Showing posts with label Construction. Show all posts
Showing posts with label Construction. Show all posts

Monday, October 22, 2012

What is Reverse Engineering?

What is Reverse Engineering?


By Sian Savage


The clue is in the name when it comes to reverse engineering. This is a process of finding out the technological principles and mechanics of a device or item through examining the structure, function and operation.

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Often reverse engineering involves scanning an item in order to recreate a perfect 3d replication. Therefore, 3D scanning technologies also come into play, these can include both white light scanners, 3D scanners and CMMs.

Basically an item or device is taken and stripped down layer by layer with each layer being analysed until the entire workings and function of the device is known. This was the item can be remade or the original can even be improved.

The method of reverse engineering has been used quite a lot in the military. One of these examples is the design of the jerry can. During the Second World War the British army noticed that the German's jerry cans were of a better design and build than their own. So, they captured a few and used reverse engineering to discover how they worked etc.

As jerry cans were actually a German invention called Wehrmachtskanister, the English name 'jerry can' came about because they were stolen from Jerrys (Germans).

There are several reasons why reverse engineering is a good idea. These include product analysis, digital correction, military surveillance and for learning purposes. By working backwards we can see how an item worked when completed and then go backwards to see how this comes about, rather than the traditional route of starting from nothing and working up.

Article Source: http://EzineArticles.com/?expert=Sian_Savage

http://EzineArticles.com/?What-Is-Reverse-Engineering?&id=5413096

Monday, October 15, 2012

What is Asbestos?

What is Asbestos : What are the dangers of asbestos and where can it be found in the home? Information on what to do if asbestos is found in the home and how it should be removed.


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The Dangers of Asbestos


Author:Asbestos Removal Expert


Asbestos is now completely banned in the UK, but it was widely used as a building material from the 1950's until the mid 1980's and it can be found in buildings constructed as recently as 2000.

In the home, asbestos was commonly used for lagging pipes, in insulation boards and mixed with other materials to make roof and floor tiles. It was also a popular choice for garages and other outbuildings.

It was banned because it was recognised to be a serious health hazard, and it is now responsible for about 4000 deaths each year and many cases of debilitating illness. Today, the people most at risk are those whose work brings them into direct contact with asbestos such as builders, heating engineers, roofers and demolition workers.

The danger comes from microscopic asbestos fibres that become airborne when asbestos, or a material containing asbestos, is disturbed or damaged. If large numbers of these fibres are breathed in they can remain undetected in the lungs, usually for more than 20 years, before causing serious lung diseases including asbestosis, lung cancer and mesothelioma, a cancer that affects the membranes covering the lungs.

What should you do if you find asbestos in your home?

The most important thing is to leave it alone. If the asbestos is in good condition, normally hidden from view, and not likely to be accidentally damaged it won't pose an immediate danger. But if you need to disturb it, perhaps to carry out repairs or alterations, the safest option is to get it removed. Not all asbestos is easily recognisable so if you come across any material that you are not certain about treat it as though it is asbestos unless an expert tells you otherwise.

How can you get asbestos removed?

Some types of asbestos, including asbestos lagging, sprays and coatings must only be removed by an asbestos removal contractor licensed by the Health and Safety Executive. If you want to remove a less dangerous type of asbestos yourself it will need to be sealed in strong, clearly labelled plastic bags and disposed of at a waste site licensed to accept asbestos. For your own protection you are strongly advised to wear disposable clothing and a suitable dust mask. It's also important to keep any dust to a minimum and to isolate the work area so asbestos fibres cannot contaminate other parts of your home. If you have any doubts about your ability to do this it will probably be safer to call in a reputable asbestos removal contractor.

How can you find a specialist asbestos removal company?

For any type of domestic asbestos removal only use an approved contractor who is licensed by the Health and Safety Executive. To save time and wasted phone calls get an online asbestos removal quote from a website that does the checks for you and only deals with approved contractors.

Article Source: http://www.articlesbase.com/ask-an-expert-articles/the-dangers-of-asbestos-2638383.html

About the Author

Get a FREE no obligation quotation for your asbestos removal job. Obtain the best price by comparing quotes through this fast, easy and free no obligation online service. Visit http://www.asbestosquotation.co.uk today!

