• 제목/요약/키워드: High Damping Alloy

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Fe-18wt%Mn 마르텐사이트 합금에서 주조상태와 열처리한 상태의 기계적 성질과 진동감쇠능에 관한 연구 (Effects of Heat Treatment on Damping Capacity and Mechanical Properties in as-cast and heat treated Fe-18wt%Mn Martensitic Alloy)

  • 백승한;김정철;지광구;신명철;최종술
    • 열처리공학회지
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    • 제8권3호
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    • pp.197-204
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    • 1995
  • In recent work, we reported that a hot-rolled Fe-18wt%Mn alloy exhibited high damping capacity as well as excellent mechanical properties. It was also proposed that damping capacity of the alloy was proportional to the ${\gamma}/{\varepsilon}$ boundary area. In the present study, the effects of homogenization(12hrs at $1100^{\circ}C$) and solution treatment(1hr at $1050^{\circ}C$ before air cooling) on damping capacity and mechanical properties were investigated for as-cast and heat treated Fe-18wt%Mn alloy. The specimen subjected to both homogenization and solution treatment was found to show superior damping capacity and mechanical properties to the as-cast state due to removal of segregation and increase in ${\gamma}/{\varepsilon}$ boundary area.

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THE INVESTIGATION OF PSEUDOELASTIC NITI WIRES FOR DAMPING USES

  • Pan, Qiang;Cho, Chong-Du;Lu, Sheng
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.154-159
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    • 2007
  • Some shape memory alloys like NiTi show noticeable high damping property in pseudoelastic range. Due to its instinct characteristics, a NiTi alloy is commonly used for passive damping applications, in which the energy may be dissipated by the conversion from mechanical to thermal energy. Previous researches found the NiTi wires own higher damping property than the bars; therefore the wire form is adopted in this study. A loss factor is introduced for measuring the damping property of the NiTi wires. The experimental observation shows the mechanical behaviors of NiTi wires are dependent on temperature, strain rate and strain amplitude. Moreover, it is found the first several decades of loading-unloading cycles can obviously influence the property of NiTi wires under the same working conditions.

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진동제어에 의한 정밀기기의 고성능화를 위한 고강도 및 고감쇠능 합금개발 (Development of Alloy with High Strength and Damping Capacity for High-Performance of Precision Devices by Vibration Control)

  • 강창룡;김익수
    • 한국해양공학회지
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    • 제22권6호
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    • pp.46-51
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    • 2008
  • The effect of the addition of Co and N and subzero treatment on tensile strength and damping capacity was investigated in Fe-Cr-Mn alloy. Austenite was transformed into martensite by cold rollins increasing the degree of cold rollins led to an increase in the volume fraction of martensite. The damping capacity linearly increased with increasing volume fraction of ${\varepsilon}$ martensite in cold rolled specimens and subzero treated specimens after cold rolling. The volume fraction of ${\varepsilon}$ martensite, tensile strength and damping capacity was also increased by the addition of Co, while this treatment decreased the elongation. However, the volume fraction of ${\varepsilon}$ martensite, elongation and damping capacity were reduced by the addition of N, although the tensile strength increased. Tensile strength and damping capacity werealso increased by subzero treatment, while elongation decreased.

Dynamic Strain Gage를 이용한 제진합금의 제진특성 측정 (Damping Property Measurement of Damping Alloy by Dynamic Strain Gage)

  • 이규환;조권구;이봉직;심명철
    • 한국재료학회지
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    • 제4권5호
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    • pp.502-509
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    • 1994
  • dynamic strain gage와 12bit AD(analog to digital converter)를 이용한 새로운 제진특성 측정 장치를 제작하였다. 이 장치를 이용하여 일반재료와 고제진재료의 제진특성을 연구하였다. 또한 열처리 조건, 초기 진동 진폭, 그리고 내부응력의 변화에 따른 SDC(specific damping capacity)변화에 관하여 연구하였다. 일반재료와 제진재료의 비교에서, 제진재료는 진동을 가한 후 0.4초 이내에 진동 진폭이 거의 사라졌지만, 같은 시간에 일반재료의 진동 진폭은 거의 감소하지 않았다. Fe-16wt. %Cr계 합금의 제진 특성은 노냉일 때 SDC max 가 40%이상이었고, Fe-5.5wt.%Ai합금의 제진 특성은 공냉일 때 SDC max값이 30%이상이었다. 초기 진동 진폭이 증가할수록 최대 제진 특성치는 낮은 진동 진폭 영역으로 이동하였다. 제진 특성은 내부 응력이 증가할수록 급격한 감소를 보였으며, 본 연구에서 개발한 제진측정 장치는 낮은 진동 진폭의 영역에서 정확한 제진 특성 측정이 가능하였다.

