BOLT WITH ADJUSTABLE CLAMPING RANGE
20220373014 ยท 2022-11-24
Assignee
Inventors
Cpc classification
F16B19/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B5/0642
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2019/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B21/165
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16B21/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A bolt for clamping abutting parts includes a bolt-like part insertable into openings of the abutting parts and including an external thread on a portion of an outer side of the bolt-like part. The bolt-like part includes a bolt component without external thread so that the bolt extends in each of the abutting parts at least partially with the bolt component without external thread. A threaded sleeve projects radially outwardly beyond the bolt-like part and is positionally adjustable by engaging an internal thread of the threaded sleeve in the external thread of the bolt-like part. A clamping element is provided inside the bolt-like part at an end of the bolt-like part in opposition to the threaded sleeve and is movable beyond an outer circumference of the bolt-like part through a bore of the bolt-like part. An actuator acts on the clamping element in order to clamp the abutting parts.
Claims
1.-6. (canceled)
7. A bolt with adjustable clamping range for clamping abutting parts, said bolt comprising: a bolt-like part insertable into openings of the abutting parts from one side of the abutting parts and including an external thread on a portion of an outer side of the bolt-like part, said bolt-like part including at least partially a bolt component without external thread so that the bolt extends in each of the abutting parts at least partially with the bolt component without external thread; a threaded sleeve projecting radially outwardly beyond the bolt-like part and positionally adjustable and fixable in a longitudinal direction of the bolt-like part by engaging an internal thread of the threaded sleeve in the external thread of the bolt-like part; a clamping element provided inside the bolt-like part at an end of the bolt-like part in opposition to the threaded sleeve, said clamping element being movable beyond an outer circumference of the bolt-like part through a bore of the bolt-like part; and an actuator configured to act on the clamping element in order to clamp the abutting parts.
8. The bolt of claim 7, wherein the external thread extends only partially into one of the abutting parts, as the bolt is inserted into the openings of the abutting parts.
9. The bolt of claim 7, wherein the internal thread of the threaded sleeve is provided only in a portion of the threaded sleeve and a remaining internal region of the threaded sleeve spans the external thread of the bolt-like part.
10. The bolt of claim 7, wherein the threaded sleeve includes a projection which has an outer circumference corresponding to the outer circumference of the bolt-like part and is insertable into one of the openings of the abutting parts.
11. The bolt of claim 7, wherein the threaded sleeve includes an internal O-ring which inhibits adjustability of the threaded sleeve on the external thread of the bolt-like part.
12. The bolt of claim 7, wherein the external thread of the bolt-like part has a milled recess, and further comprising a scale received in the milled recess for adjusting a thickness of the abutting parts.
Description
[0013] Exemplary embodiments of the invention are explained in greater detail with reference to the drawing. It is shown in:
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[0029] At the other end region of the bolt-like part 2, a threaded sleeve 5 projects radially outwardly from the bolt-like part 2 and is positionally adjustable and fixable in longitudinal direction of the bolt-like part 2 by engaging an internal thread S of the threaded sleeve 5 in an external thread 7 provided on a portion of the outer side of the bolt-like part 2. The threaded sleeve 5 has an internal O-ring 6a, which inhibits the adjustability of the threaded sleeve 5 on the external thread 7, The internal thread 6 is hereby provided only in a partial region of the threaded sleeve 5 and the remaining inner region of the threaded sleeve 5 spans the external thread 7. For reasons of clarity, the external thread 7 is not shown in detail in
[0030] A bore 9 is provided inside the bolt-like part 2 and has an internal thread 10. A threaded spindle 11, which has a corresponding external thread 12, can be screwed into the bore 9 in relation to the bolt-like part 2. The threaded spindle 11 projects hereby at the end face beyond the bolt-like part 2 and the threaded sleeve 5 and is widened there to form a handle 13. The handle 13 is connected to the threaded spindle 11 in fixed rotative engagement, optionally in one piece, and has a hexagon socket 14 at its end face for receiving a corresponding wrench with lever arm. On the side facing the bolt-like part 2, the handle 13 is provided with a projection 13a which prevents the bolt 1 from being overtightened and thus become damaged when the clamping range is incorrectly set. However, the projection 13a is selected to be so small and with a corresponding height that there is no risk of crushing the user.
[0031] The handle 13 and/or the threaded sleeve 5 can be knurled or coated with a non-slip coating to increase grip.
