CN111840140A - 一种维生素e眼霜的制备方法 - Google Patents

一种维生素e眼霜的制备方法 Download PDF

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CN111840140A
CN111840140A CN202010846894.1A CN202010846894A CN111840140A CN 111840140 A CN111840140 A CN 111840140A CN 202010846894 A CN202010846894 A CN 202010846894A CN 111840140 A CN111840140 A CN 111840140A
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张维涛
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Guangzhou Zhimei Daily Chemical Technology Co ltd
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Abstract

本发明涉及眼霜技术领域,具体是一种维生素E眼霜的制备方法,包括A、B、C、D四相,本发明设计新颖,用料考究、配比精确,易于皮肤吸收,各成分之间协同搭配可以能够在肌肤表面形成薄膜,保护肌肤,软化肌肤角质层,防止肌肤粗糙干燥,加强皮肤的保湿能力,使得皮肤有柔软弹性感,采用维生素E、烟酰胺和泛醇的搭配,可以加速新陈代谢,改善肌肤质地,延缓衰老,减少细胞耗氧量的作用,有效减少皱纹的产生,另外本申请适用于各种皮肤,使用更安全,且具备较高的抗紫外线效果。

Description

一种维生素E眼霜的制备方法
技术领域
本发明涉及眼霜技术领域,具体是一种维生素E眼霜的制备方法。
背景技术
眼睑皮肤是人体全身最薄的皮肤,此处的皮肤最容易老化,从而暴露人的真实年龄。通常眼部肌肤衰老总是伴随着眼袋、黑眼圈以及鱼尾纹的出现,这些外观的出现通常是由于其内在的生理变化如血液循环减缓、供养不足以及一些外部因素如UV光线刺激等因素引起的。眼袋的形成多是由于年龄增长眼部皮肤、肌肉松弛或眼部过度疲劳如睡眠不足、长期在电脑下面工作等因素造成的。黑眼圈是眼眶部位的眼皮外观呈现较暗的颜色,与眼皮本身的色素多寡、眼皮内的血管血流等因素相关。
但是市面上常见的眼霜,成分复杂,不能适用于各种皮肤,因此对消费者造成较差的体验,另外现有的眼霜不能减少细胞耗氧量,进而无法达到抗衰老的问题。因此,本领域技术人员提供了一种维生素E眼霜的制备方法,以解决上述背景技术中提出的问题。
发明内容
本发明的目的在于提供一种维生素E眼霜的制备方法,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种维生素E眼霜的制备方法,包括A、B、C、D四相,A相为去离子水;
B相按质量百分比包括以下的成分:卡波姆0.1-0.5%、多元醇1-5%、黄原胶0.07-0.15%、泛醇0.1-0.5%、羟乙基尿素3-7%、烟酰胺1-4%、甘油聚醚-26 1-4%、EDTA二钠0.01-0.05%、掌状海带提取物0.1-0.5%、苯氢乙醇0.1-0.5%、苯乙醇0.06-0.13%、维生素E1-5%和保湿剂0.7-3%;
C相按质量百分比包括以下的成分:PEG-100硬脂酸酯1-5%、乳化剂1-7%、聚二甲基硅氧烷0.5-3%、环五聚二甲基硅氧烷0.7-3%、癸酸甘油三酯2-8%、氢化聚癸烯0.5-1.3%、牛油果果脂3-8%、油脂0.3-0.8%、聚甘油-3 0.3-0.8%和合成氟金云母0.1-0.5%;
D相按质量百分比包括以下的成分:火麻油3-7%、角鲨烷3-7%。
