CN111658316A - 一种远红外发热理疗眼罩 - Google Patents
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Abstract
本发明涉及一种智能远红外发热理疗眼罩,涉及日常防护用品。智能远红外发热理疗眼罩由面料、填充物、微晶石墨碳纤维布、柔性电子线路、连接带组成。所述填充物上贴有一层面料,所述2层贴有面料的填充物中间加入微晶石墨纤维布,所述微晶石墨纤维布上设有特制的柔性电子线路,所述特制的柔性电子线路上设有磁吸电源,所述磁吸电源与智能数码温控开关连接,所述智能数码温控开关与电源连接,远红外发热理疗眼罩与连接带连接。远红外发热理疗眼罩,是一种对眼部日常理疗的产品,可产生的4~16μm的光波(“生命光波”)透过织物,与人体皮肤和细胞产生共振,激活生物分子活性,促进血液循环改善循环***和新陈代谢,对长期用眼过度使眼部肌肉紧张疲劳、眼部血液循环不畅等造成的眼部干涩、肿胀、黑眼圈等各种眼部不适,有很好的理疗效果。
Description
技术领域
本发明涉及日常防护用品领域,具体涉及一种远红外发热理疗眼罩。
背景技术
长时间看电脑、手机、平板眼睛易疲劳干涩,造成眼部血液循环不畅,影响到眼部营养供应,人体眼球底部的视网膜非常脆弱,盲目热敷可能导致眼角膜脱落,有给眼睛造成伤害的风险。眼部周围的肌肉和穴位,可以通过热敷放松,在过度用眼之后维持眼部肌肉平衡,促进眼部周围血液循环,保护视力。年轻人工作压力和力度都很大,使眼睛得不到充足营养和休息,长期以往形成恶性循环,超负荷过度用眼给眼睛带来巨大负担。热敷是比较常用到的眼部保养方式,它可促进眼周的血液循环,减轻眼睛疲劳,能部分缓解干眼症的症状,具有明目健脑的功效。
目前市面的远红外发热保健理疗眼罩的产品,其发出的红外线并不是能产生人体可吸收利用的远红外波段范围(4-16μm),仅仅只是表面起到发热的作用,并不能很好的渗透到皮肤的内部,对理疗的效果非常有限。本发明智能远红外发热理疗眼罩,是一种对眼部日常理疗的产品,其原理是在眼罩中植入微晶石墨纤维布,通过柔性电子线路装置接通电源后,可迅速将电能转化为热能向外传导,产生4-16μm 的远红外辐射,4-16μm的远红外也称为“生命光波”。该纤维产生的4-16μm远红外光波可透过纺织材料作用于眼睛和眼睛周围的肌肉和皮肤,与人体的皮肤和细胞产生共振,激活生物分子活性,促进血液循环改善循环***和新陈代谢,对长期用眼过度使眼部肌肉紧张疲劳、眼部血液循环不畅等造成的眼部干涩、肿胀、黑眼圈等各种眼部不适,有很好的理疗效果。
本发明的智能远红外发热眼罩的理疗功效可达到医疗级级别,眼罩产生的“生命光波”与眼部皮肤和相关穴位产生共振达到磁热疗,与眼睛内部引发磁热效应,达到扩张毛细血管,促进血液循环改善循环***和新陈代谢的作用,长期坚持使用对各种眼部疾患有很好的理疗效果。
发明内容
为了解决上述技术问题或者至少部分解决上述技术问题,本发明提供了一种远红外发热理疗眼罩。
一种智能远红外发热理疗眼罩其特征在于由面料、填充物、微晶石墨碳纤维布、柔性电子线路、连接带组成。所述填充物上贴有一层面料,所述2层贴有面料的填充物中间加入微晶石墨纤维布,所述微晶石墨纤维布上设有特制的柔性电子线路,所述特制的柔性电子线路上设有磁吸电源,所述磁吸电源与智能数码温控开关连接,所述智能数码温控开关与电源连接,远红外发热理疗眼罩与连接带连接。
进一步地,一种远红外发热理疗眼罩,其特征在于填充物上贴有一层面料,2层贴有面料的填充物中间加入微晶石墨纤维布。
