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Research and development of 3PP coating steel pipes
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作者 FANG Wenqi MA Yuan HUI Linlin 《Baosteel Technical Research》 CAS 2024年第2期1-11,共11页
The industrial application of an exterior three-layer anticorrosive polypropylene coating system(3PP)on large-diameter(larger than Φ600 mm)steel pipes was developed using an experimental process simulation study and ... The industrial application of an exterior three-layer anticorrosive polypropylene coating system(3PP)on large-diameter(larger than Φ600 mm)steel pipes was developed using an experimental process simulation study and the optimization of raw materials inspection,steel pipe surface pretreatments,and water cooling control on a coating application process.The coating properties meet ISO standard 21809 on buried or submerged 3PP pipelines used in the petroleum and natural gas industries.Differential scanning calorimetry and X-ray diffraction were used to analyze the crystallinities and grain sizes of polypropylene(PP)top coats with different cooling rates.Increasing the melt cooling rate reduces the crystallinity and grain size of the PP top coat and enhances its strength and toughness. 展开更多
关键词 3pp steel pipe oil and gas pipelines cathodic disbondment polypropylene coatings exterior anticorrosive system
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BOPP光学膜专用树脂的开发与生产
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作者 熊炳坚 《浙江化工》 CAS 2024年第4期20-25,31,共7页
为开发生产高速挤出双向拉伸聚丙烯(BOPP)光学膜专用树脂,本文通过分析BOPP专用树脂的性能要求,在双环管液相本体工艺装置上采用非对称加氢和非对称外给电子体技术生产BOPP薄膜专用树脂,同时通过对添加剂及产品性能的研究,采用高效抗氧... 为开发生产高速挤出双向拉伸聚丙烯(BOPP)光学膜专用树脂,本文通过分析BOPP专用树脂的性能要求,在双环管液相本体工艺装置上采用非对称加氢和非对称外给电子体技术生产BOPP薄膜专用树脂,同时通过对添加剂及产品性能的研究,采用高效抗氧剂B代替常规抗氧剂B215,使产品颜色性能得到显著改善,成功开发出光学膜专用树脂PPH-FA03。 展开更多
关键词 聚丙烯(pp) 双向拉伸聚丙烯(BOpp) 非对称加氢 非对称外给电子体 抗氧剂 光学膜
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基于TanW-ArccosC PSO算法的PP求解与实证分析
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作者 姚琳 贾文生 《计算机仿真》 2024年第2期289-294,共6页
通过结合正切函数Tan-W和反余弦函数Arccos-C提出了一种改进的粒子群优化算法,简称TanW-ArccosC PSO算法。TanW-ArccosC PSO算法通过对惯性权重和学习因子的改进,增加了粒子群的多样性,增强了算法的搜索能力,提高了算法的收敛速度。针... 通过结合正切函数Tan-W和反余弦函数Arccos-C提出了一种改进的粒子群优化算法,简称TanW-ArccosC PSO算法。TanW-ArccosC PSO算法通过对惯性权重和学习因子的改进,增加了粒子群的多样性,增强了算法的搜索能力,提高了算法的收敛速度。针对投资组合问题,通过在大智慧软件中随机提取数据,利用MATLAB软件,分别用改进的TanW-ArccosC PSO算法和标准PSO算法进行求解与实证分析其投资组合问题的投资比例和CVaR值,实证分析结果表明TanW-ArccosC PSO算法具有更良好的搜索能力、低风险性以及可操作性。 展开更多
关键词 粒子群算法 惯性权重 学习因子 投资组合问题
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PP熔喷非织造布原料性能及关键工艺研究
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作者 潘晓娣 覃燕杰 陈海燕 《合成技术及应用》 CAS 2024年第1期33-38,共6页
为研究高效低阻熔喷布的关键生产工艺,选取四种不同的熔喷专用聚丙烯原料,采用毛细管流变仪对聚丙烯原料的流变性能进行分析,并进一步在熔喷生产过程中考察不同模头孔径和温度、不同热风风温和风量以及不同接收距离(DCD)对熔喷布颗粒物... 为研究高效低阻熔喷布的关键生产工艺,选取四种不同的熔喷专用聚丙烯原料,采用毛细管流变仪对聚丙烯原料的流变性能进行分析,并进一步在熔喷生产过程中考察不同模头孔径和温度、不同热风风温和风量以及不同接收距离(DCD)对熔喷布颗粒物过滤效率的影响。结果表明,四种聚丙烯熔体的非牛顿指数均小于1,熔体表现出切力变稀现象;同一剪切速率下,四种聚丙烯熔体的黏流活化能各不相同,生产过程中需根据原料特性严格控制温度;四种聚丙烯熔体的结构黏度指数均小于0.005,结构化程度均较小,可纺性好;同时,减小模头孔径,提高模头温度及在熔喷布克重相同的条件下,增加热风风温和风量及DCD距离,有利于降低熔喷纤维的平均直径,提高过滤效率。确定了熔喷非织造布的关键生产工艺:模头孔径0.28mm,热风风温275℃,热风风量32%,DCD 180 mm,开发出25 g/m 2熔喷布,在32 L/min流量下,盐性颗粒物过滤效率98.8%,过滤阻力17.9 Pa。 展开更多
关键词 聚丙烯 非织造布 熔喷生产工艺 颗粒物过滤效率
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基于改性PP-R材料研制的500 kV聚丙烯绝缘电力电缆
