CN107455837B - 一种多功能气血养生鞋 - Google Patents
一种多功能气血养生鞋 Download PDFInfo
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- CN107455837B CN107455837B CN201710728363.0A CN201710728363A CN107455837B CN 107455837 B CN107455837 B CN 107455837B CN 201710728363 A CN201710728363 A CN 201710728363A CN 107455837 B CN107455837 B CN 107455837B
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Abstract
本发明涉及一种多功能气血养生鞋,该磁疗鞋的鞋底从上至下依次包括耐磨面料层、定型层、纳米石墨烯发热层、透气密度海绵层、远红外负离子防臭层、磁疗保健层和防滑鞋底层,并在鞋面脚踝处的设置有微型控制器,所述微型控制器包括电极板,所述电极板包裹在鞋面内;安装在电极板上且露出鞋面的启动开关,电极板上设置有放置电池槽,电池槽的外侧设置有可开合的电池盖,所述电极板通过导线与鞋底的纳米石墨烯发热层和远红外负离子防臭层连接。本发明提供的磁疗鞋具有较佳的保暖、防臭、透气性能,并可促进血液循环、调节血压、改善睡眠、增强免疫力,保健效果佳,而且结构简单,控制方便。
Description
技术领域
本发明涉及鞋技术领域,特别是涉及一种多功能气血养生鞋。
背景技术
运用磁场治疗疾病历史悠久,效果显著。近代磁生物学和磁医学研究证实,经络上的穴位是电磁场的反应点,也是治疗点。当患有某种疾病时,人体相关穴位上生物磁场发生改变,变得微弱导致失调,如果在相关的穴位上进行磁疗,给以补磁,校正穴位磁场,疏通经络上的气血,使其恢复正常。磁疗用于临床的效果已得证实,且适应症广,凡能针灸部位均能磁疗。
众所周知,人体足部上的穴位非常多,如果能够对其进行经常性的保健按摩非常有利于人的身体健康。鞋是人们生活中的必需品,倘若将磁疗与鞋进行结合,使人们时刻享受到磁疗过程,将会收益颇多,尤其适用于当今社会工作繁忙无暇锻炼而又频临亚健康状态的人群。然而,但是将磁疗与鞋子的结合是一个较为复杂的过程,需要考虑很多的设计因素,在满足基本的舒适性要求的同时,还要考虑防臭、保暖、透气、保健等因素。
现有技术多以药物保健结合磁疗保健进行设计。如公开号为CN 106072995 A的中国专利申请“一种磁疗功能保健鞋”,包括鞋本体,所述鞋本体包括鞋面、内里、鞋垫、中底和大底,其中,鞋面与内里之间的夹层设有药物层,中底上设有磁片,磁片的上下表面覆盖有药物层,所述鞋垫和内里上设有若干托玛琳凸点,且托玛琳凸点粘接在布面上。又如公开号为CN 106108233 B的中国专利申请“一种气血循环智能鞋”,包括鞋面、鞋底和鞋跟,鞋底由上至下依次包括:透气布料层、定型港宝层、托玛琳透气里皮层、透气皮层、防臭托玛琳层、透气海绵层、足部保健磁疗穴位层、中底透气层和防滑大底。但以上的专利中,托玛琳或单独以粉末层形式存在,或附着在面料的表面,这样方式托玛琳容易出现脱落现象,不利于长期穿着过程中保健功能的发挥。
发明内容
本发明的目的在于提供一种多功能气血养生鞋,所述的磁疗鞋具有较佳的保暖、防臭、透气性能,并可促进血液循环、调节血压、改善睡眠、增强免疫力,保健效果佳,而且结构简单,控制方便。
