝板本体1、内衬层2、真空吸嘴3、预埋螺母4、内壳体5、柔性线路板6、保护层7。
具体实施方式
参见图1,本发明涉及的一种轻质隔热安全型轨道车辆蜂窝面板,所述蜂窝面板包含有蜂窝板本体1,所述蜂窝板本体1外包裹有内衬层2,所述内衬层2外包裹有内壳体5,所述内壳体5上贴附有柔性线路板6,所述内壳体5和柔性线路板6外裹覆有保护层7,所述柔性线路板6上贴装有纽扣电池、处理器、GPS模块、温度传感器和无线网络模块,所述处理器内存储有与该面板对应的唯一身份识别信息,所述纽扣电池通过印刷于柔性电路板6上的铜箔线为处理器、GPS模块和无线网络模块供电,所述处理器通过印刷于柔性电路板6上的铜箔线与GPS模块、温度传感器和无线网络模块通讯相连;所述内衬层2和保护层7内嵌置有真空吸嘴3和预埋螺母4,且真空吸嘴3插置于蜂窝板本体1内;
进一步的,所述蜂窝板本体1内安装有气压传感器,该气压传感器的引出线穿过内衬层2和内壳体5后与柔性线路板6上的处理器相连接;
上述柔性电路板6上设置的电路的工作原理为:当温度传感器监测到温度过高时,无线网络模块将GPS模块感知到的地理位置信息、本面板的身份识别信息以及高温报警信息通过无线网络模块发送至后台服务器;
一种轻质隔热安全型轨道车辆蜂窝面板的生产方法,所述生产方法包含有以下步骤:
步骤1、备料,准备纸质蜂窝板本体,并且在蜂窝板本体内贴附一气压传感器;
步骤2、在纸质蜂窝板本体的外表面贴附内衬层,上述气压传感器的引出线穿出内衬层;
步骤3、在内衬层上固定安装预埋螺母,且内衬层上插接上真空吸嘴;
步骤4、将浸润有树脂的纱线裹覆缠绕在内衬层外,待浸润有树脂的纱线凝固后构成内壳体,且内壳体环绕在预埋螺母和真空吸嘴四周(即内壳体并未覆盖预埋螺母和真空吸嘴),上述气压传感器的引出线穿出内壳体;
步骤5、将抽真空设备连接至真空吸嘴上,将纸质蜂窝板内部的空气抽出形成真空,从而使得其具有保温隔热的功效;
步骤6、在内壳体上贴附有柔性电路板,所述柔性电路板上贴装有纽扣电池、处理器、GPS模块、温度传感器和无线网络模块,上述气压传感器的引出线焊接在柔性线路板上后通过印刷在柔性线路板上的铜箔线连接至处理器,所述处理器内存储与该面板对应的唯一身份识别信息,所述纽扣电池通过印刷于柔性电路板上的铜箔线为处理器、GPS模块和无线网络模块供电,所述处理器通过印刷于柔性电路板上的铜箔线与GPS模块、温度传感器和无线网络模块通讯相连;当气压传感器监测到气压增大时说明面板存在破裂的风险,此时无线网络模块将提示信息发送给后台服务器;当温度传感器监测到温度过高时,无线网络模块将GPS模块感知到的地理位置信息、本面板的身份识别信息以及高温报警信息通过无线网络模块发送至后台服务器;
步骤7、在内壳体外继续裹覆浸润有树脂的纱线,待其凝固后构成保护层,且保护层覆盖住柔性线路板、真空吸嘴和预埋螺母;
步骤8、在保护层上喷涂石棉耐火涂层进行防火处理;
步骤9、打孔,在耐火涂层和保护层上打孔至预埋螺母的螺母孔;
步骤10、安装,通过预埋螺母将步骤8制备完成的蜂窝面板安装于至所需位置处;
另外:需要注意的是,上述具体实施方式仅为本专利的一个优化方案,本领域的技术人员根据上述构思所做的任何改动或改进,均在本专利的保护范围之内。

Claims (2)

1.一种轻质隔热安全型轨道车辆蜂窝面板,其特征在于:所述蜂窝面板包含有蜂窝板本体(1),所述蜂窝板本体(1)外包裹有内衬层(2),所述内衬层(2)外包裹有内壳体(5),所述内壳体(5)上贴附有柔性线路板(6),所述内壳体(5)和柔性线路板(6)外裹覆有保护层(7),所述柔性线路板(6)上贴装有纽扣电池、处理器、GPS模块、温度传感器和无线网络模块,所述纽扣电池通过印刷于柔性电路板(6)上的铜箔线为处理器、GPS模块和无线网络模块供电,所述处理器通过印刷于柔性电路板(6)上的铜箔线与GPS模块、温度传感器和无线网络模块通讯相连;所述内衬层(2)和保护层(7)内嵌置有真空吸嘴(3)和预埋螺母(4),且真空吸嘴(3)插置于蜂窝板本体(1)内。
2.一种轻质隔热安全型轨道车辆蜂窝面板的生产方法,其特征在于:所述生产方法包含有以下步骤:
步骤1、备料,准备纸质蜂窝板本体,并且在蜂窝板本体内贴附一气压传感器;
步骤2、在纸质蜂窝板本体的外表面贴附内衬层,上述气压传感器的引出线穿出内衬层;
步骤3、在内衬层上固定安装预埋螺母,且内衬层上插接上真空吸嘴;
步骤4、将浸润有树脂的纱线裹覆缠绕在内衬层外,待浸润有树脂的纱线凝固后构成内壳体,且内壳体环绕在预埋螺母和真空吸嘴四周,上述气压传感器的引出线穿出内壳体;
步骤5、将抽真空设备连接至真空吸嘴上,将纸质蜂窝板内部的空气抽出形成真空,从而使得其具有保温隔热的功效;
步骤6、在内壳体上贴附有柔性电路板,所述柔性电路板上贴装有纽扣电池、处理器、GPS模块、温度传感器和无线网络模块,上述气压传感器的引出线焊接在柔性线路板上后通过印刷在柔性线路板上的铜箔线连接至处理器,所述处理器内存储与该面板对应的唯一身份识别信息,所述纽扣电池通过印刷于柔性电路板上的铜箔线为处理器、GPS模块和无线网络模块供电,所述处理器通过印刷于柔性电路板上的铜箔线与GPS模块、温度传感器和无线网络模块通讯相连;当气压传感器监测到气压增大时说明面板存在破裂的风险,此时无线网络模块将提示信息发送给后台服务器;当温度传感器监测到温度过高时,无线网络模块将GPS模块感知到的地理位置信息、本面板的身份识别信息以及高温报警信息通过无线网络模块发送至后台服务器;
步骤7、在内壳体外继续裹覆浸润有树脂的纱线,待其凝固后构成保护层,且保护层覆盖住柔性线路板、真空吸嘴和预埋螺母;
步骤8、在保护层上喷涂石棉耐火涂层进行防火处理;
步骤9、打孔,在耐火涂层和保护层上打孔至预埋螺母的螺母孔;
步骤10、安装,通过预埋螺母将步骤8制备完成的蜂窝面板安装于至所需位置处。
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