CN112195658A - 一种阻燃耐高温防护面料及其制备装置 - Google Patents
一种阻燃耐高温防护面料及其制备装置 Download PDFInfo
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- D06N3/00—Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof
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Abstract
本发明提供一种阻燃耐高温防护面料及其制备装置,包括:防护面料本体,所述防护面料本体由经线和纬线交替编织而成,所述防护面料本体的外侧编织有阻燃层,所述阻燃层的外侧喷涂有耐高温层,所述阻燃层包括芳纶纤维层和腈纶纤维层,所述耐高温层包括玻璃纤维层和特氟龙涂料层。本发明通过芳纶纤维层和腈纶纤维层的配合,提高了防护面料本体的阻燃效果,避免了防护面料本体因为外界火焰的燃烧而迅速损坏,延长了防护面料本体的使用寿命,通过玻璃纤维层和特氟龙涂料层的配合,提高了防护面料本体的耐高温效果,避免了防护面料本体因为外界温度过高而发生损坏,进一步延长了防护面料本体的使用寿命。
Description
技术领域
本发明涉及面料领域,尤其涉及一种阻燃耐高温防护面料及其制备装置。
背景技术
面料就是用来制作服装的材料,作为服装三要素之一,面料不仅可以诠释服装的风格和特性,而且直接左右着服装的色彩、造型的表现效果,在服装大世界里,服装的面料五花八门,日新月异,但是从总体上来讲,优质、高档的面料,大都具有穿著舒适、吸汗透气、悬垂挺括、视觉高贵、触觉柔美等几个方面的特点。
其中防护面料也是面料的一种,然而传统防护面料的阻燃效果和耐高温效果差,无法对外界的火焰和高温进行及时阻隔,从而会使防护面料快速损坏,达不到使用者的使用要求,使用者为了增强防护面料的阻燃效果和耐高温效果,在对防护面料进行制备时,使用者经常会在防护面料的表面喷涂一些耐高温液体,然而传统防护面料在制备时对面料表面的喷涂效果差,无法对防护面料的表面均匀喷涂耐高温液体,极大的降低了防护面料使用效果。
因此,有必要提供一种阻燃耐高温防护面料及其制备装置解决上述技术问题。
发明内容
本发明提供一种阻燃耐高温防护面料及其制备装置,解决了传统防护面料阻燃效果和耐高温效果差,同时在制备时,无法对防护面料的表面均匀喷涂耐高温液体的问题。
为解决上述技术问题,本发明提供的一种阻燃耐高温防护面料,包括:防护面料本体,所述防护面料本体由经线和纬线交替编织而成,所述防护面料本体的外侧编织有阻燃层,所述阻燃层的外侧喷涂有耐高温层,所述阻燃层包括芳纶纤维层和腈纶纤维层,所述耐高温层包括玻璃纤维层和特氟龙涂料层。
优选的,所述芳纶纤维层位于防护面料本体的外侧,所述腈纶纤维层位于芳纶纤维层的外侧,所述芳纶纤维层和腈纶纤维层的厚度相同。
优选的,所述玻璃纤维层位于腈纶纤维层的外侧,所述特氟龙涂料层喷涂于玻璃纤维层的外侧,所述特氟龙涂料层的厚度小于玻璃纤维层的厚度。
优选的,所述基座的顶部栓接有固定箱,所述固定箱顶部右侧的背面栓接有水箱,所述水箱顶部正面的左侧连通有进水管,所述固定箱右侧的背面栓接有加热箱,所述固定箱两侧的中心处均开设有通槽,且通槽的内腔与防护面料本体的表面活动连接,所述防护面料本体的右侧贯穿加热箱并向右侧延伸,所述固定箱的内腔设置有喷涂机构,所述固定箱内腔的右侧设置有移动机构,所述移动机构的左侧与喷涂机构的右侧栓接,所述固定箱内腔底部的四周均开设有下料孔,所述基座内腔的底部放置有集液箱,所述集液箱位于下料孔的正下方。
