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    • 1. 发明授权
    • Method of recording information using a copolymer of glycidyl
methacrylate and allyl glycidyl ether
    • 使用甲基丙烯酸缩水甘油酯和烯丙基缩水甘油醚的共聚物记录信息的方法
    • US4056393A
    • 1977-11-01
    • US696980
    • 1976-06-17
    • Sheldon I. SchlesingerVeronica Cochran
    • Sheldon I. SchlesingerVeronica Cochran
    • G03F7/021G03C5/04G03C1/78G03C5/00
    • G03F7/0217Y10S430/146
    • Copolymers of glycidyl methacrylate and allyl glycidyl ether having pendant epoxy groups, having an inherent viscosity of at least about 0.25, preferably within the range of about 0.25 to about 0.38, and an epoxy equivalent of at least about 0.65 epoxide equivalent per 100g. of polymer are provided which upon admixture with a radiation-sensitive aryldiazonium salt provide compositions which exhibit improved sensitivity, curing rates and other properties. Articles for recording and storing information from a laser source and other articles such as microfilm are derived from such compositions by subjecting a coated substrate to an energy source of sufficient intensity to decompose the radiation-sensitive catalyst and thus effect polymerization via the epoxy groups of the copolymer.
    • 具有侧链环氧基的缩水甘油基甲基丙烯酸酯和烯丙基缩水甘油醚的共聚物,其特性粘度为至少约0.25,优选在约0.25至约0.38的范围内,环氧当量为至少约0.65环氧当量/ 100g。 的聚合物,其与辐射敏感的芳基重氮盐混合,提供显示出提高的灵敏度,固化速率和其它性质的组合物。 用于记录和存储来自激光源和诸如微缩胶片的其它制品的信息的制品是通过将涂覆的基材经受足够强度的能量源来分解辐射敏感催化剂,从而通过经由 共聚物。
    • 2. 发明授权
    • Copolymer of glycidyl methacrylate and allyl glycidyl ether
    • 甲基丙烯酸缩水甘油酯和烯丙基缩水甘油醚的共聚物
    • US4054635A
    • 1977-10-18
    • US697010
    • 1976-06-17
    • Sheldon I. SchlesingerVeronica Cochran
    • Sheldon I. SchlesingerVeronica Cochran
    • G03F7/021B29C1/02G03C5/00
    • G03F7/0217Y10S430/143
    • Copolymers of glycidyl methacrylate and allyl glycidyl ether having pendant epoxy groups, having an inherent viscosity of at least about 0.25, preferably within the range of about 0.25 to about 0.38, and an epoxy equivalent of at least about 0.65 epoxide equivalent per 100g. of polymer are provided which upon admixture with a radiation-sensitive aryldiazonium salt provide compositions which exhibit improved sensitivity, curing rates and other properties. Articles for recording and storing information from a laser source and other articles such as microfilm are derived from such compositions by subjecting a coated substrate to an energy source of sufficient intensity to decompose the radiation-sensitive catalyst and thus effect polymerization via the epoxy groups of the copolymer.
    • 具有侧链环氧基的缩水甘油基甲基丙烯酸酯和烯丙基缩水甘油醚的共聚物,其特性粘度为至少约0.25,优选在约0.25至约0.38的范围内,环氧当量为至少约0.65环氧当量/ 100g。 的聚合物,其与辐射敏感的芳基重氮盐混合,提供显示出提高的灵敏度,固化速率和其它性质的组合物。 用于记录和存储来自激光源和诸如微缩胶片的其它制品的信息的制品是通过将涂覆的基材经受足够强度的能量源来分解辐射敏感催化剂,从而通过经由 共聚物。
    • 3. 发明授权
    • Method of polymerizing a copolymer of glycidyl methacrylate and allyl
glycidyl ether
    • 聚合甲基丙烯酸缩水甘油酯和烯丙基缩水甘油醚的共聚物的方法
    • US4054451A
    • 1977-10-18
    • US697001
    • 1976-06-17
    • Sheldon I. SchlesingerVeronica Cochran
    • Sheldon I. SchlesingerVeronica Cochran
    • G03F7/021G03C5/00C08F8/18G03C1/68
    • G03F7/0217Y10S430/115
    • Copolymers of glycidyl methacrylate and allyl glycidyl ether having pendant epoxy groups, having an inherent viscosity of at least about 0.25, preferably within the range of about 0.25 to about 0.38, and an epoxy equivalent of at least about 0.65 epoxide equivalent per 100g. of polymer are provided which upon admixture with a radiation-sensitive aryldiazonium salt provide compositions which exhibit improved sensitivity, curing rates and other properties. Articles for recording and storing information from a laser source and other articles such as microfilm are derived from such compositions by subjecting a coated substrate to an energy source of sufficient intensity to decompose the radiation-sensitive catalyst and thus effect polymerization via the epoxy groups of the copolymer.
