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    • 1. 发明申请
    • PARALLEL MEMORY ALLOCATOR EMPLOYING LIVENESS METRICS
    • 并行存储分配器使用生活质量
    • US20170075806A1
    • 2017-03-16
    • US14850474
    • 2015-09-10
    • Pengcheng LiChen Ding
    • Pengchen LiChen Ding
    • G06F12/02G06F3/06
    • G06F12/0284G06F3/0605G06F3/0631G06F3/0644G06F9/5016G06F12/023G06F2212/1024G06F2212/1044
    • A liveness-based memory allocation module operating so that a program thread invoking the memory allocation module is provided with an allocation of memory including a reserve of free heap slots beyond the immediate requirements of the invoking thread. The module receives a parameter representing a thread execution window from an invoking thread; calculates a liveness metric based upon the parameter; calculates a reserve of memory to be passed to the invoking thread based upon the parameter; returns a block of memory corresponding to the calculated reserve of memory. Equations, algorithms, and sampling strategies for calculating liveness metrics are disclosed, as well as a method for adaptive control of the module to achieve a balance between memory efficiency and potential contention as specified by a single control parameter.
    • 基于活动的存储器分配模块操作,使得调用存储器分配模块的程序线程被提供有包括超出调用线程的直接要求的空闲堆时隙的保留的存储器的分配。 模块从调用的线程接收一个表示线程执行窗口的参数; 基于参数计算活动度量; 基于参数计算要传递给调用线程的内存储备; 返回与所计算的存储空间对应的内存块。 公开了用于计算活性度量的方程式,算法和采样策略,以及用于模块的自适应控制以实现由单个控制参数指定的存储器效率和潜在竞争之间的平衡的方法。
    • 3. 发明授权
    • Large transfusion filing and corking machine
    • 大输液档和封口机
    • US08359818B2
    • 2013-01-29
    • US12811377
    • 2008-12-29
    • Zhen LiuHuanghui LongPengcheng LiYue TangJiuzhou Su
    • Zhen LiuHuanghui LongPengcheng LiYue TangJiuzhou Su
    • B67C7/00B65B31/04
    • B67C3/222B67C7/002
    • A large transfusion filling and corking machine includes a frame unit, an electric control unit, a bottle-in unit, a following and filling unit, a nitrogen-charging and corking unit, and a bottle-out transfer wheel unit. The bottle-in unit, the following and filling unit, the nitrogen-charging and corking unit, and the bottle-out transfer wheel unit are mounted on the frame unit and connected by turns. The nitrogen-charging and corking unit is connected with a cork-delivering unit. A nitrogen-precharging unit is arranged between the bottle-in unit and the following and filling unit, which is connected with the bottle-in unit through a bottle-in transfer wheel unit, and connected with the following and filling unit through a transitional transfer wheel unit.
    • 大型输液灌装机包括一个框架单元,一个电控单元,一个装瓶单元,一个以下的灌装单元,一个充氮和灌装单元,以及一个出瓶传送轮单元。 瓶装单元,以下和灌装单元,充氮和塞子单元以及出瓶传送轮单元安装在框架单元上并轮流连接。 充氮和充塞装置与软木塞输送装置连接。 一个氮气预充气单元设置在瓶入单元和随后的灌装单元之间,该单元通过一个输入传送轮单元与瓶入单元连接,并通过过渡传送与以下和填充单元连接 车轮单元。
    • 6. 发明申请
    • Large Transfusion Filing and Corking Machine
    • 大输液器和软木塞机
    • US20110005168A1
    • 2011-01-13
    • US12811377
    • 2008-12-29
    • Zhen LiuHuanghui LongPengcheng LiYue TangJiuzhou Su
    • Zhen LiuHuanghui LongPengcheng LiYue TangJiuzhou Su
    • B65B3/00B65B3/02
    • B67C3/222B67C7/002
    • A large transfusion filling and corking machine includes a frame unit, an electric control unit, a bottle-in unit, a following and filling unit, a nitrogen-charging and corking unit, and a bottle-out transfer wheel unit. The bottle-in unit, the following and filling unit, the nitrogen-charging and corking unit, and the bottle-out transfer wheel unit are mounted on the frame unit and connected by turns. The nitrogen-charging and corking unit is connected with a cork-delivering unit. A nitrogen-precharging unit is arranged between the bottle-in unit and the following and filling unit, which is connected with the bottle-in unit through a bottle-in transfer wheel unit, and connected with the following and filling unit through a transitional transfer wheel unit.