优选的,所述喷涂机构包括水泵、通水管、三通管、第一软管、分流器、输水管和第二软管,所述固定箱内腔顶部背面的左侧栓接有水泵,所述水泵的进水口与水箱的左侧连通,所述水泵的出水口连通有通水管,所述通水管远离水泵的一端贯穿至固定箱的内腔并连通有三通管,所述三通管的右端连通有第一软管,所述三通管的左端连通有输水管,所述输水管远离三通管的一端连通有第二软管,所述第一软管和第二软管分别远离三通管和输水管的一端均连通有分流器,所述分流器的背面与移动机构的正面栓接,所述分流器的底部从前至后均依次连通有喷头,所述防护面料本体位于喷头相向的一侧。
优选的,所述移动机构包括气缸、活动座、活动杆和活动板,所述固定箱内腔左侧的中心处从上至下均依次通过活动轴活动连接有活动板,所述活动板的正面与分流器的背面栓接,所述分流器右侧的背面栓接有活动块,且活动块的右侧通过活动轴活动连接有活动杆,所述固定箱内腔背面的右侧栓接有支撑板,所述支撑板的正面栓接有气缸,所述气缸的活塞杆栓接有活动座,所述活动杆远离活动块的一侧通过活动轴与活动座的内腔活动连接。
优选的,所述加热箱内腔背面顶部的两侧均栓接有安装块,且安装块相向的一侧从上至下均依次嵌设有电加热丝,所述加热箱内腔的底部栓接有导流块,所述加热箱内腔左侧的底部和固定箱右侧的底部均开设有导流槽。
优选的,所述固定箱内腔背面的顶部和底部均开设有弧形滑槽,所述弧形滑槽的内腔滑动连接有球形滑块,所述球形滑块的正面贯穿弧形滑槽并与活动板的背面栓接。
优选的,所述支撑板正面的左侧横向开设有第一滑槽,所述第一滑槽的内腔滑动连接有第一滑块,所述第一滑块的正面贯穿第一滑槽并与活动座的背面栓接。
一种阻燃耐高温防护面料的制备装置,包括如下步骤:
S1、使用时,芳纶纤维层和腈纶纤维层提高了防护面料本体的阻燃效果,避免了防护面料本体因为外界火焰的燃烧而迅速损坏,延长了防护面料本体的使用寿命,同时玻璃纤维层和特氟龙涂料层提高了防护面料本体的耐高温效果,避免了防护面料本体因为外界温度过高而发生损坏,进一步延长了防护面料本体的使用寿命;
S2、使用者在对防护面料本体进行制备时,需要将特氟龙涂料层喷涂于防护面料本体的表面,此时使用者开启水泵,随后水泵将水箱内的特氟龙涂料经由通水管传输至三通管内,此时三通管将特氟龙涂料分别传输至第一软管和输水管内,同时输水管将特氟龙涂料传输至第二软管内,此时第一软管和第二软管同时将特氟龙涂料经由分流器传送至多个喷头内,从而对防护面料本体的顶部和底部进行全方位喷涂,防止防护面料本体在喷涂时存在死角,影响防护面料本体的整体阻燃耐高温效果;
S3、随后使用者打开气缸,此时气缸带动活动座向右侧移动,从而带动活动杆向右侧移动,随后活动杆在活动块的辅助下带动分流器向右侧摆动,同时活动板带动球形滑块在弧形滑槽内滑动,对分流器进行滑动支撑,随后分流器带动喷头向右侧摆动,同理,气缸带动活动座向左侧移动,从而带动喷头向左侧摆动,进而对防护面料本体的表面进行全方位摆动喷涂,增大了喷涂面积,进一步增强了喷涂效果,使喷涂更加均匀。
与相关技术相比较,本发明提供的一种阻燃耐高温防护面料及其制备装置具有如下有益效果:
本发明提供一种阻燃耐高温防护面料及其制备装置,
