CN112428631A - 一种基于石墨烯的持久抗菌复合纺织面料 - Google Patents
一种基于石墨烯的持久抗菌复合纺织面料 Download PDFInfo
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Abstract
本发明属于抗菌复合纺织面料技术领域,具体涉及一种基于石墨烯的持久抗菌复合纺织面料,包括纤维层和抗菌层;所述纤维层为两层;所述抗菌层涂抹在两层纤维层之间,所述持久抗菌复合纺织面料的端面设置有通气孔;该持久抗菌复合纺织面料在成型前需经过透气装置处理;本发明中使用的透气装置包括U形座、辊轴和控制器;所述U形座的两侧壁之间转动连接着收卷轴;所述收卷轴用于收卷面料;所述U形座的外壁上安装有一号电机;本发明中使用的透气装置通过收卷轴对面料进行收卷与展开轴对面料进行展开相配合,使得面料受到辊轴带动圆针的作用形成通气孔,从而使得持久抗菌复合纺织面料的透气性得到提高,进而提高了持久抗菌复合纺织面料的品质。
Description
技术领域
本发明属于抗菌复合纺织面料技术领域,具体涉及一种基于石墨烯的持久抗菌复合纺织面料。
背景技术
纺织品作为人类生活必不可少的功能性用品。现代纺织科学技术的快速发展和人们对纺织品功能性、舒适性需求的提升,那些具有特殊功能的纺织品往往更容易受到消费者的青睐;具有多孔结构的纺织纤维面料,在使用过程中容易吸附细菌,且人体排出的汗液、脱落的皮脂等都为菌类繁殖提供了丰富的营养,造成细菌滋生,细菌的滋生不仅易造成交叉感染而传播疾病,产生异味,也容易损伤纤维,因此,开发具有抗菌功能的纺织面料是纺织品发展的必然要求之一;氧化石墨烯可以破坏细菌的细胞膜,从而导致胞内物质外流并杀死细菌,自2010年在实验上首次发现氧化石墨烯的抗菌作用以来,已开发出多种基于石墨烯整理的抗菌织物,而现有的石墨烯抗菌面料大多是通过直接在织物上涂有一层抗菌层,直接在面料上设置涂层会极大地降低了织物的透气性,使得人们使用时无法进行透气,从而使得人们容易分泌汗液,进而影响抗菌面料使用的舒适性。
现有技术中也出现了一些关于基于石墨烯的持久抗菌复合纺织面料的技术方案,如申请号为CN202010653930.2的一项专利公开了基于石墨烯的持久抗菌复合服装面料,通过烯基酰氯单体与氧化石墨烯表面的羟基反应,以三乙胺为缚酸剂,将烯基双键接枝在氧化石墨烯上,再与表面巯基改性的棉纤维进行巯基-烯反应,将石墨烯以共价键接枝在棉纤维上,再将石墨烯抗菌纤维经纺纱、织造制得所述基于石墨烯的持久抗菌复合服装面料,该技术方案通过纤维表面改性,再以表面改性的纤维纺织成面料,使得所述面料在获得功能改性的同时保留面料良好透气性,提高面料的服用性,通过共价接枝,提高石墨烯在纤维上的附着力,耐洗牢度高;但是该技术方案的面料纺织过后,纤维与纤维之间挤压后透气性差,使得工作人员在使用时容易分泌汗液,影响面料使用的舒适性,同时该技术方案制备效率低下,从而造成该技术方案的局限性。
鉴于此,为了克服上述技术问题,本发明提出了一种基于石墨烯的持久抗菌复合纺织面料,采用了特殊的透气装置,解决了上述技术问题。
发明内容
为了弥补现有技术的不足,本发明提出的一种基于石墨烯的持久抗菌复合纺织面料,本发明中使用的透气装置通过收卷轴对面料进行收卷与展开轴对面料进行展开相配合,使得面料受到辊轴带动圆针的作用形成通气孔,从而使得持久抗菌复合纺织面料的透气性得到提高,进而提高了持久抗菌复合纺织面料的品质。
本发明解决其技术问题所采用的技术方案是:本发明所述的一种基于石墨烯的持久抗菌复合纺织面料,包括纤维层和抗菌层;所述纤维层为两层;所述抗菌层涂抹在两层纤维层之间,所述持久抗菌复合纺织面料的端面设置有通气孔;该持久抗菌复合纺织面料在成型前需经过透气装置处理,该持久抗菌复合纺织面料的制备工艺步骤如下:
