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    • 33. 发明授权
    • Method of making Nd—Fe—B sintered magnets with reduced dysprosium or terbium
    • 制造具有减少的镝或铽的Nd-Fe-B烧结磁体的方法
    • US09468972B2
    • 2016-10-18
    • US13628149
    • 2012-09-27
    • GM Global Technology Operations LLC
    • Yucong Wang
    • B22F1/02C22C33/02H01F41/02
    • B22F1/025C22C33/0207C22C33/0278H01F41/0293
    • A method of making a permanent magnet and a permanent magnet. The method includes providing combining a core material and a surface material so that the surface concentration of dysprosium, terbium, or both in the surface material is high while simultaneously keeping the bulk concentration of dysprosium, terbium, or both low. From this, the magnet has a non-uniform distribution of dysprosium, terbium or both. Varying approaches to preparing the combined core and surface materials may be used to ensure that the surface powder effectively wraps around the core powder as a way to achieve the high surface concentration and low bulk concentration. In one form, the core material may be made from a neodymium-iron-boron permanent magnet precursor material.
    • 一种制造永磁体和永磁体的方法。 该方法包括提供芯材和表面材料的组合,使得表面材料中的镝,铽或二者的表面浓度高,同时保持镝,铽或二者的二者的体积浓度低。 由此,磁体具有镝,铽或两者的不均匀分布。 可以使用制备组合的芯和表面材料的不同方法来确保表面粉末有效地包裹在芯粉末周围,作为实现高表面浓度和低体积浓度的一种方式。 在一种形式中,芯材料可以由钕 - 铁 - 硼永磁体前体材料制成。
    • 35. 发明申请
    • MATERIALS PROPERTY PREDICTOR FOR CAST ALUMINUM ALLOYS
    • 材料铝合金材料性能预测
    • US20160034614A1
    • 2016-02-04
    • US14449324
    • 2014-08-01
    • GM Global Technology Operations LLC
    • Qigui WangBing LiYucong Wang
    • G06F17/50B22D21/00B22D46/00
    • G06F17/5009B22D21/007B22D46/00G06F17/5018G06F2217/16G06F2217/41
    • A device and article of manufacture to predict material properties of a cast aluminum-based component. In one form, a computer-based system includes numerous computation modules programmably cooperative with one another such that upon receipt of data that corresponds to the cast aluminum-based component, the modules provide performance indicia of the material. The modules include a thermodynamic calculation module, a thermal-physical property module, a mechanical property module and a materials selection or alloy design module. The combination of the modules along with known material and geometric databases—in addition to microstructural and defect databases—promotes the generation of materials properties needed for casting design, casting process simulation, CAE nodal property mapping and durability analysis.
    • 用于预测铸铝基部件的材料特性的装置和制品。 在一种形式中,基于计算机的系统包括可编程地彼此协作的许多计算模块,使得在接收到与铸铝基组件相对应的数据时,模块提供材料的性能标记。 模块包括热力学计算模块,热物理属性模块,机械性能模块和材料选择或合金设计模块。 模块与已知材料和几何数据库的组合以及显微结构和缺陷数据库 - 促进了铸造设计,铸造过程模拟,CAE节点属性映射和耐久性分析所需的材料属性的生成。
    • 36. 发明申请
    • TURBOCHARGER WASTE-GATE VALVE ASSEMBLY WEAR REDUCTION
    • 涡轮增压器废气阀组件减少
    • US20150226110A1
    • 2015-08-13
    • US14175316
    • 2014-02-07
    • GM GLOBAL TECHNOLOGY OPERATIONS LLC
    • Yucong WangLouis P. Begin
    • F02B37/18
    • F02B37/186F01D17/105F05D2220/40Y02T10/144
    • A turbocharger for an internal combustion engine includes a rotating assembly having a turbine wheel disposed inside a turbine housing and a compressor wheel disposed inside a compressor cover. The turbocharger also includes a waste-gate assembly configured to selectively redirect at least a portion of the engine's post-combustion gases away from the turbine wheel. The waste-gate assembly includes a valve, a rotatable shaft connected to the valve, and a bushing fixed relative to the turbine housing and disposed concentrically around the shaft such that the shaft rotates inside the bushing to thereby selectively open and close the valve. The shaft is defined by an outer surface in contact with the bushing and the outer surface includes a coating composed of a ceramic-based material. An internal combustion engine employing such a turbocharger is also disclosed.
    • 用于内燃机的涡轮增压器包括旋转组件,其具有设置在涡轮壳体内的涡轮机叶轮和设置在压缩机盖内的压缩机叶轮。 涡轮增压器还包括废门组件,其被配置为选择性地使发动机的后燃烧气体的至少一部分远离涡轮机轮。 废门组件包括阀,连接到阀的可旋转轴和相对于涡轮机壳体固定并且围绕轴同心设置的衬套,使得轴在衬套内旋转,从而选择性地打开和关闭阀。 轴由与衬套接触的外表面限定,并且外表面包括由陶瓷基材料组成的涂层。 还公开了一种使用这种涡轮增压器的内燃机。
    • 38. 发明申请
    • METHOD OF MAKING ND-FE-B SINTERED MAGNETS WITH REDUCED DYSPROSIUM OR TERBIUM
    • 制备具有减少的DYSPROSIUM或TERBIUM的ND-FE-B烧结磁体的方法
    • US20130084204A1
    • 2013-04-04
    • US13628149
    • 2012-09-27
    • GM Global Technology Operations LLC
    • Yucong Wang
    • B22F1/02B22F3/10
    • B22F1/025C22C33/0207C22C33/0278H01F41/0293
    • A method of making a permanent magnet and a permanent magnet. The method includes providing combining a core material and a surface material so that the surface concentration of dysprosium, terbium, or both in the surface material is high while simultaneously keeping the bulk concentration of dysprosium, terbium, or both low. From this, the magnet has a non-uniform distribution of dysprosium, terbium or both. Varying approaches to preparing the combined core and surface materials may be used to ensure that the surface powder effectively wraps around the core powder as a way to achieve the high surface concentration and low bulk concentration. In one form, the core material may be made from a neodymium-iron-boron permanent magnet precursor material.
    • 一种制造永磁体和永磁体的方法。 该方法包括提供芯材和表面材料的组合,使得表面材料中的镝,铽或二者的表面浓度高,同时保持镝,铽或二者的二者的体积浓度低。 由此,磁体具有镝,铽或两者的不均匀分布。 可以使用制备组合的芯和表面材料的不同方法来确保表面粉末有效地包裹在芯粉末周围,作为实现高表面浓度和低体积浓度的一种方式。 在一种形式中,芯材料可以由钕 - 铁 - 硼永磁体前体材料制成。