1、本发明通过芳纶纤维层和腈纶纤维层的配合,提高了防护面料本体的阻燃效果,避免了防护面料本体因为外界火焰的燃烧而迅速损坏,延长了防护面料本体的使用寿命,通过玻璃纤维层和特氟龙涂料层的配合,提高了防护面料本体的耐高温效果,避免了防护面料本体因为外界温度过高而发生损坏,进一步延长了防护面料本体的使用寿命,通过水泵、通水管、三通管、第一软管、分流器、输水管和第二软管的配合,便于使用者利用水泵将特氟龙涂料经由喷头对防护面料本体的顶部和底部进行全方位喷涂,防止防护面料本体在喷涂时存在死角,影响防护面料本体的整体阻燃耐高温效果,通过气缸、活动座、活动杆和活动板的配合,便于使用者利用气缸带动活动板进行摆动,从而带动喷头对防护面料本体的表面进行全方位摆动喷涂,增大了喷涂面积,提高了设备的工作效率,进一步增强了喷涂效果,使喷涂更加均匀,解决了传统防护面料阻燃效果和耐高温效果差,同时在制备时,无法对防护面料的表面均匀喷涂耐高温液体的问题;
2、本发明通过电加热丝的配合,便于使用者对喷涂之后的防护面料本体快速烘干,通过导流块和导流槽的配合,便于使用者将防护面料本体在烘干时滴落的特氟龙涂料重新导流回固定箱,随后经由下料孔下落至集液箱,从而对特氟龙涂料进行回收再利用,通过弧形滑槽和球形滑块的配合,便于使用者对活动板进行限位,防止活动板在摆动时倾斜,提高了活动板的稳定性,通过第一滑槽和第一滑块的配合,便于使用者对活动座进行限位,防止活动座在移动时发生偏移,同时提高了活动杆的稳定性。
附图说明
图1为本发明提供的一种阻燃耐高温防护面料及其制备装置的一种较佳实施例的结构示意图;
图2为图1所示防护面料本体的结构局部剖视图;
图3为图1所示一种阻燃耐高温防护面料及其制备装置的结构主视图;
图4为图1所示固定箱的结构剖视图;
图5为图1所示活动座和第一滑块的结构立体图。
图中标号:1、防护面料本体;2、阻燃层;21、芳纶纤维层;22、腈纶纤维层;3、耐高温层;31、玻璃纤维层;32、特氟龙涂料层;4、基座;5、固定箱;6、水箱;7、加热箱;8、集液箱;9、喷涂机构;91、水泵;92、通水管;93、三通管;94、第一软管;95、分流器;96、输水管;97、第二软管;10、移动机构;101、气缸;102、活动座;103、活动杆;104、活动板;11、支撑板;12、电加热丝;13、弧形滑槽;14、球形滑块;15、第一滑槽;16、第一滑块。
具体实施方式
下面结合附图和实施方式对本发明作进一步说明。
请结合参阅图1、图2、图3、图4和图5,其中图1为本发明提供的一种阻燃耐高温防护面料及其制备装置的一种较佳实施例的结构示意图;图2为图1所示防护面料本体的结构局部剖视图;图3为图1所示一种阻燃耐高温防护面料及其制备装置的结构主视图;图4为图1所示固定箱的结构剖视图;图5为图1所示活动座和第一滑块的结构立体图,一种阻燃耐高温防护面料,包括:防护面料本体1,所述防护面料本体1由经线和纬线交替编织而成,所述防护面料本体1的外侧编织有阻燃层2,所述阻燃层2的外侧喷涂有耐高温层3,所述阻燃层2包括芳纶纤维层21和腈纶纤维层22,所述耐高温层3包括玻璃纤维层31和特氟龙涂料层32。
所述芳纶纤维层21位于防护面料本体1的外侧,所述腈纶纤维层22位于芳纶纤维层21的外侧,所述芳纶纤维层21和腈纶纤维层22的厚度相同,通过芳纶纤维层21和腈纶纤维层22的配合,提高了防护面料本体1的阻燃效果,避免了防护面料本体1因为外界火焰的燃烧而迅速损坏,延长了防护面料本体1的使用寿命。
