首页> 外文会议>ASME Pressure Vessels and Piping Division/K-PVP conference;PVP2010 >COMPOSITE MATERIAL PROPERTY DATABASE USING SMOOTH SPECIMENS TO GENERATE DESIGN ALLOWABLES WITH UNCERTAINTY ESTIMATION (*)
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COMPOSITE MATERIAL PROPERTY DATABASE USING SMOOTH SPECIMENS TO GENERATE DESIGN ALLOWABLES WITH UNCERTAINTY ESTIMATION (*)

机译:使用光滑标本的复合材料性能数据库生成具有不确定性估计的设计允许(*)

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For brevity, the class of "composite materials" in this paper is intended to refer to one of its subclasses, namely, the fiber-reinforced composite materials. In developing composite material property databases, three categories of data are needed. Category 1 consists of all raw test data with detailed information on specimen preparation, test machine description, specimen size and number per test, test loading history including temperature and humidity, etc., test configuration such as strain gage type and location, grip description, etc. Category2 is the design allowable derived from information contained in Category 1 without making further experimental tests. Category3 is the same design allowable for applications such that new experiments prescribed by user to obtain more reliable properties for the purpose on hand.At present, most handbook-based composite material property databases contain incomplete information in Category 1 (raw data), where a user is given only the test average values of properties such as longitudinal, transverse, and shear moduli, major and out-of-plane Poisson's ratios, longitudinal tensile and compressive, transverse tensile and compressive, and shear strengths, inter-laminar shear strength, ply thickness, hygro-thermal expansion coefficients, specific gravity, fiber volume fraction, etc. The presentation in Category 1 ignores theinclusion of the entire test environment description necessary for a user to assess the uncertainty of the raw data. Furthermore, the design allowable listed in Category 2 is deterministically obtained from Category 1 and the user is given average design allowable without uncertainty estimation. In this paper, it is presented a case study where average design allowable failure envelopes of open hole specimens were obtained numerically for two different quasi-isotropic carbon fiber-epoxy laminates using the appropriate Category 1 data. Using the method of statistical design of experiments, it is then showed how the average design allowable can be supplemented with uncertainty estimates if the Category 1 database is complete. Application of this methodology to predicting reliability of composite structures is discussed.
机译:为简便起见,本文中的“复合材料”一类旨在引用其子类之一,即纤维增强复合材料。在开发复合材料特性数据库时,需要三类数据。第1类包括所有原始测试数据,以及有关样品制备,测试机器描述,每次测试的样品大小和数量,包括温度和湿度等在内的测试装载历史,测试配置(例如应变计类型和位置,夹具描述)的详细信息,等类别 图2是从类别1中包含的信息得出的允许的设计,而无需进行进一步的实验测试。类别 图3所示的实施例是允许应用的相同设计,以使用户规定的新实验可获得更可靠的性能。 当前,大多数基于手册的复合材料属性数据库在类别1(原始数据)中包含不完整的信息,在该类别中,仅向用户提供属性的测试平均值,例如纵向,横向和剪切模量,主要和超出标准的属性。平面泊松比,纵向拉伸和压缩,横向拉伸和压缩,剪切强度,层间剪切强度,层厚度,湿热膨胀系数,比重,纤维体积分数等。类别1中的表示忽略了 包括用户评估原始数据不确定性所必需的整个测试环境描述。此外,从类别1确定性地获得类别2中列出的设计允许量,并且为用户提供平均设计允许量,而无需不确定性估计。在本文中,我们提供了一个案例研究,其中使用适当的1类数据,通过数值获得了两种不同的准各向同性碳纤维-环氧树脂层压板的裸眼样品的平均设计允许破坏包络线。然后使用实验的统计设计方法,显示了如果第1类数据库完整的话,如何可以用不确定性估计来补充平均设计允许量。讨论了该方法在预测复合材料结构可靠性方面的应用。

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