IP Library Granted Patent US 8,651,769
Granted Patent B2
US 8,651,769 · App. 13/497,355 · Granted Feb 18, 2014

Friction bolt

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Quick Facts
Patent No.
US 8,651,769
App. No.
13/497,355
Granted
Feb 18, 2014
Kind
B2
Abstract

A tube ( 1 ) of a friction bolt has an outer part ( 3 ) and an inner part ( 5 ) folded inward and a gap ( 7 ) extending in the longitudinal direction of the tube, at which gap the outer part transitions into the inner part. The lateral wall areas ( 9 ) of the inner part are flat and have a shape in which the free space between the outer and inner parts is substantially lenticular as in known tubes. The bottom ( 15 ) of the inner part lies against the outer part, and the weld ( 13 ) is arranged at a lateral offset from the plane of symmetry ( 11 ) as the area where the bottom lies against the outer part of the tube. Finally, the radii of curvature (R 3 ) in the area of the transitions ( 4 ) from the outer part into the inner part of the tube are greater than in known tubes.

Claims (43)

1. A friction bolt with a tube ( 1 ) that can be widened and that is folded inward in a longitudinal direction, the tube having a longitudinal plane of symmetry ( 11 ) running in the longitudinal direction, the tube comprising:

i) an outer part ( 3 ) with an essentially circular cross-sectional shape, the outer part ( 3 ) having a radius (R 2 );

ii) an inner part ( 5 ) arranged inside the outer part ( 3 ), the inner part ( 5 ) having lateral wall areas ( 9 ) with a radius of curvature (R 1 ); and

iii) a gap ( 7 ) that extends in the longitudinal direction of the tube ( 1 ), the outer part ( 3 ), in an area of the gap ( 7 ), turns into the inner part ( 5 ),

wherein the lateral wall areas ( 9 ) extend from a shape concentric to the outer part ( 3 ) to the longitudinal plane of symmetry ( 11 ),

wherein the radius of curvature (R 1 ) of the lateral wall areas ( 9 ) is equal to 250% to 350% of the radius (R 2 ) of the outer part ( 3 ), and

wherein the tube ( 1 ) is a longitudinally-welded tube ( 1 ), with a weld ( 13 ) in the outer part ( 3 ) of the tube ( 1 ) arranged laterally offset relative to the longitudinal plane of symmetry ( 11 ) of the tube ( 1 ).

2. The bolt according to claim 1 , wherein a bottom ( 15 ) of the inner part ( 5 ) joining the lateral walls areas ( 9 ) and located opposite the gap ( 7 ) rests on an inside surface ( 17 ) of the outer part ( 3 ) of the tube ( 1 ).

3. The bolt according to claim 2 , wherein the bottom ( 15 ) in the longitudinal plane of symmetry ( 11 ) of the tube ( 1 ) rests on the outer part ( 3 ) of the tube ( 1 ).

4. The bolt according to claim 2 , wherein a radius (R 4 ) in the area of the bottom ( 15 ) of the inner part ( 5 ) of the tube ( 1 ) is equal to 15% to 35% of the radius (R 2 ) of the outer part ( 3 ) of the tube ( 1 ).

5. The bolt according to claim 4 , wherein the radius (R 4 ) in the area of the bottom ( 15 ) of the inner part ( 5 ) of the tube ( 1 ) is equal to 25% of the radius (R 2 ) of the outer part ( 3 ) of the tube ( 1 ).

6. The bolt according to claim 1 , wherein the radius of curvature (R 1 ) of the lateral wall areas ( 9 ) of the inner part ( 5 ) of the tube ( 1 ) is equal to 280% of the radius (R 2 ) of the outer part ( 3 ) of the tube ( 1 ).

7. The bolt according to claim 1 , wherein a largest distance (A) that interiors ( 19 ) of the lateral wall areas ( 9 ) of the inner part ( 5 ) of the tube ( 1 ) are apart is equal to 120% to 160% of a width (B) of the gap ( 7 ).

8. The bolt according to claim 7 , wherein the largest distance (A) between the interiors ( 19 ) of the lateral wall areas ( 9 ) is equal to 140% of the width (B) of the gap ( 7 ).

9. The bolt according to claim 1 , wherein a radius (R 3 ) of the curvature of the wall of the tube ( 1 ) in the area of the gap ( 7 ) where the outer part ( 3 ) turns into the inner part ( 5 ) of the tube ( 1 ) is equal to 20% to 40% of the radius (R 2 ) of the outer part ( 3 ) of the tube ( 1 ).

10. The bolt according to claim 9 , wherein the radius (R 3 ) of the curvature of the wall of the tube ( 1 ) in the area of the gap ( 7 ) where the outer part ( 3 ) turns into the inner part ( 5 ) of the tube ( 1 ) is equal to 35% of the radius (R 2 ) of the outer part ( 3 ) of the tube ( 1 ).