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作者 高振军 张开拓 +1 位作者 洪春艳 谢丽岩 《电工电气》 2024年第8期26-30,36,共6页
基于对改性PP-R聚丙烯材料的研究,根据电缆运行环境,通过采用以聚丙烯树脂和增韧弹性体为主的超净PP绝缘材料、超光滑半导PP屏蔽料,设计研发了可应用在290/500 kV电力系统中的聚丙烯绝缘电力电缆。该电缆通过平滑铝金属套设计和双焊枪... 基于对改性PP-R聚丙烯材料的研究,根据电缆运行环境,通过采用以聚丙烯树脂和增韧弹性体为主的超净PP绝缘材料、超光滑半导PP屏蔽料,设计研发了可应用在290/500 kV电力系统中的聚丙烯绝缘电力电缆。该电缆通过平滑铝金属套设计和双焊枪焊接技术,成功解决了传统皱纹铝护套由波谷点接触所引起的质量安全风险。相比相同运行环境中的传统交联聚乙烯绝缘皱纹铝护套电力电缆,其长期工作温度可提升到105℃;电缆正常运行时的载流量在直埋土壤中可提升18.6%,在空气中可提升20.3%。 展开更多
关键词 聚丙烯绝缘电力电缆 pp-R聚丙烯 交联聚乙烯 平滑铝金属套 安全裕度 载流量
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废旧PP/SBR复合改性沥青流变及疲劳特性分析 被引量:2
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作者 赵香玲 张浩 +1 位作者 米国兴 赵毅 《公路工程》 2023年第5期154-160,173,共8页
为提高道路沥青的路用性能,研究利用废旧聚丙烯(Polypropylene,PP)和丁苯橡胶(Styrene Butadiene Rubber,SBR)对基质沥青进行复合改性,通过布氏黏度、高低温流变和疲劳性能试验对复合改性沥青的性能变化规律进行系统分析并评价。结果表... 为提高道路沥青的路用性能,研究利用废旧聚丙烯(Polypropylene,PP)和丁苯橡胶(Styrene Butadiene Rubber,SBR)对基质沥青进行复合改性,通过布氏黏度、高低温流变和疲劳性能试验对复合改性沥青的性能变化规律进行系统分析并评价。结果表明:PP的掺加可显著改善SBR改性沥青的高温弹性变形及恢复性能,提高其临界温度2~9℃,但会引起抗疲劳性能和低温应力松弛性能一定程度衰减;然而,只要将PP掺量控制在6%以内,其不利影响相对较小。综合分析高低温性能和疲劳性能表现,废旧PP/SBR复合改性沥青的推荐最佳掺量为:6%PP+4%SBR。 展开更多
关键词 道路工程 SBR改性沥青 废旧聚丙烯(pp) 高低温流变性能 抗疲劳性能
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Properties of PEG/thermally modified wood flour/polypropylene (PP) composites 被引量:3
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作者 LUO Shu-pin CAO Jin-zhen WANG Xing 《Forestry Studies in China》 CAS 2012年第4期307-314,共8页
In order to improve the dimensional stability of wood-polymer composites, wood flour pre-treated by polyethylene glycol (PEG) at two different concentrations and then thermally treated at 140℃, was used as raw mate... In order to improve the dimensional stability of wood-polymer composites, wood flour pre-treated by polyethylene glycol (PEG) at two different concentrations and then thermally treated at 140℃, was used as raw material to produce wood flour/poly- propylene (PP) composites at a wood content of 40%. The structure of modified wood flour was analyzed with a scanning electron microscope (SEM) and its effect on the physical and mechanical properties of wood flour/PP composites was evaluated. The SEM results indicated the "bulking" effect of PEG on wood flour, which resulted in reduced water uptake. The combination of PEG and heat treatment further improved the moisture resistance of the composites. However, PEG modification had a negative effect on the flexural modulus of rupture (MOR) and the modulus of elasticity (MOE); whereas heat treatment partly compensated for this reduc- tion. For dynamic mechanical properties, PEG treatment decreased the storage modulus (E'). However, the heat treatment resulted in an increase orE' of the wood flour/PP composites, with the temperature of loss factor peaks shifting to a higher temperature. 展开更多
关键词 wood flour polypropylene pp polyethylene glycol (PEG) heat treatment
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Coupling effect of pond ash and polypropylene fiber on strength and durability of expansive soil subgrades:An integrated experimental and machine learning approach 被引量:3
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作者 Nitin Tiwari Neelima Satyam 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2021年第5期1101-1112,共12页
