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    • 2. 发明授权
    • Nano-molding process
    • 纳米成型工艺
    • US07976748B2
    • 2011-07-12
    • US12065769
    • 2005-09-15
    • John RogersFeng HuaAnne Shim
    • John RogersFeng HuaAnne Shim
    • B29C33/40B29C43/02B29C43/58
    • B81C1/0046B81C99/009B82Y30/00
    • A nano-molding process including an imprint process that replicates features sizes less than 7 nanometers. The nano-molding process produces a line edge roughness of the replicated features that is less than 2 nanometers. The nano-molding process including the steps of: a) forming a first substrate having nano-scale features formed thereon, b) casting at least one polymer against the substrate, c) curing the at least one polymer forming a mold, d) removing the mold from the first substrate, e) providing a second substrate having a molding material applied thereon, f) pressing the mold against the second substrate allowing the molding material to conform to a shape of the mold, g) curing the molding material, and h) removing the mold from the second substrate having the cured molding material revealing a replica of the first substrate.
    • 纳米模塑工艺,包括复制特征尺寸小于7纳米的压印工艺。 纳米成型工艺产生小于2纳米的复制特征的线边缘粗糙度。 纳米模塑方法包括以下步骤:a)形成其上形成有纳米尺度特征的第一基底,b)将至少一种聚合物浇铸到基底上,c)固化形成模具的至少一种聚合物,d)去除 所述模具从所述第一基板获得,e)提供具有施加在其上的成型材料的第二基板,f)将所述模具压在所述第二基板上,使所述模制材料符合所述模具的形状,g)固化所述模制材料,以及 h)从具有固化的模制材料的第二基底上移除模具,露出第一基底的复制品。
    • 5. 发明申请
    • Nano-Molding Process
    • 纳米成型工艺
    • US20080224358A1
    • 2008-09-18
    • US12065769
    • 2005-09-15
    • John RogersFeng HuaAnne Shim
    • John RogersFeng HuaAnne Shim
    • G01B15/00
    • B81C1/0046B81C99/009B82Y30/00
    • A nano-molding process including an imprint process that replicates features sizes less than 7 nanometers. The nano-molding process produces a line edge roughness of the replicated features that is less than 2 nanometers. The nano-molding process including the steps of: a) forming a first substrate having nano-scale features formed thereon, b) casting at least one polymer against the substrate, c) curing the at least one polymer forming a mold, d) removing the mold from the first substrate, e) providing a second substrate having a molding material applied thereon, f) pressing the mold against the second substrate allowing the molding material to conform to a shape of the mold, g) curing the molding material, and h) removing the mold from the second substrate having the cured molding material revealing a replica of the first substrate.
    • 纳米模塑工艺,包括复制特征尺寸小于7纳米的压印工艺。 纳米成型工艺产生小于2纳米的复制特征的线边缘粗糙度。 纳米模塑方法包括以下步骤:a)形成其上形成有纳米尺度特征的第一基底,b)将至少一种聚合物浇铸到基底上,c)固化形成模具的至少一种聚合物,d)去除 所述模具从所述第一基板获得,e)提供具有施加在其上的成型材料的第二基板,f)将所述模具压在所述第二基板上,使所述模制材料符合所述模具的形状,g)固化所述模制材料,以及 h)从具有固化的模制材料的第二基底上移除模具,露出第一基底的复制品。
    • 6. 发明申请
    • OLIVE-SHAPED ROTARY ENGINE
    • 橄榄形旋转发动机
    • US20110126795A1
    • 2011-06-02
    • US12991123
    • 2009-04-30
    • Feng Hua
    • Feng Hua
    • F01C1/356F02B53/04F01C17/02
    • F01C1/22F01C17/02F01C21/008F04C2240/60
    • This invention involves internal combustion engine, especially the olive-shaped rotary engine. The olive-shaped rotary engine not only overcomes the defects of large reciprocating inertia the existing piston reciprocating engine has, complex structure and large volume but also overcomes the defects of small output torque the existing rotary internal combustion engine has, the fuel not being able to fully combust and high manufacturing process requirements. If the fuel can't be fully combusted, it will lead to a higher amount of fuels. This invention consists of crankshaft, shell and triangle rotor. Within centre hole of the triangle rotor is equipped with connecting handle, which is connected with crankshaft through gear set. The shuttle-like moving path when the rotor of the connecting handle is connected with the centre of the crankshaft results from the driving of the gear set, realizing the basic working process of the internal combustion engine. The internal combustion engine is of simple structure, small volume and light weight. In addition, it operates stably, produces small vibration, improves output torque and makes fuel fully combust. It's of wide range of available fuels and minor mechanical wear.
    • 本发明涉及内燃机,特别是橄榄形旋转发动机。 橄榄形旋转发动机不仅克服了现有活塞往复式发动机具有大的往复惯性的缺陷,结构复杂,体积大,而且克服了现有旋转内燃机具有的小输出扭矩的缺点,燃料不能 完全燃烧和高制造工艺要求。 如果燃料不能完全燃烧,则会导致更多的燃料。 本发明由曲轴,外壳和三角形转子组成。 三角形转子的中心孔配有连接手柄,通过齿轮组连接曲轴。 当连接手柄的转子与曲轴的中心连接时,往复运动轨迹由齿轮组的驱动产生,实现了内燃机的基本工作过程。 内燃机结构简单,体积小,重量轻。 此外,它运行平稳,产生小的振动,提高输出扭矩,并使燃料充分燃烧。 它具有广泛的可用燃料和轻微的机械磨损。