(356). Start a Precision Farming Business

Precision farming or precision agriculture is a farming management concept based on observing and responding to intra-field variations. Precision Farming or Precision Agriculture is a concept of using the new technologies and collected field information, doing the right thing, in the right place, at the right time. Collected information may be used to more precisely evaluate optimum sowing density, estimate fertilizers and other inputs needs, and to more accurately predict crop yields. It helps in avoiding unwanted practices to a crop, regardless of local soil/climateconditions, i.e., it reduces labour, water, inputs such as fertilizers, pesticides etc. and assures quality produce.
Today, precision agriculture is about whole farm management with the goal of optimizing returns on inputs while preserving resources. It relies on new technologies like satellite imagery, information technology, and geospatial tools. It is also aided by farmers’ ability to locate their precise position in a field using satellite positioning system like the GPS or other GNSS.


What precision farming is and is not

A small fraction of India’s current expenditure on ‘precision farming’ can purchase the real thing

‘Precision Farming’ is a term that appears to be misunderstood by agriculture scientists in India. This name is indiscriminately used by agricultural institutions to seek funding for their project activities. There is a need to create awareness and present information on precision farming as it is understood in developed countries.
Several steps in scientific farming have been used for more than half a century in western agriculture. They include laser planning of land; chiselling; minimum tillage; complete analysis of soil samples for 12 or more essential plant nutrients; fertilizer placement in the root zone; mechanical and chemical control of weeds; integrated pest management; siphon irrigation; drip and micro-sprinkler irrigation; and ploughing back crop residues in the soil. Indian farmers with their limited knowledge and scanty practical experience on scientific methods of farming are still to adopt most of these steps in their farming operations.
However, the concept of precision farming is outside the domain of these techniques. It is strictly based on the Global Positioning System (GPS), which was initially developed by U.S. defence scientists for the exclusive use of the U.S. Defence Department. The unique character of GPS is precision in time and space. In 1983, President Ronald Reagan released it to various civilian uses such as navigation, earthquake monitoring, and synchronisation of telecom networks.
The initiation of GPS into farm operations is less than a decade old. Its use is fast spreading to all aspects of farm operations and beyond. Some of the areas in agriculture where precision farming is taking hold with implications for the economics of farming are listed below. Since the subject is vast and fast growing, it is difficult to compile a complete list of applications in this limited presentation.

1. Soil Fertility Management
a) This involves dividing a field into several small and equal divisions using the sub-inch accuracy of GPS. To do this, the tractor is fitted with a dish antenna to receive signals from satellites, which are recorded on a tractor-mounted computer. Soil samples are mechanically taken from each sub-division and this process is technically known as “Grid Sampling.”
b) Samples are tested in a modern soil testing laboratory for about 17 parameters including physical and chemical characteristics of the soil and recorded.
c) Using the test results of this grid samples, composite colour–grams are created through computer simulation on each of the17 parameters for the entire field (see Figure 1).
d) The colour-grams are stored as stencils in the computer for various functions. One of the chief among the functions is balancing soil fertility of the field with respect to all major, secondary, and micro- nutrients. This is achieved through tractor-mounted computer guided spreader equipment capable of reading the variability of fertility from colour-grams. Fertilizers are then automatically applied at variable rates only to where they are needed as indicated by the colour-grams.
In practical experience, the savings in fertilizer cost from this variable rate application alone will more than offset the cost involved in the programme. Besides, use of this method brings about greater uniformity of soil fertility in the field, leading to maximum economic yields of crops, which could not be achieved through other methods.

2. Other applications of the GPS-generated grid method
The grid generated by GPS is stored in the computer and used for site-specific evaluation and monitoring of numerous functions involved in crop production to achieve peak efficiency in farm management. Some of these areas are listed below:
a) Planting variable rates of seed to maximise crop yields from the specific fertility of each grid section.
b) The GPS-guided grid system helps to apply variable rates of herbicides and pesticides to achieve maximum control of weeds and pests. This not only reduces the cost of chemicals used, but also improves efficiency of pest control and protects environment.
c) This enables the farmer to side dress application of fertilizers at variable rates to meet the specific requirement of each grid section, thus improving fertilizer use efficiency.
d) Irrigation rates are tailored to the requirement of each grid area improving water use efficiency.
f) Scouting for pest information and pest control are achieved on a site-specific basis.
g) At harvest, crop yield information is recorded on a grid section basis. Solutions for differences of yield between grid sections are sought through computer analysis of all variables controlling yield of crops that are stored in the computer. Based on this, the farmer fine-tunes his or her variable rates of application of fertilizers and other impacting parameters for use in future cropping programmes.
h) One other great advantage of the GPS system of farming involves the ability of the farmer to achieve greater efficiency in time control of his farm operations. This is because the GPS system enables him to operate his equipment round the clock irrespective of factors restricting visibility such as fog, darkness, or even showers. The sub-inch accuracy of GPS-based operations provides the farmer maximum efficiency with equipment operations.
India is reported to spend hundreds of crores of rupees in projects called ‘Precision Farming.’ A small fraction of the current expenditure on so-called precision farming can purchase the real thing, including all hardware and software involved. The question is: when will it ever happen in India?