所述玻璃纤维层31位于腈纶纤维层22的外侧,所述特氟龙涂料层32喷涂于玻璃纤维层31的外侧,所述特氟龙涂料层32的厚度小于玻璃纤维层31的厚度,通过玻璃纤维层31和特氟龙涂料层32的配合,提高了防护面料本体1的耐高温效果,避免了防护面料本体1因为外界温度过高而发生损坏,进一步延长了防护面料本体1的使用寿命。
所述基座4的顶部栓接有固定箱5,所述固定箱5顶部右侧的背面栓接有水箱6,所述水箱6顶部正面的左侧连通有进水管,所述固定箱5右侧的背面栓接有加热箱7,所述固定箱5两侧的中心处均开设有通槽,且通槽的内腔与防护面料本体1的表面活动连接,所述防护面料本体1的右侧贯穿加热箱7并向右侧延伸,所述固定箱5的内腔设置有喷涂机构9,所述固定箱5内腔的右侧设置有移动机构10,所述移动机构10的左侧与喷涂机构9的右侧栓接,所述固定箱5内腔底部的四周均开设有下料孔,所述基座4内腔的底部放置有集液箱8,所述集液箱8位于下料孔的正下方,通过水泵91、通水管92、三通管93、第一软管94、分流器95、输水管96和第二软管97的配合,便于使用者利用水泵91将特氟龙涂料经由喷头对防护面料本体1的顶部和底部进行全方位喷涂,防止防护面料本体1在喷涂时存在死角,影响防护面料本体1的整体阻燃耐高温效果,通过气缸101、活动座102、活动杆103和活动板104的配合,便于使用者利用气缸101带动活动板104进行摆动,从而带动喷头对防护面料本体1的表面进行全方位摆动喷涂,增大了喷涂面积,提高了设备的工作效率,进一步增强了喷涂效果,使喷涂更加均匀,解决了传统防护面料阻燃效果和耐高温效果差,同时在制备时,无法对防护面料的表面均匀喷涂耐高温液体的问题。
所述喷涂机构9包括水泵91、通水管92、三通管93、第一软管94、分流器95、输水管96和第二软管97,所述固定箱5内腔顶部背面的左侧栓接有水泵91,所述水泵91的进水口与水箱6的左侧连通,所述水泵91的出水口连通有通水管92,所述通水管92远离水泵91的一端贯穿至固定箱5的内腔并连通有三通管93,所述三通管93的右端连通有第一软管94,所述三通管93的左端连通有输水管96,所述输水管96远离三通管93的一端连通有第二软管97,所述第一软管94和第二软管97分别远离三通管93和输水管96的一端均连通有分流器95,所述分流器95的背面与移动机构10的正面栓接,所述分流器95的底部从前至后均依次连通有喷头,所述防护面料本体1位于喷头相向的一侧,通过水泵91、通水管92、三通管93、第一软管94、分流器95、输水管96和第二软管97的配合,便于使用者利用水泵91将特氟龙涂料经由喷头对防护面料本体1的顶部和底部进行全方位喷涂,防止防护面料本体1在喷涂时存在死角,影响防护面料本体1的整体阻燃耐高温效果。
所述移动机构10包括气缸101、活动座102、活动杆103和活动板104,所述固定箱5内腔左侧的中心处从上至下均依次通过活动轴活动连接有活动板104,所述活动板104的正面与分流器95的背面栓接,所述分流器95右侧的背面栓接有活动块,且活动块的右侧通过活动轴活动连接有活动杆103,所述固定箱5内腔背面的右侧栓接有支撑板11,所述支撑板11的正面栓接有气缸101,所述气缸101的活塞杆栓接有活动座102,所述活动杆103远离活动块的一侧通过活动轴与活动座102的内腔活动连接,通过气缸101、活动座102、活动杆103和活动板104的配合,便于使用者利用气缸101带动活动板104进行摆动,从而带动喷头对防护面料本体1的表面进行全方位摆动喷涂,增大了喷涂面积,提高了设备的工作效率,进一步增强了喷涂效果,使喷涂更加均匀。
