Bearing bush for use in toggle

US9850946B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9850946-B2
Application numberUS-201515329446-A
CountryUS
Kind codeB2
Filing dateJul 22, 2015
Priority dateJul 28, 2014
Publication dateDec 26, 2017
Grant dateDec 26, 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.

A bearing bush 1 for use in a toggle has a cylindrical metallic base material 2 and a solid lubricant 3 embedded in the metallic base material 2 , and the metallic base material 2 has dead end grooves 5 formed in a cylindrical inner peripheral surface 4 , an annular groove 6 formed in the cylindrical inner peripheral surface 4 , and circular holes 7 a and 7 b as well as 7 c and 7 d formed in each of a pair of semicylindrical inner peripheral surfaces 4 a and 4 b adjacent to each other in an axial direction X and two pairs of semicylindrical inner peripheral surfaces 4 c and 4 d sandwiching the pair of semicylindrical inner peripheral surfaces 4 a and 4 b in a circumferential direction R and adjacent to each other in the axial direction X in each pair.

First claim

Opening claim text (preview).

The invention claimed is: 1. A bearing bush for use in a toggle and interposed between a pin and a pair of links of a toggle type mold clamping apparatus equipped with a toggle link mechanism having at least the pair of links and the pin for coupling the pair of links relatively rotatably, comprising: a cylindrical metallic base material; and a solid lubricant embedded in the metallic base material, wherein the metallic base material has a plurality of circular holes formed in at least a first semicylindrical inner peripheral surface between the first semicylindrical inner peripheral surface and a second semicylindrical inner peripheral surface which are formed by dividing a cylindrical inner peripheral surface of the metallic base material into three parts in a circumferential direction and dividing the same into two parts in an axial direction, and which are adjacent to each other in the axial direction, a solid lubricant having an exposed surface exposed at the first semicylindrical inner peripheral surface being embedded in each of the plurality of circular holes, and wherein, if the cylindrical inner peripheral surface is developed into a plane, each of the plurality of circular holes has a center at a respective vertex of each of a plurality of virtual rhombuses formed by a plurality of first virtual line segments which are inclined in one direction at a predetermined first angle with respect to a circumferential line perpendicular to the axial direction and extending in the circumferential direction, and extend in parallel in such a manner as to be spaced apart from each other with a predetermined first interval, and by a plurality of second virtual line segments which are inclined in a symmetrically opposite direction to the one direction about the circumferential line at the first angle with respect to the circumferential line in such a manner as to intersect the first virtual line segments, and extend in parallel in such a manner as to be spaced apart from each other with the first interval, each of the plurality of circular holes having a radius which is greater than one-fourth of a length of an axial diagonal line between diagonal lines of the rhombus and is smaller than one-half of a length of a side of the rhombus. 2. The bearing bush for use in a toggle according to claim 1 , wherein, if the cylindrical inner peripheral surface is developed into a plane, each of one first virtual line segment of the plurality of first virtual line segments and one second virtual line segment of the plurality of second virtual line segments passes through a circumferentially central point of the first semicylindrical inner peripheral surface on the circumferential line. 3. The bearing bush for use in a toggle according to claim 1 , wherein circumferentially mutually adjacent ones of the plurality of circular holes are partially overlapped in the circumferential direction with an axially overlapping allowance. 4. The bearing bush for use in a toggle according to claim 1 , wherein the metallic base material further has a plurality of circular holes which are formed in the second semicylindrical inner peripheral surface and in which the solid lubricant having an exposed surface exposed at the second semicylindrical inner peripheral surface is embedded, and, if the cylindrical inner peripheral surface is developed into a plane, the plurality of circular holes in the first semicylindrical inner peripheral surface and the plurality of circular holes in the second semicylindrical inner peripheral surface are respectively arranged symmetrically about the circumferential line or point symmetrically with respect to the circumferentially central point of a respective one of the first and second semicylindrical inner peripheral surfaces. 