首页> 外国专利> Bearing shell heterogeneous stiffen method aerospace naval engineering field optimum combination consist bearing shell stiffen local buckle phenomenoneliminate.

Bearing shell heterogeneous stiffen method aerospace naval engineering field optimum combination consist bearing shell stiffen local buckle phenomenoneliminate.

机译:轴承座异质加劲方法在航空航天工程领域的最佳组合是消除了轴承座加劲的局部弯曲现象。

摘要

Optimizing an “improper” combination, a combination consisting of an even plate or shell and a conceptually irregular set of reinforcing stiffeners, enables to attain said combination's hitherto unknown unique synergetic attribute, the attribute of total disappearance of local buckling phenomena of said combination when compressing thereof up to destruction of structural material(s) thereof, and therefore enables to utilize strength potentialities of the material per se utterly, just us utterly as when stretching thereof, and besides irrespective of plates/shells shape and size, irrespective of structural materials' kind, volume and weight, and irrespective of operational temperatures and type of external load distribution, etc. Accordingly, given equal other conditions, cardinal weight reduction or bearing capacity's raise of thin-walled structure's bearing skin is attainable that can be utilized for any aerospace thin-walled structure, very extensively in naval engineering, and in civil engineering sometimes also; besides a reduction of expenditures, more efficient utilization of energy resources and hence enhancement of the environment of mankind is provided too. I call said synergic attribute “Superstability”.
机译:优化“不当内容”该组合由平坦的板或壳体以及概念上不规则的一组加强筋组成,能够获得该组合迄今为止未知的独特协同特性,即该组合受压直至破坏之前,其局部屈曲现象完全消失的属性结构材料,因此能够充分利用材料本身的强度潜能,就像拉伸时一样,并且与板/壳的形状和大小无关,与结构材料的种类,体积和重量无关因此,在相同的其他条件下,薄壁结构的轴承蒙皮的基本重量减轻或承载能力的提高是可以实现的,可用于任何航空航天薄壁结构,在海军工程中非常广泛,有时在土木工程中还除了减少支出外,还可以更有效地利用能源,从而改善人类环境。我称协同属性为“超级稳定性”。

著录项

  • 公开/公告号AU2002246290A1

    专利类型

  • 公开/公告日2002-10-15

    原文格式PDF

  • 申请/专利权人 ONANOV H. G. G.;ONANOV H. G.;

    申请/专利号AU20020246290

  • 发明设计人 ONANOV H. G. G.;ONANOV H. G.;

    申请日2002-03-13

  • 分类号B32B1/02;E04C2/38;

  • 国家 AU

  • 入库时间 2022-08-22 00:40:10

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