所述加热箱7内腔背面顶部的两侧均栓接有安装块,且安装块相向的一侧从上至下均依次嵌设有电加热丝12,所述加热箱7内腔的底部栓接有导流块,所述加热箱7内腔左侧的底部和固定箱5右侧的底部均开设有导流槽,通过电加热丝12的配合,便于使用者对喷涂之后的防护面料本体1快速烘干,通过导流块和导流槽的配合,便于使用者将防护面料本体1在烘干时滴落的特氟龙涂料重新导流回固定箱5,随后经由下料孔下落至集液箱8,从而对特氟龙涂料进行回收再利用。
所述固定箱5内腔背面的顶部和底部均开设有弧形滑槽13,所述弧形滑槽13的内腔滑动连接有球形滑块14,所述球形滑块14的正面贯穿弧形滑槽13并与活动板104的背面栓接,通过弧形滑槽13和球形滑块14的配合,便于使用者对活动板104进行限位,防止活动板104在摆动时倾斜,提高了活动板104的稳定性。
所述支撑板11正面的左侧横向开设有第一滑槽15,所述第一滑槽15的内腔滑动连接有第一滑块16,所述第一滑块16的正面贯穿第一滑槽15并与活动座102的背面栓接,通过第一滑槽15和第一滑块16的配合,便于使用者对活动座102进行限位,防止活动座102在移动时发生偏移,同时提高了活动杆103的稳定性。
一种阻燃耐高温防护面料的制备装置,包括如下步骤:
S1、使用时,芳纶纤维层21和腈纶纤维层22提高了防护面料本体1的阻燃效果,避免了防护面料本体1因为外界火焰的燃烧而迅速损坏,延长了防护面料本体1的使用寿命,同时玻璃纤维层31和特氟龙涂料层32提高了防护面料本体1的耐高温效果,避免了防护面料本体1因为外界温度过高而发生损坏,进一步延长了防护面料本体1的使用寿命;
S2、使用者在对防护面料本体1进行制备时,需要将特氟龙涂料层32喷涂于防护面料本体1的表面,此时使用者开启水泵91,随后水泵91将水箱6内的特氟龙涂料经由通水管92传输至三通管93内,此时三通管93将特氟龙涂料分别传输至第一软管94和输水管96内,同时输水管96将特氟龙涂料传输至第二软管97内,此时第一软管94和第二软管97同时将特氟龙涂料经由分流器95传送至多个喷头内,从而对防护面料本体1的顶部和底部进行全方位喷涂,防止防护面料本体1在喷涂时存在死角,影响防护面料本体1的整体阻燃耐高温效果;
S3、随后使用者打开气缸101,此时气缸101带动活动座102向右侧移动,从而带动活动杆103向右侧移动,随后活动杆103在活动块的辅助下带动分流器95向右侧摆动,同时活动板104带动球形滑块14在弧形滑槽13内滑动,对分流器95进行滑动支撑,随后分流器95带动喷头向右侧摆动,同理,气缸101带动活动座102向左侧移动,从而带动喷头向左侧摆动,进而对防护面料本体1的表面进行全方位摆动喷涂,增大了喷涂面积,进一步增强了喷涂效果,使喷涂更加均匀。
与相关技术相比较,本发明提供的一种阻燃耐高温防护面料及其制备装置具有如下有益效果:
本发明通过芳纶纤维层21和腈纶纤维层22的配合,提高了防护面料本体1的阻燃效果,避免了防护面料本体1因为外界火焰的燃烧而迅速损坏,延长了防护面料本体1的使用寿命,通过玻璃纤维层31和特氟龙涂料层32的配合,提高了防护面料本体1的耐高温效果,避免了防护面料本体1因为外界温度过高而发生损坏,进一步延长了防护面料本体1的使用寿命,通过水泵91、通水管92、三通管93、第一软管94、分流器95、输水管96和第二软管97的配合,便于使用者利用水泵91将特氟龙涂料经由喷头对防护面料本体1的顶部和底部进行全方位喷涂,防止防护面料本体1在喷涂时存在死角,影响防护面料本体1的整体阻燃耐高温效果,通过气缸101、活动座102、活动杆103和活动板104的配合,便于使用者利用气缸101带动活动板104进行摆动,从而带动喷头对防护面料本体1的表面进行全方位摆动喷涂,增大了喷涂面积,提高了设备的工作效率,进一步增强了喷涂效果,使喷涂更加均匀,解决了传统防护面料阻燃效果和耐高温效果差,同时在制备时,无法对防护面料的表面均匀喷涂耐高温液体的问题。