本发明提供的技术方案为如下:
本发明提供一种多功能气血养生鞋,其包括鞋底和缝制在鞋底上的鞋面,所述鞋底从上至下依次包括耐磨面料层、定型层、纳米石墨烯发热层、透气密度海绵层、远红外负离子防臭层、磁疗保健层和防滑鞋底层,所述鞋面脚踝处的设置有微型控制器,所述微型控制器包括电极板,所述电极板包裹在鞋面内;安装在电极板上且露出鞋面的启动开关,电极板上设置有放置电池槽,电池槽的外侧设置有可开合的电池盖,所述电极板通过导线与鞋底的纳米石墨烯发热层和远红外负离子防臭层连接。
进一步地,所述纳米石墨烯发热层包括基材层、绝缘层和纳米石墨烯膜层,绝缘层粘贴在基材层的上表面,纳米石墨烯膜层贴覆在绝缘层的上表面,导线连接在纳米石墨烯膜层上。纳米石墨烯膜层具有自发热功能,如果不是在极寒的情况下,即使不使用电池供电发热,也可满足正常情况下的使用,此情况下,纳米石墨烯膜层不需要耗电。当进入极寒情况时,纳米石墨烯膜层发出的热量不足以维持人体感觉的舒适温度时,通过电池供电会增强纳米石墨烯膜层的发热量,以满足极寒情况的需求。
进一步地,所述磁疗保健层包括前掌区、足弓区和后掌区,所述前掌区根据人体脚掌上行间穴、内庭穴、侠溪穴、太冲穴、陷谷穴和厉兑穴的分布位置设置有磁石,所述足弓区根据人体脚掌上足临泣穴和丘虚穴分布的位置安装有磁石,所述后掌区根据人体脚掌上冲阳穴、中封穴和解溪穴分布的位置安装有磁石。磁石可以通过产生的磁场刺激分布在前掌区、足弓区和后掌区上的不同穴位,以便更好的刺激人体脚底的气血循环,起到足底保健按摩的作用。
进一步地,所述的远红外负离子防臭层为含托玛琳元素的聚酯纤维和植物纤维编织而成的复合纤维织物,其中,含托玛琳元素的聚酯纤维占复合纤维织物重量的60~80%wt,植物纤维占复合纤维织物重量的20~40%wt。优选地,所述的含托玛琳元素的聚酯纤维占复合纤维织物重量的65%wt,植物纤维占复合纤维织物重量的35%wt。
具体地,所述的植物纤维为剑麻基纤维、竹纤维和海藻纤维中的至少一种。优选地,所述的植物纤维为海藻纤维。
在本发明的磁疗鞋中,所述的远红外负离子防臭层为含托玛琳元素的聚酯纤维和植物纤维编织而成的复合纤维织物,具体为将含托玛琳元素的聚酯纤维与植物纤维混合,经开松、梳理、铺网、预湿、水刺、烘干形成,所得的复合纤维织物直径和弯曲刚度均很小,风格柔软、细腻。同时,聚酯纤维与植物纤维之间具有很多微细的空隙,纤维间形成微气室,毛细效应增大,疏导水汽性能良好,使织物具有较好的透气性和透湿性,并且聚酯纤维可弥补植物纤维的柔韧性差的缺陷,使制得的复合纤维织物拉伸强度增强,断裂伸长率提高,具有较好的柔韧性、回弹性和抗皱性,利于产品的加工。
具体地,所述的含托玛琳元素的聚酯纤维包括如下组分及其重量份数:聚酯纤维150~200份、醋酸纤维素60~120份、托玛琳粉80~120份、分散剂20~40份、稳定剂20~40份、偶氮二甲酸二异丙酯10~30份和环氧糠油酸丁酯10~15份。
优选地,所述的含托玛琳元素的聚酯纤维包括如下组分及其重量份数:聚酯纤维160份、醋酸纤维素80份、托玛琳粉100份、分散剂30份、稳定剂40份、偶氮二甲酸二异丙酯25份和环氧糠油酸丁酯15份。
进一步地,所述的分散剂为蓖麻油和PLUS以1:(0.1~0.3)的质量比组成。优选地,所述的分散剂为蓖麻油和PLUS以1:0.25的质量比组成。
进一步地,所述的稳定剂为二聚酸。