This study explores the coupling effect of pond ash(PA)and polypropylene(PP)fiber to control the strength and durability of expansive soil.The PA is used to chemically treat the expansive soil and PP fiber is adopted ... This study explores the coupling effect of pond ash(PA)and polypropylene(PP)fiber to control the strength and durability of expansive soil.The PA is used to chemically treat the expansive soil and PP fiber is adopted as reinforcement against tensile cracking.The sustainable use of PA and PP fiber are demonstrated by performing mechanical(i.e.unconfined compressive strength,split tensile strength and ultrasonic pulse velocity),chemical(pH value,electrical conductivity and calcite content),and microstructural analyses before and after 2nd,4th,6th,8th and 10th freezing-thawing(F-T)cycles.Three curing methods with 7 d,14 d and 28 d curing periods are considered to reinforce the 5%,10%,15%and 20%PA-stabilized expansive soil with 0.25%,0.5%and 1%PP fiber.In order to develop predictive models for mechanical and durability parameters,the experimental data are processed utilizing artificial neural network(ANN),in association with the leave-one-out cross-validation(LOOCV)as a resampling method and three different activation functions.The mechanical and durability properties of the PA-stabilized expansive soil subgrades are increased with PP fiber reinforcement.The results of ANN modeling predict the mechanical properties perfectly,and the correlation coefficient(R)approaches up to 0.96. 展开更多
关键词 Expansive soil subgrades Waste utilization Freezing-thawing(F-T) Microstructural assessment Pond ash(PA) polypropylene(pp)fiber
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相容剂对PP/PP-g-MAH/EVOH中空纤维硬弹性的影响 被引量:1
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作者 韦俊宇 施启富 +5 位作者 邓露勇 张筑 罗超 高进 李杨 罗大军 《塑料》 CAS CSCD 北大核心 2023年第3期43-47,共5页
采用乙烯-乙烯醇共聚物(EVOH)共混亲水改性聚丙烯(PP),并且,聚丙烯接枝马来酸酐(PP-g-MAH)作为相容剂,制备PP/PP-g-MAH/EVOH共混物,再经熔融纺丝制备具有硬弹性的PP/PP-g-MAH/EVOH中空纤维。然后,对共混物亲水性能、中空纤维微观形态和... 采用乙烯-乙烯醇共聚物(EVOH)共混亲水改性聚丙烯(PP),并且,聚丙烯接枝马来酸酐(PP-g-MAH)作为相容剂,制备PP/PP-g-MAH/EVOH共混物,再经熔融纺丝制备具有硬弹性的PP/PP-g-MAH/EVOH中空纤维。然后,对共混物亲水性能、中空纤维微观形态和力学性能进行测试表征,分析相容剂PP-g-MAH对PP/PP-g-MAH/EVOH中空纤维亲水性与硬弹性行为的影响。结果表明,加入EVOH可以改善PP/PP-g-MAH/EVOH共混体系的亲水性,增容共混体系提高了共混体系的亲水性。PEMAH-0由于受到不相容的两相界面的影响,中空纤维的弹性回复率与强度显著降低,硬弹性较差。PP-g-MAH可以改善两相间相容性,细化EVOH的相岛结构,提高了PP/PP-g-MAH/EVOH中空纤维的强度与弹性回复率,使其具有较好的硬弹性。 展开更多
关键词 聚丙烯 中空纤维 硬弹性 pp-G-MAH EVOH
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Alternative Diesel Grade Fuel Transformed from Polypropylene (PP) Municipal Waste Plastic Using Thermal Cracking with Fractional Column Distillation 被引量:1
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作者 Moinuddin Sarker Mohammmad Mamunor Rashid +1 位作者 Muhammad Sadikur Rahman Mohammed Molla 《Energy and Power Engineering》 2012年第3期165-172,共8页
Day by day worldwide use of plastics is increasing because of their light weight and durable characteristics. Waste plastics are major environmental problems all over the world. Waste plastics are not bio-degradable, ... Day by day worldwide use of plastics is increasing because of their light weight and durable characteristics. Waste plastics are major environmental problems all over the world. Waste plastics are not bio-degradable, it remains in the landfill for a long period of time causing vegetation and aquatic ecosystem dilemmas. Abandoned waste plastic thrown into the ocean causes friction of ocean waves and then broken down by sunlight into small