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  #1 (permalink)  
قديم 5th September 2008, 01:22 AM
الصورة الرمزية engineer's feeling
engineer's feeling engineer's feeling غير متواجد حالياً
seni seviyorum
 
تاريخ التسجيل: Feb 2007
الجنس : ذكر
المشاركات: 1,255
   تدوينات المدونة: 6

معلومات العضو الأكاديمية

engineer's feeling
سؤال للمهندسين الكهربائيين والكيميائيين (:

السلام عليكم ورحمة الله وبركاته

صراحه عندي سؤال عن العوازل فهو سؤال كهربائي كيميائي

الحين كما هو معروف ان المادة الاكثر استخداما بالعوازل هي porcelain وممكن نستخدم بعض الاحيان
الـ glass
ونعرف ان المواد الاساسية المستخدمة في صناعة الـ electrical porcelain هي
clay, feldspar and flint
واعرف ان الـ clay يكون مع مكونات ثانيه عشان كذا لازم نختارة بحرص ولازم نحطه بتصنيف معين
عشان نحصل على جودة عالية في المنتج النهائي
واللي اعرفه بعد اننا نضيف مويه للخليط عشان يكون الشكل المطلوب
وبعدين نحط الخليط بالفرن ويكون لون السطح العلوي بني غامق ويكون مصقول

الحين سؤالي للمهندسين الكيميائين

كيف يتم خلط المواد اللي تكون البورسلين وهل المواد اللي ذكرتها هي فقط اللي نحتاجها لتكوين البورسلين ؟


وسؤالي لمهندسي الكهرباء

الحين نستفيد من السطح المصقول عشان نوزع الـ electrical stresses عشان نقلل الـ radio interference
ابي اعرف كيف يتم توزيع الالكتركل سترسز ووش دخلها ب الـ radio interference ؟



اتمنى القى الاجابة ,,,

اضغط هنا لرؤية التوقيع
Engineers don't know any thing impossible, they actually

consider every thing possible; even the word impossible

they would turn it possible by just taking out the word IM
















I wish I could die kneeling to God
رد مع اقتباس
  #2 (permalink)  
قديم 5th September 2008, 08:17 AM
الصورة الرمزية منصور الشريف
منصور الشريف منصور الشريف غير متواجد حالياً
عضو مسجل
 
تاريخ التسجيل: Jun 2008
الجنس : ذكر
المشاركات: 121

معلومات العضو الأكاديمية

منصور الشريف
رد: سؤال للمهندسين الكهربائيين والكيميائيين (:

Raw Materials

The primary components of porcelain are clays, feldspar or flint, and silica, all characterized by small particle size. To create different types of porcelain, craftspeople combine these raw materials in varying proportions until they obtain the desired green (unfired) and fired properties.

Although the composition of clay varies depending upon where it is extracted and how it
is treated, all clays vitrify (develop glassy qualities), only at extremely high temperatures unless they are mixed with materials whose vitrification threshold is lower. Unlike glass, however, clay is refractory, meaning that it holds its shape when it is heated. In effect, porcelain combines glass's low porosity with clay's ability to retain its shape when heated, making it both easy to form and ideal for domestic use. The principal clays used to make porcelain are china clay and ball clay, which consist mostly of kaolinate, a hydrous aluminum silicate.

Feldspar, a mineral comprising mostly aluminum silicate, and flint, a type of hard quartz, function as fluxes in the porcelain body or mixture. Fluxes reduce the temperature at which liquid glass forms during firing to between 1,835 and 2,375 degrees Fahrenheit (1,000 and 1,300 degrees Celsius). This liquid phase binds the grains of the body together.


Silica is a compound of oxygen and silicon, the two most abundant elements in the earth's crust. Its resemblance to glass is visible in quartz (its crystalline form), opal (its amorphous form), and sand (its impure form). Silica is the most common filler used to facilitate forming and firing of the body, as well as to improve the properties of the finished product. Porcelain may also contain alumina, a compound of aluminum and oxygen, or low-alkali containing bodies, such as steatite, better known as soapstone.