进一步地,所述聚酯纤维为聚对苯二甲酸乙二醇酯、聚对苯二甲酸丁二醇酯、聚对苯二甲酸丙二醇酯、聚-2,6-萘二酸乙二醇酯和聚对苯二甲酸三亚甲基二醇酯中的一种。
优选地,所述的聚酯纤维为聚对苯二甲酸丁二醇酯。
此外本发明还提供一种含托玛琳元素的聚酯纤维的制备方法,包括以下步骤:
(1)取托玛琳粉通过球磨机研磨至粒径为0.1~0.4μm,然后高速分散于分散剂中,分散速度为1000~1500r/min,备用;
(2)取聚酯纤维、醋酸纤维素混合均匀,加热至100~120℃,进行熔融共混,然后依次加入偶氮二甲酸二异丙酯、步骤(1)得到的物料、环氧糠油酸丁酯,反应60~120min,然后将反应共混所得产物置于40~50℃下真空干燥12~24h,备用;
(3)将步骤(2)制得的反应共混所得产物与稳定剂,置于压力式毛细管流变仪中在180℃,5~7MPa的条件下自然流出,冷却,收集长丝,即得含托玛琳元素的聚酯纤维。
在本发明磁疗鞋中的远红外负离子防臭层,所述的含托玛琳元素的聚酯纤维,是将托玛琳细粉直接嵌入聚酯纤维或醋酸纤维素后,重新拉丝形成的纤维长丝。以聚酯纤维和醋酸纤维素作为载体,在分散剂、稳定剂、偶氮二甲酸二异丙酯和环氧糠油酸丁酯的作用下,均匀分散于聚酯纤维或醋酸纤维素的空隙中,经熔纺喷丝工艺,制成一体化的聚酯纤维,不仅有效避免托玛琳脱落,大幅度提高对托玛琳材料的利用,还显著改善了聚酯纤维的性能,使制得的含托玛琳元素的聚酯纤维具有优异的化学稳定性、热稳定性、机械强度,以及较佳的生物相容性。
具体地,在含托玛琳元素的聚酯纤维制备过程中,添加一定量的醋酸纤维素,可改善聚酯纤维的液体透过性,防止汗水等液体积聚滋生细菌,引发异味。同时,由于托玛琳细粉为有机矿物质,与聚酯纤维和醋酸纤维素的相容性较差,在制备过程中容易发生聚集出现沉积物,本发明通过添加一定量的偶氮二甲酸二异丙酯,使聚酯纤维和醋酸纤维素形成细致的空隙结构,然后在蓖麻油和PLUS的流变作用下,使托玛琳均匀填充于空隙结构中,并在环氧糠油酸丁酯作用下,削弱聚酯纤维和醋酸纤维素分子间的相互作用力,使托玛琳得到充分填充。此外,本发明人发现,在含托玛琳元素的聚酯纤维制备过程中得到的共混产物添加二聚酸作为稳定剂,不仅有效促进托玛琳在聚酯纤维定型固化,避免脱落,还可调节共混产物的形变性能,防止在后续高温拉丝中出现收缩翘曲现象,使制得终产品具有较强的拉伸强度、弯曲强度和冲击强度。
在上述技术方案中,耐磨面料层直接与人体脚部接触,可以增强鞋底内部的耐磨性能;定型层用于充实鞋底,防止鞋底变形;正常使用时,纳米石墨烯发热层具有自发热的功能,放入鞋底后,会自发产生热能,可以维持正常的温度需求,但是当在极冷的北方,自发的热量可能不足以维持保暖的温度,此时可以通过启动开关开启电极板,通过电极板加热纳米石墨烯发热层,以增强纳米石墨烯发热层产生的热量,同时,一旦产生的热量足够以后,关闭电极板,由于纳米石墨烯发热层具有自发热的功能,可以将相应的温度维持较长的一段时间,从而减少电耗;透气密度海绵层可以增强鞋底的舒适度;远红外负离子防臭层通电以后可以通过产生的远红外电离鞋底空气产生大量的负离子,从而达到除臭的功能;磁疗保健层上按照人体脚底的穴位分布设置有多个磁石,通过磁石自身产生的磁场刺激人体脚底的穴位,从而达到保健的功效;防滑鞋底层位于鞋底的最底部,起到防滑的作用。电池可以直接安装在电池槽内,一般使用锂电池,并通过电池盖盖好;启动开关用于开启或者关闭电极板,以实现对纳米石墨烯发热层和远红外负离子防臭层的供电或者断电。
与现有技术相比,本发明的优势在于:
