End mill with coolant holes

US9833845B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9833845-B2
Application numberUS-201314436001-A
CountryUS
Kind codeB2
Filing dateOct 21, 2013
Priority dateOct 29, 2012
Publication dateDec 5, 2017
Grant dateDec 5, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An end mill body comprises: bottom blades formed at ridgelines where gashes and tip flank faces intersect, the gashes are formed at the tips of chip discharge grooves. At least one of the bottom blades serves as a long bottom blade that extends toward an inner peripheral side longer than the remaining bottom blades. The end mill body also has coolant holes formed between the chip discharge grooves. A coolant hole which is located between a chip discharge groove of a gash and a chip discharge groove located behind the chip discharge groove in a rotational direction is open to the tip clearance face of the long bottom blade. A coolant hole which is located between the chip discharge groove of the gash and a chip discharge groove located in front of the chip discharge groove in the rotational direction is open to the gash of the long bottom blade.

First claim

Opening claim text (preview).

The invention claimed is: 1. An end mill with coolant holes, comprising: a tip portion configured to rotate around an axis and to serve as a cutting blade part; a plurality of chip discharge grooves that are twisted to a backward side in a rotational direction of the end mill toward a rear end side in a direction of the axis and are formed at predetermined intervals in a circumferential direction at an outer periphery of the cutting blade part, peripheral blades that are respectively formed at outer-peripheral-side ridge portions of wall faces of the chip discharge grooves facing the rotational direction of the end mill; gashes that are formed at tip portions of the chip discharge grooves; and bottom blades extending from tips of the peripheral blades toward the axis, said bottom blades being formed at intersecting ridgeline portions between wall faces of the gashes that face the rotational direction of the end mill and tip flank faces of the end mill body, wherein at least one bottom blade among the bottom blades serves as a long bottom blade that is longer than the bottom blade adjacently provided at a forward side in the rotational direction of the end mill and the bottom blade adjacently provided at a backward side in the rotational direction of the end mill, wherein each of the coolant holes is formed between the chip discharge grooves, which are adjacent to each other in the circumferential direction of the end mill body, wherein a first coolant hole passes through a portion between a chip discharge groove connected to a gash along which the long bottom blade is formed and another chip discharge groove adjacently provided at a backward side of the chip discharge groove in the rotational direction of the end mill, said first coolant hole being open to a tip flank face connected to a backward side of the long bottom blade in the rotational direction of the end mill, and wherein a second coolant hole passes through a portion between the chip discharge groove connected to the gash along which the long bottom blade is formed, and second chip discharge groove adjacently provided at a forward side of the chip discharge groove in the rotational direction of the end mill, said second coolant hole being open to the gash along which the long bottom blade is formed. 2. The end mill with coolant holes according to claim 1 , wherein, in a top plan view in the direction of the axis, an interval between the first coolant hole that is open to the tip flank face connected to the backward side of the long bottom blade in the rotational direction of the end mill, and the long bottom blade is smaller than an interval between the bottom blade adjacent to the second coolant hole that is open to the gash along which the long bottom blade is formed, and the bottom blade adjacent to the forward side of the bottom blade in the rotational direction of the end mill. 3. The end mill with coolant holes according to claim 1 , wherein the second coolant hole that is open to the gash, along which the long bottom blade is formed, is provided on a border between said gash and the tip flank face of the bottom blade adjacently provide at the forward side of the long bottom blade in the rotational direction of the end mill, and wherein, in a top plan view in the direction of the axis, an opening area in the gash along which the long bottom blade is formed is larger than an opening area in the tip flank face of the bottom blade adjacent to the forward side of the long bottom blade in the rotational direction of the end mill. 4. The end mill with coolant holes according to claim 1 , wherein, a lead of the first coolant hole that is open to the tip flank face connected to the backward side of the long bottom blade in the rotational direction of the end mill, and a lead