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    • 5. 发明授权
    • Cubic boron nitride phosphide films
    • 立方氮化硼磷化膜
    • US5326424A
    • 1994-07-05
    • US909918
    • 1992-07-07
    • Gary L. DollKevin C. Baucom
    • Gary L. DollKevin C. Baucom
    • C30B23/02H01L21/318C30B23/06
    • C30B23/02C30B29/40C30B29/403H01L21/318Y10S117/902Y10S117/904Y10S438/932
    • Thin films of single crystal, cubic boron nitride phosphide are provided on, and in crystallographic registry with, an underlying silicon substrate which is oriented along a single crystallographic axis. The cubic boron nitride phosphide films are deposited using laser ablation methods. The boron nitride phosphide film has a crystallographic lattice constant which can be systematically varied depending upon the desired film composition and processing parameters. Preferably, the target, and accordingly the resulting thin film composition, is characterized by a chemical formula of BN.sub.(1-x) P.sub.(x) where x is about 0.23. This particular composition results in a crystallographic lattice constant essentially equal to the single crystal silicon substrate. The film may also have the formula BN1-xPx where x
    • 提供单晶立方氮化硼磷化物的薄膜,并在与单个晶轴定向的下面的硅衬底的晶体学注册中。 使用激光烧蚀方法沉积立方氮化硼磷化物膜。 氮化硼磷化膜具有结晶晶格常数,其可以根据所需的膜组成和加工参数系统地变化。 优选地,靶,并因此得到的薄膜组合物的特征在于BN(1-x)P(x)的化学式,其中x为约0.23。 该特定组成导致基本上等于单晶硅衬底的结晶晶格常数。 该膜也可以具有式BN1-xPx,其中x <0 <= 1。 在整个膜中磷浓度也可以降低到零,从而在表面提供氮化硼材料,其特征在于与下面的衬底具有良好的晶格匹配。 所得到的膜特别适用于在宽温度范围内的半导体应用。
    • 7. 发明授权
    • Method for forming a transistor having cubic boron nitride layer
    • 用于形成具有立方氮化硼层的晶体管的方法
    • US5081053A
    • 1992-01-14
    • US597451
    • 1990-10-15
    • Joseph P. HeremansGary L. DollJeffrey A. Sell
    • Joseph P. HeremansGary L. DollJeffrey A. Sell
    • H01L21/28H01L21/336H01L21/762H01L29/786
    • H01L29/66757H01L21/28158H01L21/7624H01L29/66772H01L29/78654Y10S148/113Y10S148/149Y10S438/932
    • A method for forming a transistor which may be suitable for high temperature application is provided. A single crystal silicon substrate has an overlaying layer of epitaxially grown cubic boron nitride in crystallographic registry with the silicon substrate. The cubic boron nitride is epitaxially grown using laser ablation techniques and provides an electrically resistive and thermally conductive barrier. An active layer of epitaxial silicon is then grown from the layer of cubic boron nitride, such that the overlaying layer of epitaxial silicon is in crystallographic registry with the layer of boron nitride which is in crystallographic registry with the underlying silicon substrate. Appropriately doped source and drain regions and a gate electrode are provided to form the transistor. A clean crystallographic lattice match between the cubic boron nitride and surrounding silicon is obtained, thereby minimizing any stresses due to a mismatch in lattice constants and permitting the overlaying silicon active layer to be extremely thin.
