SILICONE EMULSION USED AS RELEASE AGENT FOR RUBBER INDUSTRY

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Silicones are synthetic polymers having an inorganic skeleton of alternate silicone and oxygen atoms, the silicone valences not taken up by oxygen being saturated with organic group and other groups. They occupy an intermediate position between inorganic and organic compounds. Because of this dual nature they have many properties which have made them very useful in many applications. Silicones are produced in several forms including fluids, rubbers and resins. Silicones emulsions are formed from silicone fluids and water with the help of a suitable emulsifier, and find various applications.

The term silicone denotes a polymer with the structural formula (RnSiO(4-n)1/2)m where n is between 0 and 3 and m is 2 or more. It contains a repeating silicone oxygen chain having organic groups R, attached to a significant portion of the silicone atom by silicone carbon bonds. In commercial silicones most of the R groups are methyl, longer alkyl, fluoro alky, phenyl, vinyl and a few others. Silicone fluids the Si-O chain is unbanked.

Silicone fluids are generally, dimethyl polysiloxane, methyl hydrogen polysiloxane or silicones consisting of copolymers of dimethyl siloxane with methyl phenyl, methyl-hydrogen, diphenyl, methyl-alkyl and other siloxanes. Linear poly-dimethyl siloxanes or dimethyl polysiloxanes are the most important of all the silicones. These fluids with hexamethyl disiloxane. For relating low viscosity fluids are manufacured by reacting dimethyl silicone fluids the process is run for several hours at 180oC in glass lined kettles with acid chloride catalysts or at lower temperature with sulphuric acid. Alkaline catalysts are used for the production of high viscosity fluids or gums. Silicone fluids have m.wt. of 2000 to 15000 and viscosities from 10 to 10,000 cps.

