COMPRESSIBLE SHEET
    51.
    发明申请
    COMPRESSIBLE SHEET 审中-公开

    公开(公告)号:WO2020005902A1

    公开(公告)日:2020-01-02

    申请号:PCT/US2019/038924

    申请日:2019-06-25

    Inventor: FAOU, Jean-Yvon

    Abstract: A compressible sheet may include a structured core. The structured core may include an elastomer material. The compressible sheet may have an average height of not greater than about 5 mm. The structured core may further include a density of not greater than about 500 g/m 2 . The compressible sheet may further include a densification strain of at least about 40%.

    SYSTEMS AND METHODS FOR PRODUCING CONSUMABLE POWDER
    55.
    发明申请
    SYSTEMS AND METHODS FOR PRODUCING CONSUMABLE POWDER 审中-公开
    用于生产可消耗粉末的系统和方法

    公开(公告)号:WO2017112723A1

    公开(公告)日:2017-06-29

    申请号:PCT/US2016/067911

    申请日:2016-12-21

    CPC classification number: B29B9/14 B29B7/90 B29B9/06 B29B9/12 B33Y70/00

    Abstract: A consumable polymeric based powder mixture may include a plurality of polymeric based particles that have a unitary construction. At least about 80% of the plurality of polymeric based particles may further have a generally cylindrical shape. The plurality of polymeric based particles may further have a particle length distribution span (PLDS) of not greater than about 1.2, where PLDS is equal to (L80-L20)/L50.

    Abstract translation: 可消耗聚合物基粉末混合物可以包括具有整体结构的多个聚合物基颗粒。 多个聚合物基颗粒中的至少约80%可以进一步具有大致圆柱形的形状。 多个聚合物基颗粒可进一步具有不大于约1.2的颗粒长度分布跨度(PLDS),其中PLDS等于(L80-L20)/ L50。

    SHAPED ABRASIVE PARTICLE AND METHOD OF FORMING SAME
    57.
    发明申请
    SHAPED ABRASIVE PARTICLE AND METHOD OF FORMING SAME 审中-公开
    形状磨粒及其形成方法

    公开(公告)号:WO2016105474A1

    公开(公告)日:2016-06-30

    申请号:PCT/US2015/000197

    申请日:2015-12-23

    Inventor: BRAUN, Paul

    Abstract: A method of forming a shaped abrasive particle including forming a mixture comprising a ceramic material into a sheet and sectioning at least a portion of the sheet using a mechanical object and forming at least one shaped abrasive particle from the sheet, and where sectioning includes controlling at least one process parameter consisting of an extrusion height, a sheet moisture content, a sheet solids loading, a pressure differential during sectioning, a blade spacing variation, a blade edge thickness, a ratio of blade edge thickness to blade spacing variation, a blade edge shape, and a combination of one or more of the process parameters.

    Abstract translation: 一种形成成形磨料颗粒的方法,包括将包含陶瓷材料的混合物形成到片材中并使用机械物体切片至少一部分片材,并从片材形成至少一种成形磨料颗粒,并且其中切片包括控制在 至少一个过程参数,其包括挤出高度,片材湿度,片材固体负载,切片期间的压差,叶片间隔变化,叶片边缘厚度,叶片边缘厚度与叶片间距变化的比率,叶片边缘 形状,以及一个或多个工艺参数的组合。

    ABRASIVE TOOLS AND METHODS OF FORMING THE SAME
    58.
    发明申请
    ABRASIVE TOOLS AND METHODS OF FORMING THE SAME 审中-公开
    研磨工具及其形成方法

    公开(公告)号:WO2014201272A1

    公开(公告)日:2014-12-18

    申请号:PCT/US2014/042157

    申请日:2014-06-12

    CPC classification number: B24D3/06

    Abstract: An abrasive tool is provided that may include a body, which may include abrasive particles contained within a bond material. The abrasive particles may be a super abrasive material. The body may further include at least one of a break-in length of not greater than about 1000 linear meters, a maximum initial speed character of at least about 10 m/min, a life span of at least about 1000 linear meters, a dressing frequency of at least about 25 parts/dress, an edge quality of at least about 25% of a workpiece free from defects and a combination thereof.

    Abstract translation: 提供了一种研磨工具,其可以包括主体,其可以包括包含在粘合材料内的磨料颗粒。 研磨颗粒可以是超研磨材料。 身体还可以包括不大于约1000线性米的断裂长度,至少约10m / min的最大初始速度特性,至少约1000线性米的寿命,敷料 频率至少约25份/件,边缘质量至少约25%的没有缺陷的工件及其组合。

    GRAPHENE SYNTHESIS UNIT
    59.
    发明申请

    公开(公告)号:WO2022246443A1

    公开(公告)日:2022-11-24

    申请号:PCT/US2022/072424

    申请日:2022-05-19

    Abstract: A system for graphene synthesis includes an enclosed chamber having a hollow interior, a carbon-based gas source fluidically coupled to the chamber and configured to supply a carbon-based gas to the hollow interior, a hydrogen source fluidically coupled to the chamber and configured to supply hydrogen to the hollow interior, an oxygen source that is independent of the carbon-based gas source and that is fluidically coupled to the chamber and configured to supply oxygen to the hollow interior, an igniter configured to ignite the carbon-based gas, hydrogen, and oxygen in the hollow interior, a first flow meter coupled to the carbon-based gas source, a second flow meter coupled to the hydrogen source, a third flow meter coupled to the oxygen source, and a controller in communication with and configured to receive flow data from the first, second, and third flow meters.

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