CN112321982A - 一种耐老化hips发泡塑料 - Google Patents
一种耐老化hips发泡塑料 Download PDFInfo
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- CN112321982A CN112321982A CN202011234906.1A CN202011234906A CN112321982A CN 112321982 A CN112321982 A CN 112321982A CN 202011234906 A CN202011234906 A CN 202011234906A CN 112321982 A CN112321982 A CN 112321982A
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- HJIAMFHSAAEUKR-UHFFFAOYSA-N (2-hydroxyphenyl)-phenylmethanone Chemical compound OC1=CC=CC=C1C(=O)C1=CC=CC=C1 HJIAMFHSAAEUKR-UHFFFAOYSA-N 0.000 claims description 7
- VEORPZCZECFIRK-UHFFFAOYSA-N 3,3',5,5'-tetrabromobisphenol A Chemical compound C=1C(Br)=C(O)C(Br)=CC=1C(C)(C)C1=CC(Br)=C(O)C(Br)=C1 VEORPZCZECFIRK-UHFFFAOYSA-N 0.000 claims description 7
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- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
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Abstract
本发明公开了一种耐老化HIPS发泡塑料及其制备方法,所述的耐老化HIPS发泡塑料,包括如下原料:HIPS、PMMA、PVC、无机耐老化剂、有机耐老化剂、发泡剂、填料、抗氧剂、加工助剂。本发明提供一种耐老化HIPS发泡塑料及其制备方法,通过优化组分、用量,制得的产品在不降低抗冲击性能的前提下,能具有优异的耐老化性能。
Description
技术领域
本发明属于聚合物技术领域,具体涉及一种耐老化HIPS发泡塑料。
背景技术
橡胶接枝增韧聚苯乙烯聚合物即HIPS树脂的连续本体聚合方法是以聚丁二烯橡胶或丁二烯-苯乙烯共聚物橡胶为增韧剂,按照一定的比例将增韧剂溶解在苯乙烯和/或适量的溶剂中,采用热引发或引发剂引发的方法制备的。文献(PengFM.Polybutadienegrafting and crosslinking in high-impact polystyrene bulkthermal process.Journal of Applied Polymer Science,1990,40(7-8):1289-1302.)中对本体法热引发制备HIPS树脂的聚合反应动力学作了细致的阐述。CN1609126A采用特殊结构橡胶作增韧剂,制备出微观形态呈“卵石堆砌”结构、综合力学性能优异的HIPS树脂。该树脂不仅具有一定的刚性、硬度和加工流动性,而且具有尺寸稳定、耐低温韧性和着色性好的特点,是一个综合性能相对优良的塑料品种,因而被广泛地应用于电子、电器、通讯、仪表、建材、纺织、汽车零部件以及办公机械等领域。随着塑料材料及其制品的发展、应用范围的不断扩大,对HIPS耐久性提出了更高的要求。
然而,HIPS制品在室外长期受阳光、热、氧作用后,会出现泛黄、变脆、龟裂、表面失去光泽、力学性能大大下降等现象,最终丧失使用价值。这是由于HIPS分子中的丁二烯组份所含双键在紫外线作用下,易氧化降解,导致其耐气候性较差,在储存、成型、使用过程中,随着时间的延长而发生结构变化,出现物理力学性质的劣化。制品颜色变黄是HIPS高分子中形成羰基等发色基团的结果,这就意味着高分子链的断裂和极性基团的形成,且环境温度升高则上述变化加剧,放映在冲击强度上是在老化初期强度的急剧下降。
