The design method comprises the steps that the size of the
polishing disc is designed according to the vertex curvature
radius R, the aspheric surface coefficient K and the
caliber D of a to-be-polished surface of a product, iron blocks used for a grip on a clamp and an iron block used for the
polishing disc are designed, the hole position of the grip and the hole position and the size of a
polishing solution adding hole are determined, and the polishing disc is arranged on the polishing disc. The method comprises the following steps of: carrying out analogue
simulation through
software, confirming that the tool is available, cleaning a polishing disc put back into production, and then pouring an
asphalt disc to ensure that the
asphalt disc completely covers a working surface of the tool, does not overflow and is provided with a polishing solution hole site, so that the design for the spherical polishing tool provided by the invention needs to be manufactured according to the specific size and curvature of a product; according to the efficient spherical polishing tool, the three holes are punched in the back face, the polishing disc is more convenient to take, polishing liquid is more convenient to add, the
machining tool can be flexibly adjusted according to
optical materials needing to be machined through the design method of the efficient spherical polishing tool for the polishing disc, and therefore it is guaranteed that the
machining precision of the materials is high.