Getinax sheet 2070x1030x4.0 mm is a laminated plastic made from paper sheets glued together by hot pressing using a binder: phenolic or epoxy resin. The basis of the material is cellulose, that is, paper. It is impregnated with molten synthetic resin or with a solution (alcohol or water-alcohol) of resole resin. After the resin hardens, the sheets are pressed under pressure and dried at a high temperature - 150-160°C. Then they cool again - this also happens under pressure.
Foiled getinax is also made: for foiling, red-copper electrolytic foil is applied to it. Some brands of getinax are reinforced with a fine metal mesh, or they are covered with technical fabrics - cotton, fiberglass or asbestos.
Sheet electrical getinaks, whose properties allow you to give the plates of this material any desired shape, is used in low-voltage electrical appliances (mainly household). From this material (usually foiled) printed circuit boards are obtained using the stamping method - thanks to this technology, a board of the desired shape is obtained, with perforations in the required places.
It is also used as an electrically insulating solid material suitable for long-term operation at a temperature range of 65 to 105 degrees Celsius. Various panels, bushings, covers, washers, gears and other elements are made from this material. Getinaks also finds application in the production of elements for furniture and interior items.
Getinaks is an electrically insulating layered pressed material having a paper base impregnated with polymerized phenol-formaldehyde or epoxy resins [1].
Although the material has low mechanical strength, it is nevertheless easy to process and has a relatively low cost.
Refers to combustible materials. Getinax brand I has an ignition temperature of 285 ° C, self-ignition - 480 ° C, self-heating - 120 ° C.
It is mainly used as the basis for printed circuit board blanks. It is widely used for the manufacture of simple boards used in low-voltage household equipment, since the resin can take any shape before thermosetting copolymerization, so that boards of all possible shapes with all the necessary holes can be obtained by stamping. Having given the necessary shape to the board, the material is subjected to heat to polymerize the resin, after which it hardens and becomes usable. However, once the polymerization is complete, the layers of resin-impregnated paper are carefully glued together and the material cannot be softened or disassembled into layers again.
Getinaks is represented by several varieties, which depend on the type and content of the resin, the thickness of the paper layers, pressure and temperature conditions at the pressing stage.
In the manufacture of electronic devices, in the vast majority of cases, textolites are used (most often glass fiber), which are superior to getinax in terms of fire resistance, strength, ability to adhere to foil and a number of other parameters important for electronics, but in the production of simple boards, getinax is more preferable, since boards based on it are cheaper and easier to manufacture.
Today they make from getinax: terminal blocks; insulating washers; switches; printed circuit boards; dashboards; control panels; cabinets for electrical equipment. Getinax is an effective dielectric. Phenolic laminate panels are often used to finish contact surfaces in trolleybuses and trams, electric locomotive cars, ship cabins, etc. It is also used in construction and in the furniture industry. Advantages Getinaks favorably differs from other similar materials in its versatility and low cost of production. This makes phenolic sheets competitive even today when there are better polymer composites on the market.
Getinaks electrical sheet is an essential component in the electrical and mechanical industries. Its thermal, electrical and mechanical properties make it an ideal material for a variety of applications. The insulating properties of getinax make it suitable for use as a dielectric material in transformers, motors, generators and other electrical equipment.
In addition to its insulating properties, Getinax also exhibits excellent mechanical strength and dimensional stability. These characteristics make it ideal for use in parts that are subject to high stress or vibration, such as gears, bearings and shafts. In addition, its resistance to chemicals and moisture makes it ideal for use in harsh environments.
Overall, the versatile nature of Getinaks electrical sheet makes it indispensable in the manufacturing processes of numerous products used in both the electrical and mechanical industries. His unique tera sea-active binder based on phenol-formaldehyde or epoxy resins ensures durability, and its exceptional physical properties guarantee reliable performance even in adverse conditions.
Characteristics
The thickness of the sheet, as a rule, is 0.5-55 mm. The material has an even and smooth texture, the color is rich brown.
There are modifications of getinaks, which differ among themselves in some properties and characteristics, composition and application:
Getinax I is the most commonly used material of the getinax group with a classic composition, characteristics and application. Made from cellulose paper based on phenol-formaldehyde resin. It is characterized by low water absorption, electrical insulating properties do not depend on the level of humidity. Designed for use in conditions with a humidity of 45-75%, at a temperature of 15-35% and transformer oil with a resistance of up to 1000V and a current frequency of 50Hz.
Getinaks II - differs from the previous model in sheet thickness from 0.4 to 100 mm and warpage is not standardized.
Getinaks V - made from cellulose paper based on epoxy and phenol-formaldehyde resins, it also has good electrical insulating properties. The current frequency used for thicknesses from 5mm is 50Hz, and up to 4.5mm is 106Hz.
Getinaks LG - produced according to the quality standard, consists of layers of lavsan paper impregnated with an epoxyphenol thermosetting binder.
Permissible temperature for normal and long-term operation from -65 to +150 degrees. It can be used at air humidity up to 93% and temperature + 40.
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