CN106626655A - 聚烯烃双向拉伸挂面膜及其制备方法 - Google Patents

聚烯烃双向拉伸挂面膜及其制备方法 Download PDF

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CN106626655A
CN106626655A CN201611126009.2A CN201611126009A CN106626655A CN 106626655 A CN106626655 A CN 106626655A CN 201611126009 A CN201611126009 A CN 201611126009A CN 106626655 A CN106626655 A CN 106626655A
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dried noodles
biaxial tension
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polyolefin
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赖新民
赖建民
肖义亲
田心平
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Poly Silver Plastic Packing Products (shenzhen) Co Ltd
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Abstract

本发明公开一种聚烯烃双向拉伸挂面膜及其制备方法,其中,该聚烯烃双向拉伸挂面膜包括依次分布的上表层、三层芯层及下表层五层层状结构,所述上表层及下表层均由如下的组分制备:丙烯类共聚物88~97份;防粘连剂3~8份;爽滑剂0.1~1份;三层所述芯层均由如下的组分制备:线性低密度烯类共聚物 99~100份;爽滑剂0. 1~1份。本发明的技术方案具有热封强度高、可热封温度宽、具有热爽滑的特性,解决了薄膜与包装箱之间摩擦容易磨破的问题,能够明显改善产品的透明度和热封性。

