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Additive manufacturing three-dimensional curved wall body and manufacturing method thereof
The invention discloses an additive manufacturing three-dimensional curved wall body. The wall body comprises a back bracket, and is characterized in that one surface of the back bracket is a smooth plane, the other surface is provided with pulse-shaped grooves at equal intervals, a polymer hot-melt material layer is arranged on one side of the smooth plane of the back bracket, the back bracket isfixedly connected with the polymer hot-melt material layer, a composite fiber layer is arranged on the other side, away from the back bracket, of the polymer hot-melt material layer, the polymer hot-melt material layer is fixedly connected with the composite fiber layer, a polymer thermosetting material layer is arranged on the other side, away from the polymer hot-melt material layer, of the composite fiber layer, and the composite fiber layer is fixedly connected with the polymer thermosetting material layer. By adopting the scheme, a manufacturing method of an additional material of the three-dimensional curved wall body can make customization easier and more convenient; additive manufacturing equipment and designed digital models can be seamlessly connected, production of the models is faster compared with traditional manufacturing, and the models are formed immediately after manufacturing without the need of secondary processing.
本发明公开了一种增材制造三维曲面墙体,包括背部支架,其特征在于:所述背部支架一面为光滑平面,另一面等间隔设有的脉冲状凹槽,背部支架光滑平面一侧设有高分子热熔材料层,背部支架与高分子热熔材料层之间固定连接,高分子热熔材料层远离背部支架的另一侧设有复合纤维层,高分子热熔材料层与复合纤维层之间固定连接,复合纤维层远离高分子热熔材料层的另一侧设有高分子热固材料层,复合纤维层与高分子热固材料层之间固定连接;采用本发明方案,三维曲面墙体增材的制造方法可以使定制化更加简单,便捷;增材制造设备和设计的数字模型可以进行无缝对接,生产模型相对传统制作更加迅速,制造出来立即成型,无需二次加工。
Additive manufacturing three-dimensional curved wall body and manufacturing method thereof
The invention discloses an additive manufacturing three-dimensional curved wall body. The wall body comprises a back bracket, and is characterized in that one surface of the back bracket is a smooth plane, the other surface is provided with pulse-shaped grooves at equal intervals, a polymer hot-melt material layer is arranged on one side of the smooth plane of the back bracket, the back bracket isfixedly connected with the polymer hot-melt material layer, a composite fiber layer is arranged on the other side, away from the back bracket, of the polymer hot-melt material layer, the polymer hot-melt material layer is fixedly connected with the composite fiber layer, a polymer thermosetting material layer is arranged on the other side, away from the polymer hot-melt material layer, of the composite fiber layer, and the composite fiber layer is fixedly connected with the polymer thermosetting material layer. By adopting the scheme, a manufacturing method of an additional material of the three-dimensional curved wall body can make customization easier and more convenient; additive manufacturing equipment and designed digital models can be seamlessly connected, production of the models is faster compared with traditional manufacturing, and the models are formed immediately after manufacturing without the need of secondary processing.
本发明公开了一种增材制造三维曲面墙体,包括背部支架,其特征在于:所述背部支架一面为光滑平面,另一面等间隔设有的脉冲状凹槽,背部支架光滑平面一侧设有高分子热熔材料层,背部支架与高分子热熔材料层之间固定连接,高分子热熔材料层远离背部支架的另一侧设有复合纤维层,高分子热熔材料层与复合纤维层之间固定连接,复合纤维层远离高分子热熔材料层的另一侧设有高分子热固材料层,复合纤维层与高分子热固材料层之间固定连接;采用本发明方案,三维曲面墙体增材的制造方法可以使定制化更加简单,便捷;增材制造设备和设计的数字模型可以进行无缝对接,生产模型相对传统制作更加迅速,制造出来立即成型,无需二次加工。
Additive manufacturing three-dimensional curved wall body and manufacturing method thereof
一种增材制造三维曲面墙体及其制造方法
ZHAO ZIHAN (author)
2020-11-24
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
B29C
Formen oder Verbinden von Kunststoffen
,
SHAPING OR JOINING OF PLASTICS
/
B29L
INDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
,
Index-Schema für besondere Gegenstände in Verbindung mit Unterklasse B29C
/
B33Y
ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
,
Additive (generative) Fertigung, d. h. die Herstellung von dreidimensionalen [3D] Bauteilen durch additive Abscheidung, additive Agglomeration oder additive Schichtung, z. B. durch 3D- Drucken, Stereolithografie oder selektives Lasersintern
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