因此,急需一种不降低抗冲击性能的前提下,能具有优异的耐老化性能的HIPS树脂组合物。
发明内容
本发明提供一种耐老化HIPS发泡塑料及其制备方法,通过优化组分、用量,制得的产品在不降低抗冲击性能的前提下,能具有优异的耐老化性能。
为解决以上技术问题,本发明采用以下技术方案:
一种耐老化HIPS发泡塑料,其特征在于,以质量份为单位,包括如下原料:HIPS,PMMA,PVC,无机耐老化剂、有机耐老化剂、发泡剂、填料、抗氧剂、加工助剂;所述无机耐老化剂为导电铜粉末,纳米氧化镧,赤泥按(2-4):(0.2-0.4):(4-8)的质量比例复配得到,所述有机耐老化剂为四溴双酚A与邻羟基二苯甲酮按1:2-4质量比复合得到;所述发泡剂为偶氮二甲酰胺和中空纤维按(2-4):1的比例添加。
进一步地,所述的耐老化HIPS发泡塑料,以质量份为单位,包括如下原料:HIPS60-80份,PMMA10-20份,PVC10-20份,无机耐老化剂3-6份,有机耐老化剂3-6份,发泡剂5-15份,填料1-3份、抗氧剂0.1-1份、加工助剂1-3份。
进一步地,所述无机耐老化剂为导电铜粉末,纳米氧化镧,赤泥按3:0.3:6的质量比例复配得到。
进一步地,所述发泡剂为偶氮二甲酰胺和中空纤维按3:1的比例添加。
进一步地,所述中空纤维的中空率为30-60%的尼龙66纤维。
进一步地,所述加工助剂为硬脂酰胺类润滑剂、硅油和白矿油中的一种或几种的混合物。
进一步地,所述抗氧剂为多元受阻酚型抗氧剂。
进一步地,所述填料为滑石粉,氧化锌,硬脂酸钙,三氧化二锑中至少一种。
一种上述的耐老化HIPS发泡塑料的制备方法,其特征在于,包括以下步骤:
(1)将HIPS,PMMA,抗菌剂,复合阻燃剂、阻燃增效剂、抗氧剂、加工助剂投入到混合器中搅拌1-3分钟,得到混合原料;
(2)将步骤2的混合原料和步骤1的混炼产物投入到双螺杆挤出机中进行反应,材料在机筒内停留时间1-2min,得到反应产物,
(3)将双螺杆挤出机中的物料挤进HIPS发泡成型模具内,保压1分钟,待模具冷却后取出HIPS发泡成型件。
进一步地,所述双螺杆挤出机的各区温度如下:一区180-200℃,二区200-220℃,三区200-220℃,四区200-220℃,五区200-220℃,六区200-220℃,七区200-220℃,八区200-220℃,九区200-220℃,机头200-210℃。
本发明具有以下有益效果:
本发明的耐老化HIPS发泡塑料中以HIPS为基材,复配一定量的PMMA,PVC,对HIPS进行改性,使其在添加其它组分时,冲击性能不下降,且耐老化性能得到了协同提高。
本发明中加入特定的无机耐老化剂、有机耐老化剂。所述无机耐老化剂为导电铜粉末,纳米氧化镧,赤泥按一定质量比例复配得到。通过三者组分互相协同作用,铜粉电磁屏蔽效果、纳米稀土的光电效应、赤泥的遮蔽效果,从而实现了耐老化性能的提高。所述有机耐老化剂为四溴双酚A与邻羟基二苯甲酮按一定质量比复合得到,对射入树脂内部及其反射的光进行吸收。通过无机和有机耐老化剂的配合,实现了冲击性能不下降,且耐老化性能得到了协同提高的效果。
本发明的发泡剂为一定比例的偶氮二甲酰胺和中空纤维实现发泡,偶氮二甲酰胺为传统发泡剂,中空纤维中的空气在挤压中排出,形成空隙,并且其本身对发泡塑料具有一定的力学增强效果,实现高效的发泡,冲击性能不下降。
本发明的耐老化HIPS发泡塑料中以HIPS为基材,复配一定量的PMMA,PVC,然后加入特定的无机耐老化剂、有机耐老化剂、发泡剂,制得的产品能具有优异的耐老化性能。
具体实施方式
为便于更好地理解本发明,通过以下实例加以说明,这些实例属于本发明的保护范围,但不限制本发明的保护范围。
下面通过更具体的实施例加以说明。
一种耐老化HIPS发泡塑料,其特征在于,以质量份为单位,包括如下原料:HIPS60-80份,PMMA10-20份,PVC10-20份,无机耐老化剂3-6份,有机耐老化剂3-6份,发泡剂5-15份,填料1-3份、抗氧剂0.1-1份、加工助剂1-3份;所述无机耐老化剂为导电铜粉末,纳米氧化镧,赤泥按(2-4):(0.2-0.4):(4-8)的质量比例复配得到,所述有机耐老化剂为四溴双酚A与邻羟基二苯甲酮按1:2-4质量比复合得到;所述发泡剂为偶氮二甲酰胺和中空纤维按(2-4):1的比例添加。