pieces and takes the shape of plastic like soup. Aquatic organism mistakes the plastic soup as their food and can’t digest, either they die or through food chain it affects human health. To avoid severe environmental degradation problems of waste plastics some countries and big cities banned or restricted the use of plastic products. The worldwide generation of waste plastics is approximately 280 million tons/year. All most all of these waste plastics are dumped either in land or ocean. City municipalities spend huge amount of money each year just to dispose of these waste plastics into landfill because most waste plastics are not recycled. When the waste plastics are subjected to incineration, they release harmful toxic gas into the environment causing severe pollution. These waste plastics gradually enhance the hazardous environmental problems. Generally plastics are made from crude oil, however crude oil is a very limited natural resource and non-renewable. Every year millions of barrels of crude oil are to produce the waste plastics and when plastics are discarded after use the energy source is lost. A new developed technology plan minimizes the environment pollution problems simultaneously boost up energy sector by renovating the waste plastics into high energy content fuel. The produced fuel is obtained using a unique thermal degradation of waste plastics and converting them into hydrocarbon fuel like materials. Preliminary tests proved that this fuel burns cleaner and the production cost is very low. Unique production setup demonstrated to produce 93% fuel from waste plastic in the pilot scale. The Fuel produced has been tested and proven to work on majority types of internal combustion engines. This technology utilized can avoid waste plastic pollution problem worldwide by the implementation of newly developed technology. Through the utilization of the technology the use of reliable plastics won’t need to be banned and serve as a very reliable alternate source of energy. The technology will also help reduce a significant amount of import oil from foreign countries and help provide a steady economy. 展开更多
关键词 FUEL pp Thermal Cracking FRACTIONAL Waste Plastic DIESEL polypropylene
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基于SPH算法的PP包装容器冲击特性分析及优化设计
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作者 周瑞丽 毕向秋 《机械研究与应用》 2023年第1期58-61,共4页
注塑PP作为酸奶、果冻等饮品包装容器时,因其低温脆性的特点,极易发生跌落破裂,导致出现内容物泄漏等问题。为了解决注塑PP的结构强度问题,建立了基于SPH光滑粒子流体动力学方法的高分子包装容器模型,该模型以注塑PP低温实验下获得的材... 注塑PP作为酸奶、果冻等饮品包装容器时,因其低温脆性的特点,极易发生跌落破裂,导致出现内容物泄漏等问题。为了解决注塑PP的结构强度问题,建立了基于SPH光滑粒子流体动力学方法的高分子包装容器模型,该模型以注塑PP低温实验下获得的材料特性作为输入条件,通过SPH方法对内容物进行模拟,研究内容物在高分子包装容器跌落中的作用,并结合包装容器的实际失效模式,进行优化设计研究。仿真和实验结果的对比说明,运用SPH方法可以准确预测PP材料包装容器跌落状态下的耐冲击特性,基于仿真结果的优化设计有效改善了跌落冲击时包装容器破裂及凸底现象,对食品等消费品行业含内容物的高分子材料包装的设计具有指导意义。 展开更多
关键词 注塑pp 包装容器 SPH光滑粒子流体动力学 低温脆性 冲击特性
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Mechanical, Thermal and Crystallization Properties of Polypropylene (PP) Reinforced Composites with High Density Polyethylene (HDPE) as Matrix 被引量:1
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作者 Harekrushna Sutar Prakash Chandra Sahoo +4 位作者 Prateekshya Suman Sahu Surajabala Sahoo Rabiranjan Murmu Sumit Swain Subash Chandra Mishra 《Materials Sciences and Applications》 2018年第5期502-515,共14页