(1)本发明提供的磁疗鞋不仅穿着舒适,还具有较佳的防臭、透气、保暖性能,利用纳米石墨烯发热层的自发热特性可以满足正常情况下维持鞋内温度的要求,即使在极寒的情况下通过电池供电,也可满足维持鞋内温度的要求,而且电耗低;同时含有远红外负离子防臭层、磁疗保健层,将磁疗技术和托玛琳保健功能结合,具有促进血液循环、调节血压、改善睡眠、增强免疫力、增强食欲、降血糖等多种保健功能。
(2)本发明以含托玛琳元素的聚酯纤维和植物纤维编织而成的复合纤维织物作为远红外负离子防臭层,不仅风格柔软、细腻,同时具有较好的透气性和透湿性,并且机械性能好,柔韧性佳,拉伸强度和断裂伸长率高,利于产品的加工,并且耐磨,延长产品的使用寿命、
(3)本发明通过特定的配方和工艺,将托玛琳整合到聚酯纤维中,大幅度提高对托玛琳材料的利用的同时还显著改善了聚酯纤维的性能,使制得的含托玛琳元素的聚酯纤维具有优异的化学稳定性、热稳定性、机械强度,以及较佳的生物相容性。
附图说明
图1:本发明多功能磁疗鞋的侧视图Ⅰ。
图2:本发明多功能磁疗鞋的侧视图Ⅱ。
图3:本发明多功能磁疗鞋中纳米石墨烯发热层的结构示意图。
图4:本发明多功能磁疗鞋中磁疗保健层的结构示意图。
各部件名称及其标记如下:1、鞋底;11、耐磨面料层;12、定型层;13、纳米石墨烯发热层;131、基材层;132、绝缘层;133、纳米石墨烯膜层;14、透气密度海绵层;15、远红外负离子防臭层;16、磁疗保健层;161、前掌区;162、足弓区;163、后掌区;164、磁石;17、防滑鞋底层;2、鞋面;3、微型控制器;31、电极板;32、启动开关;33、电池盖;34、导线。
具体实施方式
实施例1-3和对比例1-5含托玛琳元素的聚酯纤维制备
本发明实施例1-3和对比例1-5的含托玛琳元素的聚酯纤维包括以下重量份数的制备原料,见下表所示:
实施例1-3含托玛琳元素的聚酯纤维的制备为:
(1)取托玛琳粉通过球磨机研磨至粒径为0.1μm,然后高速分散于分散剂中,分散速度为1500r/min,备用;
(2)取聚酯纤维、醋酸纤维素混合均匀,加热至120℃,进行熔融共混,然后依次加入偶氮二甲酸二异丙酯、步骤(1)得到的物料、环氧糠油酸丁酯,反应120min,然后将反应共混所得产物置于45℃下真空干燥24h,得共混产物,备用;
(3)将步骤(2)制得的反应共混所得产物与稳定剂,置于压力式毛细管流变仪中在180℃,6.5MPa的条件下自然流出,冷却,收集长丝,即得含托玛琳元素的聚酯纤维。
对比例1-5含托玛琳元素的聚酯纤维的制备参考上述的方法。
实施例4远红外负离子防臭层制备
组别 | 组成 |
A | 实施例1制得的含托玛琳元素的聚酯纤维:海藻纤维(6:4) |
B | 实施例2制得的含托玛琳元素的聚酯纤维:竹纤维(7:3) |
C | 实施例3制得的含托玛琳元素的聚酯纤维:剑麻基纤维(8:2) |
D | 对比例1制得的含托玛琳元素的聚酯纤维:海藻纤维(6:4) |
E | 对比例2制得的含托玛琳元素的聚酯纤维:海藻纤维(6:4) |
F | 对比例3制得的含托玛琳元素的聚酯纤维:海藻纤维(6:4) |
G | 对比例4制得的含托玛琳元素的聚酯纤维:海藻纤维(6:4) |
H | 对比例5制得的含托玛琳元素的聚酯纤维:海藻纤维(6:4) |
分别以上述A-H组的组成作为原料,进行远红外负离子防臭层制备,具体为以以笛卡尔式三维编织机进行编织,控制编织速度为5m/min,调节编织厚度密度,得到厚度为30mm,密度为800g/L的远红外负离子防臭层。
