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    Tensile lab report

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    geometry was used with the region of minimum cross section having the dimensions: thickness =1.04 mm‚ width = 3.14 mm‚ and length section = 30 mm. This experiment was accomplished by first placing our specimens one at a time into a tensile testing machine (A G.U.N.T Hamburg Tensile Testing Machine (Max. load = 2kN))‚ which‚ under physical control‚ slowly increased the tension force on each specimen‚ stretching each until failure. We then analyzed the data output from the load and extension gauge. Referring

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    EXPERIMENT-2 NAME OF THE TEST: HARDNESS TEST AIM : OBJECT TO DETERMINE HARDNESS TEST OF A METARIAL INTRODUCTION It become necessary to test engineering materials before they are accepted for processing‚ buying or applying to determine whatever or not they meet the spefications required. One of the tests is hardness test. The Rockwell and brinell machines are those most commonly used for this purpose. PROCUDURE AND LABORATORY REPORT 1. Understad thoroughly

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    tensile testing report

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    ERRORS AND UNCERTAINTIES IN EXPERINMENTAL MEASUREMENTS ELANKUMARAN NAGARAJAN 4TH DECEMBER 2011 SUMMARY Experimentation is an important process that will be carried out on new theories‚ ideas‚ products and devices to validate them. Despite the quality of the experiment there will always be some uncertainties associated with the experimental data. These uncertainties

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    Lab Report - Tensile Strength Date : 24-Feb-2013 Experimental Data Cold Work Steel (CWS) – Specimen 1 Width (mm) Thickness (mm) I II III Average I II III Average Before 10.029 10.04 10.02 10.0297 3.06 3.07 3.07 3.0667 After 9.09 9.00 - 9.045 2.60 2.40 - 2.50 Annealed Steel (As) – Specimen 2 Width (mm) Thickness (mm) I II III Average I II III Average Before 10.24 10.13 10.10 10.16 3.07 3.08 3.09 3.08 After 8.11 8.08 - 8.095 2

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    Tensile

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    METU DEPARTMENT OF METALLURGICAL AND MATERIALS ENGINEERING Met E 206 MATERIALS LABORATORY EXPERIMENT 1 Prof. Dr. Rıza GÜRBÜZ Res. Assist. Gül ÇEVİK (Room: B-306) TENSION TEST INTRODUCTION Mechanical testing plays an important role in evaluating fundamental properties of engineering materials as well as in developing new materials and in controlling the quality of materials for use in design and construction. If a material is to be used as part of an engineering structure that will be subjected

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    ABSTARCT: Tensile tests are fundamental for understanding properties of different materials‚ and how they will behave under load. These properties can be used for design and analysis of engineering structures‚ and for developing new Materials that better suit a specified use. This lab tested two materials mild steel and cast iron. The data from each test was used to determine valuable material properties such as ultimate tensile strength‚ modulus of elasticity‚ and yield strength. Other calculated

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    Tensile Testing

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    Tensile Testing Of Metallic Materials 概要: Tensile testing of metallic materials is specified according to European EN 10002 standard. In this article the terms‚ definitions and designation for tensile test made at ambient temperature is described. The test involves straining a test piece in tension‚ generally to fracture‚ for the purpose of determining mechanical properties. Tensile testing of metallic materials is specified according to European EN 10002 standard. This standards consists of five

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    TENSILE STRENGTH TEST ENGINEERING PRINCIPLES ASSESSMENT TWO Alan Tait PLAGERISM I can confirm that all works contained in this report are my own. My sources are from information and data collected from experiments carried out in the class. I understand that if the work in this report is deemed not to be my own then it shall be rendered void. Signed______________________________________ INTRODUCTION As a class we were given a piece of mild steel with the following dimensions-a

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    Yield Strength As we apply a low level of stress to a material; the material initially exhibits elastic deformation. In this region the strain that develops is completely and quickly recovered when the applied stress is removed. However‚ as we continue to increase the applied stress the material begins to exhibit both elastic and plastic deformation. The critical stress value needed to initiate plastic deformation is defined as the elastic limit of the material. In metallic materials‚ this is usually

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    Split-tensile Strength The splitting tests are well known indirect tests‚ were conducted as per IS 5816:1999 and used in the concrete tensile strength determination sometimes called split tensile strength of concrete. The size of cylinder is 300mm length with 150mm diameter or 200mm with 100mm diameter. The specimen were kept in water for curing for 3 days‚ 7 days and 21 days and on test day remove and allow the surface to dry. The test is performed out by placing a cylindrical specimen horizontally

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