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적층형 초탄성 형상기억합금 보강재 기반 고댐핑 전자기판의 실험적 성능 검증 (Experimental Validation of High Damping Printed Circuit Board With a Multi-layered Superelastic Shape Memory Alloy Stiffener)

  • 신석진;박성우;강수진;오현웅
    • 한국항공우주학회지
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    • 제49권8호
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    • pp.661-669
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    • 2021
  • 종래 우주용 전장품 개발과정에서는 발사진동환경에 대한 탑재 전자소자 솔더 접합부의 피로수명 보장을 위해 기판 상에 보강재를 적용하여 강성을 증가시킴으로써 기판의 동적거동을 최소화하였다. 그러나 종래의 설계는 전장품의 부피 및 무게의 증가를 야기하여 소형/경량화 설계에 한계를 갖는다. 선행 연구에서 제안된 점탄성 테이프 기반 고댐핑 적층형 전자기판은 굽힘변위 저감을 통한 소자의 피로수명 연장에 효과적임을 입증하였으나 고댐핑 부여를 위한 적층구조가 기판에 직접 장착되는 관계로 소자 실장 공간의 효율이 저하되는 한계를 지닌다. 본 연구에서는 전장품 소형/경량/고집적화 설계 구현을 위해 일반 금속 대비 높은 댐핑과 복원 특성을 갖는 초탄성 형상기억합금에 점탄성 테이프를 적용한 적층구조의 초탄성 형상기억합금 보강재 기반 고댐핑 전자기판을 제안하였다. 제안 기판의 기본특성 파악을 위해 정하중시험 및 자유진동시험을 수행하였으며, 랜덤진동시험을 통해 진동환경 하 고댐핑 특성 및 설계 유효성을 입증하였다.

Fe-17%Mn 합금의 미세조직과 진동감쇠능에 미치는 용체화처리의 영향 (Effect of Solution Treatment on the Microstructure and Damping Capacity of Fe-17%Mn Alloy)

  • 이영국;전중환;최종술
    • 열처리공학회지
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    • 제9권1호
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    • pp.12-18
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    • 1996
  • Austenite(${\gamma}$) grain size, ${\varepsilon}$ martensite volume fraction and damping capacity of Fe-17%Mn alloy have been investigated as a function of solution treatment temperature of $600^{\circ}C$ to $1100^{\circ}C$. With increasing the solution temperature, ${\gamma}$ grain size, ${\varepsilon}$ martensite content and damping capacity are increased, while the hardness is decreased. When ${\gamma}$ grains are small, ${\varepsilon}$ plates grow in only one direction in each ${\gamma}$ grain. However, if the ${\gamma}$ grains are large in accordance with high solution treating temperature, several ${\varepsilon}$ variants with different orientations are formed and intersected each other in each ${\gamma}$ grain. In spite of small ${\varepsilon}$ martensite content, the damping capacity of the specimen which was annealed at $700^{\circ}C$, followed by subzero treatment at $-196^{\circ}C$, is almost equal to that of the specimen annealed at $1000^{\circ}C$ and subsequently quenched to room temperature. From this result it is suggested that the damping capacity of Fe-17%Mn alloy having fine ${\gamma}$ grains is mainly attributed to the movement of ${\gamma}/{\varepsilon}$ interface without the operation of other damping sources such as ${\varepsilon}/{\varepsilon}$ boundaries and stacking faults in ${\varepsilon}$ reported previously.

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태양전지판의 수동형 제진을 위한 초탄성 형상기억합금 기반 적층형 고댐핑 요크 구조의 궤도상 열적 특성 분석 (On-orbit Thermal Characteristic for Multilayered High Damping Yoke Structure Based on Superelastic Shape Memory Alloy for Passive Vibration Control of Solar Panels)

  • 손민영;박재현;채봉건;박성우;오현웅
    • 항공우주시스템공학회지
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    • 제18권1호
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    • pp.1-10
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    • 2024
  • 선행연구에서는 위성체의 고기동 시 전개형 태양전지판으로부터 발생하는 잔여진동을 저감시키기 위해 초탄성 형상기억합금 (Shape Memory Alloy, SMA)을 적용한 적층형 태양전지판 요크를 제안하였다. 요크에는 SMA 양면에 구속층을 적층시키기 위해 점탄성 테이프가 적용되며, 점탄성 테이프는 온도 의존성이 높아 온도에 따라 댐핑 특성 변화로 요크의 진동저감 성능에 직접적인 영향을 미친다. 이에 따라, 온도별 요크의 댐핑 성능을 확인하기 위해 다양한 온도조건에서 자유감쇠시험을 수행하여 댐핑 성능이 가장 극대화되는 온도 구간을 식별하였다. 본 논문에서는 상기 온도시험 결과를 토대로, 요크가 궤도 열환경에 노출되더라도 효과적인 댐핑 성능을 유지할 수 있도록 궤도 열해석을 통해 요크의 열적 거동 및 온도를 예측하였으며, 요크가 최적의 진동저감 성능을 낼 수 있도록 열 설계안 도출 방안에 관해 기술하였다.

