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    Detailed Project Report on Radiator Coolant

    Detailed Project Report on Radiator Coolant
    Detailed Project Report on Radiator Coolant
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      RADIATOR COOLANT

      [EIRI/EDPR/1077] J.C.: 9721XL


      INTRODUCTION

      What is Radiator Engine Coolant?

      There are two types of Coolant.

      1) Engine Coolant

      2) Machine Coolant

      Engine Coolant is a mixture of various types of glycols and highly formulates & researched various corrosive inhibitors. De-mineralized water is mixed with the coolant as per suggestion and used in the engine-radiator cooling system to remove excess heat of engine.

      Why Coolant is required?

      The purpose of Coolant is to remove excess heat produced from the engine operation, to control corrosion and scaling, antifreeze and boil over the radiator water. So many years ago water was used to reduce the temperature. Water is an effective heat transfer fluid but it boils at very low temperature. Highly corrosive and format scaling. It impure the cooling liquid by accumulating corrosive and scaled waste. So it chocks up tubes of radiator and finally engine overheats. The complexity is increased with the use of aluminum alloys in the head, water pump and radiators.

      To protect against the heat, corrosion of aluminum and other metals & scaling; coolant creates a special protective film on all metals. Our this specially researched protective film have important role in the cooling system. This special corrosion inhibitors film technology is only researched and used by us in India.

      Performance Advantage Coolant:

      Coolants industry need scientifically advance research lab. The industry also need technically dynamic staff having experienced scientist and chemist. Coolant must be little bit different from other coolant because it is always thick and exceeds all major automotive performance protection international specification. It protects whole cooling system metals like Aluminum, Steel, High Lead Solder, Cast Iron, Copper, Brass, Low Lead Solder etc. against rust, surface and pitting corrosion. It is eco friendly and fully synthetic formulated coolant.

      It incorporates state of art organic acid technology (OAT) in an Ethylene Glycol base for protection of whole cooling system metals including Aluminum. Most Coolant does not contain phosphates, silicates, borates, nitrates, nitrites and amines. It contains a high quality defoamer and does not harm gaskets, hoses, plastics or original vehicle paint.

      The internal combustion engine is a heat engine, in which chemical energy of fuel is converted into heat energy by combustion and this heat energy is in trun converted into mechanical energy. Approximately one third of the heat energy is converted into mechanical energy, about one third is removed by the cooling system and one third by the exhaust system. There are minor losses due to friction, radiation and the lubrication system. For each 3.8 litres of fuel burned about 6.32 M J must be rejected to the cooling system. If this heat is not removed, the engine will be destroyed.

      The cooling system consists of a (heat exchanger, thermostat, coolant pump, coolant jacket surrounding the cylinders and combustion chambers and various rubber hoses serving as flexible connections between the radiator and engine to allow complete circulation of the coolant.

      The coolant pump circulates the coolant through the engine coolant jacket, where it picks up heat dissipated by the combustion chambers & cylinders and then through the radiator (heat exchanger), allowing the heat to be transferred to the outside air. The coolant is then returned to the engine block and the cycle is repeated.

      COOLANT

      The coolant used in this cooling system must fulfill the requirement of the engine, which is baiscally the removal of one third of heat produced during combustion of fuel.


      COST ESTIMATION

      Plant Capacity            500 Ltr./Day

      Land & Building (1000 sq.mt.)    Rs. 1.11 Cr

      Plant & Machinery                    Rs. 68.20 Lac

      Working Capital for 3 Months    Rs. 69.49 Lac

      Total Capital Investment          Rs. 2.74 Cr

      Rate of Return                          18%

      Break Even Point                      68%


      CONTENTS

      INTRODUCTION

      THERE ARE TWO TYPES OF COOLANT

      WHY COOLANT IS REQUIRED?

      PERFORMANCE ADVANTAGE COOLANT:

      GLYCOL BASED ANTIFREEZE COOLANT

      MANUFACTURING PROCESS INVOLVES FOLLOWING MAJOR STEPS:

