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Weight Reduction in Luxury Super Yacht Using ANSYS Composites Capabilities
技术
- 分析与建模 - 虚拟和增强现实(AR/VR)软件
- 可穿戴设备 - 增强现实(AR)眼镜/耳机/控制器
适用行业
- 汽车
- 塑料
适用功能
- 产品研发
用例
- 增强现实
- 混合现实
挑战
当一艘豪华超级游艇的初始设计重量比预期重量高出约 300 吨时,这艘豪华超级游艇的设计师面临着巨大的挑战。高品质超级游艇经过完美设计,确保在困难的海况下具有出色的操控性,同时将最大功率与减少排放相结合。为了实现这种卓越的性能,通常需要使用碳复合材料等轻质高强度材料。设计师们寻求AR工程师的专业知识来寻找减轻游艇重量的方法。工程团队的任务是研究碳复合材料在游艇船员和维修人员使用的多个检修门中的使用情况。他们使用 ANSYS Composite PrepPost 来确定可行性并优化复合材料设计。
关于客户
ar Engineers GmbH 是一家为全球客户开发轻量化产品提供支持的公司。他们与海洋、汽车和风能领域的行业领导者合作。该公司在复合材料产品的设计、模拟和实施方面拥有超过 10 年的经验,提供广泛的复合材料专业知识以及产品规划和创新技术。在这种情况下,一艘豪华超级游艇的设计师与他们联系,希望帮助减轻船舶的重量,特别是通过研究碳复合材料在游艇船员和服务人员使用的多个检修门上的使用。
解决方案
AR 工程师的工程团队使用 ANSYS Composite PrepPost 对门的复合材料铺层进行建模和分析。他们使用 CAD 参数化模型模拟复合材料设计。这使他们能够展示复合材料设计在德国劳氏船级社(海船船级社)认证所需的负载条件下的可行性。他们还分析了复合材料的失效行为、屈曲和变形。参数化模型和直观的复合材料工作流程允许简单的设计研究和对复合材料铺层的快速更改。 ANSYS Composite PrepPost 提供了连接点的详细评估,证明复合材料设计是可行的。这使得我们能够在五天内提供非常准确的成本估算。
运营影响
数量效益
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