    • 提供了可适用于高温应用的形成晶体管的方法。 单晶硅衬底具有与硅衬底结晶记录的外延生长立方氮化硼的覆盖层。 使用激光烧蚀技术外延生长立方氮化硼,并提供电阻和导热屏障。 然后从立方氮化硼层生长外延硅的有源层,使得外延硅的覆盖层与与下面的硅衬底结晶记录的氮化硼层结晶记录。 提供适当掺杂的源极和漏极区域以及栅极电极以形成晶体管。 获得立方氮化硼和周围硅之间的干净的晶格匹配,从而最小化由于晶格常数不匹配引起的任何应力,并允许覆盖硅活性层极薄。
    • 8. 发明授权
    • Apparatus and method for controlled release of lubricant additives in bearing and gear assemblies
    • 润滑剂添加剂在轴承和齿轮组件中的控制释放装置和方法
    • US08727627B2
    • 2014-05-20
    • US13395806
    • 2010-09-13
    • Ryan D. EvansPaul J. ShillerDavid A. PiermanGary L. Doll
    • Ryan D. EvansPaul J. ShillerDavid A. PiermanGary L. Doll
    • F16C33/66F16H57/04
    • F16C33/6648C10N2250/10C10N2250/18F01M9/02F16C33/6651F16C33/6692F16C33/6696
    • A structure (200) for containing a volume of lubricant additive gel (10) which is disposed within a mechanical system, in close proximity to a wear critical surface, and which is configured to provide a release of the contained additives into a flow of lubricant over time or as a function of temperature in a site-specific manner to minimize wear or reduce oil oxidation due to harsh operating conditions. The structure defines a cage or capsule with screen or mesh sides (202) having multiple perforations or openings through which the flow of lubricant may circulate. Within the contained volume of the structure (200), additives are disposed in a gel matrix (10), and are release over time or as a function of temperature, through the perorations or openings, in close operative proximity to wear critical surfaces of the mechanical system such as a bearing assembly or gear arrangement.
    • 一种用于容纳一定体积的润滑剂添加剂凝胶(10)的结构(200),其设置在紧密磨损临界表面的机械系统内,并且被配置成提供所含添加剂释放到润滑剂流中 随着时间的推移或作为温度的函数,以现场特定的方式,以最小化磨损或减少由恶劣的操作条件引起的油氧化。 该结构限定了具有筛网或网眼侧面(202)的笼或胶囊,其具有多个穿孔或开口,润滑剂流通过该孔或开口可循环。 在结构(200)的容纳体积内,添加剂被设置在凝胶基质(10)中,并且随着时间的推移或通过温度释放,通过渗透或开口,以紧密的操作接近度磨损临界表面 机械系统,例如轴承组件或齿轮装置。
    • 9. 发明申请
    • Method of Protecting Rolling Element Bearings Against Oil-Out Conditions and Bearings Made Thereby
    • 保护滚动元件轴承防止出油条件和轴承的方法
    • US20080304783A1
    • 2008-12-11
    • US11908387
    • 2006-03-16
    • Gary L. DollRyan D. EvansStephen P. Johnson
    • Gary L. DollRyan D. EvansStephen P. Johnson
    • F16C33/36
    • F16C19/52F16C19/364F16C33/36F16C33/6696Y10S384/913
    • A method of enhancing the operating life of roller bearings assemblies (B) subject to oil-out conditions is disclosed. The method comprises applying a tribological metal carbide reinforced amorphous hydrocarbon coating layer (16) over either the sliding surfaces (SS) or the rolling surfaces (RS) of the bearing assembly rolling elements (RE), but is preferably applied at least to the sliding surfaces of the rolling element. The coating has a thickness determined according to the equation: Formula (I), where d=coating thickness P=is the ratio of force applied to the rollers/contact area; n=the number of rollers; (t-t0)=the desired operating time after oil-out condition starts; and K′ is the Archard constant. d K ′ = Pv n  ( t - t 0 ) , ( 1 )
    • 公开了一种提高滚轴轴承组件(B)的运行寿命的方法。 该方法包括在轴承组件滚动元件(RE)的滑动表面(SS)或滚动表面(RS)上方施加摩擦学金属碳化物增强的无定形烃涂层(16),但优选至少应用于滑动 滚动体的表面。 涂层具有根据以下等式确定的厚度:式(I)其中d =涂层厚度P =是施加到辊/接触面积的力的比率; n =滚子数; (t-t0)=出油条件开始后的期望运行时间; 并且K'是Archard常数。 d K ' = 1