实施例5磁疗鞋制备
如图1至图4所示,一种智能纳米石墨烯远红外线磁疗鞋,包括:鞋底1和缝制在鞋底1上的鞋面2,所述鞋底1从上至下依次包括耐磨面料层11、定型层12、纳米石墨烯发热层13、透气密度海绵层14、远红外负离子防臭层15、磁疗保健层16和防滑鞋底层17,所述鞋面2脚踝处的设置有微型控制器3,所述微型控制器3包括电极板31,所述电极板31包裹在鞋面2内;安装在电极板31上且露出鞋面的启动开关32,电极板31上设置有放置电池槽,电池槽的外侧设置有可开合的电池盖33,所述电极板31通过导线34与鞋底的纳米石墨烯发热层13和远红外负离子防臭层15连接。
其中,耐磨面料层11直接与人体脚部接触,可以增强鞋底1内部的耐磨性能;定型层2用于充实鞋底1,防止鞋底1变形;正常使用时,纳米石墨烯发热层13具有自发热的功能,放入鞋底1后,会自发产生热能,可以维持正常的温度需求,但是当在极冷的北方,自发的热量可能不足以维持保暖的温度,此时可以通过启动开关32开启电极板31,通过电极板31输送电源加热纳米石墨烯发热层13,以增强纳米石墨烯发热层13产生的热量,同时,一旦产生的热量足够以后,关闭电极板31,由于纳米石墨烯发热层13具有自发热的功能,可以将相应的温度维持较长的一段时间,从而减少电耗;透气密度海绵层14可以增强鞋底1的舒适度;远红外负离子防臭层15通电以后可以通过产生的远红外电离鞋底空气产生大量的负离子,从而达到除臭的功能;磁疗保健层16上按照人体脚底的穴位分布设置有多个磁石164,通过磁石164自身产生的磁场刺激人体脚底的穴位,从而达到保健的功效;防滑鞋底层17位于鞋底的最底部,起到防滑的作用。电池可以直接安装在电池槽内,一般使用锂电池,并通过电池盖33盖好;启动开关32用于开启或者关闭电极板31,以实现对纳米石墨烯发热层13和远红外负离子防臭层15的供电或者断电。
如图3所示,所述纳米石墨烯发热层13包括基材层131、绝缘层132和纳米石墨烯膜层133,绝缘层132粘贴在基材层131的上表面,纳米石墨烯膜层133贴覆在绝缘层132的上表面,导线连接在纳米石墨烯膜层133上。纳米石墨烯膜层133具有自发热功能,如果不是在极寒的情况下,即使不使用电池供电发热,也可满足正常情况下的使用,此情况下,纳米石墨烯膜层133不需要耗电。当进入极寒情况时,纳米石墨烯膜层133发出的热量不足以维持人体感觉的舒适温度时,通过电池供电会增强纳米石墨烯膜层133的发热量,以满足极寒情况的需求。
如图4所示,所述磁疗保健层16包括前掌区161、足弓区162和后掌区163,所述前掌区161根据人体脚掌上行间穴、内庭穴、侠溪穴、太冲穴、陷谷穴和厉兑穴的分布位置设置有磁石164,所述足弓区162根据人体脚掌上足临泣穴和丘虚穴分布的位置安装有磁石164,所述后掌区163根据人体脚掌上冲阳穴、中封穴和解溪穴分布的位置安装有磁石164。磁石164可以通过产生的磁场刺激分布在前掌区161、足弓区162和后掌区163上的不同穴位,以便更好的刺激人体脚底的气血循环,起到足底保健按摩的作用。
本实施例中,所述远红外负离子防臭层15由托玛琳材料制成,托玛琳具有一定的自我产生远红外的功能,可以增强远红外防臭的效果。
实施例6含托玛琳元素的聚酯纤维洗脱率检测
分别将实施例1-3和对比例1-5制得的含托玛琳元素的聚酯纤维置于105℃烘箱中烘至恒重后,按1:100的浴比将样品在水浴恒温(37±1℃)振荡器中振荡溶解120min,然后滤出试样并放入105℃烘箱中烘至恒重。计算含托玛琳元素的聚酯纤维的热水洗出率。含托玛琳元素的聚酯纤维的热水洗出率(%)=(m1-m2)/m1×100,其中m1为试样水浴前的干质量(g),m2为试样水浴后的干质量(g),结果见下表1所示。
