Detailed Project Report on HDPE Mono Filament Nets

Detailed Project Report on HDPE Mono Filament Nets

HDPE MONO FILAMENT NETS

[EIRI/EDPR/1398] J.C. 175


INTRODUCTION

A tangle of monofilament fishing line. The most common colorless variety can be seen. Monofilament fishing line (shortened to just monofilament) is fishing line made from a single fiber of plastic. Most fishing lines are now monofilament because monofilament fibers are cheap to produce and are produced in a range of diameters which have different tensile strengths (called "tests" after the process of tensile testing). Monofilament line is also manufactured in different colors, such as clear, white, green, blue, red, and fluorescent.

Monofilament is made by melting and mixing polymers and then extruding the mixture through tiny holes, forming strands of line, which is then spun into spools of various thicknesses. The extrusion process controls not only the thickness of the line but its test as well.

History

DuPont made public in 1938 that their company had invented nylon. This new invention was the first synthetic fiber, fabrics that are commonly used in textiles today. In 1939, DuPont began marketing nylon monofilament fishing lines; however, braided Dacron lines remained the most used and popular fishing line for the next two decades, as early monofilament line was very stiff or "wiry", and difficult to handle and cast. Early monofilament did, however, have good knot strength and very low visibility to the fish, creating a small loyal following among fishermen. In 1959 DuPont introduced Stren, a thinner and much softer monofilament line that could be used in a large range of reels, including newly introduced spinning and spin casting tackle. Stren's monofilament lines soon became a favorite with many fishermen because of its overall ease of use and it spawned a whole host of imitators.

New materials, e.g., Spectra or Dyneema, are finding growing usage as fishing lines. Polyvinylidene fluoride sold as fluorocarbon is very much like nylon monofilament, but has several advantages. Optical density is lower, which makes the line less easily discernable. The surface is harder so it is more resistant to sharp fish teeth and wear. Furthermore PVDF does not take up water and it is resistant to UV-light. It is denser than nylon, too, which makes it sink faster and it will not float on the water surface.

Dyneema is also becoming very popular and it is much stronger, but it is used mostly as a braided fishing line. Because the elastic stretching is only a fraction of that of nylon monofilament, the contact with fish or bait is more direct. It is often used for deep water fishing from boats because lower diameters are used, which give less resistance to currents, and the low stretch makes bites easily detectable.


COST ESTIMATION

Plant Capacity            77,760 sq.mt/Day

Land & Building (1500 sq.mt.)    Rs. 1.53 Cr

Plant & Machinery                    Rs. 3.35 Cr

Working Capital for 2 Months    Rs. 5.01 Cr

Total Capital Investment          Rs. 10.11 Cr

Rate of Return                          28%

Break Even Point                      48%


CONTENTS

INTRODUCTION

WEAVING MACHINES (LOOMS)

INDIAN STANDARD

FLOW SHEET DIAGRAM OF THE PROCESS

MANUFACTURERS/SUPPLIERS OF HDPE MONOFILAMENT NET

RELATED INFORMATIONS

MANUFACTURERS/SUPPLIERS OF PLANT & MACHINERY

MANUFACTURERS/SUPPLIERS OF RAW MATERIALS


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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