作为本发明更进一步的方案:所述A相、B相、C相以及D相之间的质量比为:5-10:4-7:3-6:2-4。
作为本发明更进一步的方案:所述B相的成分还可以采用以下质量比:卡波姆0.2-0.3%、多元醇2-2.5%、黄原胶0.09-0.12%、泛醇0.3-0.4%、羟乙基尿素4-5%、烟酰胺2-3%、甘油聚醚-26 2-3%、EDTA二钠0.03-0.04%、掌状海带提取物0.4-0.5%、苯氢乙醇0.3-0.5%、苯乙醇0.09-0.1%、维生素E 3-4%和保湿剂0.9-1.5%。
作为本发明更进一步的方案:所述C相的成分还可以采用以下质量比:PEG-100硬脂酸酯3-4%、乳化剂3-5%、聚二甲基硅氧烷0.9-1.5%、环五聚二甲基硅氧烷0.9-1.5%、癸酸甘油三酯4-5%、氢化聚癸烯0.9-1.1%、牛油果果脂7-8%、油脂0.6-0.8%,聚甘油-30.5-0.6%和合成氟金云母0.3-0.4%。
作为本发明更进一步的方案:所述B相中多元醇采用聚甘油-10、丁二醇、甘油、丙二醇中的任意一种或多种。
作为本发明更进一步的方案:所述B相中乳化剂采用氢化卵磷脂、甲基葡萄糖倍半硬脂酸酯、甘油脂酸酯、硬脂酸其中任意一种或几种。
作为本发明更进一步的方案:所述B相中保湿剂采用神经酰胺3、氢化卵磷脂其中任意一种。
作为本发明更进一步的方案:所述C相中油脂由以下质量份组分组成:霍霍巴提取物0.2-0.3%、向日葵籽提取物0.25-0.3%、银荆树花提取物0.1-0.2%。
作为本发明更进一步的方案:一种维生素E眼霜的制备方法,包括以下制备步骤:
S1、将D相混合加热至80℃,形成油相待用;
S2、称取B相原料置入乳化锅中,加入A相,加热至80~85℃搅拌分散直至完全溶解,形成水相待用,搅拌转速为350r/min,搅拌时长控制在20min;
S3、将S1中制得的油相倒入乳化锅中与水相混合,均质5-10min左右,保温搅拌10分钟,转速控制在5000r/min;
S4、当温度降至45℃左右,加入C相中和,搅拌降温,搅拌转速为200r/min;
S5、温度降到38℃以下,取样检测,检测合格后出料;
S6、陈化24小时,取样检测,检测合格后灌装。
各成分的作用效果分析:
卡波姆:白色,疏松状,具酸性、吸湿性和微有特殊臭味,能溶于水、乙醇、甘油,具有保护肌肤、抗紫外线、降低粘稠度、消炎杀菌的效果;
多元醇:作为保湿剂及溶剂,从环境中吸收水分,补充到肌肤中,增加皮肤表面的含水量;
黄原胶:俗称玉米糖胶,可作为稳定剂、凝胶增稠剂、浸润剂、膜成型剂等,具有缓解皮肤干燥、抗氧化以及去除面部皱纹的作用;
泛醇:是维生素B5的前体,故又称维生素原B5,能够有效渗透角质层,浸润肌肤表面的角质层,具有强效的保湿效果,有效改善肌肤粗糙,使肌肤柔软,并且不黏腻;
羟乙基脲:极佳的保湿剂,能给护肤品提供高效保湿效果同时又无粘腻手感,能渗透进入角质层中,增加皮肤含水量,缓解干燥,填补细纹,增加皮肤弹性;
烟酰胺:又名VB3,是维生素家庭中重要一员,可以加速新陈代谢,促进含黑色素的角质细胞脱落以及表皮层蛋白质的合成,改善肌肤质地;
甘油聚醚-26:作为保湿剂、润滑剂,对半干状态时的粘腻肤感给予了很大的改善,对皮肤具有柔软润滑的作用;
EDTA二钠:作为阴离子表面活性剂,能调节化妆品的酸碱度,保护皮肤不受强的刺激;
掌状海带提取物:主要作用是抗氧化剂,健美功效成分,气味抑制剂,对弹性蛋白酶的活性有一定的抑制作用,加之对氧自由基的消除作用,使得有防皱抗衰的功效,同时对脂肪酶的活化有很强的促进,可用作减肥剂;
苯氢乙醇:作为防腐剂、可以杀死细菌,稳定配方,延长产品的保质期和使用安全;
苯乙醇:属于天然提取物,对人体无害,作用香味剂,具有新鲜面包香气和清甜玫瑰花香;
维生素E:为脂溶性维生素,其水解产物为生育酚,是最主要的抗氧化剂之一,具有延缓衰老,减少细胞耗氧量的作用,有效减少皱纹的产生,使人更有耐久力。