S1:涂料制备:先将三氯甲烷、丙酮和三乙基胺到入搅拌釜内,再将氧化石墨烯倒入搅拌釜内,最后再加入至少含有一个碳碳双键官能团的酰氯单体,工作人员对搅拌釜内的原料进行搅拌,在搅拌1-2h后,再向搅拌釜内加入无水乙醇、增稠剂、交联剂、光引发剂、粘合剂和丙酮,最后搅拌3-4h制成涂料;通过对搅拌釜内的原料分批次进行加入,保证了原料与原料之间反应的充分性,同时对搅拌釜内的原料进行搅拌,进而提高了涂料的均匀性;
S2:复合:纤维层是通过纱线纺织而成,再将涂料通过毛刷刷在两层纤维层之间,两层纤维层受到粘合剂的作用而粘合;通过将涂料涂在两层纤维层之间,使得面料具有持久抗菌的效果,同时使得抗菌层不易脱落;
S3:透气处理:将S2的面料一端缠绕在透气装置中的展开轴上,另一端绕过辊轴缠绕在收卷轴上,启动控制器控制一号电机和二号电机转动,面料通过摩擦力带动辊轴转动,辊轴上的圆针将面料的端面戳破,从而形成通气孔,进而完成了对持久抗菌复合纺织面料的制备;通过收卷轴对面料进行收卷与展开轴对面料进行展开相配合,使得面料受到辊轴带动圆针的作用形成通气孔,从而使得持久抗菌复合纺织面料的透气性得到提高,进而提高了持久抗菌复合纺织面料的品质;
其中,S3中使用的透气装置包括U形座、辊轴和控制器;所述U形座的两侧壁之间转动连接着收卷轴;所述收卷轴用于收卷面料;所述U形座的外壁上安装有一号电机;所述一号电机的输出轴连接着收卷轴的一端;所述U形座的两侧壁之间转动连接展开轴;所述展开轴位于收卷轴的正上方,展开轴用于展开面料;所述U形座的外壁上安装有二号电机;所述二号电机的输出轴连接着展开轴的一端;所述U形座的两侧壁之间转动连接着辊轴;所述辊轴的外壁上设置有圆针;所述圆针均匀分布在辊轴的外壁上;所述面料一端缠绕在展开轴上,另一端绕过辊轴缠绕在收卷轴上;所述控制器用于控制透气装置自动运行;
使用时,现有的石墨烯抗菌面料大多是通过直接在织物上涂有一层抗菌层,直接在面料上设置涂层会极大地降低了织物的透气性,使得人们使用时无法进行透气,从而使得人们容易分泌汗液,进而影响抗菌面料使用的舒适性;因此本发明中工作人员将面料放置在透气装置的规定位置后,启动控制器控制一号电机和二号电机同时转动,一号电机带动固连的收卷轴进行转动,转动的收卷轴对面料进行收卷,二号电机带动固连的展开轴转动,转动的展开轴将面料展开,通过控制一号电机和二号电机的转速,进而控制面料处于绷紧状态,面料转动的同时,面料通过摩擦力的作用带动辊轴转动,辊轴转动会带动圆针转动,从而通过圆针将面料的端面戳破,进而形成通气孔;本发明通过收卷轴对面料进行收卷与展开轴对面料进行展开相配合,使得面料受到辊轴带动圆针的作用形成通气孔,从而使得持久抗菌复合纺织面料的透气性得到提高,进而提高了持久抗菌复合纺织面料的品质。
优选的,所述圆针的中部直径大于端部直径;使用时,本发明通过将圆针的中部直径大于端部直径,从而使得圆针的一端先将面料的端面戳破,再将通孔撑大,提高了圆针将面料戳破的锋利性,随后面料会移动至圆针的另一端,随着面料的移动,面料会离开圆针,使得圆针的中部对通气孔进行二次撑大,从而防止面料在脱离圆针后,通气孔受到弹性作用而缩小,使得通气孔的通气效果差的问题,进一步提高了持久抗菌复合纺织面料的透气性。
