Tube pump and printer provided with the same
US-2016288507-A1 · Oct 6, 2016 · US
US10794377B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10794377-B2 |
| Application number | US-201816178784-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 2, 2018 |
| Priority date | Mar 31, 2015 |
| Publication date | Oct 6, 2020 |
| Grant date | Oct 6, 2020 |
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A tube pump includes a tube, a housing member having a cylindrical chamber including an inner peripheral surface, a rotator having a first shaft and a first portion, the first portion having a guide, and a roller having a first shank received by the guide. The tube pump includes a contact member having a contact portion in the cylindrical chamber extending outwardly towards the inner peripheral surface at least the first distance and less than the second distance, the contact portion being configured to selectively contact the roller.
Opening claim text (preview).
What is claimed is: 1. A tube pump comprising: a tube through which fluid is flowed; a housing member comprising a cylindrical chamber in which the tube is accommodated, the cylindrical chamber including an inner peripheral surface along which the tube is arranged; a rotator comprising a first shaft and a first portion provided on the first shaft, the first portion including a guide having first and second ends, the first end positioned a first distance from the first shaft, the second end positioned a second distance from the first shaft, the second distance being greater than the first distance; and a roller having a first shank received by the guide, the roller configured to selectively press the tube to deform the tube, wherein the guide comprises a curved groove defined by the first portion of the rotator, wherein the guide includes a guide wall formed in an inside of the curved groove in a radial direction of the cylindrical chamber, wherein a shape of the guide wall is determined according to α<sin −1 (μ+cos β), wherein α is a pressure angle which is formed between a direction in which the guide wall presses the first shank forms and a direction in which the first shank moves, wherein μ is a rolling friction between the roller and the tube, and wherein β is an angle which is formed between a direction orthogonal to a diameter direction of the rotator forms and a direction in which a surface of the tube extends. 2. The tube pump of claim 1 , further comprising a contact member having a contact portion in the cylindrical chamber extending outwardly towards the inner peripheral surface at least the first distance and less than the second distance, the contact portion formed by the housing member, the contact portion being configured to selectively contact the roller. 3. The tube pump of claim 2 , wherein the housing member includes a bottom surface of the cylindrical chamber, wherein the contact portion is formed by the bottom of the cylindrical chamber. 4. The tube pump of claim 1 , wherein the first portion of the rotator is disc shaped and includes a first side facing an open end of the cylindrical chamber and a second side opposite the first side, and wherein the guide is on the second side of the first portion of the rotator. 5. The tube pump of claim 1 , wherein the roller further includes a roller body and a second shank, the first and second shanks extending axially from the roller body, wherein the second shank is configured to contact the contact portion when the first shank is positioned in the first end of the guide. 6. The tube pump of claim 5 , wherein the second shank is configured to not contact the contact portion when the first shank is positioned in the second end of the guide. 7. The tube pump of claim 1 , wherein the guide is configured to position the first shank in the first end of the guide in response to rotation of the rotator in a first rotation direction, and position the first shank in the second end of the guide in response to rotation of the rotator in a second rotation direction. 8. The tube pump of claim 1 , wherein the roller is configured to revolve in response to rotation of the rotator.
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