Description

聚烯烃双向拉伸挂面膜及其制备方法
技术领域
本发明涉及高分子材料技术领域,尤其涉及一种聚烯烃双向拉伸挂面膜及其制备方法。
背景技术
聚烯烃热收缩薄膜(POF)一般采用PP和PE共挤复合制成,同时包含了聚乙烯和聚丙烯的优点,且性能又优于聚乙烯膜和聚丙烯膜,如具有高透明、耐低温、高强度、耐揉搓的综合性能。POF薄膜广泛地用于工业和零售业各种产品如食品、化妆品、药品、及电子产的捆扎和包装应用。POF薄膜一般为3-5层共挤出结构,双向拉伸工艺主要由以下工序组成: 配料混料、挤出机挤出,通过共挤模头挤出成为管坯,管坯骤冷,经牵引进长发热筒预热, 在大发热筒内吹胀,热定型、冷却、收卷、分切和入库。
现有技术中,如专利号为CN 103085415A的专利公开了一种共挤出的聚烯烃双向拉伸薄膜及其制备方法,有该方法制备的薄膜具有高强度和高挺度的特点,有助于薄膜的减薄和轻量化,然而,该薄膜在滑度、热封性及透明度方面存在明显的不足,在高速包装时容易出现封口不牢和影响外观,影响生产效率的问题。
有鉴于此,有必要对上述的共挤出的聚烯烃双向拉伸薄膜进行进一步的改进。
发明内容
为解决现有技术中存在的至少一上述技术问题,本发明的主要目的提供一种聚烯烃双向拉伸挂面膜及其制备方法。
为实现上述目的,本发明采用的一个技术方案为:提供一种聚烯烃双向拉伸挂面膜,包括依次分布的上表层、三层芯层及下表层五层层状结构,
所述上表层及下表层均由如下的组分制备:
丙烯类共聚物 88~97份;
防粘连剂 3~8份;
爽滑剂 0.1~1份;
三层所述芯层均由如下的组分制备:
线性低密度烯类共聚物 99~100份;
爽滑剂 0. 1~1份。
优选地,所述线性低密度烯类共聚物为熔点低于120℃的乙烯共聚物、丙烯共聚物、乙烯共聚物与丙烯共聚物形成的共混物,以及乙烯共聚物与丙烯共聚物形成的混合物中任一种;
所述上表层及下表层的熔点高于芯层的熔点。
优选地,所述防粘连剂为高透明的有机防粘连剂。
优选地,所述爽滑剂为硅酮、油酸酰胺,以及芥酸酰胺爽滑剂中任一种。
优选地,所述聚烯烃双向拉伸挂面膜的表面摩擦系数为0.25~0.70。
优选地,所述聚烯烃双向拉伸挂面膜的表面摩擦系数为0.3~0.5。
优选地,所述聚烯烃双向拉伸挂面膜的总厚度为18~30um,且任一所述芯层的厚度大于上表层或下表层的厚度。
优选地,所述聚烯烃双向拉伸挂面膜的总厚度为18~20um,且任一所述芯层的厚度大于上表层或下表层的厚度。
为实现上述目的,本发明采用的一个技术方案为:提供一种聚烯烃双向拉伸挂面膜的制备方法,包括如下步骤:
预先混配丙烯类共聚物88~97份、防粘连剂3~8份及爽滑剂0.1~1份的上表层及下表层,以及混配线性低密度烯类共聚物 99~100份及爽滑剂0. 1~1份的三层芯层,并对各层材料进行均匀分散处理;
将上表层、三层芯层及下表层分别通过五台挤出机,并经过五层共挤模头挤出形成管坯,并对管坯冷却成型处理,其中,所述上表层及下表层对应的挤出机的温度均为185~195℃,三层所述芯层对应的挤出机的温度均为180~200℃;
管坯经冷却定型后牵引至长发热筒,并由长发热筒对管坯进行预热,其中,所述长发热筒对管坯的预热温度为200~400℃;
对预热后的管坯充气以及对充气后的管坯进行双向拉伸处理形成泡膜,其中,所述双向拉伸处理的温度为108~110℃,所述双向拉伸包括横向和纵向拉伸,拉伸倍数均为4-7倍;
强制冷却泡膜,并对泡膜进行对分剖开处理得到聚烯烃双向拉伸挂面膜。
本发明的技术方案生产的聚烯烃双向拉伸挂面膜,既能够满足高速包装包装需求,同时又具有高的透明度。利用本方案生产的聚烯烃双向拉伸挂面膜在高速封口自动包装机上使用效果与传统的热封POF产品相比,具有热封温度低、可热封温度宽、具有热爽滑的特性,很好解决普通POF薄膜包装挂面时,包装速度慢、不良率多,同时,还能够解决装箱过程中,薄膜与包装箱之间摩擦容易磨破的问题,能够明显改善产品的透明度和热封性。
具体实施方式
下面对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明的一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
目前一般薄膜为了保证开口性,必须要达到较高的滑度,提高滑度的同时降低了材料的热封性和透明度,在高速包装时容易出现封口不牢和影响外观,影响生产效率。经过长期的实践得到,滑度、透明度和热封温度是挂面膜性能的三个重要参数。发明人通过长期的生产实践以及多次的反复实验,设计了一种同时具有热封温度低、可热封温度宽、具有热爽滑特性的聚烯烃双向拉伸挂面膜的方案,具体方案请参照下述的实施例。
在本发明实施例中,该聚烯烃双向拉伸挂面膜,包括依次分布的上表层、三层芯层及下表层五层层状结构,
所述上表层及下表层均由如下的组分制备:
丙烯类共聚物 88~97份;
防粘连剂 3~8份;
爽滑剂 0.1~1份;
三层所述芯层均由如下的组分制备:
线性低密度烯类共聚物 99~100份;
