IP Library › Granted Patent US 10,837,519
Granted Patent B2
US 10,837,519 · App. 15/939,287 · Granted Nov 17, 2020

Bush chain and roller chain

Inventors: Akira Fujiwara (Wako, JP); Takeo Kobayashi (Wako, JP)
Assignee: HONDA MOTOR CO., LTD.
F16G13/04F16G13/06F16G13/08
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Quick Facts
Patent No.
US 10,837,519
App. No.
15/939,287
Granted
Nov 17, 2020
Kind
B2
Abstract

A bush chain includes a plurality of units. The plurality of units are coupled together in an endless shape and each include a pair of inner plates, a bush, a pair of outer plates, and a coupling pin. The pair of inner plates each include a pair of bush holes. The bush is fixed to the bush hole and includes a pin hole. The pair of outer plates are each disposed at the outside of the respective inner plate. The coupling pin is fixed to the outer plates, and is inserted through and rotatable in the pin hole of the bush. Abrasive particles are embedded in an inner peripheral face at the pin hole of the bush.

Claims (61)

1. A bush chain comprising

a plurality of units that include:

a pair of inner plates each including a pair of bush holes;

a bush that is fixed to the bush hole and includes a pin hole;

a pair of outer plates that are each disposed at the outside of the respective inner plate; and

a coupling pin that is fixed to the outer plates, and is inserted through and rotatable in the pin hole of the bush, wherein

abrasive particles are embedded in an inner peripheral face at the pin hole of the bush.

2. The bush chain of claim 1 , wherein:

the hardness of an outer peripheral face of the coupling pin is higher than the hardness of the inner peripheral face at the pin hole; and

the hardness of the abrasive particles is lower than the hardness of the outer peripheral face of the coupling pin, and higher than the hardness of the inner peripheral face at the pin hole.

3. The bush chain of claim 1 , wherein the abrasive particles are Al 2 O 3 , and the proportion of Al by mass in a region from the outermost surface of the pin hole to the deepest location at which Al is present is 2.5% by mass or greater.

4. A roller chain comprising

a plurality of units that include:

a pair of inner plates each including a pair of bush holes;

a bush that is fixed to the bush hole and includes a pin hole;

a roller that is rotatably supported at an outer periphery of the bush;

a pair of outer plates that are each disposed at the outside of the respective inner plate; and

a coupling pin that is fixed to the outer plates, and is inserted through and rotatable in the pin hole of the bush, wherein

abrasive particles are embedded in an inner peripheral face at the pin hole of the bush.

5. The bush chain of claim 1 , wherein the abrasive particles include lump shaped abrasive particles and/or powdered abrasive particles embedded in the inner peripheral face at the pin hole in an at least a partially exposed state at the inner peripheral face.

6. The bush chain of claim 1 , wherein the average size of the abrasive particles is 3 μm or smaller.

7. The roller chain of claim 4 , wherein:

the hardness of an outer peripheral face of the coupling pin is higher than the hardness of the inner peripheral face at the pin hole; and

the hardness of the abrasive particles is lower than the hardness of the outer peripheral face of the coupling pin, and higher than the hardness of the inner peripheral face at the pin hole.

8. The roller chain of claim 4 , wherein the abrasive particles are Al 2 O 3 , and the proportion of Al by mass in a region from the outermost surface of the pin hole to the deepest location at which Al is present is 2.5% by mass or greater.

9. The roller chain of claim 4 , wherein the average size of the abrasive particles is 3 μm or smaller.

10. The roller chain of claim 4 , wherein the abrasive particles include lump shaped abrasive particles and/or powdered abrasive particles embedded in the inner peripheral face at the pin hole in an at least a partially exposed state at the inner peripheral face.

11. A bush chain comprising:

bush chain units comprising:

a first inner plate including a pair of first bush holes;

a second inner plate including a pair of second bush holes;

a bush having a first end and a second end opposite to the first end and provided between the first inner plate and the second inner plate so that the first end and the second end are inserted through one of the first bush holes and one of the second bush holes, respectively, the bush including a pin hole extending from the first end to the second end;

abrasive particles embedded in an inner peripheral face of the pin hole;

a first outer plate disposed on an opposite side of the bush with respect to the first inner plate;

a second outer plate disposed on an opposite side of the bush with respect to the second inner plate; and

a coupling pin connected to the first outer plate and the second outer plate and rotatably inserted through the pin hole of the bush.

12. The bush chain according to claim 11 ,

wherein a hardness of an outer peripheral face of the coupling pin is higher than a hardness of the inner peripheral face of the pin hole, and

wherein a hardness of the abrasive particles is lower than the hardness of the outer peripheral face of the coupling pin, and higher than the hardness of the inner peripheral face of the pin hole.

13. The bush chain according to claim 11 ,

wherein the abrasive particles comprise Al 2 O 3 , and

wherein a proportion of Al by mass in a region from an outermost surface of the pin hole to a deepest location at which Al is present is 2.5% by mass or greater.

14. The bush chain according to claim 11 , wherein an average size of the abrasive particles is 3 μm or smaller.

15. The bush chain of claim 11 , wherein the abrasive particles include lump shaped abrasive particles and/or powdered abrasive particles embedded in the inner peripheral face at the pin hole in an at least a partially exposed state at the inner peripheral face.

16. A roller chain comprising:

roller chain units comprising:

a first inner plate including a pair of first bush holes;

a second inner plate including a pair of second bush holes;

a bush having a first end and a second end opposite to the first end and provided between the first inner plate and the second inner plate so that the first end and the second end are inserted through one of the first bush holes and one of the second bush holes, respectively, the bush including a pin hole extending from the first end to the second end, a roller being rotatably supported at an outer periphery of the bush;

abrasive particles embedded in an inner peripheral face of the pin hole;

a first outer plate disposed on an opposite side of the bush with respective to the first inner plate;

a second outer plate disposed on an opposite side of the bush with respective to the second inner plate; and

a coupling pin connected to the first outer plate and the second outer plate and rotatably inserted through the pin hole of the bush.

17. The roller chain according to claim 16 ,

wherein a hardness of an outer peripheral face of the coupling pin is higher than a hardness of the inner peripheral face of the pin hole, and

wherein a hardness of the abrasive particles is lower than the hardness of the outer peripheral face of the coupling pin, and higher than the hardness of the inner peripheral face of the pin hole.

18. The roller chain according to claim 16 ,

wherein the abrasive particles comprise Al 2 O 3 , and

wherein a proportion of Al by mass in a region from an outermost surface of the pin hole to a deepest location at which Al is present is 2.5% by mass or greater.

19. The roller chain according to claim 16 , wherein an average size of the abrasive particles is 3 μm or smaller.

20. The roller chain of claim 16 , wherein the abrasive particles include lump shaped abrasive particles and/or powdered abrasive particles embedded in the inner peripheral face at the pin hole in an at least a partially exposed state at the inner peripheral face.

Priority Claims (1)
JP 2015-087472 · Apr 22, 2015 · national
Continuity (2)
Division 15132241 · Apr 19, 2016
Related Publication 20180216702A1 · Aug 2, 2018