[0032] The threaded sleeve 5 is positionally adjustable and fixable in longitudinal direction relative to the bolt-like part 2 on the external thread 7. The threaded sleeve 5 preferably has hereby the same outer diameter as the handle 13 and, in particular, a greater outer diameter than the diameter of the openings in the abutting parts so that the threaded sleeve rests with its end face 15 upon the part to be clamped.
[0033] During clamping, the end 16 of the threaded spindle 11 opposite the handle 13 engages the balls 4 via a central ball 17 and displaces the balls 4 radially outwards. It is understood that the central ball 17 could also be omitted.
[0034] A conical set screw 18 is screwed into the bore 9 and serves to limit the radial inward movement of the balls 4. The set screw 18 can be screwed in after the balls 4, 17 have been inserted. For maintenance and/or repair the set screw 18 can be removed again so that the balls 4 can move completely inwards and be removed from the bolt-like part 2.
[0035] The clamping situation of the bolt 1 in an oblong hole is explained with reference to
[0036] Initially, the clamping range of the bolt 1 is matched to the thickness of the abutting parts 19, 20 by adjusting the threaded sleeve 5 on the external thread 7, using the scale 8. Subsequently, the bolt-like part 2 is inserted into the oblong holes 21, 22 from one side of the abutting parts 19, 20.
[0037] The bolt 1 is tightened by screwing the threaded spindle 11 forward with respect to the bolt-like part 2 with the aid of the handle 13, while the threaded sleeve 5 rests with its end 15 at the end face upon one of the abutting parts 19. When the bolt 1 is tightened, the ball 17 pushes the balls 4 radially outwards, until the balls rest upon the other one of the abutting parts 20 and clamp the parts 19, 20.
[0038] As is apparent from
[0039] In the enlarged view of the bolt 1 of
[0040] The scale is positioned hereby in such a way that the corresponding thickness of the second part can be set from a part with defined thickness, for example a welding and clamping table. In the illustration of
[0041]
[0042] The threaded sleeve 5 includes a projection 23, which has an outer circumference corresponding to the outer circumference of the bolt-like part 2 and is insertable into one of the openings of the abutting parts. In this embodiment, the external thread 7 can extend across a greater area of the bolt-like part 2. This results in a large range of adjustment while the bolt 1 is of small structural size. An internal O-ring 6a is again provided to inhibit the adjustment of the threaded sleeve 5 on the external thread 7.
[0043] The clamping situation of the bolt 1 in an oblong hole is explained with reference to
[0044] Initially, the clamping range of the bolt 1 is matched to the thickness of the abutting parts 19, 20 by adjusting the threaded sleeve 5 on the external thread 7, Subsequently, the bolt-like part 2 is inserted into the oblong holes 21, 22 from one side of the abutting parts 19, 20. The projection 23 is hereby inserted into the oblong hole 21.
[0045] The bolt 1 is tightened by using the handle 13 to screw the threaded spindle 11 forward relative to the bolt-like part 2, while the threaded sleeve 5 rests with its end 15 at the end face upon one of the abutting parts 19 and is located with its projection 23 in the oblong hole 21. As the bolt 1 is tightened, the ball 17 presses the balls 4 radially outwards until the balls rest upon the other one of the abutting parts 20 and clamp the parts 19, 20.
[0046] As is apparent from
[0047] The bolt 1 of this embodiment could also be provided with a scale 8, by providing the external thread 7 with a milled recess in which the scale 8 for adjusting the thickness of the abutting parts is attached.
LIST OF REFERENCE SIGNS
[0048] 1 bolt [0049] 2 bolt-like part [0050] 3 openings in 2 [0051] 4 balls [0052] 5 threaded sleeve [0053] 6 internal thread of 5 [0054] 6a O-ring in 5 [0055] 7 external thread of 2 [0056] 8 scale [0057] 9 bore in 2 [0058] 10 internal thread in 9 [0059] 11 threaded spindle [0060] 12 external thread of 11 [0061] 13 handle of 11 [0062] 13a projection on 13 [0063] 14 hexagon socket of 13 [0064] 15 end of 5 at end face [0065] 16 end of 11 [0066] 17 ball [0067] 18 set screw [0068] 19, 20 parts [0069] 21, 22 oblong holes of 19, 20 [0070] 23 projection of 5