What is pool grout?

What is pool grout and how pool grout can do good to us? Find out more an overview about pool grout here.


Author:deepak darji


Pool Grout

In order to replace pool tiles then individuals will have to use pool tile grout. The main issues in selecting a grout are the level of the project and preferred appearance of the finished job. The most suitable material to use when tiling or repairing the tiles of a pool are water-resistant, sand epoxy grout or cement pool tile grout, as it will hold the tile in place when the pool is filled with water.

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Types of Grout :-


Two main kinds of Grout that are commonly used when pools are tiled are :-

• The Epoxy grout, and

• The Classic Portland Cement pool tile grout.

The Epoxy Grout is tougher than cement and resistant to discoloration as well as extremely lasting. Conversely, this type of grout is far more expensive that cement, therefore, for comprehensive pool overhauls, then it is much more economical to use concrete grout. When there is a minor project, then one may recommend that epoxy grout is used, as this type of grout has a shelf life that is almost indefinite.

Pool Tile Repair Products:-

Once you are going to grout a pool, then there are some tile repair products that is paramount for use; so that durability is achieved. A water-resistant grout, is a key material to be used, you may also use the epoxy grout since it is naturally waterproof and is a specialized grout for this purpose.

An additional thought that should be observed when selecting a pool tile grout is the colour grout that will be used. Having a well-kept pool increases the value of the property, however it can be very different if the reverse is true and also extremely unsightly. In view of the fact that grout loses colour eventually and can become discoloured, therefore is pool tile repairs are done, then it is extremely likely that the colour will be mismatched with the original. In order to avoid a situation where the colour is mismatched then, it is recommended that the entire pool is retiled.

When repairing pool tiles where the gaps to be grouted is greater than ¼ inch, that is approximately 6.4 mm, then it is wise to use sand with the grout as this will assist in holding the tile much firmer.

To remove the tile grout can be done by the normal homeowner, provided that they use the right tools. Grout removal tools are :-

- A hammer and screwdriver, as together they can carve away at the grout.

- A scraper, this tool is very useful in removing the grout.

- A power grinder is an efficient tool which works very quickly and gets the job done in a reasonable timeframe.

Article Source: http://www.articlesbase.com/home-improvement-articles/pool-grout-5826686.html

About the Author

Know more about pool grout and the types of grout then I have written here about Pool Tile Repair Products.

Wednesday, October 10, 2012

What is Concrete Acid Stain?

What is Concrete Acid Stain?


Author:Rusin Medical


When you think of concrete, generally you might envision a pale gray color such as on a porch, sidewalk or driveway. Fortunately concrete acid stain allows you to mix it up and change that dull color from gray to a more earthy brown, tranquil blue, or minty green.     Concrete acid stain can be mixed at the concrete factory before it is brought to the home, or added in powder or liquid form if you are only mixing a few bags of concrete. Staining concrete that has already been laid will only penetrate so deep. Concrete acid stain is not easily controlled because the metallics in the stone interact with the stain making the hue lighten and darken. The color won't be uniform throughout the slab because of certain variables such as the amount of water in the concrete, the outside temperature, and the age of the cement. Fortunately this variation creates a shabby chic appearance to the stone.

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My husband and I had a new patio poured last weekend and had the concrete company add a desert sand color to the mix before they brought it out. As the concrete was poured, the medium brown color was apparent because of the wetness of the concrete. As the concrete dried the color faded, showing light and dark areas. After the concrete had cured somewhat, my husband proceeded to stamp it with a design. When the concrete had cured completely, he sprayed a glossy water sealer over the top. The patio has a nice sheen of brown that lightens and darkens in sections making it look rustic and chic at the same time.

Concrete acid stain can also be used on sidewalks, driveways and basement floors that have already been poured. Staining older concrete can give it new life and help add color to an otherwise drab area. Just like newly laid concrete with the stain already mixed in, staining older concrete will have the same color effect with certain areas lighter and others darker. A concrete acid stain is different from staining wood. While the stain on wood stays the same color, the hues evolve as stain is applied to concrete. As the acid reaches the lime within the concrete, it causes a chemical reaction that can vary throughout the slab of concrete, resulting in different hues of the color you have chosen. So you must not expect the color to the same throughout the entire slab of concrete or you will be disappointed.

