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《Polymer Handbook (fourth edition)》(134M)
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The purpose of the Polymer Handbook is to bring together A critical evaluation of the values published in the the data and constants needed in theoretical and experi- literature was not attempted, since such a task would have mental polymer research. All polymer researchers have required an inordinate amount of time and a sizable staff. experienced the frustration of searching for data in the ever- Therefore, the users of this Handbook should consult the expanding polymer literature and know the difficulties original literature for details when in doubt about the involved in trying to locate a particular constant that is validity of any data. (The authors of the individual tables buried in a long journal article. The contributors to this were nevertheless requested to eliminate obviously erro- Handbook have taken on the arduous task of searching the neous data from otherwise complete compilations.) literature and compiling the data and constants that polymer The Fourth Edition revisions have focused on data chemists, polymer physicists, and polymer engineers are generated in the ten years since the publication of the Third likely to need. Edition. Therefore, a completely revised Polymer Hand- The 520 and odd tables in this Handbook are divided into book has been prepared. We have added new tables and eight sections. The first lists the IUPAC nomenclature rules incorporated a large amount of new data into existing for polymers and the International System of Units. tables. As a result, the Fourth Edition contains approxi- Although several naming conventions exist in the technical mately twenty-five percent more data, and the number of literature, IUPAC names permit a consistent listing of all pages has increased from about 1850 in the Third Edition to polymers. Section II contains data and constants needed for about 2250. polymer synthesis, kinetic mechanisms, and thermody- We hope that this new edition will be as useful to the namic studies of polymerization and depolymerization polymer research community as the three earlier editions reactions. Sections III and IV contain physical constants and that many of the Polymer Handbook's previous users of monomers, solvents, and oligomers. Section V lists the will also obtain the Fourth Edition for their laboratory and physical constants of many important commercial poly- library. mers. Section VI and VII cover the solid state properties of The publisher plans a CD-ROM for the Polymer polymers and the properties of polymer solutions. Section Handbook in the near future. We would be grateful if our VIII of the Handbook lists the commonly used abbrevia- contributors and users send us any new data they tions or acronyms for polymers and Chemical Abstract accumulate in the course of their research, and any errors, Registry Numbers, and gives suggestions for electronic data misprints, omissions and other flaws. We will pass on such searching for polymer information. This section should also data to the publisher, for the polymer database, and for be consulted in the few cases where contributors have not future editions of this Handbook. used IUPAC nomenclature. We would like to thank all of the contributors to the As in the previous editions, the Polymer Handbook Polymer Handbook for their help and continued patience. concentrates on synthetic polymers, poly(saccharides) and The staff at John Wiley, especially Carla Fjerstad, Shirley derivatives, and oligomers. Few data on biopolymers are Thomas, and Jacqueline Kroschwitz, have provided excel- included. Spectroscopic data as well as data needed by lent help and support in getting all the work done. We hope engineers and designers, such as mechanical and rheologi- that the outstanding efforts of all these people will find due cal data, are minimized, since many excellent compilations appreciation among the users of this Handbook. exist elsewhere. Only fundamental constants and para- meters that refer to the polymer molecule, that describe the July, 1998 J. Brandrup solid state of polymer molecules, or that describe polymer E. H. Immergut solutions, were compiled. Constants that depend on E. A. Grulke processing conditions or on sample history were not A. Abe emphasized, as they can be found in existing plastics D. R. Bloch handbooks and encyclopedias. http://www.91files.com/?TQZ67AN01FGBJ7NL401M http://www.91files.com/?0XF3FLM2GBS92IHL87CQ http://www.91files.com/?YZGRCSB1YWJTHFQJ17TU [ Last edited by mengbaiyang on 2008-3-10 at 20:14 ] |
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