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其它相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (10)
1.一种阻燃耐高温防护面料,其特征在于,包括:防护面料本体(1),所述防护面料本体(1)由经线和纬线交替编织而成,所述防护面料本体(1)的外侧编织有阻燃层(2),所述阻燃层(2)的外侧喷涂有耐高温层(3),所述阻燃层(2)包括芳纶纤维层(21)和腈纶纤维层(22),所述耐高温层(3)包括玻璃纤维层(31)和特氟龙涂料层(32)。
2.根据权利要求1所述的阻燃耐高温防护面料,其特征在于,所述芳纶纤维层(21)位于防护面料本体(1)的外侧,所述腈纶纤维层(22)位于芳纶纤维层(21)的外侧,所述芳纶纤维层(21)和腈纶纤维层(22)的厚度相同。
3.根据权利要求1所述的阻燃耐高温防护面料,其特征在于,所述玻璃纤维层(31)位于腈纶纤维层(22)的外侧,所述特氟龙涂料层(32)喷涂于玻璃纤维层(31)的外侧,所述特氟龙涂料层(32)的厚度小于玻璃纤维层(31)的厚度。
4.根据权利要求1所述的阻燃耐高温防护面料的制备装置,其特征在于,包括基座(4),所述基座(4)的顶部栓接有固定箱(5),所述固定箱(5)顶部右侧的背面栓接有水箱(6),所述水箱(6)顶部正面的左侧连通有进水管,所述固定箱(5)右侧的背面栓接有加热箱(7),所述固定箱(5)两侧的中心处均开设有通槽,且通槽的内腔与防护面料本体(1)的表面活动连接,所述防护面料本体(1)的右侧贯穿加热箱(7)并向右侧延伸,所述固定箱(5)的内腔设置有喷涂机构(9),所述固定箱(5)内腔的右侧设置有移动机构(10),所述移动机构(10)的左侧与喷涂机构(9)的右侧栓接,所述固定箱(5)内腔底部的四周均开设有下料孔,所述基座(4)内腔的底部放置有集液箱(8),所述集液箱(8)位于下料孔的正下方。
5.根据权利要求4所述的阻燃耐高温防护面料的制备装置,其特征在于,所述喷涂机构(9)包括水泵(91)、通水管(92)、三通管(93)、第一软管(94)、分流器(95)、输水管(96)和第二软管(97),所述固定箱(5)内腔顶部背面的左侧栓接有水泵(91),所述水泵(91)的进水口与水箱(6)的左侧连通,所述水泵(91)的出水口连通有通水管(92),所述通水管(92)远离水泵(91)的一端贯穿至固定箱(5)的内腔并连通有三通管(93),所述三通管(93)的右端连通有第一软管(94),所述三通管(93)的左端连通有输水管(96),所述输水管(96)远离三通管(93)的一端连通有第二软管(97),所述第一软管(94)和第二软管(97)分别远离三通管(93)和输水管(96)的一端均连通有分流器(95),所述分流器(95)的背面与移动机构(10)的正面栓接,所述分流器(95)的底部从前至后均依次连通有喷头,所述防护面料本体(1)位于喷头相向的一侧。