爽滑剂 0. 1~1份。
本实施例中,该聚烯烃双向拉伸挂面膜的上表层、三层芯层及下表层五层层状结构可以表述为A/B/B/B/C五层结构,其中,A层、C层分别为上表层及下表层,三个B层为芯层,A层、C层可由挤出机螺杆直径为70mm,螺杆长径比为30:1,挤出温度为180℃的挤出形成;三个芯层可由挤出机螺杆直径为75mm,螺杆长径比为35:1,挤出温度为190℃的挤出形成。聚烯烃双向拉伸挂面膜具体的结构请参照表1。
表1
从表1可知,B层(芯层)有三层,B层的厚度均大于A层(上表层)及C层(下表层)的厚度。并且B层的主要材质为DOWLEX2045G/m-LLDPE线性低密度烯类共聚物,A层和C层的主要材质为5C37F丙烯类共聚物、防粘连剂及爽滑剂,通过调整上述线性低密度烯类共聚物以及丙烯类共聚物,能够使聚烯烃双向拉伸挂面膜达到最佳的性能。
本实施例中,所述线性低密度烯类共聚物为熔点低于120℃的乙烯共聚物、丙烯共聚物、乙烯共聚物与丙烯共聚物形成的共混物,以及乙烯共聚物与丙烯共聚物形成的混合物中任一种;所述上表层及下表层的熔点高于芯层的熔点。较优的,所述防粘连剂为高透明的有机防粘连剂。较优的,所述爽滑剂为硅酮、油酸酰胺,以及芥酸酰胺爽滑剂及其共混物中任一种。由于上表面及下表面直接与物体接触,因摩擦导致的热量由上表面及下表面至芯层传递,如此,当上表面及下表面至芯层熔点高于芯层时,有利于保护芯层。该防粘连剂可以选用常规的防粘连剂,如高透明的有机防粘连剂,以降低挂面膜的雾度,提高透明度。
在一具体的实施例中,所述聚烯烃双向拉伸挂面膜的表面摩擦系数为0.25~0.70。较优的,所述聚烯烃双向拉伸挂面膜的表面摩擦系数为0.3~0.5。所述聚烯烃双向拉伸挂面膜的总厚度为18~30um,且任一所述芯层的厚度大于上表层或下表层的厚度。较优的,所述聚烯烃双向拉伸挂面膜的总厚度为18~20um,且任一所述芯层的厚度大于上表层或下表层的厚度。本实施例中,聚烯烃双向拉伸挂面膜的厚度可为18~30um,太厚则会增加成本,太薄则会影响挂面膜的质量。
本发明的实施例中,该聚烯烃双向拉伸挂面膜的制备方法,包括如下步骤:
预先混配丙烯类共聚物88~97份、防粘连剂3~8份及爽滑剂0.1~1份的上表层及下表层,以及混配线性低密度烯类共聚物 99~100份及爽滑剂0. 1~1份的三层芯层,并对各层材料进行均匀分散处理;
将上表层、三层芯层及下表层分别通过五台挤出机,并经过五层共挤模头挤出形成管坯,并对管坯冷却成型处理,其中,所述上表层及下表层对应的挤出机的温度均为185~195℃,三层所述芯层对应的挤出机的温度均为180~200℃;较优的,185℃、190℃、195℃均为上表层及下表层对应的挤出机温度的优选值。180℃、190℃、200℃均为三层芯层对应的挤出机温度的优选值。上述的共挤模头的温度为179℃。
管坯经冷却定型后牵引至长发热筒,并由长发热筒对管坯进行预热,其中,所述长发热筒对管坯的预热温度为200~400℃;较优地,200℃、300℃、400℃均为预热温度的优选值,经过对管坯进行预热可以达到设定的温度要求。具体的,管坯经冷却后牵引进入发热筒,长发热筒温度为区域可以分为1-4区,对应温度分为:250℃,260℃,270℃,280℃。
对预热后的管坯充气以及对充气后的管坯进行双向拉伸处理形成泡膜,其中,所述双向拉伸处理的温度为108~110℃,拉伸可分为横向和纵向拉伸,拉伸倍数均为4-7倍;本步骤中,预热后的管坯温度较高,经过适当冷却后可进行充气处理,然后在长发热筒的温度在108~110℃时,可对充气后的管坯进行横向及纵向拉伸处理形成泡膜,横向及纵向拉伸的倍数优选为4、5.5、7倍。
强制冷却泡膜,并对泡膜进行对分剖开处理得到聚烯烃双向拉伸挂面膜。该步骤中,对分剖开后的聚烯烃双向拉伸挂面膜经过收卷、固化后可分切成成品。由上述方法制得的聚烯烃双向拉伸挂面膜的各项参数请参照表2。
表2
从表2中可以得看出,有上述方案制备的聚烯烃双向拉伸挂面膜,至少在拉伸强度、断裂伸长率参数面都具有优于现有技术薄膜的优点。需要强调的是,本聚烯烃双向拉伸挂面膜的封口强度、摩擦系数 (静/动) 及雾度相比于传统型薄膜要高,尤其是雾度和封口强度,本方案要明显优于传统型薄膜。
综上,本发明的技术方案制备的聚烯烃双向拉伸挂面膜,既能够满足高速包装包装需求,同时又具有高的透明度。利用本方案生产的聚烯烃双向拉伸挂面膜在高速封口自动包装机上使用效果与传统的热封POF产品相比,具有热封强度高、可热封温度宽、具有热爽滑的特性,很好解决普通POF薄膜包装挂面时,包装速度慢、不良率多,同时,还能够解决装箱过程中,薄膜与包装箱之间摩擦容易磨破的问题,能够明显改善产品的透明度和热封性。
以上所述仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是在本发明的发明构思下,利用本发明说明书内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本发明的专利保护范围内。