进一步地,独特微晶石墨纤维布搭配其相关电子工艺,所述微晶石墨纤维布的厚度为0.3mm,电压为5v,温度为35℃-45℃度之间。
进一步地,微晶石墨纤维布与眼罩通过热定型工艺达到固定。
进一步地,在微晶石墨纤维布外层贴合绝缘胶膜,该胶膜可以保护微晶石墨纤维布与相关的电子线路,同时避免产品因清洗后被氧化和污染电子元件。
进一步地,胶膜绝缘性的特点,为微晶石墨碳纤维形成一层保护层,可以在通电使用时防止漏电和线路短路,增强产品的体验感,延长产品的使用寿命。
进一步地,特制的柔性电子线路上设有磁吸电源接头。
进一步地,磁吸电源接头与智能数码温控开关连接。
进一步地,智能数码温控开关根据消费者不同的需求可自行调控温度。
进一步地,智能数码温控开关操作方式之一,将智能数码温控开关连接电源和电源接头,连接异常,则不显示;连接正常,则显示‘00’;此状态按下模式/+键直接进入加热[默认38℃,30min]。
进一步地,智能数码温控开关操作方式之一,加热过程,显示剩余时间[时间提示灯亮];此状态下按模式(+)增加温度【上限:45℃】,按模式(-)减小加热温度【下限:35℃】 ,按键时显示加热温度数值[温度提示灯亮]。
进一步地,智能数码温控开关操作方式之一,温度调整好,10s不操作后,会显剩余分钟数[时间提示灯亮]。
进一步地,智能数码温控开关操作方式之一,报警提示异常,温度探测点超过45摄氏度,提示音'滴滴'报警10s ,产品本身有超过60℃热保险丝熔断保护机制;出现卡机等异常,掉电,重新上电复位。
进一步地,智能数码温控开关,其特征在于智能数码温控开关与电源连接进行调控。
进一步地,远红外发热理疗眼罩与连接带进行连接。
一种远红外发热理疗眼罩内置导电材料的电热转化率达99%以上,可实现低压供电,使用安全,配合开发的智能数码温控开关,能实现自动自由调控服装温度。
附图说明
图1-图6是智能远红外发热理疗眼罩制作过程图。
图7是智能远红外发热理疗眼罩展示图。
图8是智能远红外发热理疗眼罩完整的结构示意图。
图1 –图6附图标记。
1.凸形模具 2.凹模 3.模头 4.凹槽 5.填充物1 6.面布 7.填充物凹形 18.微晶石墨纤维布 9.电极 10.导线 11.焊点 12.面布 13.填充物2 14.填充物凹形2 15.眼罩区域。
图7 附图标记。
16.眼罩侧面图 17.眼罩正面图 18.眼罩剖面图 19.填充物贴面料 20.填充物贴底料 。
图8附图标记。
21.磁吸电源接头 22.眼罩部分 23.连接带 8.微晶石墨纤维布。
具体实施方式
为了能够更清楚地理解本发明的上述目的、特征和优点,下面结合附图和实施例对本发明作进一步地详细说明。可以理解的是,所描述的实施例是本发明的一部分实施例,而不是全部的实施例。以下实施例仅用于解释本发明,而非对本发明的限定。基于所描述的本发明的实施例,本领域普通技术人员所获得的所有其他实施例,都属于本发明保护的范围。若未特别指明,实施例中所用的技术手段为本领域技术人员所熟知的常规手段。
为了全面的了解本发明,现提供一种红外理疗发热眼罩,如图1到图6所示是远红外理疗发热眼罩制作过程,图7是眼罩的侧面、正面、剖面图, 图8是理疗发热眼罩的结构示意图。
本发明提供的发热理疗眼罩通过一种微晶石墨纤维布(参见发明专利,申请号201910271815 .6 一种耐高温电热纤维及其应用),微晶石墨纤维布通过导电可产生4 ~16 微米的红外光波,该波段的远红外线与人体内细胞分子的振动频率接近,能与人体皮肤和细胞产生共振,激活生物分子活性,也被称为“生命光波”。
