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    • 92. 发明授权
    • Process of making polymer articles
    • 制造聚合物制品的方法
    • US06780361B1
    • 2004-08-24
    • US10174073
    • 2002-06-17
    • Srinivasan SridharanMurthy V. Simhambhatla
    • Srinivasan SridharanMurthy V. Simhambhatla
    • B29C5504
    • B29D7/01A61L27/16A61L27/507A61L27/56A61L29/041B29C55/005B29C55/065B29K2023/0683B29K2105/0061Y10T428/1352Y10T428/1372C08L23/06
    • A method including forming a pseudo-gel of a semi-crystalline polymer material and a solvent. The pseudo-gel is shaped into a first form and stretched. A portion of the solvent is removed to create a second form. The second form is stretched into a microstructure including nodes interconnected by fibrils. A method including forming a first form of a pseudo-gel including an ultra-high molecular weight polyethylene material and a solvent; stretching the first form; removing the solvent to form a second form; stretching the second form into a microstructure including nodes interconnected by fibrils; and annealing the stretched second form. An apparatus including a body portion formed of a dimension suitable for a medical device application and including a polyolefin polymer including a node and a fibril microstructure. An apparatus including a body portion including an ultra-high molecular weight polyolefin material including a node and a fibril microstructure.
    • 一种包括形成半结晶聚合物材料和溶剂的假凝胶的方法。 假凝胶成型为第一种形式并拉伸。 除去一部分溶剂以产生第二种形式。 第二种形式被拉伸成包括由原纤维相互连接的节点的微结构。 一种包括形成包含超高分子量聚乙烯材料和溶剂的第一种形式的假凝胶的方法; 拉伸第一种形式; 除去溶剂以形成第二种形式; 将第二形式拉伸成包括通过纤维互连的节点的微结构; 并退火拉伸的第二种形式。 一种装置,包括由适于医疗装置应用的尺寸形成的主体部分,并且包括包含节点和原纤维微结构的聚烯烃聚合物。 一种包括主体部分的装置,其包括包含节点和原纤维微结构的超高分子量聚烯烃材料。
    • 93. 发明授权
    • Process of making polymer articles
    • 制造聚合物制品的方法
    • US06743388B2
    • 2004-06-01
    • US10038816
    • 2001-12-31
    • Srinivasan SridharanMurthy V. Simhambhatla
    • Srinivasan SridharanMurthy V. Simhambhatla
    • B29C5504
    • B29D7/01A61L27/16A61L27/507A61L27/56A61L29/041B29C55/005B29C55/065B29K2023/0683B29K2105/0061Y10T428/1352Y10T428/1372C08L23/06
    • A method including forming a semi-crystalline polymer material into a lamella; and stretching the lamella into a polymer including a node of folded lamella and a fibril orientation. A method including extruding a pseudo-gel including an ultrahigh molecular weight polyethylene material into a lamella; stretching the lamella into a polymer including a node of folded lamella and a fibril orientation; and annealing the polymer at a temperature sufficient to define the node and fibril orientation. An apparatus including a body portion formed of a dimension suitable for a medical device application and including a semi-crystalline polymer arrayed in a node of folded lamella and a fibril orientation. An apparatus including a body portion including an ultra-high molecular polyethylene material arrayed in a node of folded lamella and a fibril orientation.
    • 一种包括将半结晶聚合物材料形成薄片的方法; 并将薄片拉伸成包括折叠薄片的节点和原纤取向的聚合物。 一种包括将包含超高分子量聚乙烯材料的假凝胶挤出到薄片中的方法; 将薄片拉伸成包括折叠薄片的节点和原纤取向的聚合物; 并在足以限定节点和原纤取向的温度下退火聚合物。 一种装置,包括由适于医疗装置应用的尺寸形成的主体部分,并且包括排列在折叠薄片的节点和原纤取向中的半结晶聚合物。 一种装置,包括主体部分,其包括排列在折叠薄片的节点中的超高分子量聚乙烯材料和原纤取向。
    • 94. 发明授权
    • Ceramic substrate for nonstick coating
    • 陶瓷基材不粘涂层
    • US06638600B2
    • 2003-10-28
    • US09953063
    • 2001-09-14
    • Louis J. GazoSrinivasan Sridharan
    • Louis J. GazoSrinivasan Sridharan
    • B32B1504
    • C23C28/04B05D5/086B05D7/54C23C24/08C23C28/00Y10T428/24355Y10T428/256Y10T428/31504Y10T428/31533Y10T428/3154Y10T428/31645Y10T428/31721
    • The present invention provides a new and useful nonstick coating for use on pure aluminum, alloys of aluminum, or aluminized steel surfaces. A nonstick coating according to the present invention includes a ceramic substrate disposed on an aluminum surface and a fluorocarbon polymer coating disposed on the ceramic substrate. The ceramic substrate, prior to firing, includes at least two layers: a first or bottom layer applied to the aluminum surface including an enamel ground coat; and a second or top layer applied over the enamel ground coat layer including a blend of one or more glass frits, non-ceramic refractory particles, and non-vitreous inorganic oxide particles. Upon firing, the ceramic substrate includes a continuous layer of vitreous enamel that is bonded to the aluminum surface. The exposed surface of the ceramic substrate has a micro-rough texture that is enriched with bonding sides for binder resins used in a fluorocarbon polymer primer layer. The ceramic substrate protects the aluminum surface from corrosion and mechanical damage and also protects the fluorocarbon polymer coating from abrasive wear.
    • 本发明提供了一种用于纯铝,铝合金或镀铝钢表面的新型和有用的不粘涂层。 根据本发明的不粘涂层包括设置在铝表面上的陶瓷基板和设置在陶瓷基板上的氟碳聚合物涂层。 陶瓷基材在焙烧之前包括至少两层:施加到铝表面的第一层或底层,包括搪瓷底涂层; 以及施加在搪瓷底涂层上的第二层或顶层,包括一种或多种玻璃料,非陶瓷耐火颗粒和非玻璃状无机氧化物颗粒的共混物。 烧成后,陶瓷基板包括连接到铝表面的玻璃质搪瓷层。 陶瓷基板的露出表面具有微细粗糙的结构,其富含粘合剂侧面用于氟碳聚合物底漆层中使用的粘合剂树脂。 陶瓷基材可保护铝表面免受腐蚀和机械损伤,并保护氟碳聚合物涂层免受磨损磨损。