Fe-20Mn-12Cr-1Cu 제진합금의 고온가스 질화처리 (High Temperature Gas Nitriding of Fe-20Mn-12Cr-1Cu Damping Alloy)

  • 성지현;김영희;성장현;강창룡
    • 열처리공학회지
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    • 제26권3호
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    • pp.105-112
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    • 2013
  • The microstructural changes of Fe-20Mn-12Cr-1Cu alloy have been studied during high temperature gas nitriding (HTGN) at the range of $1000^{\circ}C{\sim}1150^{\circ}C$ in an atmosphere of nitrogen gas. The mixed microstructure of austenite and ${\varepsilon}$-martensite of as-received alloy was changed to austenite single phase after HTGN treatment at the nitrogen-permeated surface layer, however the interior region that was not affected nitrogen permeation remained the structure of austenite and ${\varepsilon}$-martensite. With raising the HTGN treatment temperature, the concentration and permeation depth of nitrogen, which is known as the austenite stabilizing element, were increased. Accordingly, the depth of austenite single phase region was increased. The outmost surface of HTGN treated alloy at $1000^{\circ}C$ appeared Cr nitride. And this was in good agreement with the thermodynamically calculated phase diagram. The grain growth was delayed after HTGN treatment temperature ranges of $1000^{\circ}C{\sim}1100^{\circ}C$ due to the grain boundary precipitates. For the HTGN treatment temperature of $1150^{\circ}C$, the fine grain region was shown at the near surface due to the grain boundary precipitates, however, owing to the depletion of grain boundary precipitates, coarse grain was appeared at the depth far from the surface. This depletion may come from the strong affinity between nitrogen and substitutional element of Al and Ti leading the diffusion of these elements from interior to surface. Because of the nitrogen dissolution at the nitrogen-permeated surface layer by HTGN treatment, the surface hardness was increased above 150 Hv compared to the interior region that was consisted with the mixed microstructure of austenite and ${\varepsilon}$-martensite.

AM50 Mg합금 발포금속의 제조와 지르코늄 첨가 영향 (The Effect of Zr Addition on AM50 Mg Alloys Foam Metals)

  • 김병구;탁병수;허보영
    • 한국주조공학회지
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    • 제30권6호
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    • pp.217-223
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    • 2010
  • Foamed metal has become an attractive material, which has unique physical, thermal, acoustic, damping and mechanical properties, because large amount of pores are distributed in the metal matrix. Therefore, metal foam can be used for the light weight application in automotive, locomotive, aerospace fields. Aluminum foams have been developed successfully and will be employed in the next generation of energy absorption boxes. Magnesium alloys are most eligible candidate to substitute aluminum alloy, especially for lower density and higher damping properties in wide industrial fields. Magnesium alloy foams are expected to be particularly advantageous due to two thirds the density of aluminum. However, foaming magnesium have been weakness of high activity, difficult processing and very dangerous. In order to upgrade this problem, AM50 magnesium alloy which has better characteristic is safe to use through foaming time and alloying element in this study.

0.5Tm 이하에서의 AZ31 마그네슘 합금 크리이프 특성에 관한 연구 (A study on the creep characteristic of AZ31 Mg alloy at below 0.5Tm)

  • 안정오;강대민
    • Design & Manufacturing
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    • 제2권6호
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    • pp.43-48
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    • 2008
  • Magnesium alloys have given high attention to the industry of light-weigh as automobile and electronics with aluminium, titanium and composite alloys due to their high strength, low specific density and good damping characteristics. But the magnesium contained structures under high temperature have the problems related to creep deformation and rupture life, which is a reason of developing the new material against creep deformation to use them safely. The purpose of this study is to predict the creep deformation mechanism and rupture time of AZ31 magnesium alloy. For this, creep tests of AZ31 magnesium alloy were done under constant creep load and temperature with the equipment including automatic temperature controller with acquisition computer. The apparent activation energy Qc, the applied stress exponent n and rupture life have been determined over the temperature range below 0.5Tm and stress range of 109~187MPa, respectively, in order to investigate the creep behavior. AZ31 Magnesium alloy identify the activation energy for creep deformation and the stress dependence to creep rate at below 0.5Tm, and then investigate the mechanism for creep deformation and creep rupture life of AZ31 Magnesium alloy.

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