Claims (9)

1.一种聚烯烃双向拉伸挂面膜,其特征在于,所述聚烯烃双向拉伸挂面膜包括依次分布的上表层、三层芯层及下表层五层层状结构,
所述上表层及下表层均由如下的组分制备:
丙烯类共聚物 88~97份;
防粘连剂 3~8份;
爽滑剂 0.1~1份;
三层所述芯层均由如下的组分制备:
线性低密度烯类共聚物 99~100份;
爽滑剂 0. 1~1份。
2.如权利要求1所述的聚烯烃双向拉伸挂面膜,其特征在于,所述线性低密度烯类共聚物为熔点低于120℃的乙烯共聚物、丙烯共聚物、乙烯共聚物与丙烯共聚物形成的共混物,以及乙烯共聚物与丙烯共聚物形成的混合物中任一种;
所述上表层及下表层的熔点高于芯层的熔点。
3.如权利要求1所述的聚烯烃双向拉伸挂面膜,其特征在于,所述防粘连剂为高透明的有机防粘连剂。
4.如权利要求1所述的聚烯烃双向拉伸挂面膜,其特征在于,所述爽滑剂为硅酮、油酸酰胺,以及芥酸酰胺爽滑剂中任一种。
5.如权利要求1所述的聚烯烃双向拉伸挂面膜,其特征在于,所述聚烯烃双向拉伸挂面膜的表面摩擦系数为0.25~0.70。
6.如权利要求1所述的聚烯烃双向拉伸挂面膜,其特征在于,所述聚烯烃双向拉伸挂面膜的表面摩擦系数为0.3~0.5。
7.如权利要求1至6任一项所述的聚烯烃双向拉伸挂面膜,其特征在于,所述聚烯烃双向拉伸挂面膜的总厚度为15~30um,且任一所述芯层的厚度大于上表层或下表层的厚度。
8.如权利要求1至6任一项所述的聚烯烃双向拉伸挂面膜,其特征在于,所述聚烯烃双向拉伸挂面膜的总厚度为18~20um,且任一所述芯层的厚度大于上表层或下表层的厚度。
9.一种聚烯烃双向拉伸挂面膜的制备方法,其特征在于,所述聚烯烃双向拉伸挂面膜的制备方法包括如下步骤:
预先混配丙烯类共聚物88~97份、防粘连剂3~8份及爽滑剂0.1~1份的上表层及下表层,以及混配线性低密度烯类共聚物 99~100份及爽滑剂0. 1~1份的三层芯层,并对各层材料进行均匀分散处理;
将上表层、三层芯层及下表层分别通过五台挤出机,并经过五层共挤模头挤出形成管坯,并对管坯冷却成型处理,其中,所述上表层及下表层对应的挤出机的温度均为185~195℃,三层所述芯层对应的挤出机的温度均为180~200℃;
管坯经冷却定型后牵引至长发热筒,并由长发热筒对管坯进行预热,其中,所述长发热筒对管坯的预热温度为200~400℃;
对预热后的管坯充气以及对充气后的管坯进行双向拉伸处理形成泡膜,其中,所述双向拉伸处理的温度为108~110℃,所述双向拉伸包括横向和纵向拉伸,拉伸倍数均为4-7倍;
强制冷却泡膜,并对泡膜进行对分剖开处理得到聚烯烃双向拉伸挂面膜。
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