SAW CHAIN
20230219250 · 2023-07-13
Inventors
Cpc classification
B28D1/124
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A saw chain includes connecting links and drive links that are mutually connected by rivets in an articulated manner about rivet axes. The rivets project through at least one rivet opening of one connecting link and through a rivet opening of a drive link. At least one rivet has, on one end face thereof, a depression having a depression edge and a depression base surrounded by the depression edge. The distance of the depression edge from a central plane of the saw chain increases at an increasing radial distance from the rivet axis. The distance (e) of the base from the central plane does not increase at any point of the base at an increasing radial distance from the rivet axis. A greatest distance (a) of the base from the rivet axis corresponds to 50% to 100% of half the core diameter (d) of the rivet.
Claims
1. A saw chain defining a center plane and comprising: a plurality of connecting links and a plurality of drive links arranged between mutually adjacent ones of said connecting links; a plurality of rivets defining respective rivet axes; said plurality of rivets connecting said plurality of connecting links and said plurality of drive links in an articulated manner about said rivet axes; each of said connecting links and each of said drive links having rivet openings; said rivets projecting through at least one of said rivet openings of at least one connecting link and through at least one of said rivet openings of at least one drive link; said rivets having a collar arranged in the rivet opening of the drive link without projecting into the rivet opening of the connecting link; said center plane running perpendicularly to said rivet axes and centrally through said drive links; a portion of said connecting links being configured as cutting links having respective cutting sections; said rivets each having first and second end faces and a core diameter (d); said first and second end faces being formed on first and second rivet heads having an enlarged outer diameter (b); said first and second rivet head project over an outer surface of the connecting link associated therewith; at least one of said rivets having a depression formed in at least one of the end faces thereof; said at least one rivet being configured as a solid body; and, said first and second end faces are configured so as to be different from one another.
2. The saw chain of claim 1, wherein said depression is formed in said second end face and said first end face is formed without a depression.
3. The saw chain of claim 1, wherein said first end face is configured on a first rivet head and said second end face is configured on a second rivet head; said second rivet head has an elevation (h) measured in the direction of the rivet axis; said first rivet head has an elevation (g) measured in the direction of the rivet axis; and, said elevation (h) of said second rivet head is greater than said elevation (g) of said first rivet head.
4. The saw chain of claim 1, wherein said first end face is configured convexly.
5. The saw chain of claim 1, wherein said depression is a first depression and is formed in said first end face and defines a first depression base having a first depression base diameter; said first end face has a first curvature in a region of said first depression base diameter; said second end face has a second depression formed therein defining a second depression base having a second depression base diameter; said second end face has a second curvature in a region of said second depression base diameter corresponding to the region of said first depression base diameter; and, said first curvature is mirror symmetrical to said second curvature.
6. The saw chain of claim 1, wherein a difference of distance (n) of said first end face at a first intersection point of the rivet axis with said first end face to said center plane and a distance (e) of said second end face at a second intersection point of the rivet axis with said second end face to said center plane is less than 0.3 mm.
7. The saw chain of claim 1, wherein at least one of said first and second end faces of a rivet is formed on a rivet head having an increased outer diameter (b) projecting over an outer face of the connecting link associated therewith.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0027] The invention will now be described with reference to the drawings wherein:
[0028]
[0029]
[0030]
[0031]
DETAILED DESCRIPTION
[0032]
[0033] The connecting links 2 are partially configured as cutting links 5, 6. Right cutting links 5 are arranged here on the right side of the chain 15 and left cutting links 6 on the left side of the chain 16 (
[0034] In the embodiment, a depth delimiter 8 is arranged ahead of each cutting section 7. In the embodiment, the depth delimiter 8 and the following cutting section 7 are arranged on the same cutting link 5, 6.
[0035] The terms “right side of the chain 15” and “left side of the chain 16” relate to a view of the saw chain from above looking at the cutting sections 7, that is, from the cutting sections 7 in the direction of the drive bases 9. In this viewing direction, the right side of the chain 15 is arranged on the right and the left side of the chain 16 on the left in the running direction.
[0036] As
[0037] A different configuration of the saw chain 1 can also be advantageous.
[0038] As
[0039] As
[0040] As
[0041] At the rivet heads 13, 14, the rivets 4 have an enlarged outer diameter b (
[0042]
[0043] As
[0044] As
[0045] In an alternative embodiment, the rivet 4 on its first end face 33 is formed integrally with the connecting link 2. The rivet 4 at the end face 33 is formed integrally with the adjacent connecting link 2. On the opposite side, the rivet 4 projects through the rivet opening 11 of the opposite connecting link 2. This connecting link 2 is formed separately from the rivet 4 and is connected to the latter by a riveting process. A rivet head 14 is arranged on this side of the rivet 4. The depression 20 is arranged on the second end face 34. The depression 20 is provided on the rivet head 14 at which the rivet 4 is connected by riveting to a connecting link 2 formed separately from the rivet 4. The depression 20 is arranged on that side of the rivet 4 on which the rivet 4 projects through a rivet opening 11 of a connecting link 2. The torsional strength of the rivet 4 in the rivet opening 11 of the connecting link 2 can be influenced by the depression 20. One side of the rivet 4 is formed integrally with a connecting link 2 and the other side of the rivet 4 has the depression 20.