11. The bolt according to claim 1 , wherein a bottom ( 15 ) of the inner part ( 5 ) joining the lateral walls areas ( 9 ) and located opposite the gap ( 7 ) rests on an inside surface ( 17 ) of the outer part ( 3 ) of the tube ( 1 ).

12. A friction bolt with a tube ( 1 ) that can be widened and that is folded inward in a longitudinal direction, the tube having a longitudinal plane of symmetry ( 11 ) running in the longitudinal direction, the tube comprising:

an outer part ( 3 ) with an essentially circular cross-sectional shape, the outer part ( 3 ) having a radius (R 2 ) along the circular cross-sectional shape;

an inner part ( 5 ) arranged inside the outer part ( 3 ) and free of undercuts,

the inner part ( 5 ) having lateral wall areas ( 9 ) extending along the plane of symmetry, the lateral walls having a radius of curvature (R 1 ),

transition areas ( 4 ) turning the outer part ( 3 ) to the inner part ( 5 ), the transition areas ( 4 ) having a radius of curvature (R 3 ); and

a gap ( 7 ) in an area of the outer part ( 3 ) turning into to the inner part ( 5 ) and extending in the longitudinal direction of the tube ( 1 ),

wherein the inner part ( 5 ) includes a bottom ( 15 ) joining the lateral walls areas ( 9 ) and located opposite the gap ( 7 ), the bottom ( 15 ) resting on an inside surface ( 17 ) of the outer part ( 3 ), the bottom having a radius of curvature (R 4 ),

wherein the radius of curvature (R 1 ) of the lateral wall areas ( 9 ) is equal to 250% to 350% of the radius (R 2 ) of the outer part ( 3 ) along the circular cross-sectional shape, and

wherein the tube ( 1 ) is a longitudinally-welded tube ( 1 ), with a weld ( 13 ) in the outer part ( 3 ) of the tube ( 1 ) arranged laterally offset relative to the longitudinal plane of symmetry ( 11 ) of the tube ( 1 ).

13. The bolt of claim 12 , wherein,

the radius (R 4 ) in the area of the bottom ( 15 ) of the inner part ( 5 ) is equal to 15% to 35% of the radius (R 2 ) of the outer part ( 3 ).

14. The bolt according to claim 13 , wherein the radius (R 4 ) in the area of the bottom ( 15 ) of the inner part ( 5 ) is equal to 25% of the radius (R 2 ) of the outer part ( 3 ).

15. A friction bolt with a tube ( 1 ) that can be widened and that is folded inward in a longitudinal direction, the tube having a longitudinal plane of symmetry ( 11 ) running in the longitudinal direction, the tube comprising:

an outer part ( 3 ) with an essentially circular cross-sectional shape, the outer part ( 3 ) having a radius (R 2 ) along the circular cross-sectional shape;

an inner part ( 5 ) arranged inside the outer part ( 3 ) and free of undercuts,

the inner part ( 5 ) having lateral wall areas ( 9 ) extending along the plane of symmetry, the lateral walls having a radius of curvature (R 1 ),

transition areas ( 4 ) turning the outer part ( 3 ) to the inner part ( 5 ), the transition areas ( 4 ) having a radius of curvature (R 3 ); and

a gap ( 7 ) in an area of the outer part ( 3 ) turning into to the inner part ( 5 ) and extending in the longitudinal direction of the tube ( 1 ),

wherein the inner part ( 5 ) includes a bottom ( 15 ) joining the lateral walls areas ( 9 ) and located opposite the gap ( 7 ), the bottom ( 15 ) resting on an inside surface ( 17 ) of the outer part ( 3 ), the bottom having a radius of curvature (R 4 ), and

wherein the radius of curvature (R 1 ) of the lateral wall areas ( 9 ) is equal to 250% to 350% of the radius (R 2 ) of the outer part ( 3 ) along the circular cross-sectional shape, wherein,

a distance (A) between inner surfaces ( 19 ) of the lateral wall parts ( 9 ) is 9 mm,

the gap ( 7 ) has a width of 6.5±0.5 mm,

the radius (R 1 ) of the lateral wall areas ( 9 ) is 39 mm,

the radius (R 2 ) of the outer part ( 3 ) along the circular cross-sectional shape is 14 mm,

the radius (R 3 ) of the transition areas ( 4 ) are curved from the outer part ( 3 ) into the inner part ( 5 ) is 4±0.5 mm, and

the radius (R 4 ) of the bottom ( 15 ) is 3.5 mm.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2015
From: ATLAS COPCO MAI GMBH
To: ATLAS COPCO SECOROC AB
Reel/Frame 034733/0950 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2012
From: HOSP, MICHAEL
To: ATLAS COPCO MAI GMBH
Reel/Frame 027906/0842 →