To make porcelain, the raw materials—such as clay, felspar, and silica—are first crushed using jaw crushers, hammer mills, and ball mills. After cleaning to remove improperly sized materials, the mixture is subjected to one of four forming processes—soft plastic forming, stiff plastic forming, pressing, or casting—depending on the type of ware being produced. The ware then undergoes a preliminary firing step, bisque-firing.

رد مع اقتباس
هؤلاء الأعضاء 2 يشكرون منصور الشريف على مشاركته
''''The HeRo'''' (5th September 2008), mr. 3M7 (13th October 2008)
  #3 (permalink)  
قديم 5th September 2008, 09:47 AM
الصورة الرمزية منصور الشريف
منصور الشريف منصور الشريف غير متواجد حالياً
عضو مسجل
 
تاريخ التسجيل: Jun 2008
الجنس : ذكر
المشاركات: 121

معلومات العضو الأكاديمية

منصور الشريف
رد: سؤال للمهندسين الكهربائيين والكيميائيين (:

The Manufacturing Process


After the raw materials are selected and the desired amounts weighed, they go through a series of preparation steps. First, they are crushed and purified. Next, they are mixed together before being subjected to one of four forming processes—soft plastic forming, stiff plastic forming, pressing, or casting; the choice depends upon the type of ware being produced. After the porcelain has been formed, it is subjected to a final purification process, bisque-firing, before being glazed. Glaze is a layer of decorative glass applied to and fired onto a ceramic body. The final manufacturing phase is firing, a heating step that takes place in a type of oven called a kiln.


Crushing the raw materials:

1 First, the raw material particles are reduced to the desired size, which involves using a variety of equipment during several crushing and grinding steps. Primary crushing is done in jaw crushers which use swinging metal jaws. Secondary crushing reduces particles to 0.1 inch (.25 centimeter) or less in diameter by using mullers (steel-tired wheels) or hammer mills, rapidly moving steel hammers. For fine grinding, craftspeople use ball mills that consist of large rotating cylinders partially filled with steel or ceramic grinding media of spherical shape.


Cleaning and mixing

2 The ingredients are passed through a series of screens to remove any under- or over-sized materials. Screens, usually operated in a sloped position, are vibrated mechanically or electromechanically to improve flow. If the body is to be formed wet, the ingredients are then combined with water to produce the desired consistency. Magnetic filtration is then used to remove iron from the slurries, as these watery mixtures of insoluble material are called. Because iron occurs so pervasively in most clays and will impart
an undesirable reddish hue to the body if it oxidizes, removing it prior to firing is essential. If the body is to be formed dry, shell mixers, ribbon mixers, or intensive mixers are typically used
.


After bisque firing, the porcelain wares are put through a glazing operation, which applies the proper coating. The glaze can be applied by painting, dipping, pouring, or spraying. Finally, the ware undergoes a firing step in an oven or kiln. After cooling, the porcelain ware is complete.

Forming the body

3 Next, the body of the porcelain is formed. This can be done using one of four methods, depending on the type of ware being produced:
soft plastic forming, where the clay is shaped by manual molding, wheel throwing, jiggering, or ram pressing. In wheel throwing, a potter places the desired amount of body on a wheel and shapes it while the wheel turns. In jiggering, the clay is put on a horizontal plaster mold of the desired shape; that mold shapes one side of the clay, while a heated die is brought down from above to shape the other side. In ram pressing, the clay is put between two plaster molds, which shape it while forcing the water out. The mold is then separated by applying vacuum to the upper half of the mold and pressure to the lower half of the mold. Pressure is then applied to the upper half to free the formed body.
stiff plastic forming, which is used to shape less plastic bodies. The body is forced through a steel die to produce a column of uniform girth. This is either cut into the desired length or used as a blank for other forming operations.
pressing, which is used to compact and shape dry bodies in a rigid die or flexible mold. There are several types of pressing, based on the direction of pressure. Uniaxial pressing describes the process of applying pressure from only one direction, whereas isostatic pressing entails applying pressure equally from all sides.
slip casting, in which a slurry is poured into a porous mold. The liquid is filtered out through the mold, leaving a layer of solid porcelain body. Water continues to drain out of the cast layer, until the layer becomes rigid and can be removed from the mold. If the excess fluid is not drained from the mold and the entire material is allowed to solidify, the process is known as solid casting.


