Dual Impact Testing Machines
TABLE OF CONTENTS
COVER PAGE
TITLE PAGE
APPROVAL PAGE
DEDICATION
ACKNOWELDGEMENT
ABSTRACT
CHAPTER ONE
- INTRODUCTION
- BACKGROUND OF THE PROJECT
- AIM/OBJECTIVE OF THE PROJECT
- PURPOSE OF THE PROJECT
- SIGNIFICANCE OF THE PROJECT
- SCOPE OF THE PROJECT
- ADVANTAGES OF THE PROJECT
- INDUSTRIAL APPLICATIONS OF THE PROJECT
CHAPTER TWO
LITERATURE REVIEW
- REVIEW OF THE STUDY
- IZOD IMPACT STRENGTH TEST
- CHARPY AND IZOD IMPACT TESTS
- REVIEW OF IMPACT TESTING MACHINES AND DROP IMPACT TESTERS
- OVERVIEW OF CHARPY IMPACT TEST
- HISTORY OF THE STUDY
- IMPACT TEST RESULTS ON LOW- AND HIGH-STRENGTH MATERIALS
- IZOD IMPACT STRENGTH AND CHARPY IMPACT STRENGTH
- TYPES OF IMPACT TESTS
- TYPES OF MATERIALS FOR IMPACT TESTING
CHAPTER THREE
METHODOLOGY
- INTRODUCTION
- HOW THE CHARPY AND IZOD IMPACT TEST WORKS
- CHARPY AND IZOD IMPACT TEST DATA
- ENSURING REPEATABLE CHARPY AND IZOD IMPACT TESTING
- SAMPLE PREPARATION
- PREPARING MATERIALS FOR CHARPY AND IZOD IMPACT TESTING BY INJECTION MOLDING
- SOURCES OF POTENTIAL ERROR FOR INJECTION MOLDED SPECIMENS
- IMPROVING CONSISTENCY OF CHARPY AND IZOD TEST RESULTS
- PREPARING MATERIALS FOR CHARPY AND IZOD IMPACT TESTING BY COMPRESSION MOLDING
- NOTCHES IN CHARPY AND IZOD TEST SPECIMENS
- NOTCHING CHARPY AND IZOD TEST SPECIMENS
- MOLDING NOTCHES AND DIE CUTTERS
- MEASURING AND INSPECTION OF NOTCHES
- CONDITIONING CHARPY AND IZOD TEST SPECIMENS
- THEORY OF THE EXPERIMENT
- EQUIPMENT USED
CHAPTER FOUR
RESULT AND DISCUSSION
- RESULT
- CHARPY AND IZOD IMPACT TESTING EQUIPMENT
- DESIGN OF CHARPY AND IZOD IMPACT TESTING MACHINES
- CHARPY AND IZOD IMPACT TESTING PROCEDURE
- PENDULUM SELECTION
- DISCUSSION
CHAPTER FIVE
- CONCLUSION
- REFERENCES
- CHAPTER ONE
1.0 INTRODUCTION
1.1 BACKGROUND OF THE STUDY
An impact test is used to observe the mechanics that a material will exhibit when it experiences a shock loading that causes the specimen to immediately deform, fracture or rupture completely. To perform this test the sample is placed into a holding fixture with the geometry and orientation determined by the type of test that is used and then a known weight generally but not always in the shape of a pendulum is released from a known height so that it collides with the specimen with a sudden force. This collision between the weight and specimen generally results in the destruction of the specimen but the transfer of energy between the two is used to determine the fracture mechanics of the material.
Impact testing machines evaluate an object’s capacity to withstand high-rate loading and it is commonly used to determine the service life of a part or material. Impact resistance can be among the most challenging qualities to measure. The capacity evaluate this property is particularly useful in assessing product liability and safety.
