Patent · US11607854B2 · B2 · US
Guiding device
- (11) Publication number
- US11607854B2
- (21) Application number
- 17/601,360
- (22) Filing date
- 2020-03-23
- (30) Priority date
- 2019-04-04
- (43) Publication date
- 2023-03-21
- (45) Date of grant
- 2023-03-21
- (51) IPC
- B29D 30/00; B29D 30/16; B65G 39/04; B65H 27/00
- (52) CPC
- B29D Producing particular articles from plastics or from substances in a plastic state: 30/0016, 2030/0038, 2030/1664, 30/1635
- B29C Shaping or joining of plastics; shaping of material in a plastic state, not otherwise provided for; after-treatment of the shaped products, e.g. repairing: 31/008, 31/08
- B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 39/04
- B65H Handling thin or filamentary material, e.g. sheets, webs, cables: 2404/111, 2404/1313, 2404/1321, 2404/133, 27/00
- (73) Assignee
- VMI Holland BV
- (72) Inventors
- Cornelis Veldhoen; Henrick Theodoor POSTHUMUS
- (54) Title
- Guiding device
- (57) Abstract
Disclosed is a guiding device having a guide roller that is rotatable about a roller axis and that has an exterior guide surface extending in a circumferential direction about the roller axis, wherein the guide roller includes a plurality of roller segments juxtaposed in an axial direction along the roller axis for forming the exterior guide surface, wherein the plurality of roller segments are movable relative to each other to enable the guide roller to be positioned in a maximum bend state in which the roller axis extends along an arc, wherein the plurality of roller segments are interlocked to rotate together about the roller axis in a maximum bend state, wherein the plurality of roller segments extend over an arc length along the arc of the roller axis, wherein the arc length is at least ninety degrees in the maximum bend state.
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Claims (23)
- A guiding device for guiding a flexible strip comprising a guide roller that is rotatable about a roller axis and that has an exterior guide surface extending in a circumferential direction about the roller axis for guiding the flexible strip, wherein the guiding device further comprises a support for supporting the guide roller relative to a guide path for the flexible strip, wherein the guide roller comprises a plurality of roller segments juxtaposed in an axial direction along the roller axis for forming the exterior guide surface, wherein the plurality of roller segments are movable relative to each other to enable the guide roller to be positioned in a first bend state in which the roller axis extends along an arc, wherein the plurality of roller segments are interlocked to rotate together about the roller axis in said first bend state, wherein for each pair of two consecutive roller segments, one roller segment of the two consecutive roller segments comprises a plurality of first teeth and the other roller segment of the two consecutive roller segments comprises a plurality of second teeth, wherein the plurality of roller segments extend over an arc length along the arc of the roller axis, wherein the first bend state is a maximum bend state in which said arc length is at least ninety degrees, wherein the roller segments have an outer diameter, wherein the roller axis in the maximum bend state extends along an arc with an arc radius, wherein the ratio between the arc radius and the outer diameter is less than five, wherein the guide roller, in the maximum bend state, has an inner radius and an outer radius with respect to the center of the arc, wherein the plurality of first teeth and the plurality of second teeth are arranged to interlock at both the inner radius and the outer radius when the guide roller is in the maximum bend state.
- The guiding device according to claim 1, wherein the ratio is in a range between two-and-a-half and five.
- The guiding device according to claim 1, wherein the guide roller is flexible between the first bend state and a second bend state different from the first bend state, wherein the plurality of roller segments are interlocked to rotate together about the roller axis in a range from the first bend state up to the second bend state.
- The guiding device according to claim 1, wherein each pair of two consecutive roller segments of the plurality of roller segments is mutually pivotable about a pivot axis perpendicular to the roller axis over a maximum pivot angle of at least three degrees.
- The guiding device according to claim 1, wherein the plurality of roller segments comprises at least ten roller segments.
- The guiding device according to claim 1, wherein the guide roller in the first bend state extends along an arc that defines a center, wherein the guide roller has an inner radius with respect to said center, wherein for each pair of two consecutive roller segments of the plurality of roller segments, the two consecutive roller segments are mutually pivotable about a pivot axis perpendicular to the roller aixs, wherein said pivot axis is located between the roller axis and the innter radius.
- The guiding device according to claim 1, wherein each roller segment comprises a segment body that is rotatable about a segment axis in a rotation plane perpendicular to said segment axis, wherein the plurality of first teeth is distributed in a circumferential direction about the segment axis and projects in an interlock direction from the segment body at a first side of the rotation plane.