优选的,所述U形座的两内壁上设置有矩形槽;所述矩形槽内滑动连接着滑条,矩形槽内还设有一号弹簧;所述一号弹簧的一端连接着滑条,另一端连接着矩形槽的槽壁上;两个所述滑条之间转动连接着两个圆柱;两个所述圆柱将面料夹持,两个圆柱靠近辊轴设置;其中一个所述U形座的内壁上转动连接着圆盘;所述圆盘的边缘一半设置成齿形;所述滑条靠近圆盘的一侧设置成齿形;所述圆盘一半啮合着滑条;所述U形座的外壁上安装有三号电机;所述三号电机的输出轴连接着圆盘的一端;使用时,本发明中工作人员启动控制器控制三号电机转动,三号电机会带动圆盘转动,当圆盘带有齿形的部分与滑条接触时,圆盘会带动滑条沿着矩形槽滑动,从而使得滑条带动两个圆柱向下运动,圆柱运动的同时会带动面料向下运动,使得面料远离圆针,当圆盘带有齿形的部分远离滑条时,一号弹簧会带动滑条沿着矩形槽向上滑动,使得滑条通过圆柱带动面料向上运动,使得面料靠近圆针;本发明通过三号电机带动面料远离圆针与一号弹簧带动面料靠近圆针相配合,使得圆针能够对面料进行反复戳击,进而达到了对透气孔疏通的作用,使得持久抗菌复合纺织面料的透气效果得到提高。
优选的,所述圆柱的外壁上设置有条形槽;所述条形槽均匀分布在圆柱的外壁上,条形槽滑动连接着条形块,条形槽内还设有二号弹簧;所述二号弹簧的一端连接着条形块,另一端连接着条形槽的槽底;使用时,圆柱与面料接触时,面料受到摩擦力作用会带动圆柱转动,圆柱转动会带动条形块转动,使得条形块受到二号弹簧的作用下将面料压合,使得两个纤维层之间的粘合效果得到增强,防止面料长时间使用后出现松弛的现象,进一步的提高了持久抗菌复合纺织面料的品质,同时通过将两个纤维层粘合得更加紧密,使得两个纤维层之间的抗菌层不易脱落,保证了面料的抗菌成分不会流失。
优选的,所述条形块的边缘设置有弧形钩;所述弧形钩对称分布在条形块的两侧,弧形钩的弧口朝向条形槽;使用时,面料远离圆针后,圆针会带动部分纤维沿着通气孔流出至面料的表面,从而影响面料表面的光洁性;因此本发明中圆柱带动条形块移动过程中,通过条形块带动弧形钩靠近面料的端面,使弧形钩将面料端面上的纤维钩走,防止纤维粘附在面料的表面,进而提高了面料的光洁性,使得持久抗菌复合纺织面料的品质得到提高;通过将弧形钩的弧口朝向条形槽,防止弧形钩将面料的端面钩坏,造成面料破损的问题。
优选的,所述弧形钩设置在相邻两个条形块的其中一个上;所述条形块的端部设置有V形槽;使用时,通过将弧形钩间隔式分布在相对应的条形块上,使得弧形钩将面料表面的纤维钩走后,相邻的条形块将面料的表面压实,通过将条形块的端部设置有V形槽,减小了条形块与面料的接触面积,增大了条形块压实面料的力度,使得面料的品质得到提高,同时增大了条形块与面料的摩擦力,使得面料带动圆柱转动的稳定性得到提高,进而提高了透气装置的稳定性。
本发明的有益效果如下:
1.本发明中使用的透气装置通过收卷轴对面料进行收卷与展开轴对面料进行展开相配合,使得面料受到辊轴带动圆针的作用形成通气孔,从而使得持久抗菌复合纺织面料的透气性得到提高,进而提高了持久抗菌复合纺织面料的品质。
2.本发明中使用的透气装置通过将圆针的中部直径大于端部直径,从而使得圆针的一端先将面料的端面戳破,再将通孔撑大,提高了圆针将面料戳破的锋利性,随后面料会移动至圆针的另一端,随着面料的移动,面料会离开圆针,使得圆针的中部对通气孔进行二次撑大,从而防止面料在脱离圆针后,通气孔受到弹性作用而缩小,使得通气孔的通气效果差的问题,进一步提高了持久抗菌复合纺织面料的透气性。
3.本发明中使用的透气装置通过三号电机带动面料远离圆针与一号弹簧带动面料靠近圆针相配合,使得圆针能够对面料进行反复戳击,进而达到了对透气孔疏通的作用,使得持久抗菌复合纺织面料的透气效果得到提高。
附图说明
下面结合附图对本发明作进一步说明。
图1是本发明的剖视图;
图2是本发明面料的工艺流程图;
图3是本发明中使用的透气装置的立体图;
图4是图3中A处的放大图;
图5是本发明中使用的透气装置的剖视图;
图6是图5中B处的放大图;
图7是图5中C处的放大图;
图8是本发明中使用的透气装置中圆柱的剖视图;
