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Construction And Fabricated Of A Mobile Deep Freezer

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83 Pages
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9,789 Words
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MECHANICAL ENGINEERING

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ABSTRACT

Man has been so used to electricity that he cannot do without it. The absence of electricity causes a lot of sadness in our daily lives. Due to this reason I decided to work on a by rechargeable lamp as my project.
The project is to see how one can construct a source of high without really generating is from an A.C source. I decided to write on this project in order to saw how I can implement it during and after school for home and marketing purpose.
This project is a lamp that was a 6v rechargeable battery to generate light which is very useful to man both at home and otherwise. It is a stem that is very portable and very effective mostly t might after which it has been charged.

TABLE OF CONTENT

Title Page
Approval Page
Dedication
Acknowledgement
Abstract

CHAPTER ONE:
Introduction
1.1 General Description of the Project
1.2 Objective of the Project
1.3 Significance of the Project
1.4 The Report Layout

CHAPTER TWO:
Literature Review
2.1 Historical Background of the Project
2.2 Theories and Model Relevant to the Design
2.3 System Component Description

CHAPTER THREE:
System Design
3.1 Description of the System Building Blocks
3.2 System Specification and Block Diagram Development into Working Circuit and Power Supply Unit.
3.3 Description of the Overall Operation of the System
3.4 Design Calculation / Component Analysis
3.5 Component List
3.6 Complete Circuit Diagram of the System

CHAPTER FOUR
Implementation Testing and Result

CHAPTER FIVE
Cost Analysis
Problems Encountered
Recommendation and Conclusion
References

CHAPTER ONE

INTRODUCTION
The main objective of this project is to construct and fabricate a deep freezer. The purpose of a deep freezer is to extract as mush heat from the cold body as possible with the expenditure of as little work as possible. In the refrigeration cycle, a substance called the refrigerant is compressed, cooled and then expanded. In expanding the refrigerant absorbs heat its surrounding (the cooling compartment) to provide refrigeration. After the refrigerant absorbs heat from the source, the cycle is repeated.
The second chapter of these write-up ushers in a precise review of the history and literature of refrigeration from ancient man to modern day or contemporary man (i.e modern refrigerating equipment).
Chapter three deals in detail on the methods of calculating refrigeration equipment. Chapter four sequentially gives the overview of the factors, qualities and properties considered in choice decision of the material components (both standard/ranging engineering materials) used for the fabrication and the steps undergone in the assembly of the components to form the refrigerating equipment.
The fifth chapter analysis the material and labour cost incurred in the course of undertaking this project. Chapter six, summmarily is a low down of the maintenance and use instructions to be strictly adhered to in order to make the most effective, economic and efficient use of the refrigerating equipment as well as enable the equipment complete its service life. There is also a provision in this part for the notification of the usual defects observed or experienced during use and the corresponding panacea for them. Included is the reference for future consultancy which helps the student or reader who decides to embark on further research or a fact finding mission on innovations that may add as a filling to this work or to the topic as a whole.
This write-up within its scope is moderate sufficient to the educate the reader on the design and fabrication of a deep freezer.

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