Bisque-firing

4 After being formed, the porcelain parts are generally bisque-fired, which entails heating them at a relatively low temperature to vaporize volatile contaminants and minimize shrinkage during firing.


Glazing

5 After the raw materials for the glaze have been ground they are mixed with water. Like the body slurry, the glaze slurry is screened and passed through magnetic filters to remove contaminants. It is then applied to the ware by means of painting, pouring, dipping, or spraying. Different types of glazes can be produced by varying the proportions of the constituent ingredients, such as alumina, silica, and calcia. For example, increasing the alumina and decreasing the silica produces a matte glaze.


Firing

6 Firing is a further heating step that can be done in one of two types of oven, or kiln. A periodic kiln consists of a single, refractory-lined, sealed chamber with burner ports and flues (or electric heating elements). It can fire only one batch of ware at a time, but it is more flexible since the firing cycle can be adjusted for each product. A tunnel kiln is a refractory chamber several hundred feet or more in length. It maintains certain temperature zones continuously, with the ware being pushed from one zone to another. Typically, the ware will enter a preheating zone and move through a central firing zone before leaving the kiln via a cooling zone. This type of kiln is usually more economical and energy efficient than a periodic kiln.
7 During the firing process, a variety of reactions take place. First, carbon-based impurities burn out, chemical water evolves (at 215 to 395 degrees Fahrenheit or 100 to 200 degrees Celsius), and carbonates and sulfates begin to decompose (at 755 to 1,295 degrees Fahrenheit or 400 to 700 degrees Celsius). Gases are produced that must escape from the ware. On further heating, some of the minerals break down into other phases, and the fluxes present (feldspar and flint) react with the decomposing minerals to form liquid glasses (at 1,295 to 2,015 degrees Fahrenheit or 700 to 1,100 degrees Celsius). These glass phases are necessary for shrinking and bonding the grains. After the desired density is achieved (greater than 2,195 degrees Fahrenheit or 1,200 degrees Celsius), the ware is cooled, which causes the liquid glass to solidify, thereby forming a strong bond between the remaining crystalline grains. After cooling, the porcelain is complete.

رد مع اقتباس
هؤلاء الأعضاء 2 يشكرون منصور الشريف على مشاركته
''''The HeRo'''' (5th September 2008), mr. 3M7 (13th October 2008)
  #4 (permalink)  
قديم 5th September 2008, 04:04 PM
الصورة الرمزية engineer's feeling
engineer's feeling engineer's feeling غير متواجد حالياً
seni seviyorum
 
تاريخ التسجيل: Feb 2007
الجنس : ذكر
المشاركات: 1,255
   تدوينات المدونة: 6

معلومات العضو الأكاديمية

engineer's feeling
رد: سؤال للمهندسين الكهربائيين والكيميائيين (:

حلو مررره

ويعطيك الف الف عافيه لان فيه معلومات كثيرة استفدت منها

وشاكر لك ,,,

اضغط هنا لرؤية التوقيع
Engineers don't know any thing impossible, they actually

consider every thing possible; even the word impossible

they would turn it possible by just taking out the word IM
















I wish I could die kneeling to God
رد مع اقتباس
هذا العضو يشكر engineer's feeling على مشاركته
''''The HeRo'''' (5th September 2008)
رد


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