    • 具有侧链环氧基的缩水甘油基甲基丙烯酸酯和烯丙基缩水甘油醚的共聚物,其特性粘度为至少约0.25,优选在约0.25至约0.38的范围内,环氧当量为至少约0.65环氧当量/ 100g。 的聚合物,其与辐射敏感的芳基重氮盐混合,提供显示出提高的灵敏度,固化速率和其它性质的组合物。 用于记录和存储来自激光源和诸如微缩胶片的其它制品的信息的制品是通过将涂覆的基材经受足够强度的能量源来分解辐射敏感催化剂,从而通过经由 共聚物。
    • 5. 发明授权
    • Method of imaging a layer containing copolymer of glycidyl methacrylate
and allyl glycidyl ether
    • 成像含有甲基丙烯酸缩水甘油酯和烯丙基缩水甘油醚的共聚物层的方法
    • US4054452A
    • 1977-10-18
    • US697655
    • 1976-06-18
    • Sheldon I. SchlesingerVeronica Cochran
    • Sheldon I. SchlesingerVeronica Cochran
    • G03F7/021G03C5/00C08F8/18G03C1/58
    • G03F7/0217Y10S430/115
    • Copolymers of glycidyl methacrylate and allyl glycidyl ether having pendant epoxy groups, having an inherent viscosity of at least about 0.25, preferably within the range of about 0.25 to about 0.38, and an epoxy equivalent of at least about 0.65 epoxide equivalent per 100g. of polymer are provided which upon admixture with a radiation-sensitive aryldiazonium salt provide compositions which exhibit improved sensitivity, curing rates and other properties. Articles for recording and storing information from a laser source and other articles such as microfilm are derived from such compositions by subjecting a coated substrate to an energy source of sufficient intensity to decompose the radiation-sensitive catalyst and thus effect polymerization via the epoxy groups of the copolymer.
    • 具有侧链环氧基的缩水甘油基甲基丙烯酸酯和烯丙基缩水甘油醚的共聚物,其特性粘度为至少约0.25,优选在约0.25至约0.38的范围内,环氧当量为至少约0.65环氧当量/ 100g。 的聚合物,其与辐射敏感的芳基重氮盐混合,提供显示出提高的灵敏度,固化速率和其它性质的组合物。 用于记录和存储来自激光源和诸如微缩胶片的其它制品的信息的制品是通过将涂覆的基材经受足够强度的能量源来分解辐射敏感催化剂,从而通过经由 共聚物。
    • 7. 发明授权
    • Copolymer of glycidyl methacrylate and allyl glycidyl ether
    • 甲基丙烯酸缩水甘油酯和烯丙基缩水甘油醚的共聚物
    • US4071671A
    • 1978-01-31
    • US697654
    • 1976-06-18
    • Sheldon I. SchlesingerVeronica Cochran
    • Sheldon I. SchlesingerVeronica Cochran
    • C08F216/14C08F220/32G03F7/021G03F7/038
    • C08F220/32C08F216/1416G03F7/0217G03F7/038Y10T428/31855
    • Copolymers of glycidyl methacrylate and allyl glycidyl ether having pendant epoxy groups, having an inherent viscosity of at least about 0.25, preferably within the range of about 0.25 to about 0.38, and an epoxy equivalent of at least about 0.65 epoxide equivalent per 100g. of polymer are provided which upon admixture with a radiation-sensitive aryldiazonium salt provide compositions which exhibit improved sensitivity, curing rates and other properties. Articles for recording and storing information from a laser source and other articles such as microfilm are derived from such compositions by subjecting a coated substrate to an energy source of sufficient intensity to decompose the radiation-sensitive catalyst and thus effect polymerization via the epoxy groups of the copolymer.
    • 具有侧链环氧基的缩水甘油基甲基丙烯酸酯和烯丙基缩水甘油醚的共聚物,其特性粘度为至少约0.25,优选在约0.25至约0.38的范围内,环氧当量为至少约0.65环氧当量/ 100g。 的聚合物,其与辐射敏感的芳基重氮盐混合,提供显示出提高的灵敏度,固化速率和其它性质的组合物。 用于记录和存储来自激光源和诸如微缩胶片的其它制品的信息的制品是通过将涂覆的基材经受足够强度的能量源来分解辐射敏感催化剂,从而通过经由 共聚物。
    • 9. 发明授权
    • Manufacture of molded paperboard articles
    • 模制纸板制品的制造
    • US4514354A
    • 1985-04-30
    • US448647
    • 1982-12-10
    • Sheldon I. SchlesingerWalter S. CerenziaThomas D. Wilson
    • Sheldon I. SchlesingerWalter S. CerenziaThomas D. Wilson
    • D21J5/00B29G5/00
    • D21J5/00Y10S264/66
    • A method of forming pressed paperboard and pressed paperboard articles from a cellulosic fiber pulp, wherein the paperboard or paperboard articles has improved high temperature properties required of ovenable cookware. A preformed sheet or blank formed from a cellulosic fiber pulp, and having a water content in a range of from about 50% to about 100% by weight, is placed in an unheated press or mold to form the sheet or blank at a pressure in the range of from about 160 psi to about 2600 psi and then dried. When compared with hot press dried paperboard or shaped paperboard articles, such as ovenable baking trays, the products of the method of this invention have superior burst strengths after exposure to a temperature of 450.degree. F. (232.degree. C.) for one hour.
    • 一种从纤维素纤维纸浆形成压制纸板和压制纸板制品的方法,其中纸板或纸板制品具有改进的可烘烤炊具所需的高温性能。 将由纤维素纤维纸浆形成并且具有约50%至约100%重量的水含量的预成型片材或坯料放置在未加热的压力机或模具中以在压力下形成片材或坯料 范围为约160psi至约2600psi,然后干燥。 当与热压干燥纸板或成形纸板制品(例如可烘烤烘盘)相比时,本发明方法的产品在暴露于450°C(232℃)的温度下具有优异的抗爆强度1小时。