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    • 5. 发明申请
    • DESIGN OF SHAPE MEMORY ALLOY FIBERS AND SHAPE MEMORY POLYMER FIBERS AND FILMS AND THEIR COMPOSITES FOR REVERSIBLE SHAPE CHANGES
    • 形状记忆合金纤维和形状记忆聚合物纤维和膜的设计及其可逆形状变化的复合材料
    • US20090130391A1
    • 2009-05-21
    • US12264178
    • 2008-11-03
    • Minoru Taya
    • Minoru Taya
    • B05D3/00B32B25/02B32B3/00B05D1/18B28B1/52
    • B29C61/0608B29L2031/22F03G7/065Y10T428/24612Y10T428/249922Y10T428/2925Y10T428/31678
    • A plurality of reversible active composite materials are disclosed, including composites based on a shape memory alloy member (SMA) and a shape memory polymer member (SMP), as well as composites based on two different SMP members. Each different member (SMA or SMP) will be trained to remember a specific shape at a specific temperature. Where two different SMP members are employed, the members exhibit different glass transition temperatures. Such composite materials can be implemented in many form factors, including two generally planar members, a single generally planar SMP member with SMA fibers distributed throughout the SMP, and a SMA fiber/wire coated with a SMP coating. In particular, the SMA fiber/wire coated with a SMP layer can be used to form helical coils that can be used in paired hinges to achieve reversible bending of a structure into which such paired hinges are incorporated.
    • 公开了多种可逆活性复合材料,包括基于形状记忆合金构件(SMA)和形状记忆聚合物构件(SMP)的复合材料,以及基于两种不同SMP构件的复合材料。 将训练每个不同的成员(SMA或SMP)以记住特定温度下的特定形状。 当使用两种不同的SMP构件时,构件表现出不同的玻璃化转变温度。 这种复合材料可以以许多形状因子实现,包括两个通常为平面的构件,具有分布在整个SMP中的SMA纤维的单个大体平坦的SMP构件和涂覆有SMP涂层的SMA纤维/线。 特别地,涂覆有SMP层的SMA纤维/线可以用于形成螺旋线圈,其可以用于成对的铰链中,以实现将这种成对的铰链结合到其中的结构的可逆弯曲。
    • 6. 发明申请
    • SMART SUNGLASSES, HELMET FACESHIELDS AND GOGGLES BASED ON ELECTROCHROMIC POLYMERS
    • 基于电致发光聚合物的SMART SUNGLASSES,HELMET FACESHIELDS和GOGGLES
    • US20080239452A1
    • 2008-10-02
    • US12055868
    • 2008-03-26
    • Chunye XuChao MaMinoru Taya
    • Chunye XuChao MaMinoru Taya
    • G02F1/15G02C7/10
    • G02C7/101
    • Eyewear exhibiting a variable light transmittance functionality is achieved by including a smart lens incorporating an electrochromic (EC) polymer, switchable between a first state and a second state in response to a voltage selectively applied thereto. The smart eyewear includes the smart lens, a voltage source, and a support. The EC polymer transmits more light in the first state than in the second state, because changing the state of the EC polymer varies the light transmittance of the smart lens. The voltage source is configured to provide the voltage required to switch the EC polymer between the first state and the second state, while the support member is configured to support the smart lens and enable a user to wear the smart eyewear. Embodiments can include sensors and controllers to automate the switching, as well as energy harvesting elements to increase battery life.
    • 通过包括结合电致变色(EC)聚合物的智能镜头,响应于选择性施加到其上的电压,可以在第一状态和第二状态之间切换,实现具有可变光透射功能的眼镜。 智能眼镜包括智能镜头,电压源和支架。 EC聚合物在第一状态下透射比第二状态更多的光,因为改变EC聚合物的状态会改变智能透镜的透光率。 电压源被配置为提供在第一状态和第二状态之间切换EC聚合物所需的电压,而支撑构件被配置为支撑智能镜头并且使得使用者佩戴智能眼镜。 实施例可以包括用于自动切换的传感器和控制器以及能量收集元件以增加电池寿命。
    • 7. 发明申请
    • Energy absorbent material
    • 能量吸收材料
    • US20080020229A1
    • 2008-01-24
    • US11222023
    • 2005-09-08
    • Minoru TayaYing Zhao
    • Minoru TayaYing Zhao
    • B22F3/11B32B5/18
    • C25D5/18C25D3/562C25D5/48Y10T428/12479
    • A method for making a ductile and porous shape memory alloy (SMA) using spark plasma sintering, and an energy absorbing structure including a ductile and porous SMA are disclosed. In an exemplary structure, an SMA spring encompasses a generally cylindrical energy absorbing material. The function of the SMA spring is to resist the bulging of the cylinder under large compressive loading, thereby increasing a buckling load that the cylindrical energy absorbing material can accommodate. The SMA spring also contributes to the resistance of the energy absorbing structure to an initial compressive loading. Preferably, the cylinder is formed of ductile, porous and super elastic SMA. A working prototype includes a NiTi spring, and a porous NiTi cylinder or rod.
    • 公开了一种使用火花等离子体烧结制造延性和多孔形状记忆合金(SMA)的方法,以及包括延性和多孔SMA的能量吸收结构。 在示例性结构中,SMA弹簧包围大致圆柱形的能量吸收材料。 SMA弹簧的功能是在大的压缩载荷下抵抗气缸的膨胀,从而增加圆柱形能量吸收材料可以容纳的屈曲载荷。 SMA弹簧还有助于能量吸收结构抵抗初始压缩载荷。 优选地,气缸由延性,多孔和超弹性SMA形成。 工作原型包括NiTi弹簧和多孔NiTi圆筒或棒。