Our work aims to evaluate a complete outlook of virgin high density polyethylene (HDPE) and polypropylene (PP) polyblends. Virgin PP of 20, 30 and 50 weight% is compounded with virgin HDPE. The properties like tensile... Our work aims to evaluate a complete outlook of virgin high density polyethylene (HDPE) and polypropylene (PP) polyblends. Virgin PP of 20, 30 and 50 weight% is compounded with virgin HDPE. The properties like tensile strength, flexural strength, Izod impact strength are examined. Scanning electron microscopy (SEM) and polarised light microscopy (PLM) are used to observe the surface and crystal morphology. X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR) tests verify the non compatibility of both polymers. Differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) techniques are used to study the thermal behaviour of composites. The results manifest co-occurring spherulites for polyblends;indicating the composite to be a physical blend of continuous and dispersed phases, but on the other hand PP improves the tensile and flexural properties of HDPE. 展开更多
关键词 High Density Poly Ethylene (HDPE) polypropylene (pp) Polyblends MECHANICAL THERMAL CRYSTALLIZATION Properties
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超临界二氧化碳间歇式发泡法制备PP、PP/POE微孔发泡材料 被引量:1
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作者 吴德洋 毛家容 +2 位作者 毛良冬 彭建 赵天宝 《塑料》 CAS CSCD 北大核心 2023年第5期167-172,共6页
采用超临界二氧化碳间歇式发泡法,成功制备了聚丙烯(PP)、PP/POE(乙烯-辛烯共聚物)微孔发泡材料。研究了发泡温度、饱和压力、POE含量对PP复合材料发泡性能的影响,并且,通过研究发泡材料的微观形貌、泡孔直径和膨胀倍率,得到最佳POE添... 采用超临界二氧化碳间歇式发泡法,成功制备了聚丙烯(PP)、PP/POE(乙烯-辛烯共聚物)微孔发泡材料。研究了发泡温度、饱和压力、POE含量对PP复合材料发泡性能的影响,并且,通过研究发泡材料的微观形貌、泡孔直径和膨胀倍率,得到最佳POE添加量。结果表明,在156℃、20 MPa条件下,PP可形成泡孔直径均一、高体积膨胀比的闭孔结构材料。加入POE后,PP复合材料的发泡性能得到改善,对发泡区间影响显著,PP/POE(80∶20)的发泡温度区在40℃以上;PP/POE(80∶20)随着发泡温度的上升,泡孔平均直径先增加后下降,泡孔密度和体积膨胀比逐渐增大;在120℃、20 MPa条件下,添加20%POE,得到了发泡范围大且泡孔均一性较好的发泡材料,泡孔密度为1.13×10^(11)个/cm^(3),泡孔孔径为2.81μm。 展开更多
关键词 聚丙烯 POE 发泡材料 超临界二氧化碳 共混
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BRITTLE-DUCTILE TRANSITION OF PP/EPDM/ELASTOMERIC NANO-PARTICLE TERNARY BLENDS 被引量:1
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作者 傅强 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2006年第4期389-394,共6页
The brittle-ductile transition is a very important phenomenon for polymer toughening. Polypropylene (PP) is often toughened by using rubbers, e.g., ethylene-propylene diene monomer (EPDM) has often been used as a ... The brittle-ductile transition is a very important phenomenon for polymer toughening. Polypropylene (PP) is often toughened by using rubbers, e.g., ethylene-propylene diene monomer (EPDM) has often been used as a modifier. In this article, the toughening of PP by using a new kind of rubber, known as elastomeric nano-particle (ENP), and the brittleductile transition of PP/EPDM/ENP was studied. Compared to PP/EPDM binary blends, the brittle-ductile transition of PP/EPDM/ENP ternary blends occurred at lower EPDM contents. SEM experiment was carried out to investigate the etched and impact-fractured surfaces. ENP alone had no effect on the impact strength of PP, however, with the same EPDM content, PP/EPDM/ENP ternary blends had smaller particle size, better dispersion and smaller interparticle distance in contrary to PP/EPDM binary blends, which promoted the brittle-ductile transition to occur earlier. 展开更多
关键词 pp EPDM Elastomeric nano-particle Brittle-ductile transition.