图中:纤维层1、抗菌层2、通气孔21、U形座3、收卷轴31、一号电机32、展开轴33、二号电机34、矩形槽35、滑条36、一号弹簧37、圆盘38、三号电机39、辊轴4、圆针41、圆柱5、条形槽51、条形块52、弧形钩521、V形槽522、二号弹簧53。
具体实施方式
为了使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体实施方式,进一步阐述本发明。
如图1至图8所示,本发明所述的一种基于石墨烯的持久抗菌复合纺织面料,包括纤维层1和抗菌层2;所述纤维层1为两层;所述抗菌层2涂抹在两层纤维层1之间,所述持久抗菌复合纺织面料的端面设置有通气孔21;该持久抗菌复合纺织面料在成型前需经过透气装置处理,该持久抗菌复合纺织面料的制备工艺步骤如下:
S1:涂料制备:先将三氯甲烷、丙酮和三乙基胺到入搅拌釜内,再将氧化石墨烯倒入搅拌釜内,最后再加入至少含有一个碳碳双键官能团的酰氯单体,工作人员对搅拌釜内的原料进行搅拌,在搅拌1-2h后,再向搅拌釜内加入无水乙醇、增稠剂、交联剂、光引发剂、粘合剂和丙酮,最后搅拌3-4h制成涂料;通过对搅拌釜内的原料分批次进行加入,保证了原料与原料之间反应的充分性,同时对搅拌釜内的原料进行搅拌,进而提高了涂料的均匀性;
S2:复合:纤维层1是通过纱线纺织而成,再将涂料通过毛刷刷在两层纤维层1之间,两层纤维层1受到粘合剂的作用而粘合;通过将涂料涂在两层纤维层1之间,使得面料具有持久抗菌的效果,同时使得抗菌层2不易脱落;
S3:透气处理:将S2的面料一端缠绕在透气装置中的展开轴33上,另一端绕过辊轴4缠绕在收卷轴31上,启动控制器控制一号电机32和二号电机34转动,面料通过摩擦力带动辊轴4转动,辊轴4上的圆针41将面料的端面戳破,从而形成通气孔21,进而完成了对持久抗菌复合纺织面料的制备;通过收卷轴31对面料进行收卷与展开轴33对面料进行展开相配合,使得面料受到辊轴4带动圆针41的作用形成通气孔21,从而使得持久抗菌复合纺织面料的透气性得到提高,进而提高了持久抗菌复合纺织面料的品质;
其中,S3中使用的透气装置包括U形座3、辊轴4和控制器;所述U形座3的两侧壁之间转动连接着收卷轴31;所述收卷轴31用于收卷面料;所述U形座3的外壁上安装有一号电机32;所述一号电机32的输出轴连接着收卷轴31的一端;所述U形座3的两侧壁之间转动连接展开轴33;所述展开轴33位于收卷轴31的正上方,展开轴33用于展开面料;所述U形座3的外壁上安装有二号电机34;所述二号电机34的输出轴连接着展开轴33的一端;所述U形座3的两侧壁之间转动连接着辊轴4;所述辊轴4的外壁上设置有圆针41;所述圆针41均匀分布在辊轴4的外壁上;所述面料一端缠绕在展开轴33上,另一端绕过辊轴4缠绕在收卷轴31上;所述控制器用于控制透气装置自动运行;
使用时,现有的石墨烯抗菌面料大多是通过直接在织物上涂有一层抗菌层2,直接在面料上设置涂层会极大地降低了织物的透气性,使得人们使用时无法进行透气,从而使得人们容易分泌汗液,进而影响抗菌面料使用的舒适性;因此本发明中工作人员将面料放置在透气装置的规定位置后,启动控制器控制一号电机32和二号电机34同时转动,一号电机32带动固连的收卷轴31进行转动,转动的收卷轴31对面料进行收卷,二号电机34带动固连的展开轴33转动,转动的展开轴33将面料展开,通过控制一号电机32和二号电机34的转速,进而控制面料处于绷紧状态,面料转动的同时,面料通过摩擦力的作用带动辊轴4转动,辊轴4转动会带动圆针41转动,从而通过圆针41将面料的端面戳破,进而形成通气孔21;本发明通过收卷轴31对面料进行收卷与展开轴33对面料进行展开相配合,使得面料受到辊轴4带动圆针41的作用形成通气孔21,从而使得持久抗菌复合纺织面料的透气性得到提高,进而提高了持久抗菌复合纺织面料的品质。