      REQUIREMENT OF COOLANTS

      DISADVANTAGES OF WATER:-

      WORKING PROCEDURE:-

      ENGINE COOLANT:-

      USES AND APPLICATIONS

      SERVICE PERIOD

      PERFORMANCE OF COOLANT

      FREEZING PROTECTION:-

      BOILING POINTS:-

      COOLANT LOSSES:-

      FOAMING:-

      EFFECT ON ELASTOMERS:-

      EFFECT ON POINT:-

      CORROSION AND INHIBITORS:-

      SERVICE LIFE:-

      PHYSICAL PROPERTIES OF ETHYLENE GLYCOL

      PHYSICAL PROPERTIES OF ACCEPTABLE ANTIFREEZE COMPOUNDS

      B I S SPECIFICATIONS AND REQUIREMENTS

      MARKET POSITION WITH FUTURE DEMAND

      AUTO POLICY OF GOVERNMENT OF INDIA

      AUTOMOBILE INDUSTRY PERFORMANCE DURING 2006-2007

      LIST OF MANUFACTURERS

      INDIA AS AN ASIAN BASE:-

      PRESENT MANUFACTURERS

      RADIATOR COOLANTS

      MANUFACTURING PROCESS

      A. ORGANIC COMPOUNDS

      B. INORGANIC COMPOUNDS

      C. SILICONS

      FORMULATION- - (VERY GOOD QUALITY ENGINE COOLANT)

      MANUFACTURING PROCESS

      ENGINE COOLANT (MEDIUM QUALITY FORMULATION):-

      ENGINE COOLANT (CHEAPER QUALITY) FORMULATION:-

      SODIUM MERCAP TO BENZOTHIAZLE - (SOD. MBT)

      SODIUM SILICATE

      DIMETHYL SILCONE:- (SILICONE OIL)

      TRISODIUM PHOSPHATE:- (TSP)

      MINERAL OIL

      PLANT SKETCH FOR ENGINE COOLANT MANUFACTURING

      ENGINE ANTIFREEZE COOLANT COMPOSITION

      ANTIFREEZE COMPOSITIONS

      EXAMPLE 1

      EXAMPLE 2

      EXAMPLE 3

      EXAMPLE 4

      CORROSION INHIBITING COOLANT COMPOSITIONS

      COOLANT INHIBITOR CONCENTRATE

      EXAMPLE 1

      PROCEDURE

      EXAMPLE 2

      PROCEDURE

      EXAMPLE 3

      LIQUID COOLANT COMPOSITIONS WITH ANTI-CORROSIVE PROPERTY CONTAINING MAGNESIUM AND CALCIUM COMPOUNDS

      THE TEST RESULTS ARE SHOWN IN TABLE 1.

      ANTIFREEZE COOLANT COMPOSITION HAVING HIGH HEAT-OXIDATION RESISTANCE

      EXAMPLES 1-6

      PREPARATION OF AN ANTIFREEZE LIQUID

      COMPARATIVE EXAMPLES 1-7

      MATERIAL OF CONSTRUCTION OF PLANT & MACHINERY

      1. REACTION VESSEL (JACKETED):-

      2. PIPE LINE FILTER:-

      3. STORAGE TANKS/WEIGHING, FILLING TANKS:-

      QUALITY TESTING OF ETHYLENE GLYCOL

      REQUIREMENTS OF COOLANT:-

      GENERAL REQUIREMENTS:-

      COLOURATION OF LIQUID:-

      SPECIFIC REQUIREMENT:-

      KEEPING QUALITY:-

      PACKING & MARKING:-

      PACKING:-

      MARKING:-

      CAUTIONS ON HANDLING:-

      BIS CERTIFICATION MARKING:-

      SAMPLING:-

      TABLE 1 REQUIREMENTS FOR ANTIFREEZE COOLANTS

      PLANT LAYOUT FOR ENGINE COOLANT MANUFACTURING UNIT

      PROJECT IMPLEMENTATION SCHEDULE

      PROCESS FLOW SHEET

      MANUFACTURERS & SUPPLIERS OF RAW MATERIALS

      DISTILLED WATER

      SODIUM SILICATE

      WHITE MINERAL OIL

      PLANT AND MACHINERY SUPPLIERS

      REACTION VESSEL

      OIL STORAGE TANKS

      LABORATORY EQUIPMENT AND LAB TESTING EQUIPMENT


      APPENDIX – A:

      01. PLANT ECONOMICS

      02. LAND & BUILDING

      03. PLANT AND MACHINERY

      04. OTHER FIXED ASSESTS

      05. FIXED CAPITAL

      06. RAW MATERIAL

      07. SALARY AND WAGES

      08. UTILITIES AND OVERHEADS

      09. TOTAL WORKING CAPITAL

      10. TOTAL CAPITAL INVESTMENT

      11. COST OF PRODUCTION

      12. TURN OVER/ANNUM

      13. BREAK EVEN POINT

      14. RESOURCES FOR FINANCE

      15. INSTALMENT PAYABLE IN 5 YEARS

      16. DEPRECIATION CHART FOR 5 YEARS

      17. PROFIT ANALYSIS FOR 5 YEARS

      18. PROJECTED BALANCE SHEET FOR (5 YEARS)

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