Archive for October 20th, 2009

Oct 20 2009

Best tourbillon Watch by Louis Moinet- Vertalis Tourbillon

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The Vertalis Tourbillon by  Louis Moinet is considered by many as one of the best tourbillon watches ever created in the world.

Vertalis presented in an exceptional new case composed of 50 different parts. It highlights the union of two gold colours: the warm shade of 5N rose gold, and the white gold that accentuates and pursues the geometrical effect of the vertical bar. The dial features “Cotes du Jura” against a black background enhanced with rose gold hour-markers. The case is also equipped with the Louis Moinet crown guard, incorporating the stem in such a way as to enable easy replacement if required. Louis Moinet displays its determination to combine aesthetic and technical aspects, particularly through the vertical bar that showcases the technology of the watch, while extending over onto the case.

Crafted in a limited edition of 12, the exclusive Vertalis tourbillon movement is hand-wound and beats at a cadence of 21,600 vibrations per hour. One particularly striking technical characteristic is the spectacular visibility of the winding mechanism through the case-back. The “octopus” spring plays three roles by acting as pull-out piece spring, lever spring and click spring.

The unique Vertalis model features an innovative aesthetic concept distinguished by a modern and original blend of technology and design. As its name implies, the difference here is all about verticality: Vertalis intensifies the magic of the tourbillon by connecting its carriage to the barrel by means of a hand-drawn and bevelled vertical bar. To add to the fascinating vision of the tourbillon carriage in motion, VERTALIS offers an openworked version of the barrel. The latter’s cover performs an average rotation in 6 hours and enables one to keep visual check on the power reserve according to the state of wind of the barrel spring.

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Oct 20 2009

glass manufacture

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Glass ingredients

Quartz sand (silica) as main raw material for commercial free articles directory glass production Oldest mouth-blown window-glass in Sweden (Kosta Glasbruk, Småland, 1742). In the middle is the free articles directory mark from the glass blower’s pipe.

Pure silica (SiO2) has a “glass melting point”— at a viscosity of 10 Pa·s (100 P)— of over 2300 °C (4200 °F). While pure silica can be made into glass for special applications (see fused quartz), other substances are added to common glass to simplify processing. One is sodium carbonate (Na2CO3), which lowers the melting point to about 1500 °C (2700 °F) in soda-lime glass;

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“soda” refers to the original source of sodium carbonate in the soda ash obtained from certain plants. However, the soda makes the glass water soluble, which is usually undesirable, so lime (calcium oxide (CaO), generally obtained from limestone), some magnesium oxide (MgO) and aluminium oxide (Al2O3) are added to provide for a better chemical durability. The resulting glass contains about 70 to 74% silica by weight and is called a soda-lime glass.[8] Soda-lime glasses account for about 90% of manufactured glass.

As well as soda and lime, most common glass has other ingredients added to change its properties. Lead glass, such as lead crystal or flint glass, is more ‘brilliant’ because the increased refractive index causes noticeably more “sparkles”, while boron may be added to change the thermal and electrical properties, as in Pyrex. Adding barium also increases the refractive index. Thorium oxide gives glass a high refractive index and low dispersion, and was formerly used in producing high-quality lenses, but due to its radioactivity has been replaced by lanthanum oxide in modern eye glasses. Large amounts of iron are used in glass that absorbs infrared energy, such as heat absorbing filters for movie projectors, while cerium(IV) oxide can be used for glass that absorbs UV wavelengths (biologically damaging ionizing radiation).

Two other common glass ingredients are calumite (an iron industry by-product) and “cullet” (recycled glass). The recycled glass saves on raw materials and energy. However, impurities in the cullet can lead to product and equipment failure.

Finally, fining agents such as sodium sulfate, sodium chloride, or antimony oxide are added to reduce the bubble content in the glass.[8] Glass batch calculation is the method by which the correct raw material mixture is determined to achieve the desired glass composition.

