M&M PLATING INC.
METAL PLATING IN TORONTO.
ELECTROLESS NICKEL PLATING SERVICE IN TORONTO.
Better Plating Results & Better Appearance from M&M PLATING INC.
Electroless Nickel Plating In Toronto
M&M PLATING TORONTO INC.
Professional Plating Service In Toronto
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ELECTROLESS NICKEL PLATING SERVICE IN TORONTO.
Electroless Nickel Plating In Toronto.
Definition - What does Electroless Nickel Plating service in Toronto (EN Plating) mean ?
Our Electroless nickel (EN) plating services in Toronto, is an auto-catalytic reaction used to deposit a coating of nickel on a substrate such as metal or plastic. It provides wear resistance, hardness and corrosion protection of the substrate. It is also commonly used as a coating in electronics printed circuit board manufacturing, typically with an overlay of gold to prevent corrosion.
EN techniques can also be used to manufacture composite coatings by suspending powder in the bath.
Electroless Nickel Plating Toronto.
Electroless nickel plating service in Toronto,Ontario. Our E.N. is a chemical reduction method which depends upon the catalytic reduction technique of nickel ions in an aqueous solution and the subsequent deposition of nickel metal on the substrate without the use of electrical energy. This electroless process greatly improves the object's resistance to galling and leaves a predictable, uniform nickel coating for high-precision parts, which can be applied to both ferrous and non-ferrous surfaces of any geometry. Electroless nickel coating is often less porous than electroplated nickel and hard chrome, providing barrier corrosion protection to steel, and can also be applied with little or no compressive stress, making it gentle in application.This process provides a large flexibility of thickness and volume of the plating on metal surfaces, and can easily fill recesses or pits in the metal surface, resulting in a uniform surface finish. This also allows for a wider variety of industrial parts to be plated such as:
Oil field valves
The most common variants of electroless nickel plating are:
Composite electroless nickel, in which silicon carbide (SiC) particles are co-deposited with the nickel to enhance its strength and wear resistance
Duplex electroless nickel, where an undercoat containing 14% phosphorus is used with a top coat of 5% phosphorus
Electroless nickel plating service in Toronto has several advantages over electroplating. Free from flux-density and power supply issues, it provides an even deposit regardless of workpiece geometry, and with the proper pre-plate catalyst, can deposit on non-conductive surfaces.
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EXTENSIVE PLATING CAPABILITES IN TORONTO.
MM PLATING TORONTO INC. is a nationally recognized source for Hard Chrome, Cadmium, Copper, Electrolytic and Electroless Nickel Plating Toronto, Tin Plating Toronto, Chromic Anodize, Sulphuric Anodize, Hard Anodize with Blue, Red, Black, Yellow, colors, Zinc, Zinc- Nickel plating on a variety of base materials, including zinc die cast and stainless steel, Manganeeze Phosphate and many other processes. These processes qualify MM PLATING TORONTO INC. to meet unique customer requirements. is a nationally recognized source for Hard Chrome, Cadmium, Copper, Electrolytic and Electroless Nickel, Tin, Chromic Anodize, Sulphuric Anodize, Hard Anodize with Blue, Red, Black, Yellow, colors, Zinc, Zinc- Nickel plating on a variety of base materials, including zinc die cast and stainless steel, Manganese Phosphate and many other processes. These processes qualify M&M PLATING TORONTO INC. to meet unique customer requirements.