Overview of Precision Farming


TAMIL NADU PRECISION FARMING PROJECT
  • Precision Farming Project was started in Tamil Nadu first in Dharmapuri district during 2004-05. It was implemented initially in 250 acres in 2004-05, 500 acres in 2005-06 and 250 acres in 2006-07. Government of Tamil Nadu had assigned this task to Tamil Nadu Agricultural University.
  • An amount of Rs. 75,000/- for installation of drip irrigation and Rs. 40000/- for crop production purposes were given. The first crop has be taken up under the total guidance of Scientists from the University. Subsequent 5 crops had been taken up by the farmers in 3 years.
  • In the first year, farmers were not ready to accept this project initially because of their frustration in Agriculture due to continuous drought in that area for 4 years since 2002. But after seeing the success of the first 100 farmers and high market rate of the produce from this scheme, farmers started registering in large numbers for the second (90 per cent subsidy) and third year (80 per cent subsidy)
                   


Technologies

1.Satellite based Soil Maps:
Fertilizer application and soil management based on the Satellite based Soil Maps. This technology helped in identifying the exact nutrient status of the particular area soil.


2.Chisel ploughing:

Due to the usage of tractor for many years and flood irrigation practices, the upper layer of the soil has become hard up to 45 cm. It affects the proper drainage and aeration of soil. Chisel ploughing help overcoming this problem. It is recommended yearly two times
               
  


3.Drip Irrigation:
  • Drip laterals are installed in a spacing of 1.5 x 0.6 m. It has many advantages.
  • Reduced water and fertilizer requirement per acre
  • Less weed infestation due to the dryness of the top soil
  • Reduced flower and fruit drop due to proper moisture maintenance and soilaeration
  • Less infestation of disease and pests due to the maintenance of relativehumidity less than 60 per cent
  • 40 per cent increased aeration helps increased root growth

          
       
4. Community nursery :
Community nurseries were developed by the precision farmers with the guidance of the university scientists to produce 100% healthy vegetable seedlings.

          community nursery_2.gif

5.Pest and disease control:

Precaution measures based on the climatic conditions and need based application of pesticides and fungicides helped in reducing the one third of expenses.

Marketing arrangements

  • Scientists helped in marketing the produce at a higher price. Based on the market demand crops are selected and cultivated in right season
  • With the help of TNAU experts, an exclusive logo has been developed for the produce marketed from Precision Farming Areas.
  • Because of the quality, all the produce from Precision Farming areas are fetching premium price in all the markets

         

Precision Farming Technologies for:



(355). Start a Metal Art Making Business
Metal art is where you turn metal into sculptures. Metal art is labor intensive, but the end results can be breathtaking. Metal sculptures range in size from small enough to fit on a table to towering creations designed to decorate a yard. There is a market for these metallic creations, which can be sleek and modern or rustic in their charm.
Metal art work is an on-going trend and is one of the fastest growing craft occupations in today's industrial market. A metal can be used to create designs of any thing right from geometric structures, stars, animals to suns. Metal art work is usually weather proof and durable. It can also be put for indoor displaying and can be used as a yard or garden art. 
 
