JP2016539488A5 - - Google Patents

Download PDF

Info

Publication number
JP2016539488A5
JP2016539488A5 JP2016552434A JP2016552434A JP2016539488A5 JP 2016539488 A5 JP2016539488 A5 JP 2016539488A5 JP 2016552434 A JP2016552434 A JP 2016552434A JP 2016552434 A JP2016552434 A JP 2016552434A JP 2016539488 A5 JP2016539488 A5 JP 2016539488A5
Authority
JP
Japan
Prior art keywords
conductor
cable
cable assembly
shape memory
computer
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2016552434A
Other languages
Japanese (ja)
Other versions
JP2016539488A (en
Filing date
Publication date
Application filed filed Critical
Priority claimed from PCT/US2014/063670 external-priority patent/WO2015066603A1/en
Publication of JP2016539488A publication Critical patent/JP2016539488A/en
Publication of JP2016539488A5 publication Critical patent/JP2016539488A5/ja
Pending legal-status Critical Current

Links

Claims (9)

形状記憶合金材料を含む超弾性導体であって、前記形状記憶合金材料が、500ナノ・オーム・メートル未満の電気抵抗率を有し、および、データ信号を運ぶかもしくは電力を供給するようにまたは両方であるように構成されている、前記導体。   A superelastic conductor comprising a shape memory alloy material, wherein the shape memory alloy material has an electrical resistivity of less than 500 nano ohm meters and carries a data signal or provides power or The conductor configured to be both. 約0Vから約10Vまでの範囲の電圧および0から約20ミリアンペア(milliamps)までの範囲の電流を有する直流電流または交流電流の波形を運ぶ、請求項1に記載の導体。   The conductor of claim 1 carrying a direct current or alternating current waveform having a voltage in the range of about 0V to about 10V and a current in the range of 0 to about 20 milliamps. 材料が、応力のないとき、実質的にオーステナイト相にあるが、全体的なもしくは局所的な曲げ、歪みまたは外部から適用される他の変形に付されるとき、実質的にマルテンサイト相へ変態し、および、該相変態を介してかかる外部から適用された変形に適応する、請求項1に記載の導体。   When the material is unstressed, it is substantially in the austenite phase, but when subjected to global or local bending, strain or other externally applied deformation, it substantially transforms into the martensite phase. And the conductor of claim 1 adapted to such externally applied deformation through the phase transformation. 遮蔽物の有無にかかわらず多重導体ケーブルの一部として構成されており、ここで各個々の導体が固体導体である、請求項1に記載の導体。   The conductor of claim 1 configured as part of a multi-conductor cable with or without a shield, wherein each individual conductor is a solid conductor. 形状記憶合金が、以下の合金:

からなる群から選択され、材料が、オリゴ結晶性である、請求項1に記載の導体。
Shape memory alloys are the following alloys:

It is selected from the group consisting of the material, Ru oligo crystalline der conductor according to claim 1.
塑性変形に抵抗する導体を含む、信号を運ぶかまたは配電のケーブルアセンブリであって、導体が、超弾性状態にある、前記ケーブルアセンブリ。   A cable carrying or distributing signal assembly comprising a conductor that resists plastic deformation, wherein the conductor is in a superelastic state. 導体が、超弾性を介して塑性変形(オーステナイト相とマルテンサイト相との間の変態)に抵抗する、請求項に記載のケーブルアセンブリ。 The cable assembly according to claim 6 , wherein the conductor resists plastic deformation (transformation between austenite and martensite phases) via superelasticity. 導体が、マルテンサイト板の動きを介して塑性変形に抵抗する、請求項に記載のケーブルアセンブリ。 The cable assembly of claim 6 , wherein the conductor resists plastic deformation through movement of the martensite plate. データ信号の送信または配電のいずれかのための、コンピュータに対して内部のまたはコンピュータへ電力もしくはデータを提供する外部のケーブルのいずれかとして、コンピュータまたはコンピュータボードにおいて使用されるワイヤおよびケーブルアセンブリにおける使用のために構成されている、請求項のケーブルアセンブリ。 Use in wires and cable assemblies used in computers or computer boards, either as internal to the computer or external cables that provide power or data to the computer, either for transmission of data signals or distribution The cable assembly of claim 6 , wherein the cable assembly is configured for:
JP2016552434A 2013-11-01 2014-11-03 Shape memory alloy conductor that resists plastic deformation Pending JP2016539488A (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US201361898854P 2013-11-01 2013-11-01
US61/898,854 2013-11-01
PCT/US2014/063670 WO2015066603A1 (en) 2013-11-01 2014-11-03 Shape memory alloy conductor resists plastic deformation

Publications (2)

Publication Number Publication Date
JP2016539488A JP2016539488A (en) 2016-12-15
JP2016539488A5 true JP2016539488A5 (en) 2017-12-14

Family

ID=53005250

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2016552434A Pending JP2016539488A (en) 2013-11-01 2014-11-03 Shape memory alloy conductor that resists plastic deformation

Country Status (4)

