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    • 1. 发明申请
    • Apparatus and process for treating a flexible imaging member web stock
    • 用于处理柔性成像构件网状材料的装置和方法
    • US20060151922A1
    • 2006-07-13
    • US11032731
    • 2005-01-10
    • Robert YuAnthony HorganSatchidanand MishraZoran PopovicJohn DarcyMichael RoetkerFelix Santana
    • Robert YuAnthony HorganSatchidanand MishraZoran PopovicJohn DarcyMichael RoetkerFelix Santana
    • B29C61/10
    • B29C71/02B29C2035/0822G03G5/047
    • Illustrated herein is a process for producing a stress relief electrostatographic imaging member web stock comprising: providing a multilayered imaging member web stock including at least one layer to be treated, the at least one layer to be treated having a coefficient of thermal expansion significantly differing from a coefficient of thermal expansion of another layer; passing the multilayered web stock over and making contact with a circular treatment tube having an outer concave arcuate circumferential surface that spontaneously creates a transverse web stock stretching force to offset the ripple causing transversal compression force in the at least one layer to be treated; heating at least one layer to be treated above the glass transition temperature (Tg) of the at least one layer to be treated to thereby create a heated portion of the at least one layer to be treated, a portion of the web stock in proximity to the heated portion of the at least one layer to be treated thereby becoming a heated portion of the web stock; inducing curvature conformance in the heated portion of the web stock; and, cooling the heated portion of the web stock at said curvature to a temperature below the Tg of the layer. Also included is the stress relieved imaging member web stock produced by this process.
    • 这里描述了一种用于生产应力消除静电成像构件网状材料的方法,其包括:提供包括至少一层待处理层的多层成像构件网状材料,所述至少一层待热处理的层的热膨胀系数显着不同于 另一层的热膨胀系数; 使多层网状物料通过并与具有外凹弧形周向表面的圆形处理管接触,自动产生横向纤网原料拉伸力以抵消在待处理的至少一层中产生横向压缩力的波纹; 将待处理的至少一层加热至待处理的至少一层的玻璃化转变温度(Tg),从而形成待处理的至少一层的加热部分,一部分网状材料靠近 待处理的至少一层的加热部分由此变成网状材料的加热部分; 在卷材的加热部分中引起曲率一致性; 并且将所述卷材的加热部分以所述曲率冷却至低于该层的Tg的温度。 还包括通过该方法产生的减轻应力的成像构件网状材料。
    • 3. 发明申请
    • IMAGING MEMBERS
    • 成像会员
    • US20070082282A1
    • 2007-04-12
    • US11611555
    • 2006-12-15
    • Satchidanand MishraAnthony HorganRobert YuDasarao MurtiSuresh Ahuja
    • Satchidanand MishraAnthony HorganRobert YuDasarao MurtiSuresh Ahuja
    • G03G5/047
    • G03G5/0525G03G5/0528Y10S430/103
    • An electrophotographic imaging member having a charge generating layer and a charge transport layer overlayed thereon is provided. The charge transport layer has a lower surface and an upper surface, wherein the lower surface is in contiguous contact with the charge generating layer. The charge transport layer comprises a film forming polymer binder and a charge transport compound molecularly dispersed or dissolved therein to form a solid solution. The concentration of the charge transport compound in the charge transport layer decreases from the lower surface to the upper surface. In such a construction, the resulting charge transport layer exhibits enhanced cracking suppression, improved wear resistance, excellent imaging member electrical performance, and improved copy print out quality.
    • 提供具有覆盖在其上的电荷产生层和电荷输送层的电子照相成像构件。 电荷输送层具有下表面和上表面,其中下表面与电荷产生层连续接触。 电荷输送层包括成膜聚合物粘合剂和分子分散或溶解在其中以形成固溶体的电荷输送化合物。 电荷输送化合物在电荷输送层中的浓度从下表面向上表面减小。 在这种结构中,所得到的电荷输送层表现出增强的开裂抑制,改善的耐磨性,优异的成像构件的电性能,以及改善的复制印刷质量。
    • 5. 发明申请
    • Imaging members
    • 成像成员
    • US20050136349A1
    • 2005-06-23
    • US10744369
    • 2003-12-23
    • Satchidanand MishraAnthony HorganRobert YuDasarao MurtiSuresh Ahuja
    • Satchidanand MishraAnthony HorganRobert YuDasarao MurtiSuresh Ahuja
    • G03G5/047G03G5/05
    • G03G5/0525G03G5/0528Y10S430/103
    • An electrophotographic imaging member having a charge generating layer and a charge transport layer overlayed thereon is provided. The charge transport layer has a lower surface and an upper surface, wherein the lower surface is in contiguous contact with the charge generating layer. The charge transport layer comprises a film forming polymer binder and a charge transport compound molecularly dispersed or dissolved therein to form a solid solution. The concentration of the charge transport compound in the charge transport layer decreases from the lower surface to the upper surface. In such a construction, the resulting charge transport layer exhibits enhanced cracking suppression, improved wear resistance, excellent imaging member electrical performance, and improved copy print out quality.
    • 提供具有覆盖在其上的电荷产生层和电荷输送层的电子照相成像构件。 电荷输送层具有下表面和上表面,其中下表面与电荷产生层连续接触。 电荷输送层包括成膜聚合物粘合剂和分子分散或溶解在其中以形成固溶体的电荷输送化合物。 电荷输送化合物在电荷输送层中的浓度从下表面向上表面减小。 在这种结构中,所得到的电荷输送层表现出增强的开裂抑制,改善的耐磨性,优异的成像构件的电性能,以及改善的复制印刷质量。
    • 7. 发明申请
    • Imaging members
    • 成像成员
    • US20060166115A1
    • 2006-07-27
    • US11389764
    • 2006-03-27
    • Anthony HorganRobert YuSatchidanand MishraRichard PostEdward GrabowskiKathleen CarmichaelJohn Lambie
    • Anthony HorganRobert YuSatchidanand MishraRichard PostEdward GrabowskiKathleen CarmichaelJohn Lambie
    • G03G5/047
    • G03G5/0614G03G5/047
    • An imaging member having a charge transport layer is provided. The charge transport layer includes a plurality of charge transport layers coated from solutions of similar or different compositions or concentrations, wherein the upper or additional transport layer(s) comprise a lower concentration of charge transport compound than the first (bottom) charge transport layer. The charge transport compound included in the first (bottom) charge transport layer may either be the same or different from that included in the additional charge transport layers. The charge transport compound in one or more of the layers is dissolved or molecularly dispersed in an electrically inactive polymer material to form a solid solution. In such a construction, the resulting charge transport layer exhibits enhanced cracking suppression, improves wear resistance, provides excellent imaging member electrical performance, and delivers improved print quality.
    • 提供具有电荷输送层的成像构件。 电荷传输层包括由相似或不同组成或浓度的溶液涂覆的多个电荷传输层,其中上部或附加的传输层包含比第一(底部)电荷传输层更低浓度的电荷传输化合物。 包含在第一(底部)电荷输送层中的电荷输送化合物可以与附加的电荷输送层中所包含的相同或不同。 将一个或多个层中的电荷输送化合物溶解或分子分散在电惰性聚合物材料中以形成固溶体。 在这种结构中,所得到的电荷输送层表现出增强的开裂抑制,改善耐磨性,提供优异的成像元件电性能,并提供改善的印刷质量。