New composites material for space applications
New composites material for space applications
批准号:
460934-2013
负责人:
Hubert, Pascal
金额:
$4.37万
依托单位:
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2015
资助国家:
加拿大
项目状态:
已结题
起止时间:
2015-01-01 至 2016-12-31
中文摘要
近年来,复合材料取得了重大进展,包括增韧树脂、高模量纤维和纳米化学品的使用。北美航天工业多年来一直在使用氰酸酯树脂进行应用。氰酸酯树脂具有高热稳定性、低放气、低吸水性和抗辐射性等优点。在过去几年中,树脂供应商开发了可用于空间应用的新系统,如改性环氧树脂、苯并恶嗪或BMI。这些树脂体系现在被认为具有更好、更可靠的性能。此外,在树脂体系中使用纳米化学物质可能会潜在地改善最终复合材料的导电性或横向导热性和结构强度。鉴于上述情况,该项目的目的是研究这些新的树脂系统,并评估它们在制造用于空间应用的纤维增强复合材料结构方面的适用性。该项目将包括彻底审查用于空间应用的适当的新纤维和树脂系统。还将对可能的芯材进行审查,以提高夹芯板的性能。目标制造方法将是高压灭菌器外的,并且必须生产具有高水平尺寸稳定性的复合材料。材料的可加工性将使用仪器固化夹具和过程建模的组合进行调查。热机械性能将通过标准特性测试和空间条件模拟器进行研究。简单的代表性层压板(如薄板、厚板、蜂窝夹层、倾斜支架和管)的制造将证明所选材料对空间应用的适用性。将与工业伙伴合作开发首单成本分析模型。该项目是第六轮CRIAQ(魁北克航空航天研究与创新联盟)的一部分,涉及麦吉尔大学、康考迪亚大学两所大学以及MDA公司(MDA)和大西洋复合材料有限公司(CAL)两家工业合作伙伴。
英文摘要
In recent years, significant advancements have been made in composite materials including toughened resins, high modulus fibres and the use of nanochemicals. The North American space industry has been using cyanate ester resin for many years for their applications. Cyanate ester resins offer advantages as composite matrices because of their high thermal stability, low outgassing, low water absorption, and radiation resistance. During the last years, resin suppliers have developed new systems such as modified epoxy, benzoxazine or BMI that could be used for space applications. These resin systems are now believed to achieve better and more reliable properties. Furthermore, the use of nanochemicals in the resin system could potentially improve the electrical conductivity, or transverse thermal conductivity and structural strength of the final composite material. In light of the above, the objective of this project is to investigate these new resin systems and assess their suitability for the manufacturing of fibre reinforced composite structures for space applications. The project will involve a thorough review of the appropriate new fibres and resin systems for space applications. A review of the possible core materials will also be carried out to improve sandwich panel performance. The target manufacturing method will be out-of-autoclave and must produce composites with a high level of dimensional stability. The processability of the materials will be investigated using a combination of instrumented curing fixtures and process modelling. The thermo-mechanical performance will be investigated by standard characterization tests and space conditions simulators. The manufacturing of simple representative laminates (e.g. thin plates, thick plates, honeycomb sandwiches, angled brackets and tubes) will demonstrate the applicability of the selected material for space applications. A first order cost analysis model will be developed in collaboration with the industrial partners. This project is part of the sixth round of the CRIAQ (Consortium for Research and Innovation in Aerospace in Quebec) and involves two universities, McGill University, Concordia University and two industrial partners, MDA Corporation (MDA) and Composites Atlantic Ltd (CAL).
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