6″ x 1/2″ x 1″ Final Polishing Wheel
Specifically designed to produce a high luster on stainless steel and mirror finishes on a variety of metals.
Specifically designed to produce a high luster on stainless steel and mirror finishes on a variety of metals.
Results of convolute wheels range from high luster polishing to moderate deburring, with each combination of density, grain type and size specialized in its function. The conformability of softer densities will not disrupt workpiece tolerances, while harder densities easily remove burrs or parting lines.
Results of convolute wheels range from high luster polishing to moderate deburring, with each combination of density, grain type and size specialized in its function. The conformability of softer densities will not disrupt workpiece tolerances, while harder densities easily remove burrs or parting lines.
Results of convolute wheels range from high luster polishing to moderate deburring, with each combination of density, grain type and size specialized in its function. The conformability of softer densities will not disrupt workpiece tolerances, while harder densities easily remove burrs or parting lines.
Specifically designed to produce a high luster on stainless steel and mirror finishes on a variety of metals.
Results of convolute wheels range from high luster polishing to moderate deburring, with each combination of density, grain type and size specialized in its function. The conformability of softer densities will not disrupt workpiece tolerances, while harder densities easily remove burrs or parting lines.
Results of convolute wheels range from high luster polishing to moderate deburring, with each combination of density, grain type and size specialized in its function. The conformability of softer densities will not disrupt workpiece tolerances, while harder densities easily remove burrs or parting lines.
Used for stationary operations, larger diameter wheels have longer flaps, resulting in flexibility and conformability. The larger surface area of unmounted wheels is also ideal for large or flat surfaces, reducing finishing time.
Used for stationary operations, larger diameter wheels have longer flaps, resulting in flexibility and conformability. The larger surface area of unmounted wheels is also ideal for large or flat surfaces, reducing finishing time.
Used for stationary operations, larger diameter wheels have longer flaps, resulting in flexibility and conformability. The larger surface area of unmounted wheels is also ideal for large or flat surfaces, reducing finishing time.