- The guiding device according to claim 7, wherein the interlock direction is parallel to the segment axis.
- The guiding device according to claim 7, wherein the plurality of second teeth is distributed in a circumferential direction about the segment axis and projecting in the interlock direction from the segment body at a second side of the rotation plane opposite to the first side.
- The guiding device according to claim 9, wherein each first tooth of the plurality of first teeth has a tooth profile, wherein each second tooth of the plurality of second teeth has the same tooth profile.
- The guiding device according to claim 9, wherein each second tooth of the plurality of second teeth has a tooth profile, wherein each pair of two consecutive first teeth of the plurality of first teeth define a valley, wherein the valley has a valley profile that is complementary to the tooth profile of the plurality of second teeth.
- The guiding device according to claim 7, wherein each first tooth of the plurality of first teeth has a crest that defines a top land, wherein said top land extends at an oblique angle to the rotation plane in a range of three to fifteen degrees.
- The guiding device according to claim 7, wherein each first tooth of the plurality of first teeth has a root, wherein the segment body defines a bottom land between the roots of each pair of two consecutive first teeth of the plurality of first teeth, wherein the bottom land extends at an oblique angle to the rotation plane in a range of three to fifteen degrees.
- The guiding device according to claim 1, wherein the guiding device further comprises a shaft extending along the roller axis for supporting the plurality of roller segments.
- The guiding device according to claim 14, wherein each roller segment of the plurality of roller segments is provided with a central aperture for receiving the shaft cocentrically in the respective roller segments.
- The guiding device according to claim 14, wherein the shaft is resiliently flexible.
- The guiding device according to claim 14, wherein each roller segment of the plurality of roller segments is movable over the shaft in the axial direction of the roller axis with respect to the other of the plurality of roller segments.
- The guiding device according to claim 14, wherein the guiding device further comprises a first stop member and a second stop member which are fixed in the axial direction of the roller axis on the shaft on opposite sides of the guide roller, wherein the guide roller is movable in the axial direction of the roller axis over the shaft between the first stop member and the second stop member.
- The guiding device according to claim 1, wherein the support is arranged for supporting the guide roller such that the roller axis extends along a helical path.
- The guiding device according to claim 1, wherein the guide roller is provided with one or more channels extending through each of the plurality of roller segments along a respective biasing path to receive a respective biasing member.
- The guiding device according to claim 20, wherein the one or more channels comprises at least three channels spaced apart from and evenly distributed about the roller axis.
- The guiding device according to claim 1, wherein each roller segment has a side resembling a bevel gear wheel.
- The guiding device according to claim 1, wherein each roller segment has a side resembling a crown gear wheel.
Description
The invention relates to a guiding device, in particular a guiding device for guiding a strip used in tire building. More in particular, the strip may be formed by pulling a slab of raw elastomeric material apart along a zig-zag cutting pattern. Such a flexible strip may change abruptly in shape, size and/or direction along the length thereof. Alternatively, the guiding device may be used to guide rigid articles, such as tubes or rods. The guiding device may also be used as a part of a conveyor.
It is known to use a guiding device for guiding flexible strips of raw material from a source to a destination. Each flexible strip may vary considerably in shape, size and/or direction along the length of the flexible strip. Also, the flexible strips may arrive at the guiding device at widely varying supply angles and may need to be deflected considerably towards the destination. The known guiding device typically comprises a main guide roller for guiding the flexible strips from the source towards the destination and side guide rollers placed at an angle to the main guide roller at either end of the main guide roller to keep the flexible strips on the main guide roller. An example of such a known guide roller assembly is shown in FIG. 14.
A disadvantage of the known guiding device is that the flexible strips may get stuck or pinched in the corners between the main guide roller and the side guide rollers. Moreover, the flexible strips will experience increased friction when contacting both the main guide roller and one of the side guide rollers.
