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塑料技術(shù)手冊(cè):Volume 1:發(fā)泡成型·壓延成型:Foaming·calendering

包郵 塑料技術(shù)手冊(cè):Volume 1:發(fā)泡成型·壓延成型:Foaming·calendering

出版社:哈爾濱工業(yè)大學(xué)出版社出版時(shí)間:2015-06-01
開本: 23cm 頁數(shù): 138
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塑料技術(shù)手冊(cè):Volume 1:發(fā)泡成型·壓延成型:Foaming·calendering 版權(quán)信息

塑料技術(shù)手冊(cè):Volume 1:發(fā)泡成型·壓延成型:Foaming·calendering 內(nèi)容簡介

  《塑料技術(shù)手冊(cè) 發(fā)泡成型·壓延成型(1 影印版)》提供了一個(gè)將會(huì)、實(shí)用、和創(chuàng)新的方法來了解塑料制品的設(shè)計(jì)和制造。它將擴(kuò)大讀者的理解塑料技術(shù)通過定義和專注于過去,現(xiàn)在,和未來的技術(shù)發(fā)展趨勢(shì)。塑料的行為提出了以幫助讀者制造產(chǎn)品滿足性能標(biāo)準(zhǔn),低成本的需求,和盈利能力的目標(biāo)。綜述了不同塑料制品獲得很好的理解行為如何影響性能和成本效率。例子包括玩具、醫(yī)療器械、汽車、船只、水下設(shè)備、容器、彈簧、管道、建筑和飛機(jī)。功能性行為也解釋了熱塑性塑料、彈性體、增強(qiáng)塑料,和其他常見塑料,連同他們的許多制造過程(擠出,注塑,吹塑成型,發(fā)泡,反應(yīng)注射成型和旋轉(zhuǎn)成型)。這種材料提出了這兩種技術(shù)和非技術(shù)讀者能理解材料過程的相互關(guān)系。作者檢查不同的塑料制品和相關(guān)的關(guān)鍵因素,從滿足性能需求在不同的環(huán)境下降低成本和零缺陷的目標(biāo)。

塑料技術(shù)手冊(cè):Volume 1:發(fā)泡成型·壓延成型:Foaming·calendering 目錄

LIST OF FIGURES
LIST OF TABLES
PREFACE
ABOUT THE EDITORS
8.FOAMING
OVERVIEW
Basic Process
Cell Configuration
BLOWING AGENT
Physical Blowing Agent
Chemical Blowing Agent
Thermoset Plastic Foam
Water Foaming
Chlorofluorocarbon and Alternate
TYPE OF FOAM
Structural Foam
Reinforced Plastic Foam
Acetal
Acrylonitrile— Butadiene— Styrene (ABS)
lonomer
Phenolic
Polycarbonate
Polybutylene Terephthalate
Polyetherimide
Polyolefin
Polystyrene
Polyurethane
Polyvinyl Chloride
Other Foam
Syntactic
PROCESS
Extruded or Calendered Foamed Stock
Extruding
Casting
Spraying
Frothing
Expandable Polystyrene
Expandable Polyethylene
Expandable Polyethylene/Polystyrene
Expandable Styrene—Acrylonitrile
Molding
Injection Molding
Liquid Injection
Structural Foam
Foam Reservoir Molding
Polyurethane Process
Slabstock Molding
Laminating
APPLICATION
Sheet and Film
Polyethylene Cushioning
Profile
Strippable
9.CALENDERING
INTRODUCTION
EQUIPMENT
Roll Design
Pressure on Roll
Temperature
Control
Roll Disposition
Downstream Equipment
PLASTIC STOCK
Compounding/Blending
PROCESSING
Market
Calendering vs.Extrusion
展開全部

塑料技術(shù)手冊(cè):Volume 1:發(fā)泡成型·壓延成型:Foaming·calendering 節(jié)選

  《塑料技術(shù)手冊(cè) 發(fā)泡成型·壓延成型(1 影印版)》:  Polyethylene,polyurethane, and polystyrene are the most common foams; however, polypro— pylene (PP) foams can provide favorablc properties at a lower material cost.PP is stiffer than PE and performs better in load bearing and structural applications.The low glass—transition tempera— ture of PP compared to PS provides increased flexibilitv and impact strength (chapter 1).Use of PP foams includes packaging, automotive, insulation, and protection of underground pipe.  It is important to know in advance what foam properties will be required for a particular application.As with other plastics or any material, it is not enough to be told that a material is plastic foam with remarkable properties.The following review on examples of different plastics used includes preliminary information on processes and applications.It starts by reviewing the subject of structural foams and reinforced plastic foams.  STRUCTURAL FOAM  Structural foam is a term originally used for cellular thermoplastic articles with integral solid skins and possessing high strcngth—to—weight ratios (Table 8.25).Eventually, the term covered high— density rigid cellular plastics strong enough for structural applications.As an example, thermoset foams, such as polyurethane, are frequently referred to as structural foams.In general, a structural foam can be made from virtually any high molecular weight thermoplastic organic polymer and will have a cellular core and an integral skin on all sides.The skin is relatively nonporous in relation to the cellular core.  ……

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