There are two standard kinds of impact test: Charpy and IZOD. Charpy tests are commonly performed on metals, but a few plastics and polymers can also be tested. IZOD tests can be performed on either plastic or metal specimens. A Charpy test specimen is usually a 55 x 10 x 10 millimetre bar. An IZOD specimen is typically a 64 x 12.7 x 3.2-millimetre bar. Toughness is a measure of a materials ability to resist sudden or impact loads. Toughness is measured by Impact tests, of which there are two types, namely Charpy and Izod. Both are performed using the same piece of equipment with different attachments.
1.2 OBJECTIVE OF THE PROJECT
The objective of this work is to determine the relative toughness of a number of types of plastic using piece of equipment.
1.3 PURPOSE OF THE STUDY
The purpose of an impact test is to determine the ability of the material to absorb energy during a collision. This energy may be used to determine the toughness, impact strength, fracture resistance, impact resistance or fracture resistance of the material depending on the test that was performed and the characteristic that is to be determined. These values are important for the selection of materials that will be used in applications that require the material to undergo very rapid loading processes such as in vehicular collisions.
1.4 SIGNIFICANCE OF THE PROJECT
Impact testing is used to determine material behavior at higher deformation speeds. Classical pendulum impact testers determine the impact energy absorbed by a standardized specimen up to break by measuring the height of rise of the pendulum hammer after impact.
1.5 SCOPE OF THE PROJECT
The characterization of the toughness of a material can be achieved in several ways, but Charpy and Izod tests are the most common methods. The Charpy test determines the amount of energy absorbed by the material during fracture. This experiment involves using this experiment is to determine the relative toughness of a number of types of plastic using Charpy and Izod tests methods.
1.6 ADVANTAGES OF THE PROJECT
Some of the advantages of Charpy and Izod test include:
- Cost effective test method for composites
- Relatively easy to perform
- Helps to assess quality of a product
- Useful for evaluating new products
- Provides fast measurement results.
1.7 INDUSTRIAL APPLICATIONS OF THE PROJECT
Some of the primary application areas of Charpy and Izod test are listed below:
- Materials testing
- Construction of pressure vessels
- Determining the impact strength of bridges
1.8 PROJECT ORGANIZATION
The work is organized as follows: chapter one discuses the introductory part of the work, chapter two presents the literature review of the study, chapter three describes the methods applied in the experiment, chapter four discusses the results of the work, chapter five summarizes the research outcomes and the recommendations.
The Title Page should be the first section of your project “Dual Impact Testing Machines”, providing essential details like the project title, your name, your supervisor’s name, the institution, and the submission date. After that, the Abstract offers a brief summary of your project, touching on its purpose, methods, results, and conclusions in 150-300 words. The Acknowledgments section is where you can thank those who supported your research, such as your supervisor, peers, or organizations that provided resources.
Next, the Table of Contents organizes the Dual Impact Testing Machines by listing its chapters and sections, along with page numbers for easy reference. The List of Figures and List of Tables help guide readers to specific visual elements like graphs, charts, or tables included in the document. There should also be an Abbreviations and Glossary section to explain any specialized terms or acronyms, making the content clearer to readers unfamiliar with the technical language.
The main body of the Dual Impact Testing Machines should start with the Introduction, which provides background information, outlines the research problem, states your objectives, and gives a brief overview of your research methods. Following that, the Literature Review offers an in-depth look at previous research relevant to your project, identifying gaps your study aims to address. The Methodology section then explains the research design, tools, and data collection methods you used to conduct the project and analyze the data.
In the Results and Discussion section, you present your findings and discuss them in relation to the Dual Impact Testing Machines research questions or objectives, often using tables or charts to help explain the data. The Conclusion summarizes the key results, discusses their implications, and suggests possible directions for future research. You may also include recommendations based on your findings, offering practical advice for improvements or applications. Finally, the Dual Impact Testing Machines project should include a References or Bibliography section to list all the sources you cited, as well as Appendices for any additional material. A Statement of Originality is often included to confirm the authenticity of your work