EXPERTISE AND RELIABILITY
With the help of a highly qualified workforce, MM PLATING TORONTO INC. has acquired a reputation of excellence based on expertise and reliability. We have developed and maintained business relations with our customers where quality standards are among the most stringent in the world. To attain this objective, MM PLATING TORONTO INC. counts on rigorous control over the quality of its products and the appropriate training of its personnel. It uses equipment and technology that are at the leading-edge of developments in the sector. It also invests in R&D to develop new procedures that meet environmental standards and the industry needs.
state-of-the-art waste management systems exceed every applicable
local, state and federal regulation. These systems are designed to meet
our needs now and into the future. Through our environmental efforts,MM
PLATING TORONTO INC. will remain a viable source for quality metal
finishing as well as a responsible neighbor to our community and our
Hard Chrome, Zinc, Tin, Zinc-Nickel, Electroless Nickel, Alodine, Cadmium, Zinc, Phosphate, Chemical Conversion, Black Oxide, Bright Dipping,Pickling, Passivation, Baking, Nickel Sulfamate, Chromic Anodizing, Hard Anodizing, Clear Sulphuric Anodizing, Salt Spray Test and Many more...
Hard chrome plating offers increased life and superior resistance to wear, friction and corrosion because of its excellent lubricity properties. Typically used as an industrial process, hard chrome is an electrolytic plating process used to deposit chrome onto alloys. Hard chrome can either be deposited as a finished product to print, or part of a repair to be ground to a finished size.
Hydraulics, molds, valves, bearings, pumps, cylinders and moving parts found in OEM equipment manufacturing and production use hard chrome to repair, retrofit and extend equipment life. The aircraft, medical, mining, agricultural and chemical industries rely on hard chrome to maximize their investments.
Electroless Nickel is a high corrosion resistance process designed to produce semi-bright deposits for engineering applications where uniformity of coating is important. Additional functions include rust prevention, electrical contact and decorative looks. This process features excellent stability and produces nickel deposits which are smooth with no buildup on the edges or ends. Suitable for use on many different substrates including steel, stainless steel, cast iron, copper and copper alloys, titanium, beryllium, nickel alloys and aluminum.
The Electroless Nickel process is most often used with complex shapes and large size components.
Sulfamate nickel is an extremely useful plating that possesses many beneficial properties. Deposited electrolitically,sulfamate nickel is a uniform dense coating of pure nickel. It provides excellent corrosion resistance, high ductility and strength, and good thermal and electrical conductivity. It can be plated on a wide variety of substrates including chilled irons, various steel alloys, stainless steels, aluminum alloys, copper and brass.
Sulfamate nickel is used in engineering applications as a low cost, machinable build-up coating for size restoration resurfacing defective shells. It is also used as a sealer coating in the Chemical and Food processing industries to prevent iron or other metal contamination.
Black Oxide provides enhanced corrosion protection and aesthetic appeal. It is a chemical process used as a rust inhibitor with steel,
tainless steel, iron, copper and brass. There is no increase in dimensions during application and the result is a nice, dark black finish.
Type I Chromic Anodizing Film produced is solid, thinner (0.02-0.05 MIL), darker in color, and is harder than sulfuric acid films
of the same thickness.
50% penetration in the substrate / 50% growth over original dimension of part
Favored if there is a possibility of solution entrapment in joints, recesses, and/or weldments.
Chromic Acid leaves no corrosive residue
Type II Sulphuric Anodizing Favored for applications where hardness & resistance to erosion is required
Film produced are of greater thickness (0.1-1.0 MIL)
67% penetration in substrate / 33% growth over original dimension of parts
Its permeable nature prior to sealing is used in the production of color surface finishes on aluminum & its alloys.
Porous aluminum oxide absorbs dyes well & sealing helps prevent color loss in service, although color-fast, they tend to bleach under continued direct sunlight.
Colors offered are: Black , Red , Blue , Green, Yellow (Gold)
Type III Hard-anodizing is used for technical purposes: against corrosion and wear, for electrical insulation, and, by impregnating the surfaces with teflon particles, for achieving low friction. This oxide coating can be harder than case hardened steel and provide excellent abrasion resistance; it is protective to the aluminum part and can be very durable.
The thickness of the hard anodize piece can be very closely controlled and be applied to a wide variety of parts to suit applications from many industries. Secondary treatments such as colored dyes are available.