神经酰胺3:作为保湿剂,是一种水溶性脂质物质,它和构成皮肤角质层的物质结构相近,能很快渗透进皮肤,和角质层中的水结合,形成一种网状结构,锁住水分;
氢化卵磷脂:存在于蛋黄及黄豆中的成份,适合作为熟龄肌滋润使用,具有保湿、抗氧化等作用;
甲基葡萄糖倍半硬脂酸酯:作为乳化剂、增溶剂、润肤剂、调理剂等;
甘油硬脂酸酯:具有润滑和乳化的作用,可以将护肤品变成稳定的白色膏体,是乳膏、霜类化妆品必不可少的成分之一;
PEG-100硬脂酸酯:作为两性表面活化剂,同时具备良好的乳化性能;
聚二甲基硅氧烷:具有润滑性能、抗紫外线的作用,透气性好,具有明显的防尘功能;
环五聚二甲基硅氧烷:作为溶剂,柔润剂,增稠剂,适合干性皮肤,色素性皮肤,耐受性皮肤,敏感性皮肤,非色素性皮肤,皱纹皮肤,紧致皮肤;
环己硅氧烷:作为成膜剂,柔润剂,具有吸附水分子,超强保湿的功效;
癸酸甘油三酯:作为稳定剂,防冻剂,均质剂,为椰子中的提取物,与皮肤有兼容的特征,有润滑和使肌肤柔软的效果,并有过滤紫外光的功能;
氢化聚癸烯:合成聚合物,作为不粘稠的柔润剂,使得产品更加丝滑,方便均匀涂抹;
牛油果果脂:作为丰富的滋润剂,易于吸收,富含不饱和脂肪酸,能加强皮肤的保湿能力,对干性及角质受损的肌肤能加以滋润;
霍霍巴:作为出色的油剂、滋润剂和保湿剂,耐高温、高压、黏度变化小,其触觉和延展性也比其他植物油好,对皮肤有柔软弹性感,且易被皮肤吸收;
向日葵籽:向日葵籽油是化妆品的重要基础油原料,有润滑皮肤的作用,对过氧化酶激活受体有活化作用,有促进皮肤创伤愈合的抗炎作用,能促进脂肪细胞的分解,有减肥的功效,对酪氨酸酶有一定的抑制作用,有一定的美白功效;
银荆树花:银荆树花中制取的蜡质,对皮肤有益,能够在肌肤表面形成薄膜,保护肌肤,软化肌肤角质层,防止肌肤粗糙干燥;
聚甘油-3:作为成膜剂、保湿剂、皮肤调理剂使用;
合成氟金云母:具有很好的抗紫外线的功效;
硬脂酸:用于雪花膏和冷霜这两类护肤品中起乳化作用,从而使其变成稳定洁白的膏体。
与现有技术相比,本发明的有益效果是:本发明设计新颖,用料考究、配比精确,易于皮肤吸收,各成分之间协同搭配可以能够在肌肤表面形成薄膜,保护肌肤,软化肌肤角质层,防止肌肤粗糙干燥,加强皮肤的保湿能力,使得皮肤有柔软弹性感,采用维生素E、烟酰胺和泛醇的搭配,可以加速新陈代谢,改善肌肤质地,延缓衰老,减少细胞耗氧量的作用,有效减少皱纹的产生,另外本申请适用于各种皮肤,使用更安全,且具备较高的抗紫外线效果,霍霍巴提取物、向日葵籽提取物以及银荆树花提取物混合成的油脂,对酪氨酸酶有一定的抑制作用,增加美白功效,同时可以作为保湿剂,黏度变化小,对皮肤有柔软弹性感,且易被皮肤吸收。
具体实施方式
实施例1
本发明实施例中,一种维生素E眼霜的制备方法,包括A、B、C、D四相,A相为去离子水;
B相按质量百分比包括以下的成分:卡波姆0.1-0.5%、多元醇1-5%、黄原胶0.07-0.15%、泛醇0.1-0.5%、羟乙基尿素3-7%、烟酰胺1-4%、甘油聚醚-26 1-4%、EDTA二钠0.01-0.05%、掌状海带提取物0.1-0.5%、苯氢乙醇0.1-0.5%、苯乙醇0.06-0.13%、维生素E1-5%和保湿剂0.7-3%;
C相按质量百分比包括以下的成分:PEG-100硬脂酸酯1-5%、乳化剂1-7%、聚二甲基硅氧烷0.5-3%、环五聚二甲基硅氧烷0.7-3%、癸酸甘油三酯2-8%、氢化聚癸烯0.5-1.3%、牛油果果脂3-8%、油脂0.3-0.8%、聚甘油-3 0.3-0.8%和合成氟金云母0.1-0.5%;
D相按质量百分比包括以下的成分:火麻油3-7%、角鲨烷3-7%。
进一步的,A相、B相、C相以及D相之间的质量比为:5-10:4-7:3-6:2-4。
进一步的,B相中多元醇采用聚甘油-10、丁二醇、甘油、丙二醇中的任意一种或多种。
