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    • 7. 发明授权
    • Method of analyzing mixed-color cullet to facilitate its use in glass manufacture
    • 混合颜色碎玻璃的分析方法,以利于其在玻璃制造中的应用
    • US07383695B2
    • 2008-06-10
    • US10988018
    • 2004-11-12
    • Richard L. LehmanWarren Blasland, Jr.
    • Richard L. LehmanWarren Blasland, Jr.
    • C03C6/02C03C4/02C03B5/24
    • C03C1/002C03B1/00C03C1/024Y02P40/52Y10S209/93
    • A method of determining the constituents and impurities in mixed-color cullet to facilitate use of mixed-color cullet in glass manufacture is provided. A glass batch formulation is adjusted based on the measured characteristics of supplied mixed-color cullet. More specifically, certain preferred aspects of the present invention include the steps of providing quantity of mixed-color cullet, collecting at least one sample of the mixed-color cullet, performing, either singularly or in combination, particle size analysis, particle color analysis, or organics analysis of the mixed-color cullet, optionally storing the analysis results, determining a glass batch formulation, providing the cullet specification and the batch formulation to a glass manufacturer, and adjusting glass batch formulation based on the cullet specification to ensure consistent glass quality.
    • 提供了一种确定混合颜色碎玻璃中成分和杂质以便于在玻璃制造中使用混合颜色碎玻璃的方法。 基于所提供的混合颜色碎玻璃的测量特性来调整玻璃批料配方。 更具体地说,本发明的某些优选方面包括以下步骤:提供混合颜色碎玻璃的数量,收集混合颜色的碎玻璃的至少一个样品,单独或组合地进行粒度分析,粒度分析, 或混合颜色碎玻璃的有机分析,可选择地存储分析结果,确定玻璃批次配方,向玻璃制造商提供碎玻璃规格和批次配方,以及基于碎玻璃规格调整玻璃批次配方以确保玻璃质量一致 。
    • 8. 发明授权
    • Electrochemical heat source
    • 电化学热源
    • US5593792A
    • 1997-01-14
    • US82317
    • 1993-06-25
    • Ernest G. FarrierJoseph J. ChiouRichard L. LehmanChandra K. Banerjee
    • Ernest G. FarrierJoseph J. ChiouRichard L. LehmanChandra K. Banerjee
    • A24D1/00A24B15/16A24B15/24A24F47/00A61M15/06H01M6/32C22C23/00
    • A24B15/165A24B15/24A24F47/006
    • Electrochemical heat sources, materials used to make electrochemical heat sources and methods of forming electrochemical heat sources are disclosed. The electrochemical heat sources includes at least two metallic agents capable of interacting electrochemical with one another, such as magnesium and iron or nickel. The metallic agents may be provided in a variety of forms, including a frozen melt, a bimetallic foil, wire of a first metal wrapped around strands of a different metal, and a mechanical alloy. The metallic agents may be in the form of a powder filling a straw, or small particles extruded with a binder or pressed to form a rod. The powder filled straw or rod may be placed in a heat chamber surrounded by tobacco in a smoking article. An electrolyte solution contacts the metallic agents in the heat chamber to initiate the electrochemical interaction, generating heat which in turn may be used to volatilize nicotine and flavor materials in the tobacco. The heat sources may also be used to heat foods or beverages, in hand warmers, and to heat equipment or materials.
    • 公开了电化学热源,用于制造电化学热源的材料和形成电化学热源的方法。 电化学热源包括能够相互电化学的至少两种金属试剂,例如镁和铁或镍。 金属剂可以以各种形式提供,包括冷冻熔体,双金属箔,缠绕在不同金属的线束上的第一金属的线和机械合金。 金属剂可以是填充秸秆的粉末形式,或者用粘合剂挤出的小颗粒或被压制以形成棒。 粉末填充的秸秆或棒可以放置在吸烟制品中被烟草包围的加热室中。 电解质溶液与加热室中的金属试剂接触以引发电化学相互作用,产生热量,其又可用于挥发烟草中的尼古丁和风味物质。 热源还可用于加热食品或饮料,手工加热器,以及加热设备或材料。
    • 9. 发明授权
    • System for and method of batch analysis and optimization for glass manufacturing
    • 玻璃制造的批次分析和优化方法
    • US07900475B2
    • 2011-03-08
    • US11959815
    • 2007-12-19
    • Richard L. LehmanWarren Blasland, Jr.
    • Richard L. LehmanWarren Blasland, Jr.
    • C03B1/00C03C4/02C03C6/02
    • C03C1/002B09B3/005C03B1/00C03C1/024Y02P40/52Y10S65/13
    • Certain preferred embodiments of the present invention provide a system for and method of analyzing and cleaning a cullet stream prior to bottle manufacturing. In accordance with certain aspects of the present invention, the system includes a raw materials feeder, a mixing stage, a melting stage, a bottle-forming stage, a cooling/annealing stage, an inspection stage, and a batch controller. The raw materials feeder further includes a cullet bin within which is cullet supply, a feeder, an analysis device, and removal assembly. Certain preferred embodiments of the method include the steps of feeding cullet onto the conveyor, performing real-time composition analysis of the cullet, removing contaminants from the cullet, determining whether the cullet batch is consistent with a predetermined tolerance threshold, adjusting the glass batch formulation, sending the batch ingredients to the mixing stage, and then completing the overall glass manufacturing process.
    • 本发明的某些优选实施方案提供了在瓶子制造之前分析和清洁碎玻璃流的系统和方法。 根据本发明的某些方面,该系统包括原料给料机,混合阶段,熔化阶段,成瓶阶段,冷却/退火阶段,检查阶段和批量控制器。 原料进料器还包括碎玻璃箱,碎玻璃供料器,进料器,分析装置和拆卸组件。 该方法的某些优选实施方案包括以下步骤:将碎玻璃投入到输送机上,对碎玻璃进行实时成分分析,从碎玻璃中去除污染物,确定碎玻璃批次是否与预定的公差阈值一致,调节玻璃批次配方 将批料成分送入混合阶段,然后完成整个玻璃制造过程。