Citations (26)
- DE655270C
- US3064796A
- US3118532A
- DE1142787B
- US3166184A
- US3550758A
- DE2024607A1
- US4144964A
- JPS5256881A
- DE2752410A1
- US4196805A
- CS233667B1
- US4720007A
- US4787504A
- US5316130A
- US5975179A
- JP2003321231A
- US20040007024A1
- US20060185964A1
- KR20050083927A
- CN201729509U
- US20150053535A1
- WO2014039078A1
- WO2015151435A1
- DE102015207740A1
- US20200172342A1
Record as JSON
{
"publication_number": "US11607854B2",
"country": "US",
"kind": "B2",
"title": "Guiding device",
"abstract": "Disclosed is a guiding device having a guide roller that is rotatable about a roller axis and that has an exterior guide surface extending in a circumferential direction about the roller axis, wherein the guide roller includes a plurality of roller segments juxtaposed in an axial direction along the roller axis for forming the exterior guide surface, wherein the plurality of roller segments are movable relative to each other to enable the guide roller to be positioned in a maximum bend state in which the roller axis extends along an arc, wherein the plurality of roller segments are interlocked to rotate together about the roller axis in a maximum bend state, wherein the plurality of roller segments extend over an arc length along the arc of the roller axis, wherein the arc length is at least ninety degrees in the maximum bend state.",
"claims": [
"1. A guiding device for guiding a flexible strip comprising a guide roller that is rotatable about a roller axis and that has an exterior guide surface extending in a circumferential direction about the roller axis for guiding the flexible strip, wherein the guiding device further comprises a support for supporting the guide roller relative to a guide path for the flexible strip, wherein the guide roller comprises a plurality of roller segments juxtaposed in an axial direction along the roller axis for forming the exterior guide surface, wherein the plurality of roller segments are movable relative to each other to enable the guide roller to be positioned in a first bend state in which the roller axis extends along an arc, wherein the plurality of roller segments are interlocked to rotate together about the roller axis in said first bend state, wherein for each pair of two consecutive roller segments, one roller segment of the two consecutive roller segments comprises a plurality of first teeth and the other roller segment of the two consecutive roller segments comprises a plurality of second teeth, wherein the plurality of roller segments extend over an arc length along the arc of the roller axis, wherein the first bend state is a maximum bend state in which said arc length is at least ninety degrees, wherein the roller segments have an outer diameter, wherein the roller axis in the maximum bend state extends along an arc with an arc radius, wherein the ratio between the arc radius and the outer diameter is less than five, wherein the guide roller, in the maximum bend state, has an inner radius and an outer radius with respect to the center of the arc, wherein the plurality of first teeth and the plurality of second teeth are arranged to interlock at both the inner radius and the outer radius when the guide roller is in the maximum bend state.",
"2. The guiding device according to claim 1, wherein the ratio is in a range between two-and-a-half and five.",
"3. The guiding device according to claim 1, wherein the guide roller is flexible between the first bend state and a second bend state different from the first bend state, wherein the plurality of roller segments are interlocked to rotate together about the roller axis in a range from the first bend state up to the second bend state.",
"4. The guiding device according to claim 1, wherein each pair of two consecutive roller segments of the plurality of roller segments is mutually pivotable about a pivot axis perpendicular to the roller axis over a maximum pivot angle of at least three degrees.",
"5. The guiding device according to claim 1, wherein the plurality of roller segments comprises at least ten roller segments.",
"6. The guiding device according to claim 1, wherein the guide roller in the first bend state extends along an arc that defines a center, wherein the guide roller has an inner radius with respect to said center, wherein for each pair of two consecutive roller segments of the plurality of roller segments, the two consecutive roller segments are mutually pivotable about a pivot axis perpendicular to the roller aixs, wherein said pivot axis is located between the roller axis and the innter radius.",
"7. The guiding device according to claim 1, wherein each roller segment comprises a segment body that is rotatable about a segment axis in a rotation plane perpendicular to said segment axis, wherein the plurality of first teeth is distributed in a circumferential direction about the segment axis and projects in an interlock direction from the segment body at a first side of the rotation plane.",
"8. The guiding device according to claim 7, wherein the interlock direction is parallel to the segment axis.",
"9. The guiding device according to claim 7, wherein the plurality of second teeth is distributed in a circumferential direction about the segment axis and projecting in the interlock direction from the segment body at a second side of the rotation plane opposite to the first side.",
"10. The guiding device according to claim 9, wherein each first tooth of the plurality of first teeth has a tooth profile, wherein each second tooth of the plurality of second teeth has the same tooth profile.",