The acid in the concrete acid stain is what allows the color to penetrate into the floor, sidewalk or driveway. The acid burns through tiny openings in the concrete surface, allowing the stain to penetrate to the limestone so it can create the color texture you have chosen. You may be able to apply the acid stain yourself, but concrete professionals know exactly how to apply it and when and what to use to neutralize the stain. Normally the concrete has to be cleaned and cracks or holes repaired before the staining can begin. The stain is normally sprayed or brushed onto the concrete, and then worked into the pores with the use of a stiff bristle broom. The concrete professionals allow the color to deepen for a certain length of time, then neutralize the acid. A water sealant is applied after the concrete surface has dried.

Consider adding a design or pattern to a new concrete floor along with the stain. You can choose from different designs including brick, flowers, or checkerboard. Incorporating both design and color to your interior or exterior concrete will invigorate a boring space into a showroom.

Article Source: http://www.articlesbase.com/construction-articles/what-is-concrete-acid-stain-6199678.html

Wednesday, September 26, 2012

What is the durability of the plumbing of a building?

What is the durability of the plumbing of a building? What is the best material for hydraulic lines?


Author:cleber


Who lives in an old apartment building knows how common are the apportionments to exchange extra pipe. Nothing more normal because the pipes have a life span which may be greater or smaller depending on the type of material and conditions of use. But how long? What materials to use? See this analysis of various types of materials, with its pros and cons.

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The durability of pipes in use in buildings depends on a number of factors, whose estimation is difficult to be done accurately. Among these factors are:

• Nature of material of pipe and fittings - PVC, PPT, copper, galvanized steel or cast iron,
• Type of joint - solder, with thread sealant, heat fusion, fusion adhesive solvent, elastic rubber ring,
• Exposure conditions - embedded in masonry, mortar underlayment within the slab, installation with and without apparent incidence of solar radiation, subjection to thermal shock, entry drives and accommodations structural, cyclical swings subjection to internal pressure,
• Chemical nature and temperature of the fluid transported by the pipeline - chlorinated drinking water, hot water, wastewater, stormwater and other.

The drinking water provided by the urban network in certain locations may have dissolved mineral salts that show aggressive to certain materials pipes, contributing to the reduction of life. This is the case for high concentrations of carbonates and bicarbonates of calcium and magnesium, and also occur when chlorides, oxygen and chlorine free, present in small concentrations.

These components are shown aggressive over time, for example, carbon steel galvanized pipes. Two tubes of this material, of the same brand and same manufacturing batch, durability may have lead to different saline water with different natures, for example, 18 years of life in the mountain region of Rio de Janeiro and only 8 years in Curitiba and metropolitan area.

However, there is galvanized carbon steel pipes whose use in Curitiba is already 25 years old and still perform well. This was the case of Residential Condominium Iguacu, object of a technical report of my own, Eng Sergio Frederick Gnipper whose pipes of cold water, originally galvanized steel, were in satisfactory use for almost 40 years and only recently have shown obsolescence, requiring complete replacement.

The explanation for this particular case is in good quality and thickness of the protective layer of zinc applied hot (so-called galvanic) in these pipes, and the natural formation of an outer layer of protective and insulating zinc oxide, whitish appearance, which isolated the external surfaces of the pipe from direct contact with the masonry mortar or plaster of aggressive chemical nature.

One factor that dramatically accelerates the degradation of carbon steel pipes and galvanized malleable iron galvanized connections is called 'galvanic couple' or 'galvanic cell'. When these materials are placed in direct contact with another metal tube of very diverse in nature electrochemical presence of water (such as copper, for example), there arises a weak electric current of low voltage in the region of contact of dissimilar metals, as occurs with a cell or battery electric. This process causes chemical reactions of degradation of less noble metal, causing premature corrosion and accelerated the galvanized pipe.

