Sealant application system
US-2024287987-A1 · Aug 29, 2024 · US
US9523360B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9523360-B2 |
| Application number | US-201414246176-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 7, 2014 |
| Priority date | Jun 17, 2013 |
| Publication date | Dec 20, 2016 |
| Grant date | Dec 20, 2016 |
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In order to highly precisely adjust a gap between a bearing and a gear rotor by a simple configuration, a gear pump of the present invention includes: a casing that includes an inlet and an outlet; a pair of gear rotors each of which is formed by integrating a gear portion with a shaft portion and which is disposed so as to engage with each other inside the casing; a bearing portion that supports the shaft portion so that the gear rotor is rotatable, the bearing portion being movable in the thrust direction of the gear rotor; and a gap adjustment unit that moves the bearing portion in the thrust direction so as to adjust a gap between the gear rotor and the bearing portion.
Opening claim text (preview).
What is claimed is: 1. A gear pump comprising: a casing that includes an inlet and an outlet; a pair of gear rotors each of which is formed by integrating a gear portion with a shaft portion and which is disposed so as to engage with each other inside the casing; a bearing portion that supports the shaft portion so that the pair of gear rotors is rotatable, the bearing portion being movable in an axial direction of the pair of gear rotors; and a gap adjustment unit that moves the bearing portion in the axial direction so as to adjust a gap between the pair of gear rotors and the bearing portion, wherein the gap adjustment unit includes; a bearing temperature measurement unit that is provided in the bearing portion so as to measure the temperature of the bearing portion; a casing temperature measurement unit that is provided in the casing so as to measure the temperature of the casing; an operation unit that moves the bearing portion in the axial direction; and a controller that controls the operation unit based on the temperature of the bearing measured by the bearing temperature measurement unit and the temperature of the casing measured by the casing temperature measurement unit. 2. The gear pump according to claim 1 , wherein the bearing temperature measurement unit is attached to the inside of the bearing portion in the radial direction. 3. The gear pump according to claim 1 , wherein the casing temperature measurement unit is attached to a portion facing the outer periphery of the gear portion in the casing. 4. The gear pump according to claim 1 , wherein a specified movement amount of the bearing portion in response to a temperature difference between the temperature of the bearing portion and the temperature of the casing is input to the controller in advance, and the controller controls the operation unit in accordance with the specified movement amount selected based on the temperature difference between the casing temperature and the bearing temperature. 5. The gear pump according to claim 1 , wherein the operation unit includes a hydraulic cylinder. 6. A method of operating a gear pump including a casing that includes an inlet and an outlet, a pair of gear rotors each of which is formed by integrating a gear portion with a shaft portion and which is disposed so as to engage with each other inside the casing, and a bearing portion that supports the shaft portion so that the pair of gear rotors is rotatable and is movable in the thrust direction as the axial direction of the pair of gear rotors, the method comprising: measuring the temperatures of the bearing portion and the casing; and moving the bearing portion in the thrust direction based on the measured temperatures of the bearing portion and the casing. 7. The method according to claim 6 , further comprising: preliminarily specifying a specified movement amount of the bearing portion in response to a temperature difference between the temperatures of the bearing portion and the casing; and moving the bearing portion in accordance with the specified movement amount selected based on the temperature difference between the temperatures of the bearing portion and the casing.
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