[0046] In the embodiment, the enlarged diameter b of the rivet heads 13 and 14 is larger than the core diameter d. The outer surfaces 23 of the connecting links 2 lie facing away from the central plane 19. The rivet heads 13 and 14 project over the outer surface 23 of the respectively adjacently arranged connecting link 2. Adjacent to the outer surface 23, the connecting links 2 each have a chamfer 25. It can also be provided that only one of the connecting links 2 has a chamfer 25, or that the chamfers 25 of the two connecting links 2 differ. The chamfers 25 have a largest outer diameter p adjacent to the outer surface 23. The diameter b of the rivet heads 13 and 14 is advantageously larger than the outer diameter p at the chamfer 25. The rivet heads 13 and 14 thereby completely cover the rivet openings 11 in the direction of the rivet axis 18. The enlarged outer diameter b of the rivet head 13, 14 is advantageously at least 120% of the largest diameter p of the chamfer 25.
[0047] It is provided that at least one end face 33, 34 of the rivet 4 has a depression 20. In the embodiment, a depression 20 is provided on the second end face 34. The first end face 33 does not have a depression 20. The depression 20 has a base of the depression 21 and a depression edge 22. The depression edge 22 surrounds the base of the depression 21. The rivet axis 18 intersects the base of the depression 21. In the embodiment, the base of the depression 21 and the depression edge 22 are formed rotationally symmetrically about the rivet axis 18. However, an asymmetrical configuration with respect to the rivet axis 18 may also be provided.
[0048] The base of the depression 21 is that region of the depression 20 in which a distance e of the base of the depression 21 from the central plane 19 does not increase at any point of the base of the depression 21 at an increasing radial distance from the rivet axis 18. The largest distance e of the base of the depression 21 from the central plane 19 is therefore at least also at the intersection of the base of the depression 21 with the rivet axis 18. The distance e is measured parallel to the rivet axis 18. The intersection of the base of the depression 21 with the rivet axis 18 corresponds to the intersection 27 of the second end face 34 with the rivet axis 18. The base of the depression 21 is at a largest distance a from the rivet axis 18. In the embodiment, the largest distance a corresponds to half the diameter of the base of the depression 21. The largest distance a is measured in the radial direction with respect to the rivet axis 18. The distance a corresponds to the maximum radial distance of the base of the depression 21 from the rivet axis 18. The largest distance a of the base of the depression 21 from the rivet axis 18 corresponds to at least 30%, in particular at least 50% of half the core diameter d of the rivet 4. The base of the depression 21 thereby provides a sufficiently large area for introducing forces into the rivet 4 approximately in the direction of the rivet axis 18 during the riveting. The largest distance a of the base of the depression 21 from the rivet axis 18 corresponds at most to 100% of half the core diameter d of the rivet 4. The base of the depression 21 accordingly does not extend in the radial direction with respect to the rivet axis 18 beyond a rivet section 28 which is arranged in the rivet opening 11 of the connecting link 2. The largest distance a of the base of the depression 21 from the rivet axis 18 corresponds at most to 80% of half the core diameter d of the rivet 4.
[0049] The largest distance a of the base of the depression 21 from the rivet axis 18 is advantageously at least 20%, in particular at least 40% of half the largest diameter p of the chamfer 25.
[0050] It can be provided that the base of the depression 21 runs partially or completely in a flat manner. This is illustrated by a solid line in
[0051] The depression edge 22 is at a distance q from the central plane 19 that increases radially outward from the base of the depression 21. In
[0052] The depression 20 is at a largest distance c from the rivet axis 18. In the case of a symmetrical configuration, the largest distance c corresponds to half the diameter of the depression 20. The largest distance c of the depression 20 from the rivet axis 18 advantageously corresponds to at least 110% of the largest distance a of the base of the depression 21 from the rivet axis 18. The largest distance c of the depression 20 from the rivet axis 18 advantageously corresponds to 70% to 120% of half the core diameter d of the rivet 4. Half the core diameter d corresponds to the core radius d/2. The depression 20 advantageously projects in the radial direction with respect to the rivet axis 18, in the viewing direction of the rivet axis 18, beyond the rivet section 28 in which the core diameter d is measured. Half the enlarged outer diameter b of the rivet head 14 is preferably 1.5 times to 3.5 times, in particular 2 times to 3.5 times the largest distance a.
[0053] The left rivet head 14 has a height h, as measured parallel to the rivet axis 18. The height h is advantageously greater than a depth f of the depression 20, as measured parallel to the rivet axis 18. The depth f is in particular less than 50%, in particular less than 30% of the height h. The depth f of the depression 20 is advantageously smaller than the largest distance a of the base of the depression 21 from the rivet axis 18. The depth f is preferably less than 40%, in particular less than 30% of the largest distance a.
[0054] The connecting link 2 has a thickness m, as measured parallel to the rivet axis 18. The chamfer 25 has a depth k, as measured in the same direction. The depth k is advantageously at most 30%, in particular at most 20% of the thickness m of the connecting link 2.
[0055] In the embodiment, the two rivet heads 13 and 14 differ. In the embodiment, the right rivet head 13 does not have a depression 20. The end face 33 intersects the rivet axis 18 at an intersection 26. The end face 33 is at a distance n from the central plane 19. Starting from the intersection 26, the distance n is reduced at an increasing radial distance from the rivet axis 18. In
[0056] The distance n of the intersection 26 on the first end face 33 and the distance e of the intersection 27 on the second end face 34 from the central plane 19 are preferably approximately equal in size. The difference between the distances n and e on the intersections 26 and 27 is advantageously less than 0.3 mm, in particular less than 0.1 mm. The distances n and e are preferably identical in size in the scope of the manufacturing tolerances.
[0057] The above-described configuration of rivets 4 can also be provided for differently constructed saw chains 1.
[0058] It is understood that the foregoing description is that of the preferred embodiments of the invention and that various changes and modifications may be made thereto without departing from the spirit and scope of the invention as defined in the appended claims.