Choosing the right finishing media for your component material – Sharmic Engineering Knowledge Centre
Knowledge CentreMedia selectionChoosing the right finishing media for your component material

Choosing the right finishing media for your component material

8 min read

A practical guide covering ceramic, plastic, and steel media — when to use each based on material hardness, component geometry, and desired surface finish.

Why media selection matters

The finishing media is the single most important variable in your vibratory process. Choose the wrong type and you'll either damage your components, achieve a poor finish, or find the process takes far longer than it should. Choose correctly and you'll get consistent, fast results with minimal media consumption.

The main media types

Ceramic media

Ceramic media is the most widely used type. Made from aluminium oxide or silicon carbide bonded in a ceramic matrix, it offers a high cut rate and is suitable for ferrous and non-ferrous metals. Ceramic media comes in a wide range of shapes — cones, cylinders, triangles, wedges, and stars — each suited to different component geometries.

Plastic media

Plastic media is made from a polyester resin matrix with abrasive particles. It is lighter and less aggressive than ceramic, making it ideal for softer metals and components requiring a finer finish. It also tends to leave a brighter surface.

Steel media

Steel media — typically stainless steel balls, pins, or ballcones — does not cut the component surface but instead burnishes it, compacting and smoothing the surface layer. The result is a bright, mirror-like finish.

Tip: When finishing aluminium, always use plastic or ceramic media specifically rated for non-ferrous use. Contamination from ferrous media can cause staining that is difficult to remove.

Choosing media shape

Media shape is critical for components with complex geometry. As a general rule:

Media size

Media should always be larger than the smallest hole or recess on the component — otherwise media will become lodged and is very difficult to remove. As a rule of thumb, use media that is at least 1.5x the size of the smallest feature on the part.

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