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Description

INTRODUCTION
PROPERTIES
SILICONE FLUIDS AND SILICONE EMULSION
DEFINITION AND PROPERTIES OF SILICONES
TYPES OF SILICONE FLUIDS
THERE ARE BASICALLY TWO TYPES
USES AND APPLICATIONS
B.I.S. SPECIFICATION
TYPES OF SILICONE EMULSION
DETAILS OF SILICONE FLUIDS
ENVIRONMENTAL FATE AND EFFECTS:
MARKET POSITION
CONSTRUCTION AND E&E MOST IMPORTANT GROWTH MOTORS
ASIA INCREASING WORLD MARKET SHARE
ELASTOMERS AND SILICONE OILS MOST IMPORTANT PRODUCTS
PRODUCTION AND TRADE
INSTALLED CAPACITY, PRODUCTION AND CAPACITY UTILIZATION
OF SILICONE EMULSION
APPARENT CONSUMPTION OF SILICONE EMULSION
ESTIMATED DEMAND
PRESENT MANUFACTURERS/SUPPLIERS OF SILICON EMULSIONS
BUYERS OF SILICONE EMULSION
FORMULATING, HANDLING & USE FOR SILICONE EMULSION
USE AND HANDLING TIPS
EMULSIFIER TYPES
HOW SURFACTANTS WORK
MICROBIAL CONTAMINATION – EMULSIONS
APPLYING RELEASE AGENTS TO NEW MOLDS
DILUTION LEVELS FOR RELEASE AGENTS
RELEASE AGENTS FOR HIGH-TEMPERATURE APPLICATIONS
RUST INHIBITORS FOR DILUTED RELEASE AGENT EMULSIONS
APPLYING AMINO SILICONE SOFTENERS TO FABRIC
RAW MATERIALS
DOW CORNING DC-203 FLUID
FORMULATION OF SILICONE EMULSION
FORMULATION OF SILICONE EMULSION
OTHER FORMULATION OF SILICONE EMULSIONS
SILICONE OIL EMULSION (MOULD RELEASING AGENT)
FORMULATION – 1:-
FORMULATION – 2:-
FORMULATION OF SILICONE EMULSION (MOULD RELEASE AGENT)
FOR RUBBER INDUSTRIES
FOR PLASTIC INDUSTRIES
FOR PU FOAM
MORE FORMULATION OF SILICONE EMULSION
FORMULATION OF SILICONE EMULSION FOR PU
FORMULATION NO. 1
FORMULATION NO. 2
FORMULATION OF SILICONE EMULSION FOR AUTOMOBILE
FORMULATION OF SILICONE EMULSION FOR STABLE AESTHETIC
PRODUCTS
ANTICAKING AGENTS
PROCESS FLOW DIAGRAM
PROCESS FOR CREATING EMULSION
PROCESS IN DETAILS
EXAMPLES 1 AND 2
EXAMPLES 3 AND 4
EXAMPLES 5 AND 6
EXAMPLES 7 TO 9
EXAMPLES 12 AND 13
PACKAGING HANDLING AND REMOVAL METHOD OF SILICONE EMULSION
MATERIAL SAFETY DATA SHEET FOR SILICONE EMULSION
SECTION I: IDENTIFICATION OF THE SUBSTANCE & THE COMPANY
SECTION II: HAZARDS IDENTIFICATION
EMERGENCY OVERVIEW
POTENTIAL HEALTH EFFECTS:
SECTION III: COMPOSITION/INFORMATION ON INGREDIENTS
SECTION IV: FIRST AID MEASURES
SECTION V: FIRE FIGHTING MEASURES
SECTION VI: ACCIDENTAL RELEASE MEASURES
SECTION VII: HANDLING AND STORAGE
KEEP AWAY FROM CHILDREN.
SECTION VIII: EXPOSURE CONTROLS/PERSONAL PROTECTION
ENGINEERING CONTROLS
EXPOSURE GUIDELINES
SECTION IX: PHYSICAL & CHEMICAL PROPERTIES
SECTION X: STABILITY AND REACTIVITY
SECTION XI: TOXICOLOGICAL INFORMATION
SECTION XII: ECOLOGICAL INFORMATION
SECTION XIII: DISPOSAL CONSIDERATIONS
SECTION XIV: TRANSPORT INFORMATION
SECTION XV: REGULATORY INFORMATION
SECTION XVI: OTHER INFORMATION
ANALYSIS OF SILICONES
COMMON METHODS APPLIED TO THE ANALYSIS OF SILICONES
TABLE: TYPICAL 29SI NMR CHEMICAL SHIFTS
PLANT LAYOUT
PRINCIPLES OF PLANT LAYOUT
PLANT LOCATION FACTORS
EXPLANATION OF TERMS USED IN THE PROJECT REPORT
PROJECT IMPLEMENTATION SCHEDULES
SUPPLIERS OF RAW MATERIALS
SUPPLIERS OF SILICON OILS
SUPPLIERS OF CARBOPOL
SUPPLIERS OF PROPYLENE GLYCOL
SUPPLIERS OF PACKAGING MATERIALS
SUPPLIERS OF SODIUM HYDROXIDE
SUPPLIERS OF PLANT AND MACHINERY
SUPPLIERS OF COLLOID MILL
SUPPLIERS OF STAINLESS STEEL STORAGE VESSEL
SUPPLIERS OF FILTER
SUPPLIERS OF PACKAGING MACHINES
SUPPLIERS OF LABORATORY EQUIPMENT

APPENDIX – A:

1. COST OF PLANT ECONOMICS
2. LAND & BUILDING
3. PLANT AND MACHINERY
4. FIXED CAPITAL INVESTMENT
5. RAW MATERIAL
6. SALARY AND WAGES
7. UTILITIES AND OVERHEADS
8. TOTAL WORKING CAPITAL
9. COST OF PRODUCTION
10. PROFITABILITY ANALYSIS
11. BREAK EVEN POINT
12. RESOURCES OF FINANCE
13. INTEREST CHART
14. DEPRECIATION CHART
15. CASH FLOW STATEMENT
16. PROJECTED BALANCE SHEET

Additional information

Plant Capacity

500 KG/Day

Land & Building

(1000 sq.mt.)

Plant & Machinery

US$.65714

Rate of Return

39%

Break Even Point

62%