When possible, a resource to prevent galvanic corrosion in metallic tubes is bringing an insulating layer of nonconductive material between different metals. This is the case of a strip of flexible rubber placed on the support of a copper tube support in galvanized carbon steel.

Due to the extreme variability of materials and exposure conditions, it is also difficult to assess the economic period of useful life of the pipes of a building, the words, the maximum time recommended for use in staying in the building. This is because, from a certain age at operation, uncomfortable with spending leaks and repairs off a pass pipe be significant, offsetting being replaced by a new one. Under conditions very favorable exposure over the lifetime is estimated as follows economic periods for different pipe materials:

• About 20 to 25 years for PVC pipes (reaching up to 45 years);
• About 12 to 18 years for galvanized steel pipe with fittings of malleable iron galvanized (but currently only about 8 to 10 years in certain locations);
• Over 80 years for copper pipes with copper connections / bronze when exposed to water not aggressive.

Pipes with materials more recent production technology, such as CPVC (chlorinated polyvinyl chloride), crosslinked polyethylene (PEX) and random polypropylene (RPP) have not yet reached age sufficient for use in the economic evaluation of the shelf life, per hour for them estimating durability similar to that of PVC.

In old buildings can be exchanged with all the advantages plumbing?

Generally widespread replacement of pipes of a building is more difficult passages embedded in masonry and within channels and recesses of floors in buildings equipped with recessed slabs, construction technology peculiar constructions performed until the mid 70s.
That's because this substitution, in most cases, involves breaking tiles, ceramic floor tiles and hydraulic, whose replacement is very difficult to do satisfactorily, given the scarcity of identical parts in so-called 'tiles museums.' Moreover, the cost of implementation is high and therefore generally run embedded in walls and floors of bathrooms, kitchens and laundries.

There are more favorable situations, where much of the horizontal lodges inside false ceilings of gypsum, which is easy access for replacement and repair is fast and inexpensive. Another favorable situation is one in which vertical tubes run inside ducts appropriate, technically known as shafts, simply remove the lid to have full access to the pipeline.

You can not just replace the pipe obsolete, damaged or corroded by another of the same or different material, considered more durable. It is crucial to understand the causes of degradation and especially whether the new replacement pipe material have adequate durability under local conditions. This one only accredited professional and expert can determine, from the elaboration of a specific technical advice or a full technical report.

You must also comply with the technical characteristics of the installation and peculiar to each type of piping material such as maximum hydraulic pressure that will be placed and the hydraulic resistance of each material to the liquid flow.
For example, to replace an old galvanized steel pipe with a new copper, it is possible that many passages can run with diameters smaller than the original pipe, with equivalent performance, and sensible economy. This is because the plastic tubes and copper pipes offer less resistance to flow than the steel pipes.

For this it is necessary to elaborate a simplified design reform of hydraulic building because it involves calculations technical expertise that only a trained professional is able to do, with legal guarantee its liability CREA, according to current legislation, through issuing an ART - Technical Responsibility.

Therefore, the decision of replacing a hydraulic pipe obsolete should be taken only with the advice of a professional. This is because other factors must be evaluated at this time in favor of the building, as the possibility of changing the system discharge toilets.

Replacing the old flush valves for sanitary bowls with dump boxes embedded or coupled, which require tubes with diameters much smaller than the existing one can obtain economy running of pipes and further reduction in the monthly consumption of water in building up to 40 which will help amortize the costs over time.

Also in this opportunity should be evaluated technical and economic feasibility of installing individual meters of potable water consumption for the apartments (individual water meters), for the assessment of internal monthly expenses of the condominium with water in proportion to consumption effectively checked each unit condominium.

What kind of material should be used for the replacement pipe of the building?

The building does not require the same type of material for all hydraulic and sanitary. The choice, in addition to life expectancy, must take into account the purpose of the pipe, the nature, pressure and temperature of the liquid drained (hot water, sewer, ...), the best type of joint (thread, solder ring rubber, ...) and exposure conditions (apparent pipe, embedded, ....), among other factors.