进一步的,B相中乳化剂采用氢化卵磷脂、甲基葡萄糖倍半硬脂酸酯、甘油脂酸酯、硬脂酸其中任意一种或几种。
进一步的,B相中保湿剂采用神经酰胺3、氢化卵磷脂其中任意一种。
进一步的,C相中油脂由以下质量份组分组成:霍霍巴提取物0.2-0.3%、向日葵籽提取物0.25-0.3%、银荆树花提取物0.1-0.2%。
进一步的,一种维生素E眼霜的制备方法,包括以下制备步骤:
S1、将D相混合加热至80℃,形成油相待用;
S2、称取B相原料置入乳化锅中,加入A相,加热至80~85℃搅拌分散直至完全溶解,形成水相待用,搅拌转速为350r/min,搅拌时长控制在20min;
S3、将S1中制得的油相倒入乳化锅中与水相混合,均质5-10min左右,保温搅拌10分钟,转速控制在5000r/min;
S4、当温度降至45℃左右,加入C相中和,搅拌降温,搅拌转速为200r/min;
S5、温度降到38℃以下,取样检测,检测合格后出料;
S6、陈化24小时,取样检测,检测合格后灌装。
感官检测后得出以下数据指标:
Figure BDA0002643358390000071
理化检测后得出以下数据指标:
Figure BDA0002643358390000081
微生物检测结果:
Figure BDA0002643358390000082
实施例2
按照实施例1的方式进行制备,不同于实施例1的是:
B相的成分采用下质量比:卡波姆0.2-0.3%、多元醇2-2.5%、黄原胶0.09-0.12%、泛醇0.3-0.4%、羟乙基尿素4-5%、烟酰胺2-3%、甘油聚醚-262-3%、EDTA二钠0.03-0.04%、掌状海带提取物0.4-0.5%、苯氢乙醇0.3-0.5%、苯乙醇0.09-0.1%、维生素E 3-4%和保湿剂0.9-1.5%;
C相的成分采用以下质量比:PEG-100硬脂酸酯3-4%、乳化剂3-5%、聚二甲基硅氧烷0.9-1.5%、环五聚二甲基硅氧烷0.9-1.5%、癸酸甘油三酯4-5%、氢化聚癸烯0.9-1.1%、牛油果果脂7-8%、油脂0.6-0.8%,聚甘油-3 0.5-0.6%和合成氟金云母0.3-0.4%。
进一步的,A相、B相、C相以及D相之间的质量比为:7-10:4-6:4-5:3-4。
实验1
测试人群:30-55岁的女性60名;
测试环境:温度(22±1)℃、湿度(50±5)%;
主要症状:皮肤暗沉、黑眼圈、鱼尾纹、干燥粗糙等问题;
分组:60名女性随机分成3组,每组20人;
使用方法:两组成员每日早晚彻底洁肤后,分别在眼部均匀涂抹实施例1和实施例2所制备的成品维生素E眼霜以及市面上常见的眼霜,测试期间不得搭配其他化妆品,连续使用3周;
采用皮肤水测定仪盒皮肤弹性测定仪分别检测皮肤含水量和皮肤弹性,同时观察眼部关泽和皱纹,得出以下数据:
Figure BDA0002643358390000091
相比下实施1和实施例2在皮肤保湿和弹性方面都具有显著效果,针对肤色改善和邹纹改善方面实施例2较为均衡,而实施例1在针对皱纹方面有显著效果,同时根据上述实验结果可以看出实施例1和实施例2在各个方面都优于传统例,保湿效果更好,可以长时间锁住水分;眼部皮肤弹性大幅度增长,且具有很好的抗皱效果;
实验2、皮肤过敏测试:
测试人员:干性皮肤,色素性皮肤,耐受性皮肤,敏感性皮肤,非色素性皮肤,皱纹皮肤,紧致皮肤的志愿者进行测试,每种皮肤选择2名,分为实施例1、实施例2和传统例,测试结果如下:
Figure BDA0002643358390000101
综上所述:本发明设计新颖,用料考究、配比精确,易于皮肤吸收,各成分之间协同搭配可以能够在肌肤表面形成薄膜,保护肌肤,软化肌肤角质层,防止肌肤粗糙干燥,加强皮肤的保湿能力,使得皮肤有柔软弹性感,采用维生素E、烟酰胺和泛醇的搭配,可以加速新陈代谢,改善肌肤质地,延缓衰老,减少细胞耗氧量的作用,有效减少皱纹的产生,另外本申请适用于各种皮肤,使用更安全,且具备较高的抗紫外线效果。