[edit] Contemporary glass production

Following the glass batch preparation and mixing, the raw materials are transported to the furnace. Soda-lime glass for mass production is melted in gas fired units. Smaller scale furnaces for specialty glasses include electric melters, pot furnaces, and day tanks.[8]

After melting, homogenization and refining (removal of bubbles), the glass is formed. Flat glass for windows and similar applications is formed by the float glass process, developed between 1953 and 1957 by Sir Alastair Pilkington and Kenneth Bickerstaff of the UK’s Pilkington Brothers, who created a continuous ribbon of glass using a molten tin bath on which the molten glass flows unhindered under the influence of gravity. The top surface of the glass is subjected to nitrogen under pressure to obtain a polished finish.[9] Container glass for common bottles and jars is formed by blowing and pressing methods. Further glass forming techniques are summarized in the table Glass forming techniques.

Once the desired form is obtained, glass is usually annealed for the removal of stresses. Surface treatments, coatings or lamination may follow to improve the chemical durability (glass container coatings, glass container internal treatment), strength (toughened glass, bulletproof glass, windshields), or optical properties (insulated glazing, anti-reflective coating).

[edit] Glassmaking in the laboratory

A vitrification experiment for the study of nuclear waste disposal at Pacific Northwest National Laboratory. Failed laboratory glass melting test. The striations must be avoided through good homogenization.

New chemical glass compositions or new treatment techniques can be initially investigated in small-scale laboratory experiments. The raw materials for laboratory-scale glass melts are often different from those used in mass production because the cost factor has a low priority. In the laboratory mostly pure chemicals are used. Care must be taken that the raw materials have not reacted with moisture or other chemicals in the environment (such as alkali oxides and hydroxides, alkaline earth oxides and hydroxides, or boron oxide), or that the impurities are quantified (loss on ignition).[10] Evaporation losses during glass melting should be considered during the selection of the raw materials, e.g., sodium selenite may be preferred over easily evaporating SeO2. Also, more readily reacting raw materials may be preferred over relatively inert ones, such as Al(OH)3 over Al2O3. Usually, the melts are carried out in platinum crucibles to reduce contamination from the crucible material. Glass homogeneity is achieved by homogenizing the raw materials mixture (glass batch), by stirring the melt, and by crushing and re-melting the first melt. The obtained glass is usually annealed to prevent breakage during processing.[10][11]

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Article Source:http://www.articlesbase.com/art-and-entertainment-articles/glass-manufacture-1354660.html

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Oct 20 2009

Family Reunion Pictures

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Family reunions are always fun. Relatives get together to catch up on each other. Unlike before, families can now often live far from each other. They’ve spread themselves all over the globe that it’s not that simple to gather everyone. In fact, reunions now have to be a planned event. Now, family gatherings often happen during special occasions and holidays. Whether it’s Thanksgiving, Christmas, or someone’s birthday, people love to reconnect with their loved ones. And while technology has made contact highly possible, nothing comes close to a personal contact.

There’s more to a family reunion that just getting together. Cameras run amok because people want to have their very own souvenir to that one special day. But if you really want to make that day more special, it’s always nice to get the services of a professional. Getting everyone together in one shot takes skill. After all, you’ll have to play the role of a director just to get a bunch of people to do what you want them to do.

Memories are meant to last a lifetime, and when you’re with family, it is best that you make this count. Ask for advice because professionals often have great ideas. Their wide experience has given them clues as to what people really want. Since this does not happen often, you might as well get a keepsake worth remembering. Flip through your album and reminisce about your most memorable moments. You’ll never regret paying extra just to get the best picture you can have. With proper planning, this could be an event you want to share with your children and with your children’s children.

John Paul Grant is a web professional and a photography enthusiast. He believes that in taking great pictures, you are able to capture life’s beautiful moments.

Article Source:http://www.articlesbase.com/art-and-entertainment-articles/family-reunion-pictures-1355679.html

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