• Title/Summary/Keyword: 압입 시험

Search Result 200, Processing Time 0.046 seconds

Microhardness measurement for a few micron thick TiN thin films (수미크론 두께를 갖는 TiN코팅층의 미소경도 측정법)

  • Jo, Yeong-Rae;Fromm, E.
    • Korean Journal of Materials Research
    • /
    • v.5 no.3
    • /
    • pp.310-315
    • /
    • 1995
  • 기계적으로 연마한 고속도강과 구리 두 종류의 서로 다른 기판상에 dc 마그네트론 스파터법으로 TiN 박막을 성막시켜 코팅층의 비커스 미소경도를 측정하였다. 압입체의 침투깊이와 시험하중과의 관계를 log-log 좌표상에 도시함으로써 기판의 영햐응ㄹ 받지 않고 코팅층만의 경도를 측정할수 있는 최대하중인 임계하중(critical load)을 구할수 있었다. 임계하중을 가했을 때 압입체의 침투깊이와 코팅층 두께간의 비율은 코팅층의 두께에 무관하였고 기판의 경도에 크게 의존하였다.

  • PDF

Property Evaluation Method Using Spherical Indentation for High-Yield Strength Materials (고강도 재료에 대한 구형압입 물성평가법)

  • Choi, Youngsick;Marimuthu, Karuppasamy Pandian;Lee, Jin Haeng;Lee, Hyungyil
    • Transactions of the Korean Society of Mechanical Engineers A
    • /
    • v.39 no.11
    • /
    • pp.1079-1089
    • /
    • 2015
  • In this paper, we propose a method to evaluate the material properties of high-yield strength materials exceeding 10GPa from spherical indentation. Using a regression equation considering four indentation variables, we map the load displacement relation into a stress-strain relation. To calculate the properties of high-strength materials, we then write a program that produces material properties using the loading / unloading data from the indentation test. The errors in material properties computed by the program are within 0.3, 0.8, and 6.4 for the elastic modulus, yield strength, and hardening coefficient, respectively.

Numerical Approach Technique of Spherical Indentation for Material Property Evaluation of Hyper-elastic Rubber (초탄성 고무 물성평가를 위한 구형 압입시험의 수치접근법)

  • Lee, Hyung-Yil;Lee, Jin-Haeng;Kim, Dong-Wook
    • Elastomers and Composites
    • /
    • v.39 no.1
    • /
    • pp.23-35
    • /
    • 2004
  • In this work, effects of hyper-elastic rubber material properties on the indentation load-deflection curve and subindenter deformation are first examined via finite element (FE) analyses. An optimal data acquisition spot is selected, which features maximum strain energy density and negligible frictional effect. We then contrive two normalized functions, which map an indentation load vs. deflection curve into a strain energy density vs. first invariant curve. From the strain energy density vs. first invariant curve, we can extract the rubber material properties. This new spherical indentation approach produces the rubber material properties in a manner more effective than the common uniaxial tensile/compression tests. The indentation approach successfully measures the rubber material properties and the corresponding nominal stress-strain curve.

A Study on the Evaluation of Welding Residual Stress of Pipe used in Power Plant by Indentation Method (연속압입시험에 의한 발전소용 배관의 용접잔류응력 평가에 관한 연구)

  • Park, S.K.;Choi, W.D.;Gil, D.S.;Ko, J.B.;Lee, K.C.;Lee, Y.H.
    • Journal of Power System Engineering
    • /
    • v.8 no.2
    • /
    • pp.12-17
    • /
    • 2004
  • In this study, to verify the reliability of the indentation for measuring welding residual stresses to get in method we compared the results of the method with those measured by the saw cutting method. Also for the same purpose we used a 4-point bending test and confirmed the reliability of indentation method. The specimens used in this experiment are made with the same conditions for hot reheater pipes and cold reheater pipes used in the electric power plant. Therefore we could know that the results of the methods showed the reliability of the method to obtain welding residual stresses.

  • PDF

Calibration of Contact Depth for Evaluating Residual Stress using Instrumented Indentation Testing (연속압입시험법을 이용한 원전구조물의 잔류응력 평가를 위한 접촉깊이의 보정)

  • Kim, Young-Cheon;Kang, Seung-Kyun;Ahn, Hee-Jun;Kim, Kwang-Ho;Kwon, Dongil
    • Transactions of the Korean Society of Pressure Vessels and Piping
    • /
    • v.7 no.1
    • /
    • pp.41-47
    • /
    • 2011
  • Residual stress is the key parameter for reliability and lifetime assessment because it can reduce the fatigue strength and fracture properties of industrial structures. Recently, instrumented indentation testing (IIT) has been widely used for evaluating it, since it does not need specific specimen and time-consuming procedure. However, conventional Oliver-Pharr method, which is used for calibrating contact depth to analyze indentation load-depth curve, cannot estimate plastic pile-up between indenter and surface of specimen. Here, we introduce f parameter which is the ratio of contact depth and maximum depth, to consider pile-up height. And, its application for evaluating residual stress of weldment is introduced.