以上所述的,仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,根据本发明的技术方案及其发明构思加以等同替换或改变,都应涵盖在本发明的保护范围之内。

Claims (9)

1.一种维生素E眼霜的制备方法,其特征在于,包括A、B、C、D四相原料,A相为去离子水;
B相按质量百分比包括以下的成分:卡波姆0.1-0.5%、多元醇1-5%、黄原胶0.07-0.15%、泛醇0.1-0.5%、羟乙基尿素3-7%、烟酰胺1-4%、甘油聚醚-26 1-4%、EDTA二钠0.01-0.05%、掌状海带提取物0.1-0.5%、苯氢乙醇0.1-0.5%、苯乙醇0.06-0.13%、维生素E 1-5%和保湿剂0.7-3%;
C相按质量百分比包括以下的成分:PEG-100硬脂酸酯1-5%、乳化剂1-7%、聚二甲基硅氧烷0.5-3%、环五聚二甲基硅氧烷0.7-3%、癸酸甘油三酯2-8%、氢化聚癸烯0.5-1.3%、牛油果果脂3-8%、油脂0.3-0.8%、聚甘油-3 0.3-0.8%和合成氟金云母0.1-0.5%;
D相按质量百分比包括以下的成分:火麻油3-7%、角鲨烷3-7%。
2.根据权利要求1所述的一种维生素E眼霜的制备方法,其特征在于,所述B相的成分采用按质量比为以下成份:卡波姆0.2-0.3%、多元醇2-2.5%、黄原胶0.09-0.12%、泛醇0.3-0.4%、羟乙基尿素4-5%、烟酰胺2-3%、甘油聚醚-26 2-3%、EDTA二钠0.03-0.04%、掌状海带提取物0.4-0.5%、苯氢乙醇0.3-0.5%、苯乙醇0.09-0.1%、维生素E 3-4%和保湿剂0.9-1.5%。
3.根据权利要求1所述的一种维生素E眼霜的制备方法,其特征在于,所述C相的成分采用以下质量比为以下成份:PEG-100硬脂酸酯3-4%、乳化剂3-5%、聚二甲基硅氧烷0.9-1.5%、环五聚二甲基硅氧烷0.9-1.5%、癸酸甘油三酯4-5%、氢化聚癸烯0.9-1.1%、牛油果果脂7-8%、油脂0.6-0.8%,聚甘油-3 0.5-0.6%和合成氟金云母0.3-0.4%。
4.根据权利要求1或2所述的一种维生素E眼霜的制备方法,其特征在于,所述B相中多元醇采用聚甘油-10、丁二醇、甘油、丙二醇中的任意一种或多种。
5.根据权利要求1或2所述的一种维生素E眼霜的制备方法,其特征在于,所述B相中乳化剂采用氢化卵磷脂、甲基葡萄糖倍半硬脂酸酯、甘油脂酸酯、硬脂酸其中任意一种或几种。
6.根据权利要求1或2所述的一种维生素E眼霜的制备方法,其特征在于,所述B相中保湿剂采用神经酰胺3、氢化卵磷脂其中任意一种。
7.根据权利要求1或3所述的一种维生素E眼霜的制备方法,其特征在于,所述C相中油脂由以下质量份组分组成:霍霍巴提取物0.2-0.3%、向日葵籽提取物0.25-0.3%、银荆树花提取物0.1-0.2%。
8.根据权利要求1-7任一项所述的一种维生素E眼霜的制备方法,其特征在于,所述A相、B相、C相以及D相之间的质量比为:5-10:4-7:3-6:2-4。
9.根据权利要求8所述的一种维生素E眼霜的制备方法,其特征在于,包括以下制备步骤:
S1、将D相混合加热至80℃,形成油相待用;
S2、称取B相原料置入乳化锅中,加入A相,加热至80~85℃搅拌分散直至完全溶解,形成水相待用,搅拌转速为350r/min,搅拌时长控制在20min;
S3、将S1中制得的油相倒入乳化锅中与水相混合,均质5-10min左右,保温搅拌10分钟,转速控制在5000r/min;
S4、当温度降至45℃左右,加入C相中和,搅拌降温,搅拌转速为200r/min;
S5、温度降到38℃以下,取样检测,检测合格后出料;
S6、陈化24小时,取样检测,检测合格后灌装。
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