The metal tubes historically were first produced on an industrial scale and, therefore, have performance well known. There are more employees in the building installations carbon steel pipe with threaded connections of malleable cast iron, both usually hot dip galvanized (galvanized), and copper pipes soldered connections with copper and / or threaded bronze / brass. Were recently introduced in the market semi-flexible tubes of aluminum coated internally and externally consists of a plastic layer.

The metal tubes generally have the following advantages:
• High resistance to internal pressure;
• Low thermal expansion feature;
• Dimensional stability;
• High heat resistance;
• High mechanical strength;
• Highly resistant to the effects of mechanical and thermal fatigue;
• Resistant to prolonged exposure to ultraviolet radiation and the ravages of time;
• Eliminate low smoke and toxic gases when under combustion;
• Increased reliability performance information under prolonged use;
• Are non-combustible at temperatures typically reached in fires in buildings.

However, metal tubes have the following disadvantages or inconveniences:
• High thermal conductivity;
• Greater weight comparison;
• Less easy handling,
• Greater difficulty implementing threaded or welded joints;
• Increased hydraulic resistance to flow;
• Low flexibility and elasticity;
• Less safe in the joints;
• High acoustic transmission (noise);
• Higher relative cost of acquisition;
• susceptibility to corrosion;
• Easier to accumulation of corrosion deposits, suspensions and precipitation;
• Possible contamination of water by corrosion debris and lead present in welds;
• Greater ease of transmission of the effects of water hammer.

The metal tubes are especially suitable for use in functions which are subjected to high pressures, such as the network pipe of fire hydrants and discharge piping, leading drinking water from the hydraulic pump to the reservoir tank of the high building. They are also used in high buildings to take drinking water from the reservoir to the high pressure reducing valves.

Copper pipes are especially suited for driving in hot water because of its chemical stability and dimensional. Galvanized pipe and fittings are very susceptible to corrosion when the water temperature inside exceeds 50 ° C. Already have brown PVC pipes sharp drop in pressure resistance and lead to huge thermal expansion hot water, and in consequence contraindicated in these cases.

Copper tubes also have an advantage over steel pipes in the building networks for distribution of fuel gas, since the welded joints permit higher sealing while avoiding the hazardous spills, and are not subject to chemical attack constituent material of mortar in the presence of moisture, where embedded in slabs of subfloors. This gives very high copper tube life, despite its cost is nearly twice the cost of steel and up to four times the cost of plastic tubes.

Moreover, the plastic pipes comprise a variety of components manufactured from synthetic organic polymers, obtained mainly from petrochemical derivatives.

The most commonly used plastic materials are PVC (or polyvinyl chloride), the PPR (polypropylene or random), CPVC (chlorinated polyvinyl chloride or) and PEX (cross linked polyethylene or crosslinked). Plastic tubes generally have the following advantages:

• High resistance to corrosion or oxidation;
• Good durability when sheltered from the ravages of time;
• Low thermal and electrical conductivity;
• Low weight comparison;
• Ease of handling;
• Fast and easy implementation of the joints (joints require hot termofusor);
• Low flow resistance;
• Little accumulation of debris;
• Good flexibility and elasticity;
• Increased security in the performance of gaskets (exempt employment torch);
• Low acoustic transmission;
• Low relative cost of acquisition.

However, plastic tubes also have the following disadvantages or inconveniences:
• Low resistance to heat;
• Low mechanical strength;
• Low resistance to the effects of mechanical and thermal fatigue;
• degradation due to prolonged exposure to ultraviolet radiation;
• High thermal expansion unit;
• Elimination of smoke and toxic gases when under combustion;
• Poor performance information under prolonged use (not more than 40 years of use in the domestic market).

PVC pipes have been widely used in building distribution networks for drinking water, and building facilities for sewage and rainwater collection. In contrast, CPVC pipe and PPR are specially designed for conducting hot water.

Dedetizadora e Desentupidora Ribeira
http://www.ddribeira.com.br

Article Source: http://www.articlesbase.com/construction-articles/what-is-the-durability-of-the-plumbing-of-a-building-what-is-the-best-material-for-hydraulic-lines-6199800.html

About the Author

Dedetizadora e Desentupidora Ribeira
http://www.ddribeira.com.br