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    • 1. 发明申请
    • METHOD OF CHARACTERIZING PHASE TRANSFORMATIONS IN SHAPE MEMORY MATERIALS
    • 在形状记忆材料中表征相变的方法
    • WO2009073611A2
    • 2009-06-11
    • PCT/US2008085144
    • 2008-12-01
    • COOK INCSABIN CORPMAGNUSON MARK ALIU FRANK J
    • MAGNUSON MARK ALIU FRANK J
    • G01N25/48
    • G01N25/4866
    • A method of characterizing phase transformations of a shape memory material specimen entails recording data from the specimen during heating and cooling. The temperature of the specimen is changed in a first direction to a first temperature sufficient to define a first inflection and a second inflection in the data being recorded. The temperature of the specimen is changed in a second direction to a second temperature sufficient to define a third inflection in the data. The third inflection is formed by overlapping primary and secondary sub-inflections. The temperature of the specimen is changed in the first direction to a third temperature sufficient to define the first inflection but not sufficient to define the second inflection. The temperature of the specimen is then changed in the second direction to a fourth temperature sufficient to define the secondary sub-inflection in the data being recorded.
    • 表征形状记忆材料样本的相变的方法需要在加热和冷却期间从样品记录数据。 样本的温度在第一方向上变化到足以限定正在记录的数据中的第一拐点和第二拐点的第一温度。 样本的温度在第二方向上变化到足以限定数据中的第三个拐点的第二温度。 第三个拐点是通过重叠的次级次级变换形成的。 样本的温度在第一方向上变化到足以限定第一拐点但不足以限定第二拐点的第三温度。 然后将样品的温度在第二方向上改变到足以限定正在记录的数据中的次级副拐点的第四温度。
    • 5. 发明申请
    • HIGH PRESSURE INJECTION SYRINGE
    • 高压注射器
    • WO0193787A2
    • 2001-12-13
    • PCT/US0118348
    • 2001-06-06
    • COOK INCSABIN CORP
    • DIXON CHRISTOPHER GFLAGLE JACOB AHOFFA ANDREW KLANE JOSEPH P
    • A61B17/88A61F2/00A61F2/44A61F2/46
    • A61B17/8827A61B17/8822A61F2/44A61F2/4601A61F2310/00353
    • A pressure injection syringe (10) with an actuator (100) that includes a plunger (102) for pressurizing viscous fluid material within a chamber (14). The plunger distal tip (112) includes a high pressure seal (110) defined by a seal member (118) within a seal seat (116). The high pressure seal (110) is viscoselective to permit air passage therepast for aspiration, and to prohibit viscous material passage therepast during actuation of the actuator wherein high pressure is applied to the material within the chamber (14). The viscoselective seal (110) may be defined for example by small axial openings (130) in the seal seat (116) that permit aspiration of air therepast during initial plunger insertion into the chamber, but fluid escape is prohibited by the seal member (118) when the seal member is pressed firmly against a collar (126) of the plunger (102) proximally adjacent the seal seat by initial engagement of the seal member with the viscous material, thus completely sealing the chamber (14) at the proximal end thereof.
    • 一种具有致动器(100)的压力注射器(10),其包括用于对腔室(14)内的粘性流体材料进行加压的柱塞(102)。 柱塞远端尖端(112)包括由密封座(116)内的密封构件(118)限定的高压密封(110)。 高压密封件(110)是粘性选择性的,以允许空气通过其吸入,并且在致动器期间禁止粘性材料通过,其中高压被施加到腔室(14)内的材料。 粘性选择性密封件(110)可以例如通过密封座(116)中的小轴向开口(130)来限定,其允许在初始柱塞插入室期间吸入空气,但密封构件(118)禁止流体逸出 )当密封构件通过密封构件与粘性材料的初始接合将密封构件紧紧地压靠在靠近密封座的凸柱(102)的套环(126)上时,从而在其近端处完全密封腔室(14) 。
    • 10. 发明专利
    • AT509266T
    • 2011-05-15
    • AT08856250
    • 2008-12-01
    • COOK INCSABIN CORP
    • MAGNUSON MARKLIU FRANK
    • G01N25/48
    • A method of characterizing phase transformations of a shape memory material specimen entails recording data from the specimen during heating and cooling. The temperature of the specimen is changed in a first direction to a first temperature sufficient to define a first inflection and a second inflection in the data being recorded. The temperature of the specimen is changed in a second direction to a second temperature sufficient to define a third inflection in the data. The third inflection is formed by overlapping primary and secondary sub-inflections. The temperature of the specimen is changed in the first direction to a third temperature sufficient to define the first inflection but not sufficient to define the second inflection. The temperature of the specimen is then changed in the second direction to a fourth temperature sufficient to define the secondary sub-inflection in the data being recorded.