• 제목/요약/키워드: Powder Injection Molding

검색결과 175건 처리시간 0.023초

분말사출성형체에서 Sr-페라이트 자성분말의 배향도에 미치는 첨가제의 영향 (Effect of Additives on the Orientation of Magnetic Sr-Ferrite Powders in Powder Injection Molded Compacts)

  • 조태식;정원용
    • 폴리머
    • /
    • 제25권2호
    • /
    • pp.240-245
    • /
    • 2001
  • 다극 이방성 Sr-페라이트 소결자석을 제조하기 위한 자장중 분말사출성형공정에서 Sr-페라이트 자성분말의 배향도에 미치는 결합제의 첨가제 영향이 연구되었다 외부자기장의 방향에 대한 Sr-페라이트 자성분말의 배향도는 첨가제의 종류, 사출성형온도와 관련한 사출성형체의 유동성과 외부자기장의 세기에 크게 의존하였다. Paraffin wax/carnauba wax/HDPE 3성분계 결합제에 stearic acid를 첨가하면 분말사출성형체의 유동성이 향상되어 Sr-페라이트 자성분말의 배향도가 증가되었으나, silane계 커플링제를 첨가하면 성형체의 유동성이 오히려 감소되어 Sr-페라이트의 배향도가 감소되었다. 80% 이상의 Sr-페라이트 자성분말의 배향도는 사출성형체의 겉보기점도가 2500 poise (1000sec$^{-1}$)이하이고 외부자기장의 세기가 4kOe 이상인 유용한 조건에서 얻어졌다.

  • PDF

Advanced PM Processes for Medical Technologies

  • Petzoldt, Frank;Friederici, Vera;Imgrund, Philipp;Aumund-Kopp, Claus
    • 한국분말재료학회지
    • /
    • 제21권1호
    • /
    • pp.1-6
    • /
    • 2014
  • Medical technologies are gaining in importance because of scientific and technical progress in medicine and the increasing average lifetime of people. This has opened up a huge market for medical devices, where complex-shaped metallic parts made from biocompatible materials are in great demand. Today many of these components are already being manufactured by powder metallurgy technologies. This includes mass production of standard products and also customized components. In this paper some aspects related to metal injection molding of Ti and its alloys as well as modifications of microstructure and surface finish were discussed. The process chain of additive manufacturing (AM) was described and the current state of the art of AM processes like Selective Laser Melting and electron beam melting for medical applications was presented.

볼밀링한 W-20wt%Cu 분말로 제조된 금속사출성형 부품의 조밀화 (Densification of Metal Injection Molding Parts Made of Ball Milled W-20%Cu Powders)

  • 김순욱;류성수;문인형
    • 한국분말재료학회지
    • /
    • 제7권4호
    • /
    • pp.228-236
    • /
    • 2000
  • An investigation was carried out on the possibility whether the ball-milling process of low energy could successfully improve the packing density and flowability for MIM application in W-20wt%Cu system. In this study, W-20wt%Cu powder mixture was prepared by ball-milling. W powder was not fractured by low mechanical impact energy used in the present work during the critical ball-milling time, but the ductile Cu powder was easily deformed to the 3 dimensional equiaxed shape, having the particle size similar to that of W powder. The ball-milled mixture of W-20wt%Cu powder had the more homogeneous distribution of each component and the higher amount of powder loading for molding than the simple mixture of W-Cu powder with an irregular shape and a different size. Accordingly, the MIM W(1.75)-20wt%Cu powder compacts were able to be sintered to the relative density of 99% by sintering at $1400^{\circ}C$ for one hour.

  • PDF

Investigation in Influence of Screw Design on the MIM Process

  • Gornik, Christian
    • 한국분말야금학회:학술대회논문집
    • /
    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
    • /
    • pp.213-214
    • /
    • 2006
  • The results of investigations in screw design for metall injection molding (MIM) will be presented. The consistency of cavity pressure, metering time and MFQ (monitoring of feedstock quality; parameter measured during metering) was chosen to compare different screws. A simulation program was used to optimize the conveying and melting mechanisms in the plastification unit. The theoretical background of this simulation programm will be explained.

  • PDF

Ti-X계 합금의 분말야금 공정 차이에 따른 미세조직변화 분석 (Analysis of Microstructure Evolution using Different Powder Metallurgy Process in Ti-X Alloy System)

  • 권혁곤;김두현;강민;박지환;오명훈
    • 열처리공학회지
    • /
    • 제34권1호
    • /
    • pp.17-24
    • /
    • 2021
  • In this study, Ti-X (X=Mn, Fe, Mo) powder alloys were designed and manufactured by both powder metallurgy (PM) and metal powder injection molding (MIM) process to improve strength and formability compared to CP-Ti powder materials. It was found that the lamellar microstructure consisted of α and β phases was formed in PM-processed alloys. However, MIM-processed alloys showed not the lamellar microstucture but the equiaxed α + β microstructure. It was also revealed that the contents of X component and feedstock were not affected to microstructure evolution. The reason why different microstructure was appeared between PM-processed and MIM-processed alloys is not clear yet, but supposed to be the effect of intersticial elements such as C, H and N derived from feedstock during debinding process of MIM.