US2011312255A1PendingUtilityA1

Method for multiple cutoff machining of rare earth magnet

Assignee: AKADA KAZUHITOPriority: Jun 16, 2010Filed: Jun 15, 2011Published: Dec 22, 2011
Est. expiryJun 16, 2030(~3.9 yrs left)· nominal 20-yr term from priority
B24B 27/0675B24B 27/0076H01F 41/0253H01F 1/0577B24D 5/123B28D 7/02B28D 1/24B24B 27/06B24B 41/06
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Claims

Abstract

A rare earth magnet block is cutoff machined into pieces by rotating a plurality of cutoff abrasive blades. Improvements are made by starting the machining operation from the upper surface of the magnet block downward, interrupting the machining operation, turning the magnet block upside down, placing the magnet block such that the cutoff grooves formed before and after the upside-down turning may be aligned with each other, and restarting the machining operation from the upper surface of the upside-down magnet block downward until the cutoff grooves formed before and after the upside-down turning merge with each other.

Claims

exact text as granted — not AI-modified
1 . A method for multiple cutoff machining a rare earth magnet block using a multiple blade assembly comprising a plurality of cutoff abrasive blades coaxially mounted on a rotating shaft at axially spaced apart positions, each said blade comprising a core in the form of a thin disk or thin doughnut disk and a peripheral cutting part on an outer peripheral rim of the core, said method comprising the step of rotating the cutoff abrasive blades to cutoff machine the magnet block into pieces,
 said method further comprising the steps of:   starting the machining operation from the upper surface of the magnet block downward to form cutoff grooves in the magnet block,   interrupting the machining operation before the magnet block is cut into pieces,   turning the magnet block upside down,   placing the magnet block such that the cutoff grooves formed before and after the upside-down turning may be vertically aligned with each other, and   restarting the machining operation from the upper surface of the upside-down magnet block downward to form cutoff grooves in the magnet block until the cutoff grooves formed before and after the upside-down turning merge with each other, thereby cutting the magnet block into pieces.   
     
     
         2 . The method of  claim 1  wherein the side surface of the magnet block which is not subject to the machining operation is a reference plane, the magnet block is turned upside down and placed such that the reference planes may be aligned with each other before and after the upside-down turning whereby the cutoff grooves formed before and after the upside-down turning are vertically aligned with each other. 
     
     
         3 . The method of  claim 1  wherein a jig for securing the magnet block in place is disposed such that a side surface of the jig is parallel to the cutting plane of the magnet block, the side surface is a reference plane,
 the jig together with the magnet block secured thereby is turned upside down and placed such that the reference planes may be aligned with each other before and after the upside-down turning whereby the magnet block is turned upside down and the cutoff grooves formed before and after the upside-down turning are vertically aligned with each other. 
 
     
     
         4 . The method of  claim 3  wherein the jig is designed to secure a plurality of magnet blocks, and the jig together with the plurality of magnet blocks secured thereby is turned upside down such that the cutoff grooves formed in the plurality of magnet blocks before and after the upside-down turning may be aligned with each other at the same time.

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