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process for the production of polyesterblockcopolymeren, polyesterblockcopolymer compositions and methods for their manufacture

机译:聚酯嵌段共聚物的生产方法,聚酯嵌段共聚物组合物及其制造方法

摘要

The present invention I relates to a method for the preparation of a polyester block copolymer (P1) characterized in that in the method for the preparation of 100% by weight of the polyester block copolymer (P1) by allowing to react A% by weight of a crystalline aromatic polyester with B% by weight of lactones (A+B=100), (B+0.5)% by weight of lactones are added into A% by weight of a crystalline aromatic polyester, and not less than 0.5% by weight of unreacted lactones are remained with respect to 100% by weight of the polyester block copolymer (P1) after reaction. The present invention II relates to a method for the preparation of a polyester block copolymer (P'1) having a high molecular weight characterized in that the polyester block copolymer (P1) is allowed to further react in a solid phase. The present invention III relates to a polyester block copolymer composition (R) obtained by thermally-processing a polyester block copolymer composition (Q) obtained by melt-mixing 100 parts by weight of a polyester block copolymer (P) with 0.1-5 parts by weight of an epoxy compound (C) having one or more epoxy groups under an inert gas atmosphere and not less than 120 DEG C in a solid phase, and further, at a temperature lower than a melting point of the polyester block copolymer composition (R). The present invention IV relates to a polyester block copolymer composition which comprises thermally-kneading 0.5-5.0 parts by weight of a mono or morefunctional epoxy compound (C) and 0.01-3.0 parts by weight of a complex-formable agent for a metal (G) such as an oxalic acid derivative and a salicylic acid derivative or a hydrazide derivative with 100 parts by weight of a polyester block copolymer (P1) obtained by a reaction of a crystalline aromatic polyester (A1) with lactones (B). The present invention V relates to a polyester block copolymer composition which comprises, in obtaining the polyester block copolymer composition by allowing to react the crystalline aromatic polyester (A1) with lactones (B), adding and thermally-kneading 0.5-5.0 parts by weight of an epoxy compound (C) having one or more pieces of epoxy groups (including at least 0.2 part by weight of two or more functional epoxy compound) and, optionally, 0-2.0 parts by weight of a carbodiimide compound (E) to 100 parts by weight of a polyester block copolymer (P3) obtained by allowing to react 0.1-100% by mol of at least one of a multifunctional compound (D) having at least three pieces of at least one kind of carboxylic group (i), hydroxyl group (ii), and/or an ester-formable group therefrom (iii) with 100% by mol of a crystalline aromatic polyester (A1). The present invention VI relates to a polyester block copolymer composition which comprises, in obtaining said polyester block copolymer composition by allowing to react the crystalline aromatic polyester (A1) with lactones (B), adding