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    • 4. 发明授权
    • Low nickel austenitic stainless steel
    • 低镍奥氏体不锈钢
    • US09028745B2
    • 2015-05-12
    • US13286373
    • 2011-11-01
    • Shouxing ZhuLi XuBalasubramani Nandagopal
    • Shouxing ZhuLi XuBalasubramani Nandagopal
    • C22C38/58C22C38/38C22C38/48C22C38/44
    • C22C38/58
    • Various embodiments of the invention provide a low nickel austenitic stainless steel alloy composition including about 0.6% to about 0.8% by weight carbon; about 16% to about 18% by weight chromium; about 4.5% to about 5.5% by weight nickel; about 2.0% to about 5.0% by weight manganese; about 0.8% to about 1.2% by weight tungsten; about 0.8% to about 1.2% by weight molybdenum; about 0.65% to about 0.85% by weight niobium; about 0.3% to about 1.0% by weight silicon; balance iron and unavoidable impurities, wherein percentages are based on the overall weight of the composition. The invention further provides articles, such as turbine housings, prepared using the inventive alloys.
    • 本发明的各种实施方案提供了一种低镍奥氏体不锈钢合金组合物,其包含约0.6重量%至约0.8重量%的碳; 约16重量%至约18重量%的铬; 约4.5%至约5.5%重量的镍; 约2.0%至约5.0%重量的锰; 约0.8%至约1.2%重量的钨; 约0.8重量%至约1.2重量%的钼; 约0.65重量%至约0.85重量%的铌; 约0.3%至约1.0%重量的硅; 平衡铁和不可避免的杂质,其中百分数是基于组合物的总重量。 本发明还提供了使用本发明合金制备的制品,例如涡轮机壳体。
    • 5. 发明授权
    • Method of producing a plasma-resistant thermal oxide coating
    • 制造耐等离子体热氧化物涂层的方法
    • US08758858B2
    • 2014-06-24
    • US13374980
    • 2012-01-25
    • Jennifer Y. SunLi XuKenneth S. CollinsThomas GravesRen-Guan DuanSenh Thach
    • Jennifer Y. SunLi XuKenneth S. CollinsThomas GravesRen-Guan DuanSenh Thach
    • B05D3/02
    • C23C16/4404H01J37/32467H01J37/32477
    • A method of creating a plasma-resistant thermal oxide coating on a surface of an article, where the article is comprised of a metal or metal alloy which is typically selected from the group consisting of yttrium, neodymium, samarium, terbium, dysprosium, erbium, ytterbium, scandium, hafnium, niobium or combinations thereof. The oxide coating is formed using a time-temperature profile which includes an initial rapid heating rage, followed by a gradual decrease in heating rate, to produce an oxide coating structure which is columnar in nature. The grain size of the crystals which make up the oxide coating is larger at the surface of the oxide coating than at the interface between the oxide coating and the metal or metal alloy substrate, and the oxide coating is in compression at the interface between the oxide coating and the metal or metal alloy substrate.
    • 一种在制品的表面上产生耐等离子体热氧化物涂层的方法,其中制品由金属或金属合金组成,金属或金属合金通常选自钇,钕,钐,铽,镝,铒, 镱,钪,铪,铌或其组合。 使用时间 - 温度曲线形成氧化物涂层,其包括初始的快速加热,然后逐渐降低加热速率,以产生本质上为柱状的氧化物涂层结构。 构成氧化物涂层的晶体的晶粒尺寸在氧化物涂层的表面比在氧化物涂层和金属或金属合金衬底之间的界面处大,并且氧化物涂层在氧化物之间的界面处被压缩 涂层和金属或金属合金基材。
    • 6. 发明授权
    • Stability control system with body-force-disturbance heading correction
    • 具有身体力量干扰航向校正的稳定性控制系统
    • US08712641B2
    • 2014-04-29
    • US12428788
    • 2009-04-23
    • Jianbo LuLi XuBengt Johan Henrik JacobsonMikael Thor
    • Jianbo LuLi XuBengt Johan Henrik JacobsonMikael Thor
    • B60G17/00B60G23/00
    • B60T8/1755B60T2201/024
    • A yaw stability control system for a vehicle detects and eliminates the vehicle yaw angle resulting from a body-force-disturbance and returns the vehicle to a pre disturbance heading. A yaw rate module generates a signal indicative of the vehicle yaw rate error. A yaw angle error module is triggered in response to a body-force-disturbance being detected by a body-force-disturbance detection unit, and performs integrations of the yaw rate signals to calculate a yaw angle error in order to obtain a correction of the vehicle yaw angle resulting from the body-force-disturbance. A yaw control module uses the yaw angle error in combination with the yaw rate error for a limited time period to generate yaw control signals that are sent to the vehicle brakes and/or active steering system for performing vehicle yaw stability control operations a signal to perform a body-force-disturbance yaw stability control operation for.
    • 用于车辆的偏航稳定性控制系统检测并消除由身体力扰动产生的车辆偏航角,并将车辆返回到预扰动航向。 横摆率模块产生指示车辆横摆率误差的信号。 响应由身体力扰动检测单元检测到的身体力扰动触发偏航角误差模块,并且执行横摆率信号的积分以计算偏航角误差,以便获得 由身体力扰动引起的车辆偏航角。 偏航控制模块在有限的时间周期内使用横摆角误差与偏航率误差的组合,以产生偏航控制信号,该偏航控制信号被发送到车辆制动器和/或主动转向系统,用于执行车辆横摆稳定性控制操作以执行一个信号 一种身体力 - 扰动偏航稳定性控制操作。
    • 10. 发明申请
    • ADJUSTABLE SOLID STATE ILLUMINATION MODULE HAVING ARRAY OF LIGHT PIXELS
    • 具有光像素阵列的可调整固态照明模块
    • US20130257287A1
    • 2013-10-03
    • US13806676
    • 2011-06-27
    • Bo PiLi Xu
    • Bo PiLi Xu
    • H05B33/08
    • H05B33/0845H05B33/0818H05B33/0854H05B33/086
    • Techniques for constructing a solid-state lighting module that includes solid-state light emitters that emit light of different colors and are selected from separated groups of solid-state light emitters that emit light of two or more separated colors, wherein one or more solid-state light emitters are selected from each of the separated color groups of solid-state light emitters. The lighting module includes a programmable device that stores or remembers desirable optical intensities of the separated color groups of solid-state light emitters, and a control circuit that individually controls light intensity of each of the separated color groups of solid-state light emitters. The light control circuit is coupled to or in communication with the programmable device to receive the desirable optical intensities of the separated groups of solid-state light emitters and is operable to adjust the intensities of the separated color groups of solid-state light emitters based on the desirable intensities.
    • 一种用于构造固态照明模块的技术,该固态照明模块包括发射不同颜色的光的固态发光体,其选自发射两种或更多种分离颜色的光的固态发光体的分离组,其中一个或多个固 - 从固态发光体的分离颜色组中的每一个中选择状态光发射器。 照明模块包括存储或记住固态发光体的分离色组的期望光强度的可编程装置,以及分别控制固态发光体分离的各色组的光强度的控制电路。 光控制电路耦合到可编程器件或与可编程器件通信,以接收分离的固态发光体组的期望的光强度,并且可操作以基于以下方式调整固态发光器的分离色组的强度 所需的强度。