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The Effects of Filler Contents and Particle Sizes on the Mechanical and End-Use Properties of Snail Shell Powder Filled Polypropylene
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作者 Genevive C. Onuegbu Isaac O. Igwe 《Materials Sciences and Applications》 2011年第7期810-816,共7页
Polypropylene composites of snail shell powder were prepared at filler contents, 0 to 40 wt%. The particle sizes of the snail shell powder investigated were 0.150, 0.30, and 0.42 μm. Talc, of particle size, 0.150 μm... Polypropylene composites of snail shell powder were prepared at filler contents, 0 to 40 wt%. The particle sizes of the snail shell powder investigated were 0.150, 0.30, and 0.42 μm. Talc, of particle size, 0.150 μm was used as the reference filler. The polypropylene composites were prepared in an injection moulding machine and the resulting composites were extruded as sheets. Some mechanical and end-use properties of the prepared composites were determined. Results showed that the snail shell powder improved the tensile modulus, flexural strength, and impact strength of polypropylene and these properties increased with increases in the filler content and decreases in the filler particle size. The elongation at break of the composites was however observed to decrease with increases in the filler content, and particle size. The elongation at break of talc filled polypropylene was zero, an indication of the brittle nature of polypropylene composites of talc. The hardness, water sorption (24-hr) and specific gravity of the composites were found to increase with increases in the filler content, and decreases in the filler particle size. The level of water absorbed by snail shell powder composites of polypropylene is considerably higher than that of talc filled polypropylene. The flame retardant properties of the prepared composites were however found to decrease with increases in the filler content, and particle size. Generally, snail shell powder was found to show greater property improvement over talc in the prepared composites. 展开更多
关键词 FILLER particle Size polypropylene SNAIL SHELL powder Composite
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PUF、PP和PS阻燃复合塑料研究现状和发展趋势 被引量:1
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作者 鲍庆煌 李俊 +2 位作者 袁英杰 白扬 叶兵 《材料导报》 CSCD 北大核心 2023年第S01期521-527,共7页
塑料阻燃复合材料的发展对于扩大塑料应用范围具有重要意义。聚氨酯泡沫(PUF)、聚丙烯(PP)和聚苯乙烯(PS)作为典型通用塑料,被应用于众多领域。然而,这三种塑料的内在结构和自身性质使其表现出热稳定性差、易燃烧和燃烧释放CO等毒气的特... 塑料阻燃复合材料的发展对于扩大塑料应用范围具有重要意义。聚氨酯泡沫(PUF)、聚丙烯(PP)和聚苯乙烯(PS)作为典型通用塑料,被应用于众多领域。然而,这三种塑料的内在结构和自身性质使其表现出热稳定性差、易燃烧和燃烧释放CO等毒气的特性,严重危害生命和财产安全,从而限制了它们的使用范围。添加阻燃剂改性而形成复合塑料是目前改善塑料阻燃性能的常用方法。本文分析了阻燃塑料的性能表征和原理,同时基于近年来的研究工作,回顾了典型PUF、PP和PS阻燃复合塑料的研究现状,探讨了阻燃剂组织及其对阻燃性能的影响,并总结了阻燃剂的制备技术。此外,结合塑料的阻燃应用需求和碳减排背景,梳理了其发展方向和前景。 展开更多