5. The bearing bush for use in a toggle according to claim 4 , wherein circumferentially mutually adjacent ones of the plurality of circular holes formed in the second semicylindrical inner peripheral surface are partially overlapped in the circumferential direction with an axially overlapping allowance. 6. The bearing bush for use in a toggle according to claim 1 , wherein the first angle is from 20° to 45°. 7. The bearing bush for use in a toggle according to claim 1 , wherein the first angle is from 25° to 39°. 8. The bearing bush for use in a toggle according to claim 1 , wherein the metallic base material further has a plurality of other circular holes formed in at least a third semicylindrical inner peripheral surface between at least one axially adjacent pair of the third semicylindrical inner peripheral surface and a fourth semicylindrical inner peripheral surface among the third to a sixth semicylindrical inner peripheral surface which are formed in such a manner as to sandwich the first and second semicylindrical inner peripheral surfaces in the circumferential direction and by dividing the cylindrical inner peripheral surface of the metallic base material into three parts in the circumferential direction and dividing the same into two parts in the axial direction, the solid lubricant having an exposed surface exposed at the third semicylindrical inner peripheral surface being embedded in each of the plurality of other circular holes, and wherein, if the cylindrical inner peripheral surface is developed into a plane, each of the plurality of other circular holes has a center at a respective vertex of each of a plurality of second virtual rhombuses formed by a plurality of third virtual line segments which are inclined in the one direction at a predetermined second angle with respect to the circumferential line and extend in parallel in such a manner as to be spaced apart from each other with a predetermined second interval which is 1.5 to 2 times the predetermined first interval, and by a plurality of fourth virtual line segments which are inclined in a symmetrically opposite direction to the one direction about the circumferential line at the second angle with respect to the circumferential line in such a manner as to intersect the third virtual line segments, and extend in parallel in such a manner as to be spaced apart from each other with the second interval, each of the plurality of other circular holes having a radius which is greater than one-fourth of a length of an axial diagonal line between diagonal lines of the second rhombus and is smaller than one-half of a length of a side of the second rhombus. 9. The bearing bush for use in a toggle according to claim 8 , wherein circumferentially mutually adjacent ones of the plurality of other circular holes are partially overlapped in the circumferential direction with an axially overlapping allowance. 10. The bearing bush for use in a toggle according to claim 8 , wherein the metallic base material further has a plurality of other circular holes which are formed in the fourth semicylindrical inner peripheral surface and in which the solid lubricant having an exposed surface exposed at the fourth semicylindrical inner peripheral surface is embedded, and, if the cylindrical inner peripheral surface is developed into a plane, the plurality of other circular holes in the third semicylindrical inner peripheral surface and the plurality of other circular holes in the fourth semicylindrical inner peripheral surface are respectively arranged symmetrically about the circumferential line or point symmetrically with respect to the circumferentially central point of a respective one of the third and fourth semicylindrical inner peripheral surfaces. 11. The bearing bush for use in a toggle according to claim 10 , wherein circumferentially mutually adjacent ones of the plurality of other circular holes formed in the fourth semicylindrical inner peripheral

Assignees

Inventors

Classifications

  • with solids as lubricant, e.g. dry coatings, powder · CPC title

  • using a toggle mechanism for mould clamping · CPC title

  • for radial load only · CPC title

  • with at least a pair of arms pivoting relatively to at least one other arm, all arms being mounted on one pin (crank-pins F16C11/02) · CPC title

  • Lubricating means · CPC title

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What does patent US9850946B2 cover?
A bearing bush 1 for use in a toggle has a cylindrical metallic base material 2 and a solid lubricant 3 embedded in the metallic base material 2 , and the metallic base material 2 has dead end grooves 5 formed in a cylindrical inner peripheral surface 4 , an annular groove 6 formed in the cylindrical inner peripheral surface 4 , and circular holes 7 a and 7 b as well as …
Who is the assignee on this patent?
Oiles Industry Co Ltd
What technology area does this patent fall under?
Primary CPC classification F16C33/1095. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Dec 26 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).