所述中空纤维的中空率为30-60%的尼龙66纤维。所述加工助剂为硬脂酰胺类润滑剂、硅油和白矿油中的一种或几种的混合物。所述抗氧剂为多元受阻酚型抗氧剂。所述填料为滑石粉,氧化锌,硬脂酸钙,三氧化二锑中至少一种。
一种上述的耐老化HIPS发泡塑料的制备方法,其特征在于,包括以下步骤:(1)将HIPS,PMMA,抗菌剂,复合阻燃剂、阻燃增效剂、抗氧剂、加工助剂投入到混合器中搅拌1-3分钟,得到混合原料;
(2)将步骤2的混合原料和步骤1的混炼产物投入到双螺杆挤出机中进行反应,材料在机筒内停留时间1-2min,得到反应产物,所述双螺杆挤出机的各区温度如下:一区180-200℃,二区200-220℃,三区200-220℃,四区200-220℃,五区200-220℃,六区200-220℃,七区200-220℃,八区200-220℃,九区200-220℃,机头200-210℃。
(3)将双螺杆挤出机中的物料挤进HIPS发泡成型模具内,保压1分钟,待模具冷却后取出HIPS发泡成型件。
实施例1
一种耐老化HIPS发泡塑料,其特征在于,以质量份为单位,包括如下原料:HIPS70份,PMMA15份,PVC15份,无机耐老化剂5份,有机耐老化剂5份,发泡剂10份,填料2份、抗氧剂0.5份、加工助剂2份;所述无机耐老化剂为导电铜粉末,纳米氧化镧,赤泥按3:0.3:6的质量比例复配得到,所述有机耐老化剂为四溴双酚A与邻羟基二苯甲酮按1:3质量比复合得到;所述发泡剂为偶氮二甲酰胺和中空纤维按3:1的比例添加。
所述中空纤维的中空率为50%的尼龙66纤维。所述加工助剂为硬脂酰胺类润滑剂。所述抗氧剂为多元受阻酚型抗氧剂。所述填料为滑石粉。
一种根据上述的耐老化HIPS发泡塑料的制备方法,其特征在于,包括以下步骤:(1)将HIPS,PMMA,抗菌剂,复合阻燃剂、阻燃增效剂、抗氧剂、加工助剂投入到混合器中搅拌1-3分钟,得到混合原料;
(2)将步骤2的混合原料和步骤1的混炼产物投入到双螺杆挤出机中进行反应,材料在机筒内停留时间1-2min,得到反应产物,所述双螺杆挤出机的各区温度如下:一区180-200℃,二区200-220℃,三区200-220℃,四区200-220℃,五区200-220℃,六区200-220℃,七区200-220℃,八区200-220℃,九区200-220℃,机头200-210℃。
(3)将双螺杆挤出机中的物料挤进HIPS发泡成型模具内,保压1分钟,待模具冷却后取出HIPS发泡成型件。
实施例2
一种耐老化HIPS发泡塑料,其特征在于,以质量份为单位,包括如下原料:HIPS60份,PMMA20份,PVC10份,无机耐老化剂6份,有机耐老化剂3份,发泡剂15份,填料1份、抗氧剂1份、加工助剂1份;所述无机耐老化剂为导电铜粉末,纳米氧化镧,赤泥按4:0.2:8的质量比例复配得到,所述有机耐老化剂为四溴双酚A与邻羟基二苯甲酮按1:2质量比复合得到;所述发泡剂为偶氮二甲酰胺和中空纤维按4:1的比例添加。
所述中空纤维的中空率为30%的尼龙66纤维。所述加工助剂为硬脂酰胺类润滑剂、硅油和白矿油中的一种或几种的混合物。所述抗氧剂为多元受阻酚型抗氧剂。所述填料为氧化锌。
制备方法与实施例1相同。
实施例3
一种耐老化HIPS发泡塑料,其特征在于,以质量份为单位,包括如下原料:HIPS80份,PMMA10份,PVC20份,无机耐老化剂3份,有机耐老化剂6份,发泡剂5份,填料3份、抗氧剂0.1份、加工助剂3份;所述无机耐老化剂为导电铜粉末,纳米氧化镧,赤泥按2:0.4:4的质量比例复配得到,所述有机耐老化剂为四溴双酚A与邻羟基二苯甲酮按1:4质量比复合得到;所述发泡剂为偶氮二甲酰胺和中空纤维按2:1的比例添加。
所述中空纤维的中空率为60%的尼龙66纤维。所述加工助剂为硅油。所述抗氧剂为多元受阻酚型抗氧剂。所述填料为三氧化二锑。
制备方法与实施例1相同。
对比例1
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中缺少PMMA,PVC。
对比例2