关键词 阻燃塑料 聚氨酯泡沫(PUF) 聚丙烯(pp) 聚苯乙烯(PS) 微观组织
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Azimuthal correlations of particles produced in pp collisions at 400 GeV /c
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作者 王韶舜 《Nuclear Science and Techniques》 SCIE CAS CSCD 1996年第1期6-9,共4页
Azimuthalcorrelationsofparticlesproducedinppcollisionsat400GeV/cWangShao-Shun(王韶舜)(DepartmentofModernPhysics... Azimuthalcorrelationsofparticlesproducedinppcollisionsat400GeV/cWangShao-Shun(王韶舜)(DepartmentofModernPhysics,UniversityofScie... 展开更多
关键词 质子-质子碰撞 次级粒子 角分布
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Some Possible Particles Decays from pp Collisions at LHC Experiment
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作者 Hasan Arslan 《Journal of Modern Physics》 2014年第11期1023-1026,共4页
Some of the possible decays of pp collisions at LHC experiment are considered. The vector bosons mediating in the electroweak interactions and right-handed leptons except neutrinos are assumed to be the most resultant... Some of the possible decays of pp collisions at LHC experiment are considered. The vector bosons mediating in the electroweak interactions and right-handed leptons except neutrinos are assumed to be the most resultant particles from the pp collisions. Neutrinos and anti-neutrinos will be observed when one-double electron charged vector bosons are the resultant particles. The charge conservation is thought to be the dominant factor of these decays. The amplitude transitions for Feynman diagram of these decays are written. 展开更多
关键词 Z'Boson W'Bosons Resultant particles from pp Collisions Scattering Amplitude
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聚丙烯的亲水改性与性能研究
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作者 刘啸天 冯金良 汪乃东 《当代化工研究》 CAS 2024年第13期52-54,共3页
本文在概述聚丙烯改性技术的基础上,针对聚丙烯亲水性差的问题,采用共混改性技术制备亲水聚丙烯样品,并测试改性、未改性样品力学性能和亲水表征。经研究发现,共混改性亲水PP与未改性PP力学性能基本一致。亲水PP接触角、滴水观察、分散... 本文在概述聚丙烯改性技术的基础上,针对聚丙烯亲水性差的问题,采用共混改性技术制备亲水聚丙烯样品,并测试改性、未改性样品力学性能和亲水表征。经研究发现,共混改性亲水PP与未改性PP力学性能基本一致。亲水PP接触角、滴水观察、分散实验均优于未改性PP。根据实验结果表明,采用共混改性亲水聚丙烯亲水性能良好。 展开更多
关键词 聚丙烯 共混改性 亲水pp 接触角
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聚丙烯(PP)基阴离子交换纤维吸附钯研究 被引量:12
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作者 李云 王丽琼 +2 位作者 曾庆轩 邓琼 杨海燕 《北京理工大学学报》 EI CAS CSCD 北大核心 2003年第2期255-259,共5页
研究聚丙烯 (PP)基阴离子交换纤维对盐酸溶液中钯的交换性能 .讨论溶液 p H值、温度、氯离子浓度、交换时间等对钯吸附率的影响 .确定最佳的交换吸附条件 ,测定纤维的最大静态交换容量 .用红外光谱 (FT- IR)研究了该阴离子交换纤维在盐... 研究聚丙烯 (PP)基阴离子交换纤维对盐酸溶液中钯的交换性能 .讨论溶液 p H值、温度、氯离子浓度、交换时间等对钯吸附率的影响 .确定最佳的交换吸附条件 ,测定纤维的最大静态交换容量 .用红外光谱 (FT- IR)研究了该阴离子交换纤维在盐酸溶液中对钯的交换机理 .载钯的聚丙烯 (PP)基阴离子交换纤维用质量分数为 2 %的硫脲与 2 m ol/L 的 HCl混合溶液可以定量的解吸 .该 PP基阴离子交换纤维可用于定量回收溶液中微量的钯 . 展开更多
关键词 阴离子交换纤维 聚丙烯(pp) 吸附 解吸
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