System having machine and fan
US-2019368502-A1 · Dec 5, 2019 · US
US12188487B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12188487-B2 |
| Application number | US-202017600908-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 5, 2020 |
| Priority date | Apr 4, 2019 |
| Publication date | Jan 7, 2025 |
| Grant date | Jan 7, 2025 |
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A drive includes a dynamoelectric rotational machine, an electronic add-on part, and a fan unit arranged axially behind one another. The fan unit generates a cooling air flow and is embodied as a two-zone fan having axial fan elements which define a first zone to generate essentially an axial air flow and include an articulated joint with an elastic region with sufficient restoring force, and radial fan blades which define a second zone that radially adjoins the first zone and generate essentially a radial air flow. Free spaces are provided at least between a housing arrangement and the fan unit and/or between the housing arrangement and a bearing shield of the dynamoelectric rotational machine and/or between the housing arrangement and/or a shaft of the dynamoelectric rotational machine, with the free spaces being acted upon during operation of the fan unit by the cooling air flow and a Venturi effect.
Opening claim text (preview).
The invention claimed is: 1. A drive, comprising: a dynamoelectric rotational machine including a motor housing, a shaft and a bearing shield; a closed housing arrangement; an electronic add-on part positioned in the closed housing arrangement; and a fan unit including a fan cowl to guide a cooling air flow generated by the fan unit over a surface of the electronic add-on part and the motor housing, said fan unit embodied as a two-zone fan which includes a hub which is connected to the shaft in a non-rotating manner, axial fan elements configured to include an articulated joint with an elastic region with sufficient restoring force in order to maintain an air flow in an axial manner irrespective of a direction of rotation and which are completely arranged in a through passage of the hub to define a first zone to generate essentially an axial air flow, and radial fan blades which radially extend from the hub and are arranged with their small side against a disk to define a second zone that adjoins the first zone in a radial manner and which generate essentially a radial air flow, wherein the dynamoelectric rotational machine, the electronic add-on part and the fan unit are arranged axially behind one another, with the electronic add-on part being arranged axially between the dynamoelectric rotational machine and the fan unit, and wherein free spaces are provided at least between the housing arrangement and the fan unit and/or between the housing arrangement and the bearing shield of the dynamoelectric rotational machine and/or between the housing arrangement and the shaft of the dynamoelectric rotational machine, with the free spaces being influenced during operation of the fan unit by the cooling air flow and a Venturi effect. 2. The drive of claim 1 , wherein the free spaces and/or at least one of the dynamoelectric rotational machine, the electronic add-on part and the fan unit have structures to increase a size of a surface area thereof. 3. The drive of claim 2 , wherein the structures are radially extending ribs. 4. The drive of claim 1 , wherein the motor housing of the dynamoelectric rotational machine has an outer circumference which includes at least one section with ribs. 5. The drive of claim 1 , wherein the electronic add-on part includes a component embodied as an actuator or a converter.
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