本发明通过微晶石墨纤维布通过导电产生的 “生命光波”,渗入体内之后可引起人体细胞的原子和分子的共振,加速分子之间摩擦形成热反应,促使皮下深层温度上升,促进微血管扩张,加速血液循环,有利于清除血管囤积物及体内有害物质,重新使组织复活,促进酵素生成,达到活化组织细胞、防止老化、强化免疫***的目的。所以将该技术应用在智能远红外发热眼罩中,远红外线透过织物对于眼部由于血液循环和微循环障碍引起的多种疾病均具有改善和防治作用。
一种远红外理疗发热眼罩产生的远红外辐射,可达到医疗级别的效果,坚持长期穿戴可达到缓解眼疲劳、干涩等眼部不适。
本发明将微晶石墨纤维布嵌入高密度柔软眼罩填充物之中,通过热定型工艺热压成形,制作工艺流程如下图详解。
先在微晶石墨纤维布上按线路铺上双导向铜箔,再在电极上焊铜线。
准备眼罩填充物2片,每一片单面的面层先贴合轻薄柔软的织物。
将眼罩模具的凹凸模升温。
将贴有面料的填充物放置在凹凸磨具中间,完成如图1。
通过热压,贴有面料的填充物向下凹陷出造型,完成如图2。
将定好电极和导电的微晶石墨纤维布按眼膜形状贴在贴有面料的填充物上,通过热定型工艺定型固定,完成如图3。
如图4,将贴好面料的填充物放置在贴好微晶石墨纤维布的上层,继续热压定型,完成如图5。
如图6,用剪刀沿着模具边缘的线条将眼罩剪出来,完成如图7。
定型完成后,在眼罩外面的导线上安装磁吸通电装置,再将眼罩的调节带拼接成整件,完成如图8。
完成后眼罩里层的眼球部位为半挖空凹陷形状,佩戴后眼球能在眼罩凹陷的空间里自由活动,眼罩整体为中间厚两边均匀逐渐变薄,呈弧形向两边延伸。
最后在眼罩的两端接上松紧带,松紧带上装好调节扣,根据不同需求调节大小。
眼罩的外侧连接一个磁吸的电源装置,通过智能数码温控开关将电源与眼罩连接通电。
本发明提供了一种可日常佩戴的智能远红外发热眼罩,其特点在于,该眼罩中间层铺有微晶石墨纤维布,通过柔性电子线路使电能转化成热能,达到控制温度的功能,该温度的特点是使除眼球凹陷部分以外,其他地方正常发热。眼球凹陷部分虽然不发热,但也依然能提供4-16μm的远红外磁疗,通过热磁疗促进眼部的血液循环和微循环障碍引起的多种疾病,对眼部疾病起到改善和防治作用。
本发明提供的智能远红外发热眼罩的理疗原理是通过在眼罩的填充物中植入微晶石墨纤维布,在眼罩外侧连接一个磁吸的通电装置,通过智能数码温控开关将电源与眼罩连接通电。微晶石墨纤维布处通过特制的柔性电路控制,使产品通电后将电能转化为热能 透过织物向外传导热量,通过对智能数码温控开关的控制,可实现自由调控眼罩的温度。
本发明提供的远红外理疗眼罩的发热温度区间是35-45℃(误差±2℃),通过智能数码温控开关自由调控衬衣温度,智能数码温控开关操作方式如下。
智能数码温控开关操作方式之一,将智能数码温控开关连接电源和电源接头,连接异常,则不显示;连接正常,则显示‘00’;此状态按下模式 + 键直接进入加热 [默认38℃,30min] 。
智能数码温控开关操作方式之一,加热过程,显示剩余时间[时间提示灯亮];此状态下按模式(+)增加温度【上限:45℃】,按模式(-)减小加热温度【下限:35℃】 ,按键时显示加热温度数值 [温度提示灯亮] 。
智能数码温控开关操作方式之一,温度调整好,10s不操作后,会显剩余分钟数[时间提示灯亮]。
智能数码温控开关操作方式之一,报警提示/异常,温度探测点超过45摄氏度,提示音'滴滴'报警10s [产品本身有超过60℃热保险丝熔断保护机制];出现卡机等异常,掉电,重新上电复位。
