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    • 73. 发明授权
    • Crossbow with retractable support lever
    • 弩具有伸缩支撑杆
    • US09453699B1
    • 2016-09-27
    • US14146785
    • 2014-01-03
    • Barnett Outdoors, LLC
    • David A. Barnett
    • F41B5/14F41C23/04F41B5/12
    • F41B5/123F41B5/1403F41B5/1484F41C23/04
    • A compound crossbow including a stock having a forward end and a rearward end. The crossbow includes a bow assembly mounted to the forward end of the stock and a retractable support lever operatively connected to the stock by a pivot point hinge. The retractable support lever is pivotable about the pivot point hinge between a retracted position, in which the retractable support lever is folded against the stock lower portion, and an extended position, in which the retractable support lever extends rearward from the pivot point hinge such that a distal end of the retractable support lever is positioned rearward of the rearward end of the stock. The crossbow may further include a guide configured to house and retain a knife within a receptacle of the stock lower portion.
    • 包括具有前端和后端的坯料的复合弩。 弩包括安装在原料的前端的弓形组件和可枢转的支撑杆,可伸缩的支撑杆通过枢转点铰链可操作地连接到原料。 可伸缩的支撑杆可围绕枢转点铰链枢转,在缩回位置之间,缩回的支撑杆折叠在库存下部上,伸出位置可伸缩的支撑杆从枢转点铰链向后延伸,使得 可伸缩支撑杆的远端位于料仓后端的后方。 弩可以进一步包括引导件,所述引导件构造成将刀具容纳并保持在所述原料下部的容器内。
    • 79. 发明授权
    • Method for geopolymer concrete
    • 地质聚合物混凝土的方法
    • US09290416B1
    • 2016-03-22
    • US14819080
    • 2015-08-05
    • Louisiana Tech University Research Foundation
    • Erez Nissim AlloucheEleazar Ivan Diaz-Loya
    • G05B21/00C04B7/26
    • C04B40/0032G01N33/383Y02P40/165Y02W30/92C04B18/08C04B28/006
    • A geopolymer concrete prepared by predicting a mechanical property of a geopolymer concrete formed with each of a plurality of fly ash materials, selecting as a source material for the geopolymer concrete one of the fly ash materials that yields a predicted value of the mechanical property that is equal to or greater than a target value for the mechanical property, and mixing the fly ash source material with an alkaline activator solution, a fine aggregate, and a coarse aggregate. The prediction of the mechanical property includes measuring one or more properties of each of the plurality of fly ash materials, calculating predicted values of the mechanical property for geopolymer concretes formed with each of the plurality of fly ash materials using a predetermined equation relating the one or more properties of the plurality of fly ash materials to predicted values of the mechanical property of the geopolymer concrete.
    • 通过预测由多种飞灰材料中的每一种形成的地质聚合物混凝土的机械性能来制备的地质聚合物混凝土,选择作为地质聚合物混凝土的源材料,其产生机械性能的预测值 等于或大于机械性能的目标值,并将飞灰源材料与碱性活化剂溶液,细骨料和粗骨料混合。 机械性能的预测包括测量多个飞灰材料中的每一个的一个或多个性质,使用与预定方程相关联的预定方程计算与多个飞灰材料中的每一个形成的地质聚合物混凝土的机械性能的预测值, 多个飞灰材料的更多性质可以预测地质聚合物混凝土的力学性能值。