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    • 3. 发明申请
    • Pressurized apparatus for cleaning objects
    • 用于清洁物体的加压装置
    • US20060237056A1
    • 2006-10-26
    • US11075318
    • 2005-03-08
    • Wei LoYung ChiuZui LinWan YaoTzu HoKuei Lee
    • Wei LoYung ChiuZui LinWan YaoTzu HoKuei Lee
    • B08B9/00B08B3/12
    • B08B7/0021
    • A cleaning apparatus includes a working housing for receiving objects to be cleaned, a receptacle for supplying a pressurized fluid to the working housing, and a pump for pumping the pressurized fluid into the working housing, for removing releasing agents or solutions from the objects. A control valve is coupled between the pump and the working housing, to selectively close the working housing after the pressurized fluid has been pumped and supplied into the working housing to a predetermined pressure, and maintained within the working housing for a predetermined time interval. The agents or solutions may be removed from the objects after the pressurized fluid is drained out of the working housing.
    • 清洁装置包括用于接收要清洁的物体的工作壳体,用于将加压流体供应到工作壳体的容器和用于将加压流体泵送到工作壳体中的泵,用于从物体上去除脱模剂或溶液。 控制阀联接在泵和工作壳体之间,以便在加压流体被泵送并供应到工作壳体中至预定压力之后选择性地关闭工作壳体,并且在工作壳体内保持预定的时间间隔。 在压力流体从工作壳体排出之后,可以将物体或溶液从物体上移除。
    • 4. 发明申请
    • Synthetic bone graft biomaterial
    • 合成骨移植生物材料
    • US20060122706A1
    • 2006-06-08
    • US11273927
    • 2005-11-15
    • Wei Lo
    • Wei Lo
    • A61F2/28
    • A61L27/56A61L27/10A61L2400/18
    • A biomaterial comprising a ceramic material, the ceramic material having a plurality of connecting micropores of an average diameter of between 1 μm and 10 μm, substantially evenly distributed through the biomaterial. The ceramic particles are preferably partially fused to one or more adjacent ceramic particles to form a lattice defining micropores. Each particle preferably has an average diameter of 1 μm and 10 μm and may comprise a plurality of elongated macropores having an average diameter of between 150 μm and 500 μm. Further, the material may additionally contain midi-pores which are substantially spherical and have an average diameter of 5 μm and 150 μm. In addition, the application relates to a process for preparing a biomaterial comprising: (i) preparing a mixture of finely-divided biocompatible ceramic particles with a coating agent; (ii) causing the coating agent to coat the ceramic particles to form coated particles; (iii) causing the coated particles to form a body; and (iv) heating the body to eliminate residues of the coating agent, to partially fuse the ceramic particles and produce a fused biomaterial, and to biomaterials obtainable from the process and to the uses of the biomaterials.
    • 一种包含陶瓷材料的生物材料,所述陶瓷材料具有基本上均匀分布在所述生物材料上的平均直径在1μm和10μm之间的多个连接微孔。 陶瓷颗粒优选部分地熔合到一个或多个相邻的陶瓷颗粒上以形成限定微孔的晶格。 每个颗粒优选具有1μm和10μm的平均直径,并且可以包括平均直径在150μm和500μm之间的多个细长大孔。 此外,该材料还可以包含基本上是球形的平均直径为5μm和150μm的中孔。 另外,本申请涉及制备生物材料的方法,其包括:(i)制备细分生物相容性陶瓷颗粒与涂层剂的混合物; (ii)使涂覆剂涂覆陶瓷颗粒以形成涂覆的颗粒; (iii)使涂覆的颗粒形成体; 和(iv)加热身体以消除涂层剂的残留物,部分地熔化陶瓷颗粒并产生熔融生物材料,以及从生物材料的方法和使用获得的生物材料。
    • 5. 发明申请
    • Pressurized facility for cleaning objects
    • 用于清洁物体的加压设施
    • US20060237055A1
    • 2006-10-26
    • US11075299
    • 2005-03-08
    • Wei LoYung ChiuZui LinWan YaoTzu HoKuei Lee
    • Wei LoYung ChiuZui LinWan YaoTzu HoKuei Lee
    • B08B9/00B08B3/12
    • B08B7/0021
    • A cleaning facility includes a working housing for receiving objects to be cleaned, a receptacle for supplying a pressurized fluid to the working housing, and a pump for pumping the pressurized fluid into the working housing, and thus into the perforations of the objects, for removing containments from the objects. A control valve is coupled between the pump and the working housing, to selectively close the working housing after the pressurized fluid has been pumped and supplied into the working housing to a predetermined pressure, and maintained within the working housing for a predetermined time interval. The containments may be removed from the objects after the pressurized fluid is drained out of the working housing.
    • 清洁设备包括用于接收要清洁的物体的工作壳体,用于将加压流体供应到工作壳体的容器以及用于将加压流体泵送到工作壳体中并因此被泵送到物体的穿孔中的泵,用于去除 物体的遏制。 控制阀联接在泵和工作壳体之间,以便在加压流体被泵送并供应到工作壳体中至预定压力之后选择性地关闭工作壳体,并且在工作壳体内保持预定的时间间隔。 在加压流体从工作壳体排出之后,可以将物品从物体上移除。