Tin Plating Provides: Bright Tin plating gives a bright 'white' metallic finish with excellent conductivity, and its main use is in the electrical sector. It's other key properties are that is it solderable, ductile, and has a natural lubricity. It is also non-toxic which makes it suitable for human contact and food industry applications.
Zinc-Nickel Alloy Plating
High corrosion protection without topcoats or organic finishes makes it ideal for parts where thread and recess fill are a concern. Around four times the hardness and therefore wear resistance of standard Zinc plating.
Many of these features make Zinc-Nickel and environmentally friendly alternative for Cadmium Plating.
Cadmium plating Provides Superior Corrosion Resistance – protects the base metal for over 1000 hours to red rust.
Withstands High Temperatures – can be used for automotive components that are exposed to higher temperatures
Economical – provides much better corrosion resistance for any steel part intended for exterior use than comparably-priced conventional zinc.
Zinc electroplating is a soft, ductile, decorative, corrosion-resistant finish. Unlike most other commonly plated metals, zinc protects the substrate. The protection is accomplished by sacrificing itself. The zinc corrodes before the base metal thereby protecting the base metal. For additional corrosion protection, chromates are applied over the zinc. Chromates used in the zinc electroplating process become a component of the coating. Chromate films are typically very thin, and the chromate coating provides no measurable thickness to the overall coating.
Passivation is the chemical treatment of a stainless steel surface with a mild oxidant such as a nitric acid or citric acid solution. This is typically done to remove any foreign material from the surface of the metal which enhances the corrosion resistance of the stainless steel surface and accelerates the re-formation of the passive layer.
Used with orthodontic, orthopedic and surgical equipment as well as by industrial, marine and aircraft manufacturers. Additional passivation applications include high purity water storage tanks, manifolds and pipe spools.
Pickling (Chemical Descaling) is typically used to remove oxide layers resulting from welding, heat-treating, and other high temperature operations. All of these oxide layers are generally referred to as "scale" and must be removed prior to Electropolishing or Passivating. Pickling is sometimes referred to as "Acid Washing" or "White Acid Pickling".
Electroless Nickel Plating Service In Toronto.
Electroless nickel plating, also known as enickel and NiP, offers many advantages - uniform layer thickness over most complicated surfaces - direct plating of ferrous metals (steel)and superior wear and corrosion resistance to electroplated nickel or chrome. Much of the chrome plating done in aerospace industry can be replaced with electroless nickel plating, again environmental costs, costs of hexavalent chromium waste disposal and notorious tendency of uneven current distribution favour electroless nickel plating. Electroless nickel plating is self-catalyzing process, the resultant nickel layer is NiP compound, with 7–11% phosphorus content. Properties of the resultant layer hardness and wear resistance are greatly altered with bath composition and deposition temperature, which should be regulated with 1 °C precision, typically at 91 °C. During bath circulation, any particles in it will become also nickel plated, this effect is used to advantage in processes which deposit plating with particles like silicon carbide (SiC) or polytetrafluoroethylene (PTFE). While superior compared to many other plating processes, it is expensive because the process is complex. Moreover, the process is lengthy even for thin layers. When only corrosion resistance or surface treatment is of concern, very strict bath composition and temperature control is not required and the process is used for plating many tons in one bath at once. Electroless nickel plating layers are known to provide extreme surface adhesion when plated properly. Electroless nickel plating is non-magnetic and amorphous. Electroless nickel plating layers are not easily solderable, nor do they seize with other metals or another electroless nickel plated workpiece under pressure. This effect benefits electroless nickel plated screws made out of malleable materials like titanium. Electrical resistance is higher compared to pure metal plating.
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The excellent deposit uniformity of electroless nickel allows plating of various coating thicknesses on any area of a part that is wetted by the solution including blind holes and the inner diameters of tubing or fittings. The phosphorous content in the coating affects the properties of the deposit. In addition, post-plate baking at high temperatures can transition the deposit from an amorphous to crystalline structure greatly increasing hardness.
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