6.根据权利要求4所述的阻燃耐高温防护面料的制备装置,其特征在于,所述移动机构(10)包括气缸(101)、活动座(102)、活动杆(103)和活动板(104),所述固定箱(5)内腔左侧的中心处从上至下均依次通过活动轴活动连接有活动板(104),所述活动板(104)的正面与分流器(95)的背面栓接,所述分流器(95)右侧的背面栓接有活动块,且活动块的右侧通过活动轴活动连接有活动杆(103),所述固定箱(5)内腔背面的右侧栓接有支撑板(11),所述支撑板(11)的正面栓接有气缸(101),所述气缸(101)的活塞杆栓接有活动座(102),所述活动杆(103)远离活动块的一侧通过活动轴与活动座(102)的内腔活动连接。
7.根据权利要求4所述的阻燃耐高温防护面料的制备装置,其特征在于,所述加热箱(7)内腔背面顶部的两侧均栓接有安装块,且安装块相向的一侧从上至下均依次嵌设有电加热丝(12),所述加热箱(7)内腔的底部栓接有导流块,所述加热箱(7)内腔左侧的底部和固定箱(5)右侧的底部均开设有导流槽。
8.根据权利要求4所述的阻燃耐高温防护面料的制备装置,其特征在于,所述固定箱(5)内腔背面的顶部和底部均开设有弧形滑槽(13),所述弧形滑槽(13)的内腔滑动连接有球形滑块(14),所述球形滑块(14)的正面贯穿弧形滑槽(13)并与活动板(104)的背面栓接。
9.根据权利要求6所述的阻燃耐高温防护面料的制备装置,其特征在于,所述支撑板(11)正面的左侧横向开设有第一滑槽(15),所述第一滑槽(15)的内腔滑动连接有第一滑块(16),所述第一滑块(16)的正面贯穿第一滑槽(15)并与活动座(102)的背面栓接。
10.一种阻燃耐高温防护面料的制备装置,其特征在于,包括如下步骤:
S1、使用时,芳纶纤维层(21)和腈纶纤维层(22)提高了防护面料本体(1)的阻燃效果,避免了防护面料本体(1)因为外界火焰的燃烧而迅速损坏,延长了防护面料本体(1)的使用寿命,同时玻璃纤维层(31)和特氟龙涂料层(32)提高了防护面料本体(1)的耐高温效果,避免了防护面料本体(1)因为外界温度过高而发生损坏,进一步延长了防护面料本体(1)的使用寿命;
S2、使用者在对防护面料本体(1)进行制备时,需要将特氟龙涂料层(32)喷涂于防护面料本体(1)的表面,此时使用者开启水泵(91),随后水泵(91)将水箱(6)内的特氟龙涂料经由通水管(92)传输至三通管(93)内,此时三通管(93)将特氟龙涂料分别传输至第一软管(94)和输水管(96)内,同时输水管(96)将特氟龙涂料传输至第二软管(97)内,此时第一软管(94)和第二软管(97)同时将特氟龙涂料经由分流器(95)传送至多个喷头内,从而对防护面料本体(1)的顶部和底部进行全方位喷涂,防止防护面料本体(1)在喷涂时存在死角,影响防护面料本体(1)的整体阻燃耐高温效果;
S3、随后使用者打开气缸(101),此时气缸(101)带动活动座(102)向右侧移动,从而带动活动杆(103)向右侧移动,随后活动杆(103)在活动块的辅助下带动分流器(95)向右侧摆动,同时活动板(104)带动球形滑块(14)在弧形滑槽(13)内滑动,对分流器(95)进行滑动支撑,随后分流器(95)带动喷头向右侧摆动,同理,气缸(101)带动活动座(102)向左侧移动,从而带动喷头向左侧摆动,进而对防护面料本体(1)的表面进行全方位摆动喷涂,增大了喷涂面积,进一步增强了喷涂效果,使喷涂更加均匀。
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