Metal art work is popularly used for livening up the wall spaces Today, metal art work for walls is obtainable in a broad collection of prices, styles, and sizes. This kind of metal art work is very beautiful and attractive. Metal art work can be common or rural and sometimes, even modern.
In metal art work, one must keep in mind the color palette of the area so as to set the art according to it. The materials used in metal art work should not collide with the active set of decorations. But, they should act as an equilibrate or an original centerpiece for the current decor. Basically, it needs to compliment the theme of the area.
Metal art work refers to executing work of an art on alloys such as bell metal, white metal, bronze, and metals such as silver and copper. It is also considered to be a differentiating class of artistic work. Brass is widely used in metal art work for producing different kinds of household materials namely, crockery, trays, and bowls. Brass lacquering and engraving are vital procedures in such type of work.
Metal artists also make use of white metal with bronze and silver for electroplating which is another form of metal art work utilized for decoration purpose. There are different manners of performing metal art work. The lost wax process and the procedure of pouring melted metals into molds and later soldering them are the renowned ways of creating metal art work.
CNC Metal Art Work www.plasmacam.com 
Entrepreneurial Careers in Metal Art
The field of metal art includes a variety of artistic renderings, signs and sculptures produced using metal as the primary medium. Unlike certain other categories of artists, artists who specialize in metal art have a number of entrepreneurial avenues at their disposal.
Some metal artists focus on selling sculptures to building owners and other interests. As a piece of fine art, the intention is that their work will enhance the aesthetics of courtyards, plazas, lobbies or other large areas. The problem is that the market for high-end metal art is extremely limited and is usually restricted to well-known players in the art world.
However, a more accessible (and reliable) line of work for metal art entrepreneurs is the creation of custom, functional art for personal or commercial use. These products can range from personalized metal signs to wall hangings or hat racks. The key is that the products have a functional purpose and have been created with an artistic flair.



Instructions

    • 1
      Root through your garage or visit your local salvage yard to find a piece of metal. You can also use metal from old pieces of furniture, construction supplies or fencing debris. Any size, shape or texture will do.
    • 2
      Prepare your metal by hosing off any dirt and using a paint scraper or razor blade to remove caked-on gunk, stickers or other debris.
    • 3
      Examine your piece. Lay the metal piece in front of you and figure out what it looks like (for example, a bird's head, a frog, a sun, a star). Move it into different positions to see which angle works best. You may need to alter the piece to make it into the art you want. Some metal pieces will need no further alterations while others will need to be cut.
    • 4
      Cut if necessary. Use snips to cut off any loose ends or edges or to make the metal into the shape of your artwork.
    • 5
      Smooth any rough edges with a metal file.
    • 6
      Paint as desired. Use weatherproof spray paint or brush-on paint to give your metal a base coat of color. Add any desired borders, spots or shading with a contrasting color. Finish it off with small details using paint pens or a small brush. Details may include eyeballs, stripes, swirls or other designs.



Tips & Warnings

  • Attach a hook on the back of the metal artwork by using a quality craft glue and picture-frame hooks. If the back of your metal is uneven, you may be able to loop and attach wire through parts of it so you can hang it.
  • Metal can be incredibly sharp. Wear protective gloves while cutting and filing it.
    Machine Manufacturers
    Company Name:AnBang Machinery Make Co.,Ltd (Exporter, Manufacturer)
    Phone:86-0311-83628455
    Fax:86-0311-83655860
    Business Address:No.9,SanJian Road,
    Web Site:www.anbangtieyi.com

MAS-NSE Mobile Trading
With the emergence of smart phones, mobile applications have changed how we live our lives and these apps have also changed how we manage our investment and trading activities too. These apps have helped us to do our activities that we were only able to perform in a stationary environment into something that we can do anywhere, anytime. Along with many activities like banking and shopping, stock trading is also now made that much easier thanks to mobile apps.Though the market regulator has approved mobile trading long ago, trading through mobile is yet to catch up in a big way. Here are some of the apps available for Indian markets.

NSE Mobile Trading:

NSE Mobile Trading system provides a revolutionary application suite featuring comprehensive trading and market monitoring platform. It offers real time streaming quotes, with simple and user friendly interface for all type of users.

Some of the features include Live quotes of all the stocks of the major NSE indices, quotes of your favorite stock list, most active stocks by volume etc. You can download this Android app from Google Play - Nse Mobile Trading

There are other trading apps provided by leading brokerage houses like Kotak Mobile Stock Trader, ShareMobile etc. But these are limited to clients of the respective brokerages, whereas the NSE mobile trading provides quotes and charts without any log-in issues. And, those who are interested in gold price quotes, there is Kitco live which provides live gold prices, market info, charts, news, and more.

Using some of these apps will enable you to access enormous amount of data, which help you to make your trading decisions better, any time and any place.






     

(354). Start a Concrete Roof Tile  Manufacturing
Business  


History of Tiles

Man's basic necessities are food and shelter. When prehistoric man vacated his cave, his first 'house' was no more than a roof of plaited leaves supported by poles. Over the course of time, walls were added to keep out wind and snow, and these walls eventually replaced the poles and supported the roof.
  

The roof, too was changing, and around 5000 years ago the first earthenware tiles were being manufactured in China. They were laid in a pattern known as over and under, not so dissimilar to that brought into Britain by the Romans, 3000 years later.