of a peripheral blade connected to the long bottom blade are equal to each other, and wherein a lead of the second coolant hole that is open to the gash along which the long bottom blade is formed is larger than the lead of a peripheral blade connected to the bottom blade adjacent to the forward side of the long bottom blade in the rotational direction of the end mill. 5. The end mill with coolant holes according to claim 4 , wherein, the lead of the first coolant hole that is open to the tip flank face connected to the backward side of the long bottom blade in the rotational direction of the end mill, and the lead of the second coolant hole that is made open to the gash along which the long bottom blade is formed are equal to each other, and wherein the lead of the peripheral blade connected to the long bottom blade is larger than the lead of the peripheral blade connected to the bottom blade adjacent to the forward side of the long bottom blade in the rotational direction of the end mill. 6. The end mill with coolant holes given according to claim 1 , wherein the cutting blade part comprises three chip discharge grooves, the three peripheral blades, the three gashes, and the three bottom blades. 7. The end mill with coolant holes according to claim 2 , wherein the second coolant hole that is open to the gash, along which the long bottom blade is formed, is provided on a border between said gash and the tip flank face of the bottom blade adjacent to the forward side of the long bottom blade in the rotational direction of the end mill, and wherein, in a top plan view in the direction of the axis, an opening area in the gash along which the long bottom blade is formed is larger than an opening area in the tip flank face of the bottom blade adjacent to the forward side of the long bottom blade in the rotational direction of the end mill. 8. The end mill with coolant holes according to claim 2 , wherein, a lead of the first coolant hole that is open to the tip flank face connected to the backward side of the long bottom blade in the rotational direction of the end mill, and a lead of a peripheral blade connected to the long bottom blade are equal to each other, and wherein a lead of the second coolant hole that is open to the gash along which the long bottom blade is formed is larger than the lead of a peripheral blade connected to the bottom blade adjacent to the forward side of the long bottom blade in the rotational direction of the end mill. 9. The end mill with coolant holes according to claim 3 , wherein, a lead of the first coolant hole that is open to the tip flank face connected to the backward side of the long bottom blade in the rotational direction of the end mill, and a lead of a peripheral blade connected to the long bottom blade are equal to each other, and wherein a lead of the second coolant hole that is open to the gash along which the long bottom blade is formed is larger than the lead of a peripheral blade connected to the bottom blade adjacent to the forward side of the long bottom blade in the rotational direction of the end mill. 10. The end mill with coolant holes given according to claim 2 , wherein the cutting blade part comprises three chip discharge grooves, the three peripheral blades, the three gashes, and the three bottom blades. 11. The end mill with coolant holes given according to claim 3 , wherein the cutting blade part comprises three chip discharge grooves, the three peripheral blades, the three gashes, and the three bottom blades. 12. The end mill with coolant holes given according to claim 4 , wherein the cutting blade part comprises three chip discharge grooves, the three peripheral blades, the three gashes, and the three bottom blades. 13. The end mill with coolant holes given according to claim 5 , wherein the cutting blade part comprises three chip disc

Assignees

Inventors

Classifications

  • Shank-type cutters, i.e. with an integral shaft · CPC title

  • B23C5/28Primary

    Features relating to lubricating or cooling · CPC title

  • Cooling and lubrication · CPC title

  • Milling cutters comprising a hole or hollow in the end face or between the cutting edges · CPC title

  • Cutting edges arranged at different diameters · CPC title

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What does patent US9833845B2 cover?
An end mill body comprises: bottom blades formed at ridgelines where gashes and tip flank faces intersect, the gashes are formed at the tips of chip discharge grooves. At least one of the bottom blades serves as a long bottom blade that extends toward an inner peripheral side longer than the remaining bottom blades. The end mill body also has coolant holes formed between the chip discharge groo…
Who is the assignee on this patent?
Mitsubishi Materials Corp
What technology area does this patent fall under?
Primary CPC classification B23C5/28. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Dec 05 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).