and thermally-kneading 0.1-5.0 parts by weight of an epoxy compound (C) having one or more pieces of epoxy groups and 0-2.0 parts by weight of a carbodiimide compound (E) to 100 parts by weight of a polyester block copolymer (P3) obtained by allowing to react 0.1-200% by mol of at least one of an aliphatic or aromatic multifunctional compound (D) having at least three pieces of carboxylic group (i), hydroxyl group (ii), and/or an ester-formable group therefrom (iii) with 100% by mol of a crystalline aromatic polyester (A1). The present invention VII relates to a polyester block copolymer composition (R) which comprises, in obtaining the polyester block copolymer composition by allowing to react the crystalline aromatic polyester (A1) with lactones (B), heating a polyester block copolymer composition (Q) at a solid phase, and the composition (Q) is obtained by adding and thermally-kneading 0.1-5.0 parts by weight of at least one kind of an epoxy compound (C) having one or more pieces of epoxy groups to 100 parts by weight of a polyester block copolymer (P) obtained by allowing to react 0.1-200% by mol of at least one of a multifunctional compound (D) having at least three pieces of carboxylic group (i), hydroxyl group (ii), and/or an ester-formable group therefrom (iii) with 100% by mol of a crystalline aromatic polyester (A1).
机译:本发明涉及一种制备聚酯嵌段共聚物(P1)的方法,其特征在于,在该方法中,通过使100重量%的聚酯嵌段共聚物(P1)反应,制备100重量%的聚酯嵌段共聚物(P1)。将具有B重量%的内酯(A + B = 100),(B + 0.5)重量%的内酯的结晶芳族聚酯添加到A重量%的结晶芳族聚酯中,且不少于0.5wt%。相对于反应后的聚酯嵌段共聚物(P1)的100重量%,残留有90%的未反应内酯。本发明II涉及一种制备具有高分子量的聚酯嵌段共聚物(P′1)的方法,其特征在于使所述聚酯嵌段共聚物(P1)在固相中进一步反应。本发明III涉及一种聚酯嵌段共聚物组合物(R),其通过将100重量份的聚酯嵌段共聚物(P)与0.1-5重量份的熔融混合而获得的聚酯嵌段共聚物组合物(Q)进行热处理而获得。在惰性气体气氛下且在固相不少于120℃且在低于聚酯嵌段共聚物组合物的熔点的温度下,具有一个或多个环氧基的环氧化合物(C)的重量(R) )。发明的第四方面涉及一种聚酯嵌段共聚物组合物,其包括将0.5-5.0重量份的单官能以上的环氧化合物(C)和0.01-3.0重量份的金属(G)的络合物形成剂进行热混炼。通过使结晶性芳香族聚酯(A1)与内酯(B)反应而得到的聚酯嵌段共聚物(P1)100重量份,得到草酸衍生物,水杨酸衍生物或酰肼衍生物等)。本发明V涉及一种聚酯嵌段共聚物组合物,其包括通过使结晶性芳族聚酯(A1)与内酯(B)反应而获得聚酯嵌段共聚物组合物,加入并热捏合0.5-5.0重量份的聚酯嵌段共聚物组合物。环氧化合物(C),其具有一个或多个环氧基团(包括至少0.2重量份的两个或多个官能环氧化合物),和任选地,相对于100重量份为0-2.0重量份的碳二亚胺化合物(E)重量的聚酯嵌段共聚物(P3),其通过使0.1-100mol%的至少一种具有至少三个至少一种羧基(i)的羟基的多官能化合物(D)反应而获得基团(ii)和/或由其形成的可酯形成的基团与100摩尔%的结晶性芳族聚酯(A1)。本发明VI涉及一种聚酯嵌段共聚物组合物,其包括通过使结晶性芳族聚酯(A1)与内酯(B)反应而获得所述聚酯嵌段共聚物组合物,加入并热捏合0.1-5.0重量份的聚酯嵌段共聚物组合物。相对于100重量份的聚酯嵌段共聚物(P3),通过使其反应0.1〜200%而得到,该环氧化合物(C)具有1个以上的环氧基和0〜2.0重量份的碳二亚胺化合物(E)。摩尔的至少一种具有至少三个羧基(i),羟基(ii)和/或由其可形成酯的基团的脂族或芳族多官能化合物(D),按摩尔计100mol% mol的结晶性芳族聚酯(A1)。发明的第七方面涉及聚酯嵌段共聚物组合物(R),其包括通过使结晶性芳族聚酯(A1)与内酯(B)反应而得到聚酯嵌段共聚物组合物,并加热聚酯嵌段共聚物组合物(Q)。相对于100重量份,在0.1〜5.0重量份的至少一种具有1个以上环氧基的环氧化合物(C)中进行加热混炼,得到组合物(Q)。聚酯嵌段共聚物(P)的制备,该聚酯嵌段共聚物通过使0.1-200摩尔%的至少一种具有至少三个羧基(i),羟基(ii)和//的多官能化合物(D)反应而获得或由其形成的可酯形成的基团(iii)与100摩尔%的结晶性芳族聚酯(A1)。

著录项

  • 公开/公告号DE60027126D1

    专利类型

  • 公开/公告日2006-05-18

    原文格式PDF

  • 申请/专利权人 DAICEL CHEMICAL INDUSTRIES LTD.;

    申请/专利号DE2000627126T

  • 发明设计人 WATANABE JUN;

    申请日2000-08-04

  • 分类号C08G63/02;H01H85/06;C08G63/60;C08G63/91;C08K5;C08K5/09;C08K5/15;C08K5/25;C08K5/29;C08L63;C08L67;C08L67/02;H01H85/02;H05B3/56;

  • 国家 DE

  • 入库时间 2022-08-21 21:19:06

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