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Electroplating 11 electroforming chrome aluminum


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ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
ELECTROPLATING 11 ELECTROFORMING CHROME ALUMINUM
The techniques of depositing a thin metallic layer on an object for decoration, corrosion protection, electrical conductivity, wear resistance and so on have been known for many years but have been developed and improved to a remarkable extent in the second half of this century.
J. Poyner sets out to discuss the principles and practice of those forms of plating most suited to the amateur and small workshop, using relatively simple and inexpensive equipment to produce results virtually undetectable from work carried out by major plating conerns.
He provides you with a really useful and practical book which will be of value to both amateur and light industrial users in many diverse fields.
Present day electroplating has become a well-established branch of metal finishing. Electroplating is a multi-discipline of engineering, mechanical and electrical, in co-ordination with applied chemistry.
In the early days of electroplating the industry started with wooden vats, D.C. generators, experience and 'rule of thumb' methods of process control.
Over the years new metal finishes have been introduced. Automatic plant has been developed to cope with the increased volume of parts to be finished and to control the process, ensuring a constant quality of finish.
Increased uses of metal (steel, stainless steel) and various plastics have been seen in the making of equipment for the finishing shop.
Present day finishing shops offer a wide and varied range of finishing processes: ion and gas plating, high speed selective plating, anodising and electroplating on aluminium.
Various electroless finishes cover a wide range of engineering requirements.
Various alloy platings are carried out, such as gold cobalt, which gives a hard thickness of gold.
There is also brass plating for electroplating safety pins, and components which have various rubbers bonded to them.
Over the last fifteen years development has been carried out on the plating of plastics. The technology of printed boards in the electronics industry has added impetus to the development and many plastics can be successfully electroplated.
With the various processes involved in electroplating and current requirements of health and safety, appropriate precautions must be under-taken to avoid accidents and reduce pollution of the environment.
With most of the processes used in model engineering there is ready-made equipment sold on the market, obvious examples being lathes, milling and drilling machines, along with the materials, metals and plastics.
In comparison, with the electroplating process there is very little choice available on the market, apart from kits for electroplating.
This is due to their limited use as compared to the machining and fabricating operations in model engineering and in small workshops generally.
5-3/4" X 8-1/4", Softcover, 61 pages, profusely illustrated with over 30 black & white photographs and diagrams.
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Electroplating 11 electroforming chrome aluminum