    • 大型输液灌装机包括一个框架单元,一个电控单元,一个装瓶单元,一个以下的灌装单元,一个充氮和灌装单元以及一个出瓶传送轮单元。 瓶装单元,以下和灌装单元,充氮和塞子单元以及出瓶传送轮单元安装在框架单元上并轮流连接。 充氮和充塞装置与软木塞输送装置连接。 一个氮气预充气单元设置在瓶入单元和随后的灌装单元之间,该单元通过一个输入传送轮单元与瓶入单元连接,并通过过渡传送与以下和填充单元连接 车轮单元。
    • 7. 发明授权
    • Long decay luminescent material
    • 长衰变发光材料
    • US5853614A
    • 1998-12-29
    • US897000
    • 1997-07-21
    • Qinglong HaoQian XuJun LiPengcheng LiBaochan LiuAtsushi OguraQingfen Hao
    • Qinglong HaoQian XuJun LiPengcheng LiBaochan LiuAtsushi OguraQingfen Hao
    • C09D5/22C09K11/77C09K11/08C09K11/55C09K11/63
    • C09D5/22C09K11/774C09K11/7797
    • Long decay luminescent materials having improved long decay time and improved high brightness is represented by the formula as Sr.sub.0.9995 .about..sub.0.998 Eu.sub.0.0005 .about..sub.0.002)Al.sub.2 O.sub.4 .multidot.(Sr.sub.0.9995 .about..sub.0.998 Eu.sub.0.0005 .about..sub.0.002)O .multidot.n(Al.sub.1-a-b B.sub.b Dy.sub.a).sub.2 O.sub.3 in it a=0.0005.about.0.0002, b=0.0001.about.0.35, n=1.about.8 and the method for manufacturing the long decay luminescent materials is characterized in heating the raw materials as SrCo.sub.3, .alpha. type alumina, .gamma. type alumina, boron-containing compound, Eu.sub.2 O.sub.3 and Dy.sub.2 O.sub.3 gradually from 400.degree. C. up to 1250.degree. C..about.1600.degree. C. during 7.about.10 hours, firing it at 1250.degree. C..about.1600.degree. C. for 3.about.5 hours and then cooing it gradually from 1250.degree. C..about.1600.degree. C. down to 200.degree. C. during 7.about.10 hours and the heating, firing and cooling processes are all conducted under the condition of existence of carbon.
    • 具有改善的长衰减时间和改善的高亮度的长衰减发光材料由以下公式表示:Sr0.9995 DIFFERENCE 0.998Eu0.0005差异0.002)Al 2 O 4 x(Sr 0.9995差异0.998 Eu 0.0006 D 0.02 0.002)O xn(Al 1-a- bBbDya)2O3其中a = 0.0005差异0.0002,b = 0.0001分辨率0.35,n = 1差分8及其制造长衰变发光材料的方法的特征在于将原料加热为SrCo 3,α型氧化铝,γ型氧化铝, 含硼化合物,Eu 2 O 3和Dy 2 O 3从400℃逐渐降至1250℃。差速1600℃,7℃差10小时,在1250℃下焙烧5分钟,然后3小时 在12小时内将其从1250℃降温至1600℃,达到200℃,加热,焙烧和冷却过程均在碳存在的条件下进行。