The first clay tiles were moulded by hand but later use of simple machinery made possible many more variations in shape. These tiles were introduced into Mediterranean Europe and then into Spain, through the Moorish invasion. Despite subsequent changes in design, this Spanish over and under design is still recognisable today.
It was not until the middle of the 16th Century that a one piece over and under tile was produced. This invention originated in Flanders and was known as a pantile.
1844 saw the emergence of the concrete roof tile. Manufactured by the Kroher family. Most of the tiles had little or no colouring and were eminently suitable in the mountains of Bavaria where they were made.
A simple hand operated press was used for making the tiles and a daily output of 125 was eventually achieved. After such a promising beginning it was not until the early 1900's that the first power operated machines were introduced.

TILES TODAY





Application Through Development


Today, through continued development, the modern concrete roof tile offers architects and builders a comprehensive choice of buildings. Variety is available to whatever the application may be
From the steep angles of traditional architecture to the low pitches of modern structures, the concrete roof tile is aesthetically pleasing and technically technically advanced compared to slate, clay or asbestos base roof coverings. Design features include effective weatherlocks and anti-capillary devices to ensure improved protection against the elements.
To complement the main roof tile, a range of fittings and accessories have evolved including Ridge, Verge, Valley and Hip tiles.

The permutations available using these accessories, together with the profiles and colours of concrete roof tiles, are endless and offer the designer unrestricted scope to produce buildings with roofs that are both individual and spectacular - a far cry from those early days in Bavaria.

RAW MATERIALS
The Essentials 

The basic raw materials used in the manufacture of coloured concrete roof tiles are sand (quarried or river), cement, colour pigment and water. The production of concrete roof tiles adds high value to these economical and readily available materials and as a result, the popularity of the product continues to grow in both established and developing countries alike.

Sand 


Most countries are fortunate in that they have ample deposits of sand that is suitable for producing concrete tiles. These sands will contain a balanced distribution of coarse and fine particles ranging from 4mm downwards. The coarse particles provide strength and the fine particles provide a close, textured surface finish. Where natural sand deposits are rare, crushed aggregates will provide a suitable substitute and make an equally good tile.
The grain sizes of sand can be checked by separating a sample through a series of vibrating sieves and comparing the results with a classification chart showing the ideal particle grading.
Click on the classification chart above to see the ideal particle grading

Cement


Ordinary Portland cement (surface area 350m2/kg) is most widely available and recommended for general use in the roof tile industry. When a reduced curing period is required, the use of a rapid hardening cement (with an increased surface area of 450m2/kg) is advisable.

PFA (Pulverised Fly Ash / Fuel Ash) may be blended with ordinary Portland cement to produce a less expensive material, Portland PFA cement. Similarly, GGBS (Ground Granulated Blast furnace Slag) blended with ordinary Portland cement, produces slag cement, and either of these blended cements can have advantages in the production of concrete roof tiles.

Colour

In order to simulate the vibrant colours of ceramics or natural stone, the grey of concrete is artificially altered by the addition of colour pigments (synthetic iron oxides). As these pigments colour only the cement, the quantities added are normally calculated on cement weight. The pigment is added as a dry powder or as a liquid and, depending on the colour desired, between 2.5% and 5% is the generally accepted proportion.

Manufacturing Process
Concrete roof tiles are produced by machine, using the principle of extrusion. The basic manufacturing technique is very simple and it is only as production output increases or special effects are required that the process becomes more sophisticated.
Aluminium moulds (pallets - see the image to the right) which form the underneath profile of each roof tile, are coated with a release agent prior to being fed into the entry end of the extrusion machine.

A mortar mix is delivered from a mixing system into the machine extrusion head. This mix is extruded between the pallets and a roller, which is mounted inside the head.
The roller forms the top surface of the roof tile. A trowelling slipper is mounted behind the roller and this serves to further compact the tile and produce a smooth and level surface finish.
The final operation of the tile machine is to cut the tiles to length using a vertical cutting knife.The freshly extruded tiles, still on their own individual pallets, are loaded into racks and placed in heated chambers for curing.
*Click on the diagram to the left to see a larger version of the manufacturing process
The conditions inside the curing chambers are controlled to provide a temperature of 30 ºC to 35 ºC and a relative humidity of 95% (for 24 hour curing).

Once cured, the tiles are separated from their pallets and taken to a stock holding area for a period of up to 28 days. This extra time allows the tiles to further harden before they are despatched to their final destination.