Country Link
US (1) US20160265093A1 (en)
EP (1) EP3063308A4 (en)
JP (1) JP2016539488A (en)
WO (1) WO2015066603A1 (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9741473B2 (en) * 2014-12-10 2017-08-22 Bby Solutions, Inc. Cable with an integrated coiling and reinforcing wrapper
KR20180111817A (en) * 2016-02-15 2018-10-11 소니 주식회사 cable
JP6810939B2 (en) * 2018-03-22 2021-01-13 国立大学法人横浜国立大学 Cu-Sn-Si based superelastic alloy and its manufacturing method
WO2021207032A1 (en) * 2020-04-06 2021-10-14 Massachusetts Institute Of Technology Superelastic and shape-memory fe-based wire and direct wire casting thereof

Family Cites Families (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4443119A (en) * 1982-05-05 1984-04-17 The United States Of America As Represented By The Secretary Of The Navy Roller bearing hot box sensor
US5275885A (en) 1988-12-19 1994-01-04 Ngk Spark Plug Co., Ltd. Piezoelectric cable
JPH076635A (en) * 1993-06-18 1995-01-10 Sony Corp Signal transmission cable
JPH08287730A (en) * 1995-04-11 1996-11-01 Fujita Corp Shape memory curling cord
US5611874A (en) * 1995-07-26 1997-03-18 Surface Genesis, Inc. Clad shape memory alloy composite structure and method
US6329069B1 (en) * 1995-07-26 2001-12-11 Surface Genesis, Inc. Composite structure and devices made from same and method
EP0778590A3 (en) * 1995-12-06 1997-06-18 W.L. GORE & ASSOCIATES, INC. Improvements in or relating to a signal transmission assembly
US7107706B1 (en) * 1997-08-14 2006-09-19 Promdx Technology, Inc. Ergonomic systems and methods providing intelligent adaptive surfaces and temperature control
JP2000169920A (en) * 1998-12-03 2000-06-20 Kiyohito Ishida Copper base alloy having shape memory characteristic and superelasticity, and its production
US6179699B1 (en) * 1999-09-27 2001-01-30 Advanced Micro Devices, Inc. Shape memory alloy-controlled slurry dispense system for CMP processing
AU2001275536A1 (en) 2000-06-13 2001-12-24 Smart Therapeutics, Inc. Fatigue-resistant conductive wire article
AUPR090300A0 (en) * 2000-10-20 2000-11-16 AMC Technologies Pty Limited An electrical lead
US6550341B2 (en) * 2001-07-27 2003-04-22 Mide Technology Corporation Method and device for measuring strain using shape memory alloy materials
US7632361B2 (en) * 2004-05-06 2009-12-15 Tini Alloy Company Single crystal shape memory alloy devices and methods
US7093416B2 (en) 2004-06-17 2006-08-22 3M Innovative Properties Company Cable and method of making the same
US7631707B2 (en) * 2006-03-29 2009-12-15 Cyrus Solutions Corporation Shape memory alloy actuated steerable drilling tool
US20090104945A1 (en) * 2007-10-17 2009-04-23 Sony Ericsson Mobile Communications Ab handsfree cable for use with an electronic device
EP2307585A2 (en) 2008-07-09 2011-04-13 Massachusetts Institute of Technology Superelastic alloy structural geometry for ultrahigh mechanical damping
US20100104126A1 (en) * 2008-10-24 2010-04-29 Andrea Martina Greene Tangle resistant audio cord and earphones
JP2010232009A (en) * 2009-03-27 2010-10-14 Shintekku:Kk Linear member and manufacturing method of the same
US8399769B2 (en) 2011-03-25 2013-03-19 Jay Thomas Doll Cable management system and method of use

Similar Documents

Publication Publication Date Title
JP2016539488A5 (en)
GB201018498D0 (en) Carbon materials comprising carbon nanotubes and methods of making carbon nanotubes
ATE428468T1 (en) SELF-FOLDING PADDLE-SHAPED PIPE AND METHOD FOR PRODUCING A PADDLE-SHAPED PIPE
EP3239988A4 (en) Insulated electrical wire having excellent resistance to bending process, coil and electronic/electric equipment using same
JP2016178121A5 (en)
MX347252B (en) Pane having an electrical connection element.
WO2015200459A3 (en) Implantable medical lead conductor having carbon nanotube wire
WO2011105837A3 (en) Soft electrode material and manufacturing method thereof
MY164554A (en) Displacement resistant microelectrode, microelectrode bundle and microelectrode array
WO2011082260A3 (en) Implantable leads with a conductor coil having two or more sections
WO2014189549A3 (en) Carbon nanotube composite conductors
BR112014032514A2 (en) chip card and method of producing a chip card
JP2015109264A5 (en) Electrode for power storage device, power storage device and electronic device
ES2558164A1 (en) Connection system for electrical, signal and/or data installations. (Machine-translation by Google Translate, not legally binding)
WO2013167712A3 (en) Flexible, total coverage electromagnetic wave shielding system
CN107409441A8 (en) The medium pipeline of heating
WO2015066603A1 (en) Shape memory alloy conductor resists plastic deformation
CN204332404U (en) The Z-shaped copper bar of a kind of nickel plating
JP2012172178A5 (en)
WO2015040639A8 (en) Gold coated natural fibre as electrode materials and process for preparation thereof
Cui et al. Effect of high hydrostatic pressure on structural stability of Ti3GeC2: A first-principles investigation
CN204332401U (en) Silver-coated copper wire
Muñiz et al. Online video tracking for activity-dependent stimulation in neuroethology
CN204332409U (en) A kind of nickel plating abnormity copper bar
CN202855360U (en) Flexible flat cable