表1各组含托玛琳元素的聚酯纤维的洗出率试验结果
由上表可知,本发明实施例1-3制得的含托玛琳元素的聚酯纤维性质稳定,在热水中托玛琳的洗出率低,仅为1.2~1.5%,溶液呈无色透明状,表明托玛琳在聚酯纤维中稳定牢固,不易洗脱。由对比例1和2可知,以对苯二甲酸二辛酯替换环氧糠油酸丁酯进行聚酯纤维制备,或当蓖麻油和PLUS两者以1:1的质量比进行聚酯纤维制备,对托玛琳在聚酯纤维中的稳定性影响不大。由对比例3和4可知,仅以蓖麻油作为分散剂,或以本领域常用的分散剂改性碱木质素磺酸钠进行聚酯纤维制备,出现一定量的托玛琳洗出现象,而致使溶液稍有浑浊。由对比例5可知,配方中不含二聚酸稳定剂,托玛琳的洗出较为严重,溶液浑浊。以上结果表明,本发明的配方各组分相互协调,尤其是分散剂和稳定剂的使用对托玛琳在聚酯纤维中的稳定性影响较大。
实施例7远红外负离子防臭层的透气性和透湿性检测
参照标准GB/T5453-1997,取实施例4A-H组制得的远红外负离子防臭层,随机选取不同部位5处,用YG461型织物中压透气量仪测定远红外负离子防臭层的透气量,取平均值,结果见表2。
参照标准GB/T12704-1991,取一定面积实施例4A-H组制得的远红外负离子防臭层,测试面朝上放入盛有无水CaCl2的透湿杯上,装上垫圈和压环,旋上螺帽,再用乙烯胶粘带从侧面封住压环、垫圈和透湿杯,组成试验组合体。迅速将试验组合体水平放置在已达到规定试验条件的试验箱内,经过5h平衡后取出。迅速盖上对应杯盖,放在20℃左右的硅胶干燥器中平衡30min,按编号逐一用AR21530型电子天平称量。除去杯盖,迅速将试验组合体放入试验箱内,经过1h试验后取出,称量,每次称量组合体的先后顺序一致。
试样透湿量按下式计算:WVT=24·△m/(S·t),式中:WVT:每平方米每天(24h)的透湿量,g/(m2·d);△m:同一试验组合体两次称量之差,g;S:试样试验面积,m2;t:试验时间,h。样品透湿量为三个试样透湿量的平均值,结果见表2。
表2远红外负离子防臭层的透气性和透湿性检测结果
组别 | 透气量(L/m2.s) | 透湿量(g/m2.24h) |
A | 1624±105 | 4760±228 |
B | 1598±113 | 4724±210 |
C | 1570±110 | 4690±212 |
D | 1404±92*#▲ | 4435±206 |
E | 1390±103*#▲ | 4292±180*#▲ |
F | 1316±87**##▲▲ | 4108±132**##▲▲ |
G | 1389±100*#▲ | 4276±184*#▲ |
H | 1304±96**##▲▲ | 4024±146**##▲▲ |
注:与A组比较,*P<0.05,**P<0.01;与B组比较,#P<0.05,##P<0.01;与C组比较,▲P<0.05,▲▲P<0.01。
