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    • 4. 发明授权
    • Method and apparatus for installing a large, planar, delicate membrane
in an electrolysis cell
    • 在电解池中安装大型,平面,细密膜的方法和装置
    • US4792386A
    • 1988-12-20
    • US818465
    • 1986-01-13
    • James W. McMichael
    • James W. McMichael
    • C25B9/00
    • C25B9/00
    • A method and apparatus for installing a sheet membrane in an electrolysis cell is disclosed. In the procedure, a rectangular sheet is first soaked in a selected wetting liquid preliminary to installation, one edge of the rectangular sheet is grasped in a lengthwise rigid releasable clamp, that edge is then positioned through a slot to extend the sheet member from a transport cylinder whereupon the sheet is rolled around the cylinder. This leaves an exposed marginal edge on the sheet which is clamped in a second and similar clamp. This then enables the sheet to be transported and positioned above a slot where the sheet is unrolled and positioned through the slot into an electrolysis cell. Suitable apparatus is also disclosed.
    • 公开了一种在电解槽中安装薄膜的方法和装置。 在该过程中,首先将矩形片材浸入预先安装的选定的润湿液体中,将矩形片材的一个边缘沿纵向刚性可释放夹具夹持,然后将该边缘定位成穿过狭槽,以将片材部件从运输 气缸,因此片材围绕气缸滚动。 这样在片材上留下一个暴露的边缘,该边缘夹在第二个和类似的夹具中。 这样就能使片材被传送和定位在片材被展开并通过狭槽定位成槽的插槽之上,进入电解槽。 还公开了合适的装置。
    • 8. 发明授权
    • Process for attaching a modifying agent to a substrate
    • 将改性剂附着于基材的方法
    • US08975341B2
    • 2015-03-10
    • US13121313
    • 2009-08-31
    • James W. McMichaelJorg TheuerkaufBruce D. HookMalcolm F. Finlayson
    • James W. McMichaelJorg TheuerkaufBruce D. HookMalcolm F. Finlayson
    • C08F8/00B05D3/04C08J3/22C08J3/205C08K5/43
    • C08J3/226C08J3/2053C08J2400/14C08J2423/00C08K5/43C08L23/02
    • Modifying agents, e.g., a poly(sulfonyl) azide, are attached to a substrate surface, e.g., the surface of a polyolefin particle, by a process comprising the steps of: A. Contacting in an open contact zone and under a flow of inert gas a substrate with a modifying agent, binding agent, e.g., a phenolic-based antioxidant, and a liquid mixing agent, e.g., methylene chloride, to form a substrate mixture; B. Closing the contact zone and stopping the flow of inert gas to the contact zone; C. Agitating the substrate mixture under the inert gas in the closed contact zone to commence evaporation of the liquid mixing agent; D. Reducing the temperature and pressure of the closed contact zone while continuing to agitate the substrate mixture; and E. Completing the substantial evaporation of the mixing agent from the substrate mixture by opening the contact zone and initiating an inert gas flow while continuing agitation of the substrate mixture and maintaining a reduced pressure.