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中缺少PMMA。
对比例3
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中抗菌剂为PVC。
对比例4
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中缺少无机耐老化剂、有机耐老化剂。
对比例5
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中缺少无机耐老化剂。
对比例6
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中所述无机耐老化剂中缺少导电铜粉末。
对比例7
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中所述无机耐老化剂中缺少纳米氧化镧。
对比例8
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中所述无机耐老化剂中缺少赤泥。
对比例9
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中所述发泡剂为偶氮二甲酰胺。
对比例10
与实施例1的制备工艺基本相同,唯有不同的是制备耐老化HIPS发泡塑料的原料中所述发泡剂为中空纤维。
将上述实施例与对比例制备得到的产品压制成板材,制成50mm×50mm的塑料样品,耐老化性能:将实施例与对比例的样品在相同功率的紫外灯下照射2500小时后,进行拉伸测试。拉伸试验的方法参见ASTMD-638标准,进行制样测试,测试结果如下。
由上表可知:由实施例1-3和对比例1-10的数据可见,本发明的耐老化HIPS发泡塑料中以HIPS为基材,复配一定量的PMMA,PVC,然后加入特定的无机耐老化剂、有机耐老化剂、发泡剂,制得的产品能具有优异的耐老化性能。
以上内容不能认定本发明具体实施只局限于这些说明,对于本发明所属技术领域的普通技术人员来说,在不脱离本发明构思前提下,还可以做出若干简单推演或替换,都应当视为属于本发明由所提交的权利要求书确定的专利保护范围。
Claims (1)
1.一种耐老化HIPS发泡塑料,其特征在于,以质量份为单位,包括如下原料:HIPS70份,PMMA15份,PVC15份,无机耐老化剂5份,有机耐老化剂5份,发泡剂10份,填料2份、抗氧剂0.5份、加工助剂2份;所述无机耐老化剂为导电铜粉末,纳米氧化镧,赤泥按3:0.3:6的质量比例复配得到,所述有机耐老化剂为四溴双酚A与邻羟基二苯甲酮按1:3质量比复合得到;所述发泡剂为偶氮二甲酰胺和中空纤维按3:1的比例添加;
所述中空纤维的中空率为50%的尼龙66纤维;所述加工助剂为硬脂酰胺类润滑剂;所述抗氧剂为多元受阻酚型抗氧剂;所述填料为滑石粉。
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| CN101921445A (zh) * | 2010-08-17 | 2010-12-22 | 王崇高 | Hips发泡材料生产配方及其制作方法 |
| CN102070853A (zh) * | 2011-01-05 | 2011-05-25 | 广州市波斯塑胶颜料有限公司 | 一种发泡聚苯乙烯窗帘板片及其制备方法 |
| CN104844988A (zh) * | 2015-05-29 | 2015-08-19 | 合肥得润电子器件有限公司 | 一种耐老化汽车线束用氟橡胶改性pvc电缆料及其制备方法 |
| CN104945879A (zh) * | 2015-07-13 | 2015-09-30 | 苏州新区华士达工程塑胶有限公司 | 一种发泡轻质塑料 |
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| CN108530786B (zh) | 2021-06-11 |
| CN108530786A (zh) | 2018-09-14 |
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