DocumentCode
1943495
Title
Specialty plastic molding for VRLA and other battery technologies
Author
Lincoln, William A.
Author_Institution
Accuma Corp., Statesville, NC, USA
fYear
2000
fDate
11-14 Jan. 2000
Firstpage
131
Lastpage
134
Abstract
The material of choice for battery container construction is an important consideration depending on the particular battery technology being addressed. For instance, the automotive lead acid battery industry uses primarily polypropylene and/or re-processed polypropylene almost exclusively for this application. Automotive batteries being a commodity demand a cheap versatile polymer and polypropylene fits the bill. However, while standard polypropylene´s relative low cost and versatility lends itself very well to automotive applications, it may not be the material of choice for stationary batteries which are designed for much longer life, oftentimes requiring important anti-flame properties, stiffer side and end walls, and having rigidly controlled venting systems. The author identifies a few specialized plastic molding designs, molding techniques, testing parameters, and materials used during the molding of plastic components for technical battery manufacturers who require more than a simple plastic box and cover.
Keywords
lead acid batteries; moulding; plastics; Pb; VRLA; anti-flame properties; automotive lead acid battery; battery container construction; battery technologies; molding techniques; polymer; polypropylene; re-processed polypropylene; rigidly controlled venting systems; specialty plastic molding; stationary batteries; technical battery manufacturers; testing parameters; valve regulated Pb-acid batteries; Automotive applications; Automotive engineering; Batteries; Building materials; Construction industry; Containers; Control systems; Costs; Plastics; Polymers;
fLanguage
English
Publisher
ieee
Conference_Titel
Battery Conference on Applications and Advances, 2000. The Fifteenth Annual
Conference_Location
Long Beach, CA, USA
ISSN
1089-8182
Print_ISBN
0-7803-5924-0
Type
conf
DOI
10.1109/BCAA.2000.838393
Filename
838393
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