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    • 52. 发明授权
    • Process for manufacturing articles in carbon fiber and article manufactured with this process
    • 用于制造碳纤维制品的方法和用该方法制造的制品
    • US09180627B2
    • 2015-11-10
    • US14371235
    • 2013-02-11
    • Automobili Lamborghini S.p.A.
    • Attilio Masini
    • B29C70/34B29C70/44B29C70/46B29C70/54C08J5/24B29K101/10B29K105/08B29K307/04B29L31/30
    • B29C70/342B29C64/241B29C70/44B29C70/46B29C70/545B29K2101/10B29K2105/0863B29K2307/04B29L2031/3005C08J5/24
    • The invention relates to a heat compression molding process for the manufacturing of composite material articles, the process comprising the steps of i) providing a mold (20) in which the negative shape (31, 32) of an article (30) to be manufactured is formed; ii) inserting into said mold (20) an SMC semi-finished product (10) comprising one or more sheets of composite material comprising a matrix of a heat-hardening resin and carbon fibers, the mold being pre-heated at a temperature suitable to allow the cure of said heat-hardening resin; iii) closing the mold (20) and carrying out a compression cycle in an autoclave according to a predefined time-pressure law; and iv) extracting the article (30), wherein the amount of SMC semi-finished product (10) inserted in the mold (20) is calculated by weighing on the basis of the volume of the article (30) to be manufactured. The size of the surfaces of the SMC semi-finished product (10) intended to contact the surfaces of the shape (31, 32) are calculated so as to cover said surfaces in a percentage comprised between 70 to 99%, in particular higher than 80% and less than or equal to 99%. Thanks to these characteristics it is possible to obtain manufactured articles substantially free from surface defects and suitable for both structural and aesthetic uses.
    • 本发明涉及一种用于制造复合材料制品的热压缩模制方法,该方法包括以下步骤:i)提供模具(20),其中待制造的制品(30)的负形状(31,32) 形成了; ii)将包含一个或多个复合材料片的SMC半成品(10)插入所述模具(20)中,所述复合材料包括加热硬化树脂和碳纤维的基体,所述模具在适于 允许所述加热硬化树脂的固化; iii)根据预定的时间压力定律关闭模具(20)并在高压釜中进行压缩循环; 以及iv)提取物品(30),其中通过基于要制造的制品(30)的体积称量来计算插入到模具(20)中的SMC半成品(10)的量。 计算用于接触形状(31,32)的表面的SMC半成品(10)的表面的尺寸,以便以70%至99%之间的百分比覆盖所述表面,特别是高于 80%且小于或等于99%。 由于这些特性,可以获得基本上没有表面缺陷并且适用于结构和美学用途的制品。
    • 55. 发明申请
    • PROCESS FOR MANUFACTURING ARTICLES IN CARBON FIBER AND ARTICLE MANUFACTURED WITH THIS PROCESS
    • 碳纤维制造方法和本工艺制造的制品的制造方法
    • US20140378582A1
    • 2014-12-25
    • US14371235
    • 2013-02-11
    • Automobili Lamborghini S.p.A.
    • Attilio Masini
    • C08K7/06B29C51/00B29C51/14B29C51/26
    • B29C70/342B29C64/241B29C70/44B29C70/46B29C70/545B29K2101/10B29K2105/0863B29K2307/04B29L2031/3005C08J5/24
    • The invention relates to a heat compression molding process for the manufacturing of composite material articles, the process comprising the steps of i) providing a mold (20) in which the negative shape (31, 32) of an article (30) to be manufactured is formed; ii) inserting into said mold (20) an SMC semi-finished product (10) comprising one or more sheets of composite material comprising a matrix of a heat-hardening resin and carbon fibers, the mold being pre-heated at a temperature suitable to allow the cure of said heat-hardening resin; iii) closing the mold (20) and carrying out a compression cycle in an autoclave according to a pre-defined time-pressure law; and iv) extracting the article (30), wherein the amount of SMC semi-finished product (10) inserted in the mold (20) is calculated by weighing on the basis of the volume of the article (30) to be manufactured. The size of the surfaces of the SMC semi-finished product (10) intended to contact the surfaces of the shape (31, 32) are calculated so as to cover said surfaces in a percentage comprised between 70 to 99%, in particular higher than 80% and less than or equal to 99%. Thanks to these characteristics it is possible to obtain manufactured articles substantially free from surface defects and suitable for both structural and aesthetic uses.
    • 本发明涉及一种用于制造复合材料制品的热压缩模制方法,该方法包括以下步骤:i)提供模具(20),其中待制造的制品(30)的负形状(31,32) 形成了; ii)将包含一个或多个复合材料片的SMC半成品(10)插入所述模具(20)中,所述复合材料包括加热硬化树脂和碳纤维的基体,所述模具在适于 允许所述加热硬化树脂的固化; iii)根据预定义的时间压力定律关闭模具(20)并在高压釜中进行压缩循环; 以及iv)提取物品(30),其中通过基于要制造的制品(30)的体积称量来计算插入到模具(20)中的SMC半成品(10)的量。 计算用于接触形状(31,32)的表面的SMC半成品(10)的表面的尺寸,以便以70%至99%之间的百分比覆盖所述表面,特别是高于 80%且小于或等于99%。 由于这些特性,可以获得基本上没有表面缺陷并且适用于结构和美学用途的制品。