    • 通过包括以下步骤的方法将改性剂例如聚(磺酰基)叠氮化物连接到基材表面,例如聚烯烃颗粒的表面上:A.在开放接触区域和惰性气流下接触 用改性剂,粘合剂(例如酚类抗氧化剂)和液体混合剂(例如二氯甲烷)气化基质以形成底物混合物; B.关闭接触区并阻止惰性气体流向接触区; C.在密闭接触区域内将惰性气体下的底物混合物搅拌以开始液体混合剂的蒸发; D.减少封闭接触区的温度和压力,同时继续搅拌底物混合物; E.通过打开接触区并引发惰性气体流,同时继续搅拌基底混合物并保持减压,完成混合剂从基质混合物的充分蒸发。
    • 9. 发明申请
    • Process for Attaching a Modifying Agent to a Substrate
    • 将改性剂附着到基材上的方法
    • US20110178243A1
    • 2011-07-21
    • US13121313
    • 2009-08-31
    • James W. McMichaelJorg TheuerkaufBruce D. HookMalcolm F. Ginlayson
    • James W. McMichaelJorg TheuerkaufBruce D. HookMalcolm F. Ginlayson
    • C08F8/00B05D3/04
    • C08J3/226C08J3/2053C08J2400/14C08J2423/00C08K5/43C08L23/02
    • Modifying agents, e.g., a poly(sulfonyl) azide, are attached to a substrate surface, e.g., the surface of a polyolefin particle, by a process comprising the steps of: A. Contacting in an open contact zone and under a flow of inert gas a substrate with a modifying agent, binding agent, e.g., a phenolic-based antioxidant, and a liquid mixing agent, e.g., methylene chloride, to form a substrate mixture; B. Closing the contact zone and stopping the flow of inert gas to the contact zone; C. Agitating the substrate mixture under the inert gas in the closed contact zone to commence evaporation of the liquid mixing agent; D. Reducing the temperature and pressure of the closed contact zone while continuing to agitate the substrate mixture; and E. Completing the substantial evaporation of the mixing agent from the substrate mixture by opening the contact zone and initiating an inert gas flow while continuing agitation of the substrate mixture and maintaining a reduced pressure.
    • 通过包括以下步骤的方法将改性剂例如聚(磺酰基)叠氮化物连接到基材表面,例如聚烯烃颗粒的表面上:A.在开放接触区域和惰性气流下接触 用改性剂,粘合剂(例如酚类抗氧化剂)和液体混合剂(例如二氯甲烷)气化基质以形成底物混合物; B.关闭接触区并阻止惰性气体流向接触区; C.在密闭接触区域内将惰性气体下的底物混合物搅拌以开始液体混合剂的蒸发; D.减少封闭接触区的温度和压力,同时继续搅拌底物混合物; E.通过打开接触区并引发惰性气体流,同时继续搅拌基底混合物并保持减压,完成混合剂从基质混合物的充分蒸发。
    • 10. 发明申请
    • COAT POLYMERIC PARTICULATE, AND A PROCESS FOR COATING A POLYMERIC PARTICULATE
    • 涂层聚合物颗粒,以及涂覆聚合物颗粒的方法
    • US20110008623A1
    • 2011-01-13
    • US12677215
    • 2008-09-02
    • Shrikant V. DhodapkarJames W. McMichael
    • Shrikant V. DhodapkarJames W. McMichael
    • B32B1/00B05D7/02
    • B29B9/16B29B2009/163Y10T428/2998
    • The instant invention is a coated polymeric particulate, and a process for coating a polymeric particulate. The coated polymeric particulate includes a polymeric particulate; and a coating composition present on at least a portion of at least one surface of the polymeric particulate. The coating includes an interconnected media; and at least one discrete island at least partially embedded in the interconnected media. The process for coating a polymeric particulate includes the following steps: (1) selecting a polymeric particulate; (2) selecting an aqueous dispersion comprising (a) a small particle component, wherein the small particle component comprises a polyolefin polymer having an average particle size in the range of 0.02 to 0.15 μm; (b) a large particle component, wherein the large particle component comprises a polyolefin polymer having an average particle size in the range of 0.3 to 0.8 μm; and (c) water; (3) applying the aqueous dispersion to the polymeric particulate; (4) thereby coating the polymeric particulate.
    • 本发明是涂覆的聚合物颗粒,以及用于涂覆聚合物颗粒的方法。 涂覆的聚合物颗粒包括聚合物颗粒; 以及存在于聚合物颗粒的至少一个表面的至少一部分上的涂料组合物。 涂层包括互连的介质; 以及至少部分地嵌入在所述互连的介质中的至少一个离散的岛。 涂覆聚合物颗粒的方法包括以下步骤:(1)选择聚合物颗粒; (2)选择含有(a)小颗粒成分的水分散体,其中所述小颗粒组分包含平均粒径在0.02至0.15μm范围内的聚烯烃聚合物; (b)大颗粒组分,其中大颗粒组分包含平均粒度在0.3至0.8μm范围内的聚烯烃聚合物; 和(c)水; (3)将水分散体施加到聚合物颗粒上; (4),从而涂覆聚合物颗粒。