"11. The guiding device according to claim 9, wherein each second tooth of the plurality of second teeth has a tooth profile, wherein each pair of two consecutive first teeth of the plurality of first teeth define a valley, wherein the valley has a valley profile that is complementary to the tooth profile of the plurality of second teeth.",
"12. The guiding device according to claim 7, wherein each first tooth of the plurality of first teeth has a crest that defines a top land, wherein said top land extends at an oblique angle to the rotation plane in a range of three to fifteen degrees.",
"13. The guiding device according to claim 7, wherein each first tooth of the plurality of first teeth has a root, wherein the segment body defines a bottom land between the roots of each pair of two consecutive first teeth of the plurality of first teeth, wherein the bottom land extends at an oblique angle to the rotation plane in a range of three to fifteen degrees.",
"14. The guiding device according to claim 1, wherein the guiding device further comprises a shaft extending along the roller axis for supporting the plurality of roller segments.",
"15. The guiding device according to claim 14, wherein each roller segment of the plurality of roller segments is provided with a central aperture for receiving the shaft cocentrically in the respective roller segments.",
"16. The guiding device according to claim 14, wherein the shaft is resiliently flexible.",
"17. The guiding device according to claim 14, wherein each roller segment of the plurality of roller segments is movable over the shaft in the axial direction of the roller axis with respect to the other of the plurality of roller segments.",
"18. The guiding device according to claim 14, wherein the guiding device further comprises a first stop member and a second stop member which are fixed in the axial direction of the roller axis on the shaft on opposite sides of the guide roller, wherein the guide roller is movable in the axial direction of the roller axis over the shaft between the first stop member and the second stop member.",
"19. The guiding device according to claim 1, wherein the support is arranged for supporting the guide roller such that the roller axis extends along a helical path.",
"20. The guiding device according to claim 1, wherein the guide roller is provided with one or more channels extending through each of the plurality of roller segments along a respective biasing path to receive a respective biasing member.",
"21. The guiding device according to claim 20, wherein the one or more channels comprises at least three channels spaced apart from and evenly distributed about the roller axis.",
"22. The guiding device according to claim 1, wherein each roller segment has a side resembling a bevel gear wheel.",
"23. The guiding device according to claim 1, wherein each roller segment has a side resembling a crown gear wheel."
],
"description_excerpt": "The invention relates to a guiding device, in particular a guiding device for guiding a strip used in tire building. More in particular, the strip may be formed by pulling a slab of raw elastomeric material apart along a zig-zag cutting pattern. Such a flexible strip may change abruptly in shape, size and/or direction along the length thereof. Alternatively, the guiding device may be used to guide rigid articles, such as tubes or rods. The guiding device may also be used as a part of a conveyor.\n\nIt is known to use a guiding device for guiding flexible strips of raw material from a source to a destination. Each flexible strip may vary considerably in shape, size and/or direction along the length of the flexible strip. Also, the flexible strips may arrive at the guiding device at widely varying supply angles and may need to be deflected considerably towards the destination. The known guiding device typically comprises a main guide roller for guiding the flexible strips from the source towards the destination and side guide rollers placed at an angle to the main guide roller at either end of the main guide roller to keep the flexible strips on the main guide roller. An example of such a known guide roller assembly is shown in FIG. 14.\n\nA disadvantage of the known guiding device is that the flexible strips may get stuck or pinched in the corners between the main guide roller and the side guide rollers. Moreover, the flexible strips will experience increased friction when contacting both the main guide roller and one of the side guide rollers.",
"cpc": [
"B29D 30/0016",
"B29C 31/008",
"B29C 31/08",
"B29D 2030/0038",
"B29D 2030/1664",
"B29D 30/1635",
"B65G 39/04",
"B65H 2404/111",
"B65H 2404/1313",
"B65H 2404/1321",
"B65H 2404/133",
"B65H 27/00"
],
"ipc": [
"B29D 30/00",
"B29D 30/16",
"B65G 39/04",
"B65H 27/00"
],
"assignees": [
"VMI Holland BV"
],
"inventors": [
"Cornelis Veldhoen",
"Henrick Theodoor POSTHUMUS"
],
"filing_date": "2020-03-23",
"publication_date": "2023-03-21",
"grant_date": "2023-03-21",
"priority_date": "2019-04-04",
"application_number": "US-202017601360-A",
"family_id": "66380094",
"cited_by_count": 0,
"citations": [
"DE655270C",
"US3064796A",
"US3118532A",
"DE1142787B",
"US3166184A",
"US3550758A",
"DE2024607A1",
"US4144964A",
"JPS5256881A",
"DE2752410A1",
"US4196805A",
"CS233667B1",
"US4720007A",
"US4787504A",
"US5316130A",
"US5975179A",
"JP2003321231A",
"US20040007024A1",
"US20060185964A1",
"KR20050083927A",
"CN201729509U",
"US20150053535A1",
"WO2014039078A1",
"WO2015151435A1",
"DE102015207740A1",
"US20200172342A1"
]
}
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