由上表1可知,本发明实施例4A-C组制得的远红外负离子防臭层具有较佳的透气性和透湿性,显著优于D-H组制得的远红外负离子防臭层。由D和E可知,以对苯二甲酸二辛酯替换环氧糠油酸丁酯制得的聚酯纤维,或当蓖麻油和PLUS两者以1:1的质量比制得的聚酯纤维作为原料,最终制得远红外负离子防臭层的透气性能和透湿性能减弱。由F和G可知,仅以蓖麻油作为分散剂,或以本领域常用的分散剂改性碱木质素磺酸钠进行聚酯纤维制备,使最终获得的远红外负离子防臭层的透气性能和透湿性能减弱。由H可知,配方中不含二聚酸稳定剂,使远红外负离子防臭层的透气性能和透湿性能减弱最为显著。以上结果表明,本发明的配方各组分相互协调,使制得的远红外负离子防臭层获得较佳的透气性和透湿性。
实施例8远红外负离子防臭层的远红外性能检测
参照FZ/T64010-2000,选用标准的推荐设备IR-2红外发射率测量仪(中国科学院上海技术物理研究所研制)测量样品在8个不同的波段内的法向比辐射率,测量精度为±0.01um,测试温度为300K,结果见表3。
表3远红外负离子防臭层的远红外发射率检测结果
根据上海技术物理研究所的测试标准,当8个波段的测试结果大于0.78,即法向比辐射率大于0.78,被测的面料就具有远红外发射功能。由上表可知,本发明实施例4A-C组制得的远红外负离子防臭层的远红外法向辐射率约为0.80左右,具有较好的远红外发射功能。而D-H组制得的远红外负离子防臭层的远红外发射功能均呈现不同程度的减弱,尤其以F-H组减弱得较为显著,推测这与托玛琳在聚酯纤维上的稳定性变差有关。
实施例9远红外负离子防臭层的力学性能检测
采用YG003D型电子单纤维强力机测纤维力学性能,结果见表4。
表4远红外负离子防臭层的力学性能检测结果
组别 | 断裂强度(CN/dtex) | 伸张率(%) |
A | 16.42±3.04 | 36.84±4.22 |
B | 16.30±3.12 | 35.72±4.10 |
C | 16.22±3.02 | 35.25±3.86 |
D | 13.46±2.24 | 27.02±2.08*#▲ |
E | 10.85±2.16*#▲ | 26.34±3.42*#▲ |
F | 10.34±2.25*#▲ | 26.65±3.20*#▲ |
G | 10.20±2.30*#▲ | 27.10±2.02*#▲ |
H | 8.76±1.20**##▲▲ | 17.06±3.20**##▲▲ |
注:与A组比较,*P<0.05,**P<0.01;与B组比较,#P<0.05,##P<0.01;与C组比较,▲P<0.05,▲▲P<0.01。
由上表4可知,本发明实施例4A-C组制得制得的远红外负离子防臭层具有较大的断裂强度和伸张率,力学性能较佳,并与D-H组比较均具有显著性的差异。表明以本发明配方制得的含托玛琳元素的聚酯纤维与植物纤维组合使用,可获得较佳的力学性能。
实施例10远红外负离子防臭层抑菌性能检测
分别对实施例4A-C组制得的远红外负离子防臭层进行抗菌效果检测,具体检验及判定标准参考GB/T20944.2-2007,检测指标为金黄色葡萄球菌,判定标准为:抑菌值≥1或抑菌率≥90%,样品具有抗菌效果;抑菌值≥2或抑菌率≥99%,样品具有良好的抗菌效果,结果见下表5。
表5远红外负离子防臭层的抑菌性能检测结果
由上表5可知,本发明4A-C组制得的远红外负离子防臭层具有较佳的抑菌性能,样品经多次洗涤后,抑菌值≥2且抑菌率≥99%,表明本发明的远红外负离子防臭层性质稳定,多次使用抗菌性能佳。而D-H组制得的远红外负离子防臭层经多次使用后,抑菌性能均呈现不同的降低,尤其以F-H组抑菌性能降低较为显著,推测这与托玛琳在聚酯纤维上的稳定性变差有关。