EQUIPMENTS

The TM Series

Our TM Series of tile extrusion machines have outputs ranging from 4 to 25 tiles per minute. These electro-hydraulically powered extruders include the manually controlled TM Minor and the fully automatic TM Major.
Read more on the TM Series here>> 

The M03

The mid-range M03 and M04 extrusion machines have the capacity to produce up to 35 and 100 tiles per minute respectively. Both machines feature fully interchangeable extrusion heads, pneumatically operated vertical cutting knives and tungsten carbide pallet runners and side guides.
Read more on the M03 here>> 

The M04 

The mid-range M03 and M04 extrusion machines have the capacity to produce up to 35 and 100 tiles per minute respectively. Both machines feature fully interchangeable extrusion heads, pneumatically operated vertical cutting knives and tungsten carbide pallet runners and side guides.
Read more on the M04 here>>

The M11

Our continuous action M11 and M12 machines, with outputs in excess of 140 tiles per minute, are the ideal choices for those manufacturers requiring high volumes of roof tiles. Features include our patented constant velocity pallet drive system, fully interchangeable extrusion heads and advance / retard knife positioning.
Read more on the M11 here>> 

The M12


Our continuous action M11 and M12 machines, with outputs in excess of 140 tiles per minute, are the ideal choices for those manufacturers requiring high volumes of roof tiles. Features include our patented constant velocity pallet drive system, fully interchangeable extrusion heads and advance / retard knife positioning.
Read more on the M12 here>> 
Ridge, Rake, Verge, Hip, Plain and Special Tile Extrusion machines

We produce all of the above with outputs ranging from four tiles per minute. 
Contact us for more information >>
Manual, Motor Driven and Fully Automatic Depalleters and Separators

In order to split the cured tiles from the pallets, we have a range of manual, motor driven and fully automatic depalleters and separators. 
Contact us for more information >>


Automatic Handling Equipment


We offer automatic handling equipment that includes single and multi-profile racking systems with operating speeds from 20 to in excess of 140 tiles per minute. Curing rack transportation may be performed by either forklift truck or automatic transfer cars. A first in / first out curing system is also available. 
Contact us for more information >>

Automatic Packing Systems


We supply high speed automatic packing systems designed to operate with several tile profiles at speeds of up to 150 tiles per minute. The finished tiles may be banded or spin wrapped in film and loaded on to wooden pallet boards for storage and transportation. 


AN EXCELLENT BUSINESS OPPORTUNITY

Concrete roof tile is an attractive product of high demand and a product which uses cheap and readily available raw material to produce. The manufacture of concrete roof tiles is hence an attractive and profitable business proposition.

CONCRETE ROOF TILE

The concrete roof tile has proved to be the most popular form of roofing currently used in the building industry throughout the world.
The durability, price, strength and the aesthetic appearance of the tile has made it popular among home owners and architects.
Architects specify the concrete tile not only for its attractiveness but also for the wide range of shapes and colours available.
The concrete roof tile has provided a high quality and low cost solution to beautiful house building.

TILES PROFILES

DOUBLE ROMAN
DOUBLE ROMAN
VICTORIA
VICTORIA
FLAT TILE
FLAT TILE
HOMINI - BOLL ROLL
HOMINI – BOLL ROLL
DOUBLE ROMAN STAR
DOUBLE ROMAN STAR
All tiles are double interlocking types and conform to the various international standards including European Standard BS EN490 – Product Specification, and BS EN491 – Test Methods.
Different standard size profiles can be made with system.
Profiles shown in the page are made on our pallet available on request.
Overall Size: 330 mm x 420 mm
Gauge when interlocked: 300 mm
Weight: 4.2 Kg to 4.9 Kg depending on profile 

Machine Manufacturers

Company Name:Tianjin Yinfeng Machinery Co., Ltd.
Operational Address:Workshop Of North China Geology Exploration Bureau Village 3, Chengzhou Rd., Chenglin St., Dongle Dist., Tianjin, China (Mainland)
Telephone:022-24719372
Fax:022-24718346
Website:http://www.tyfmachinery.com
Website on alibaba.com:http://yfjc.en.alibaba.com

Company Name:Xiamen Brandnew Color Steel Forming Co., Ltd.
Operational Address:5 Fuming Rd., Guanxun Village, Xike Town, Tong'an District, Xiamen, Fujian, China (Mainland)
Telephone:0592-7265128
Fax:0592-5980499
Website:http://www.brandnewrollforming.com
Website on alibaba.com:http://brandnew.en.alibaba.com

Powered by Blogger.