作为本发明的一种实施方式,所述圆针41的中部直径大于端部直径;使用时,本发明通过将圆针41的中部直径大于端部直径,从而使得圆针41的一端先将面料的端面戳破,再将通孔撑大,提高了圆针41将面料戳破的锋利性,随后面料会移动至圆针41的另一端,随着面料的移动,面料会离开圆针41,使得圆针41的中部对通气孔21进行二次撑大,从而防止面料在脱离圆针41后,通气孔21受到弹性作用而缩小,使得通气孔21的通气效果差的问题,进一步提高了持久抗菌复合纺织面料的透气性。
作为本发明的一种实施方式,所述U形座3的两内壁上设置有矩形槽35;所述矩形槽35内滑动连接着滑条36,矩形槽35内还设有一号弹簧37;所述一号弹簧37的一端连接着滑条36,另一端连接着矩形槽35的槽壁上;两个所述滑条36之间转动连接着两个圆柱5;两个所述圆柱5将面料夹持,两个圆柱5靠近辊轴4设置;其中一个所述U形座3的内壁上转动连接着圆盘38;所述圆盘38的边缘一半设置成齿形;所述滑条36靠近圆盘38的一侧设置成齿形;所述圆盘38一半啮合着滑条36;所述U形座3的外壁上安装有三号电机39;所述三号电机39的输出轴连接着圆盘38的一端;使用时,本发明中工作人员启动控制器控制三号电机39转动,三号电机39会带动圆盘38转动,当圆盘38带有齿形的部分与滑条36接触时,圆盘38会带动滑条36沿着矩形槽35滑动,从而使得滑条36带动两个圆柱5向下运动,圆柱5运动的同时会带动面料向下运动,使得面料远离圆针41,当圆盘38带有齿形的部分远离滑条36时,一号弹簧37会带动滑条36沿着矩形槽35向上滑动,使得滑条36通过圆柱5带动面料向上运动,使得面料靠近圆针41;本发明通过三号电机39带动面料远离圆针41与一号弹簧37带动面料靠近圆针41相配合,使得圆针41能够对面料进行反复戳击,进而达到了对透气孔疏通的作用,使得持久抗菌复合纺织面料的透气效果得到提高。
作为本发明的一种实施方式,所述圆柱5的外壁上设置有条形槽51;所述条形槽51均匀分布在圆柱5的外壁上,条形槽51滑动连接着条形块52,条形槽51内还设有二号弹簧53;所述二号弹簧53的一端连接着条形块52,另一端连接着条形槽51的槽底;使用时,圆柱5与面料接触时,面料受到摩擦力作用会带动圆柱5转动,圆柱5转动会带动条形块52转动,使得条形块52受到二号弹簧53的作用下将面料压合,使得两个纤维层1之间的粘合效果得到增强,防止面料长时间使用后出现松弛的现象,进一步的提高了持久抗菌复合纺织面料的品质,同时通过将两个纤维层1粘合得更加紧密,使得两个纤维层1之间的抗菌层2不易脱落,保证了面料的抗菌成分不会流失。
作为本发明的一种实施方式,所述条形块52的边缘设置有弧形钩521;所述弧形钩521对称分布在条形块52的两侧,弧形钩521的弧口朝向条形槽51;使用时,面料远离圆针41后,圆针41会带动部分纤维沿着通气孔21流出至面料的表面,从而影响面料表面的光洁性;因此本发明中圆柱5带动条形块52移动过程中,通过条形块52带动弧形钩521靠近面料的端面,使弧形钩521将面料端面上的纤维钩走,防止纤维粘附在面料的表面,进而提高了面料的光洁性,使得持久抗菌复合纺织面料的品质得到提高;通过将弧形钩521的弧口朝向条形槽51,防止弧形钩521将面料的端面钩坏,造成面料破损的问题。