以上仅是本发明的优选实施方式,应当指出的是,上述优选实施方式不应视为对本发明的限制,本发明的保护范围应当以权利要求所限定的范围为准。对于本技术领域的普通技术人员来说,在不脱离本发明的精神和范围内,还可以做出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。
Claims (9)
1.一种多功能气血养生鞋,包括鞋底和缝制在鞋底上的鞋面,其特征在于,所述鞋底从上至下依次包括耐磨面料层、定型层、纳米石墨烯发热层、透气密度海绵层、远红外负离子防臭层、磁疗保健层和防滑鞋底层,所述鞋面脚踝处设置有微型控制器,所述微型控制器包括电极板,所述电极板包裹在鞋面内;安装在电极板上且露出鞋面的启动开关,电极板上设置有放置电池槽,电池槽的外侧设置有可开合的电池盖,所述电极板通过导线与鞋底的纳米石墨烯发热层和远红外负离子防臭层连接;所述的远红外负离子防臭层为含托玛琳元素的聚酯纤维和植物纤维编织而成的复合纤维织物,其中,含托玛琳元素的聚酯纤维占复合纤维织物重量的60~80%wt,植物纤维占复合纤维织物重量的20~40%wt,所述的植物纤维为剑麻基纤维、竹纤维和海藻纤维中的至少一种。
2.根据权利要求1所述的多功能气血养生鞋,其特征在于,所述的含托玛琳元素的聚酯纤维包括如下组分及其重量份数:聚酯纤维150~200份、醋酸纤维素60~120份、托玛琳粉80~120份、分散剂20~40份、稳定剂20~40份、偶氮二甲酸二异丙酯10~30份和环氧糠油酸丁酯10~15份。
3.根据权利要求2所述的多功能气血养生鞋,其特征在于,所述的分散剂为蓖麻油和THIXATROL®PLUS以1:(0.1~0.3)的质量比组成。
4.根据权利要求3所述的多功能气血养生鞋,其特征在于,所述的稳定剂为二聚酸。
5.根据权利要求2所述的多功能气血养生鞋,其特征在于,所述聚酯纤维为聚对苯二甲酸乙二醇酯、聚对苯二甲酸丁二醇酯、聚对苯二甲酸丙二醇酯、聚-2,6-萘二酸乙二醇酯和聚对苯二甲酸三亚甲基二醇酯中的一种。
6.根据权利要求5所述的多功能气血养生鞋,其特征在于,所述的聚酯纤维为聚对苯二甲酸丁二醇酯。
7.根据权利要求2所述的多功能气血养生鞋,其特征在于,所述的含托玛琳元素的聚酯纤维的制备包括以下步骤:
(1)取托玛琳粉通过球磨机研磨至粒径为0.1~0.4μm,然后高速分散于分散剂中,分散速度为1000~1500r/min,备用;
(2)取聚酯纤维、醋酸纤维素混合均匀,加热至100~120℃,进行熔融共混,然后依次加入偶氮二甲酸二异丙酯、步骤(1)得到的物料、环氧糠油酸丁酯,反应60~120min,然后将反应共混所得产物置于40~50℃下真空干燥12~24h,备用;
(3)将步骤(2)制得的反应共混所得产物与稳定剂,置于压力式毛细管流变仪中在180℃,5~7MPa的条件下自然流出,冷却,收集长丝,即得含托玛琳元素的聚酯纤维。
8.根据权利要求1所述的多功能气血养生鞋,其特征在于,所述纳米石墨烯发热层包括基材层、绝缘层和纳米石墨烯膜层,绝缘层粘贴在基材层的上表面,纳米石墨烯膜层贴覆在绝缘层的上表面,导线连接在纳米石墨烯膜层上。
9.根据权利要求1所述的多功能气血养生鞋,其特征在于,所述磁疗保健层包括前掌区、足弓区和后掌区,所述前掌区根据人体脚掌上行间穴、内庭穴、侠溪穴、太冲穴、陷谷穴和厉兑穴的分布位置设置有磁石,所述足弓区根据人体脚掌上足临泣穴和丘虚穴分布的位置安装有磁石,所述后掌区根据人体脚掌上冲阳穴、中封穴和解溪穴分布的位置安装有磁石。
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