Providers & Products

Surface treatment and surface refinement of medical components

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Salt bath automation
SOGA Gallenbach GmbH
Finishing processes for tablet tools
OTEC Präzisionsfinish GmbH
Surface treatment microparts
MAW Werkzeugmaschinen GmbH
Coating
Weinmann GmbH
electroplating
Rudolf Storz GmbH
Electroplating and P VD services
Heimerle + Meule GmbH
Electropolishing
SOGA Gallenbach GmbH
Titanium colouring
Heimerle + Meule GmbH
Deburring of workpieces
OTEC Präzisionsfinish GmbH
Smoothing of workpieces
OTEC Präzisionsfinish GmbH
Finishing processes for dental
OTEC Präzisionsfinish GmbH
axyprotect BLACK | DLC coating
AxynTeC Dünnschichttechnik GmbH
axyprotect MED | DLC coating
AxynTeC Dünnschichttechnik GmbH
Polyaxial screw
Schuler Präzisionstechnik KG
Polishing of work pieces
OTEC Präzisionsfinish GmbH
Our services
Dipl.-Ing. Brecht GmbH
CNC drawing parts / machined parts
Messner GmbH
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Surface treatment and finishing processes of the area Services for MedTech production

Surface treatment and finishing processes Products and services from the categories Surface treatment and surface refinement of medical components in medical technology or other healthcare-related industries .

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The range of industrial processes used in surface finishing includes a variety of chemical, mechanical, and thermal treatments. Each process may be used to improve the appearance of a manufactured item, and may also improve adhesion, wettability, solderability, corrosion, tarnish, and chemical resistance. Depending on the end use, these processes can also increase the hardness and electrical conductivity of a material, or return it to its original dimensions. For this reason, it is important to select the right process based on the end requirement.

Many types of surface finishing processes can also be used to modify the surface of a material, such as removing imperfections. This process is usually followed by another type of treatment to prevent the metal from corroding. Different processes have different goals, and it is important to understand all of the options available. By following the manufacturer's requirements and specifications, you can choose the best possible surface treatment for your product. By applying a high-quality finish, your products will be a cut above the competition.

The types of surface treatment and finishing processes that are used in industrial production are often combined. For example, multiple treatments may be applied simultaneously for aesthetic and functional purposes. In this case, the aesthetical treatment is preceded by the functional one. After a surface treatment, different processing techniques are used to prepare it for a secondary finish. Choosing the right method for your specific needs and product design will be based on your client's needs and the desired end result.

The purpose of surface treatment and finishing processes is to protect the underlying material and enhance its appearance. Common surfaces treated with these processes are painted, plated under paint on guardrails, and polished to produce a smooth and glossy surface. The most common metals used in surface finishing are aluminum, brass, copper, stainless steel, and carbon steels. Further, these finishes can also be applied to used parts. This is an effective way to improve the appearance of metal components.

The three major types of surface finishing processes are: sanding, polishing, and degreasing. A finish with a high gloss is often regarded as a good example of a high-quality surface. A gloss finish is considered an excellent reflection of light, and it is ideal for reflecting light. A matte finish is best for the most practical applications, such as automotive parts. However, if the surface is not polished, it will look dull.

Electropolishing is a process similar to electroplating. It involves electricity and chemical reactions to remove ions and produce a smooth surface. Typical metals treated with electropolishing include nickel, copper, and stainless steel. These processes are highly specialized and customized. Some manufacturers have even developed robots to perform these processes for them. The different applications of these technologies will determine what kind of materials are suitable for which applications.

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