Roller Conveyor
20240043221 · 2024-02-08
Inventors
- Erwin Mans (Hückelhoven, DE)
- Jürgen Zinn (Hückelhoven, DE)
- Stephan Kronholz (Hückelhoven, DE)
- Kai Lubomierski (Hückelhoven, DE)
Cpc classification
F16B35/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B29/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A fastening screw (2) comprising a threaded shank (21) having an external thread, a screw head (23), characterized in that a truncated circular cone section (22) is provided axially between the screw head (23) and the threaded shank (21).
Claims
1. Roller conveyor (1) comprising a plurality of conveyor rollers (3) supported on a supporting frame (4), wherein at least one conveyor roller (3) is fixed to the supporting frame (4) by means of a fixing screw (2), said fastening screw (2) comprising a threaded shank (21) having an external thread, a screw head (23), wherein a truncated circular cone section (22) is provided axially between the screw head (23) and the threaded shank (21), wherein the support frame (4) is clamped in sectionally between the screw head (23) and a fastening section (33) of the conveyor roller (3), characterized in that the supporting frame (4) has a polygonal bore (42), the truncated circular cone section (22) being arranged in the polygonal bore (42).
2. Roller conveyor (1) according to claim 1, characterized in that the truncated circular cone section (22) has a base area (G) with a base diameter (g) and a cover area (D) with a cover diameter (d), the cover diameter (d) being smaller than the base diameter (g).
3. Roller conveyor (1) according to claim 1, characterized in, that the base area (G) faces the screw head (23); and that the cover area (D) faces the threaded shank (21).
4. Roller conveyor (1) according to claim 1, characterized in that the truncated circular cone section (22) and the screw head (23) directly adjoin each other, in particular that the base section (G) directly adjoins a radial clamping surface (S) of the screw head (23).
5. (canceled)
6. (canceled)
7. Roller conveyor (1) according to claim 1, characterized in that the truncated circular cone section (22) is arranged in the polygonal bore (42) in such a way that the fastening screw is thereby held centered with respect to the polygonal bore.
8. Roller conveyor according to claim 1, characterized in that the polygonal bore (42) is a hexagonal bore.
9. Roller conveyor (1) according to claim 1, characterized in that the fastening section (33) has a threaded bore which is designed to be complementary to the threaded shaft (21).
10. Roller conveyor (1) according to claim 1, characterized in that an incircle diameter (i) of the polygonal bore (42) is smaller than a base circle diameter (g) of the truncated circular cone section (22), in particular that the incircle diameter (i) is larger than a cover diameter (d) of the truncated circular cone section (22).
11. Roller conveyor according to claim 1, characterized in that the conveyor roller has at one end a roller head (32) to which the fastening screw (2) is attached, a poly-V belt (11) being attached to the roller head.
12. Method of manufacturing a roller conveyor (1) according to claim 1, comprising the following method steps: providing the support frame (4) with a polygonal bore (42), providing a conveyor roller (3), the method comprises a selection step, wherein a selection takes place from the following two options: (option 1) inserting the fastening screw (2) into the polygonal bore (42), wherein for fastening the, in particular passive, roller to the support frame, the circular truncated cone portion (22) is arranged in the polygonal bore (42), and (Option 2) inserting a fastening axis (34) of the roller, in particular a motor roller, into the polygonal bore (42), the fastening axis (34) having an outer circumference which forms a rotationally fixed connection with the polygonal bore (42) by positive locking.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The invention is explained in more detail below with reference to the figures; herein shows:
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0022] The fastening screw 2 according to
[0023] The structure of the circular frustoconical section 23 is shown schematically in
[0024] The base area G faces the screw head 23 and the cover area D faces the threaded shank 21. The circular frustoconical section 22 and the screw head 23 are directly adjacent to each other. The base area directly adjoins a radial clamping surface S of the screw head 23.
[0025] The truncated circular cone section 22 may be formed separately by a conical sleeve which is plugged or screwed onto the threaded shaft 21. In this respect, the screw can be formed in several parts.
[0026] The radial clamping surface S need not be a smooth surface but can have a friction-enhancing surface, as shown in
[0027] In one embodiment, the fastening screw 2 is used in a roller conveyor shown in
[0028] A polygonal bore 42 is provided on the support frame 4 for fastening. The screw is arranged in the polygonal bore 42 with the truncated circular cone section 22. The fastening screw 2 rests with the truncated circular cone section of 22 at an inner circle I of the polygonal bore 42 (
[0029] The incircle diameter i of the polygonal bore 42 is 42 smaller than the base circle diameter g of the truncated circular cone section 22. The incircle circle diameter i is larger than a cover diameter d of the truncated circular cone section 22. These conditions apply in particular before assembly. During assembly, deformations may occur at the screw and/or the polygonal bore.
[0030] The truncated circular cone section 22 interacts with the non-circular polygonal bore 42 in a centering manner, so that the threaded shank 21 is held coaxially with the polygonal bore 42 in the clamped state. This has a particularly advantageous effect when fastening so-called poly-V rollers (e.g. disclosed in DE 103 36 304 B4). In this case, a poly-V belt 11 with high tension is attached to the roller head. For assembly, the threaded hole can initially be held eccentric to the polygonal bore 42, which reduces the tension on the poly-V belt 11. With increasing rotation of the fastening screw 2, the centering effect is established, which at the same time significantly increases the tension on the poly-V belt 11. It is now advantageous here that during pre-assembly the poly-V belt is kept under low tension when the conveyor roller 3 is attached to the support frame 4, which simplifies assembly.
[0031] The polygonal bore 42 can be a hexagonal bore. Alternatively, other shapes are also conceivable, as long as a rotation-resistant connection can be produced.
[0032] For fastening, the support frame 4 is clamped in sections between the screw head 23 and a fastening section 33 of the conveyor roller 3. The threaded shaft 21 is screwed into a threaded hole of the fastening section 33. The fastening section 33 is mounted via a pivot bearing, which is not shown, relative to a roller head and/or a roller body (
[0033] The polygonal bore is also suitable for another type of fastening of a roller. For example,
[0034] Consequently, both the friction-locked connection (option 1) and the torsionally rigid form-fit connection (option 2) can be used on the support frame 4 with the polygonal bore. An installer can therefore select the type of fastening method on site depending on the type of roller.
LIST OF REFERENCE NUMERALS
[0035] 1 roller conveyor [0036] 11 Poly-V-belt [0037] 2 fastening screw [0038] 21 threaded shank [0039] 22 truncated circular cone section [0040] 23 screw head [0041] 24 tool engaging means [0042] G base area [0043] g base circle diameter [0044] D cover area [0045] d cover diameter [0046] M conic surface [0047] S clamping surface [0048] 3 conveyor roller [0049] 31 roller body [0050] 32 roller head [0051] 33 fastening section with threaded bore [0052] 34 fastening axis with hexagonal cross section [0053] 4 support frame [0054] 41 support plate [0055] 42 hexagonal bore/polygon bore [0056] I incircle of the hexagon bore [0057] i incircle diameter [0058] 9 conveyed good