作为本发明的一种实施方式,所述弧形钩521设置在相邻两个条形块52的其中一个上;所述条形块52的端部设置有V形槽522;使用时,通过将弧形钩521间隔式分布在相对应的条形块52上,使得弧形钩521将面料表面的纤维钩走后,相邻的条形块52将面料的表面压实,通过将条形块52的端部设置有V形槽522,减小了条形块52与面料的接触面积,增大了条形块52压实面料的力度,使得面料的品质得到提高,同时增大了条形块52与面料的摩擦力,使得面料带动圆柱5转动的稳定性得到提高,进而提高了透气装置的稳定性。
使用时,工作人员将面料放置在透气装置的规定位置后,启动控制器控制一号电机32和二号电机34同时转动,一号电机32带动固连的收卷轴31进行转动,转动的收卷轴31对面料进行收卷,二号电机34带动固连的展开轴33转动,转动的展开轴33将面料展开,通过控制一号电机32和二号电机34的转速,进而控制面料处于绷紧状态,面料转动的同时,面料通过摩擦力的作用带动辊轴4转动,辊轴4转动会带动圆针41转动,从而通过圆针41将面料的端面戳破,进而形成通气孔21;通过将圆针41的中部直径大于端部直径,从而使得圆针41的一端先将面料的端面戳破,再将通孔撑大,提高了圆针41将面料戳破的锋利性,随后面料会移动至圆针41的另一端,随着面料的移动,面料会离开圆针41,使得圆针41的中部对通气孔21进行二次撑大,从而防止面料在脱离圆针41后,通气孔21受到弹性作用而缩小,使得通气孔21的通气效果差的问题,进一步提高了持久抗菌复合纺织面料的透气性;控制器控制三号电机39转动,三号电机39会带动圆盘38转动,当圆盘38带有齿形的部分与滑条36接触时,圆盘38会带动滑条36沿着矩形槽35滑动,从而使得滑条36带动两个圆柱5向下运动,圆柱5运动的同时会带动面料向下运动,使得面料远离圆针41,当圆盘38带有齿形的部分远离滑条36时,一号弹簧37会带动滑条36沿着矩形槽35向上滑动,使得滑条36通过圆柱5带动面料向上运动,使得面料靠近圆针41;本发明通过三号电机39带动面料远离圆针41与一号弹簧37带动面料靠近圆针41相配合,使得圆针41能够对面料进行反复戳击,进而达到了对透气孔疏通的作用,使得持久抗菌复合纺织面料的透气效果得到提高;圆柱5与面料接触时,面料受到摩擦力作用会带动圆柱5转动,圆柱5转动会带动条形块52转动,使得条形块52受到二号弹簧53的作用下将面料压合,使得两个纤维层1之间的粘合效果得到增强,防止面料长时间使用后出现松弛的现象,进一步的提高了持久抗菌复合纺织面料的品质,同时通过将两个纤维层1粘合得更加紧密,使得两个纤维层1之间的抗菌层2不易脱落,保证了面料的抗菌成分不会流失;圆柱5带动条形块52移动过程中,通过条形块52带动弧形钩521靠近面料的端面,使弧形钩521将面料端面上的纤维钩走,防止纤维粘附在面料的表面,进而提高了面料的光洁性,使得持久抗菌复合纺织面料的品质得到提高;通过将弧形钩521的弧口朝向条形槽51,防止弧形钩521将面料的端面钩坏,造成面料破损的问题;通过将弧形钩521间隔式分布在相对应的条形块52上,使得弧形钩521将面料表面的纤维钩走后,相邻的条形块52将面料的表面压实,通过将条形块52的端部设置有V形槽522,减小了条形块52与面料的接触面积,增大了条形块52压实面料的力度,使得面料的品质得到提高,同时增大了条形块52与面料的摩擦力,使得面料带动圆柱5转动的稳定性得到提高,进而提高了透气装置的稳定性。
以上显示和描述了本发明的基本原理、主要特征和优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。
Claims (6)
1.一种基于石墨烯的持久抗菌复合纺织面料,包括纤维层(1)和抗菌层(2);其特征在于:所述纤维层(1)为两层;所述抗菌层(2)涂抹在两层纤维层(1)之间,所述持久抗菌复合纺织面料的端面设置有通气孔(21);该持久抗菌复合纺织面料在成型前需经过透气装置处理,该持久抗菌复合纺织面料的制备工艺步骤如下:
S1:涂料制备:先将三氯甲烷、丙酮和三乙基胺到入搅拌釜内,再将氧化石墨烯倒入搅拌釜内,最后再加入至少含有一个碳碳双键官能团的酰氯单体,工作人员对搅拌釜内的原料进行搅拌,在搅拌1-2h后,再向搅拌釜内加入无水乙醇、增稠剂、交联剂、光引发剂、粘合剂和丙酮,最后搅拌3-4h制成涂料;
S2:复合:纤维层(1)是通过纱线纺织而成,再将涂料通过毛刷刷在两层纤维层(1)之间,两层纤维层(1)受到粘合剂的作用而粘合;
S3:透气处理:将S2的面料一端缠绕在透气装置中的展开轴(33)上,另一端绕过辊轴(4)缠绕在收卷轴(31)上,启动控制器控制一号电机(32)和二号电机(34)转动,面料通过摩擦力带动辊轴(4)转动,辊轴(4)上的圆针(41)将面料的端面戳破,从而形成通气孔(21),进而完成了对持久抗菌复合纺织面料的制备;
其中,S3中使用的透气装置包括U形座(3)、辊轴(4)和控制器;所述U形座(3)的两侧壁之间转动连接着收卷轴(31);所述收卷轴(31)用于收卷面料;所述U形座(3)的外壁上安装有一号电机(32);所述一号电机(32)的输出轴连接着收卷轴(31)的一端;所述U形座(3)的两侧壁之间转动连接展开轴(33);所述展开轴(33)位于收卷轴(31)的正上方,展开轴(33)用于展开面料;所述U形座(3)的外壁上安装有二号电机(34);所述二号电机(34)的输出轴连接着展开轴(33)的一端;所述U形座(3)的两侧壁之间转动连接着辊轴(4);所述辊轴(4)的外壁上设置有圆针(41);所述圆针(41)均匀分布在辊轴(4)的外壁上;所述面料一端缠绕在展开轴(33)上,另一端绕过辊轴(4)缠绕在收卷轴(31)上;所述控制器用于控制透气装置自动运行。
2.根据权利要求1所述一种基于石墨烯的持久抗菌复合纺织面料,其特征在于:所述圆针(41)的中部直径大于端部直径。
3.根据权利要求2所述一种基于石墨烯的持久抗菌复合纺织面料,其特征在于:所述U形座(3)的两内壁上设置有矩形槽(35);所述矩形槽(35)内滑动连接着滑条(36),矩形槽(35)内还设有一号弹簧(37);所述一号弹簧(37)的一端连接着滑条(36),另一端连接着矩形槽(35)的槽壁上;两个所述滑条(36)之间转动连接着两个圆柱(5);两个所述圆柱(5)将面料夹持,两个圆柱(5)靠近辊轴(4)设置;其中一个所述U形座(3)的内壁上转动连接着圆盘(38);所述圆盘(38)的边缘一半设置成齿形;所述滑条(36)靠近圆盘(38)的一侧设置成齿形;所述圆盘(38)一半啮合着滑条(36);所述U形座(3)的外壁上安装有三号电机(39);所述三号电机(39)的输出轴连接着圆盘(38)的一端。
4.根据权利要求3所述一种基于石墨烯的持久抗菌复合纺织面料,其特征在于:所述圆柱(5)的外壁上设置有条形槽(51);所述条形槽(51)均匀分布在圆柱(5)的外壁上,条形槽(51)滑动连接着条形块(52),条形槽(51)内还设有二号弹簧(53);所述二号弹簧(53)的一端连接着条形块(52),另一端连接着条形槽(51)的槽底。
5.根据权利要求4所述一种基于石墨烯的持久抗菌复合纺织面料,其特征在于:所述条形块(52)的边缘设置有弧形钩(521);所述弧形钩(521)对称分布在条形块(52)的两侧,弧形钩(521)的弧口朝向条形槽(51)。
6.根据权利要求5所述一种基于石墨烯的持久抗菌复合纺织面料,其特征在于:所述弧形钩(521)设置在相邻两个条形块(52)的其中一个上;所述条形块(52)的端部设置有V形槽(522)。
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