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    • 1. 发明授权
    • Insensitive warhead casings
    • 不敏感的弹头外壳
    • US6038979A
    • 2000-03-21
    • US888383
    • 1997-07-07
    • Fred W. WatsonWayne HannockRobert LamGeorge Evans
    • Fred W. WatsonWayne HannockRobert LamGeorge Evans
    • B29C53/58F42B12/76F42B39/14F42B12/20
    • F42B12/76B29C53/585B29L2001/00B29L2031/777
    • The present invention is a process and material for forming warhead casin The material itself consists of tightly wound carbon fiber bonded by a low temperature (room temperature) resin. This process of formation gives several advantages, including the ease of manufacturing and the elimination of the need to do inside threading as the interior of the casing can be totally formed during winding of the carbon thread. This also increases the speed of the formation process. The use of carbon thread and low temperature resins also gives several key advantages. First, the low temperature aspect of the resin allows the resulting casing to break down at temperatures significantly less than the ignition point of the munitions held within it. Because the fibers tend to separate as the ambient temperature increases, the casing will auto-ventilate at high temperatures. Additionally, since the casing is formed from carbon fibers, it maintains a high tensile strength while minimizing the weight of the casing.
    • 本发明是用于形成弹头壳体的方法和材料。 材料本身由紧密缠绕的由低温(室温)树脂粘合的碳纤维组成。 这种形成方法提供了几个优点,包括制造的容易性和消除在内螺纹中的需要,因为在螺纹缠绕期间壳体的内部可以完全形成。 这也增加了形成过程的速度。 使用碳线和低温树脂也有几个关键优点。 首先,树脂的低温部分允许所得到的套管在显着小于其内部的弹药的点火点的温度下分解。 因为随着环境温度的升高,纤维会分离,所以套管会在高温下自动通风。 此外,由于壳体由碳纤维形成,所以在保持壳体的重量的同时保持高的拉伸强度。
    • 2. 发明申请
    • CRYSTALLIZATION DEVICE FOR HIGH-THROUGHPUT VISUAL INSPECTION AND X-RAY DIFFRACTION ANALYSIS
    • 用于高通量视觉检测和X射线衍射分析的结晶器件
    • US20110046022A1
    • 2011-02-24
    • US12747029
    • 2008-12-11
    • Nickolay ChirgadzeJoseph MillerRobert LamKathy Johns
    • Nickolay ChirgadzeJoseph MillerRobert LamKathy Johns
    • C40B60/12
    • G01N23/2005C30B7/04C30B29/58C30B35/00G01N2223/612
    • A crystallization chip has a two-dimensional substrate surface with modified wetting properties convenient for the evaluation of the crystallization experiment results by optical microscope and by X-ray diffraction. A crystallization chip mount comprises a base and a support structure that is connected to the base. The support structure provides a first channel that receives a portion of the crystallization chip. A crystallization chip holder comprises a body defining at least one slot to slidably receive the crystallization chip described herein. The at least one slot extends from an upper surface to a lower surface of the body. The crystallization chip holder further includes at least one support surface for each slot. For a given slot the at least one support surface is disposed on an edge of at least two surfaces of portions of the body that define the given slot. During use, the at least one support surface supports the crystallization chip prior to, during or after the formation of crystals.
    • 结晶芯片具有改性润湿性能的二维基材表面,便于通过光学显微镜和X射线衍射评价结晶实验结果。 结晶芯片安装架包括底座和连接到基座的支撑结构。 支撑结构提供接收结晶芯片的一部分的第一通道。 结晶芯片保持器包括限定至少一个狭槽的主体以可滑动地容纳本文所述的结晶芯片。 至少一个狭槽从主体的上表面延伸到下表面。 结晶芯片保持架还包括用于每个槽的至少一个支撑表面。 对于给定的槽,至少一个支撑表面设置在限定给定槽的主体部分的至少两个表面的边缘上。 在使用期间,至少一个支撑表面在形成晶体之前,之中或之后支撑结晶芯片。