远红外发热理疗眼罩通过柔性发热元件热电转换效率高、升温快,发热均匀。微晶石墨纤维布柔性电子线路夹芯产生的远红外光波(4-16μm)具有红外理疗功能。
根据上述所述的一种智能远红外发热眼罩,其外形特征在于还包括微晶石墨纤维布的外形,是根据中医人体穴位理论,眼罩覆盖于眼部周围相关的穴位上,将微晶石墨纤维布电能转化成远红外热能向外传导。源源不断的远红外磁热疗作用于眼部的四白穴、太阳穴、鱼腰穴等,对眼疲劳酸涩、视力模糊等各种眼部疾患等达到良好的理疗作用。
Claims (17)
1.一种智能远红外发热理疗眼罩,其特征在于眼罩由面料、填充物、微晶石墨纤维布、柔性电子线路、连接带组成。
2.根据权利要求1所述填充物上贴有一层面料,所述2层贴有面料的填充物中间加入微晶石墨纤维布,所述微晶石墨纤维布上设有特制的柔性电子线路,所述特制的柔性电子线路上设有磁吸电源,所述磁吸电源与智能数码温控开关连接,所述智能数码温控开关与电源连接,远红外发热理疗眼罩与连接带连接。
3.根据权利要求2所述一种远红外发热理疗眼罩,其特征在于填充物上贴有一层面料,2层贴有面料的填充物中间加入微晶石墨纤维布。
4.根据权利要求3所述一种远红外发热理疗眼罩,其特征在于独特微晶石墨纤维布搭配其相关电子工艺,所述微晶石墨纤维布的厚度为0.3mm,电压为5v,温度为35℃-45℃度之间。
5.根据权利要求4所述一种远红外发热理疗眼罩,其特征在于微晶石墨纤维布通过热定型工艺与贴有面料的填充物固定,同时在微晶石墨纤维布外层贴合绝缘胶膜,该胶膜可以保护微晶石墨纤维布与相关的柔性电子线路,同时避免产品因清洗后被氧化和污染电子元件。
6.根据权利要求5所述的绝缘胶膜,其特征在于胶膜绝缘性的特点,使得微晶石墨碳纤维布外层形成保护层,可以在通电使用时防止漏电和线路短路,增强产品的体验感,延长产品的使用寿命。
7.根据权利要求5所述的柔性电子线路,其特征在于特制的柔性电子线路上设有磁吸电源接头。
8.根据权利要求7所述的磁吸电源接头,其特征在于磁吸电源接头与智能数码温控开关连接。
9.根据权利要求8所述的智能数码温控开关根据消费者不同的需求可自行调控温度。
10.根据权利要求9所述智能数码温控开关操作方式之一,将智能数码温控开关连接电源和电源接头,连接异常,则不显示;连接正常,则显示‘00’;此状态按下模式/+键直接进入加热[默认38℃,30min]。
11.根据权利要求9所述智能数码温控开关操作方式之一,加热过程,显示剩余分钟数[时间提示灯亮];此状态下按模式 + 增加温度【上限:45℃】,按模式 - 键减小加热温度【下限:35℃】 ,按键时显示加热温度值[温度提示灯亮]。
12.根据权利要求9所述智能数码温控开关操作方式之一,温度调整好,10s不操作后,会显剩余分钟数[时间提示灯亮]。
13.根据权利要求9所述智能数码温控开关操作方式之一,报警提示异常:温度探测点超过55摄氏度,提示音'滴滴'报警10s ,产品本身有超过60℃热保险丝熔断保护机制;出现卡机等异常,掉电,重新上电复位。
14.根据权利要求9所述智能数码温控开关,其特征在于智能数码温控开关与电源连接进行调控。
15.根据权利要求1或2 所述一种远红外发热理疗眼罩与连接带连接。
16.根据权利要求3所述一种远红外发热眼罩通过热定型工艺,将微晶石墨纤维布嵌入高密度柔软填充物之中,面上与底层均用柔软的织物包裹。
17.根据权利要求16所述眼罩固定的方式是利用织带搭配调节扣,灵活调节眼罩的大小,试眼罩适合不同尺寸的头型。
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