Vibration body unit and vibration body support structure
US-2019353153-A1 · Nov 21, 2019 · US
US10364811B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10364811-B2 |
| Application number | US-201214233313-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 19, 2012 |
| Priority date | Jul 19, 2011 |
| Publication date | Jul 30, 2019 |
| Grant date | Jul 30, 2019 |
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A domestic appliance, such as a steam iron or a coffee making apparatus. The appliance comprises a housing, a water reservoir, an actuator, and a boiler for providing hot water or steam for an appliance. An input of the actuator is connected to the water reservoir, an output of the actuator is connected to an inlet of the boiler. In operation, the actuator introduces vibrations which are transmitted to the housing and radiated by the housing to the environment which cause unwanted sounds and noise. The unwanted sounds and noise induced by these vibrations is substantially reduced via two leaf springs mounted at opposite sides of the actuator which reduce the transmission of the vibrating energy by moving the actuator in a direction opposite to a direction of the movement of the drive member.
Opening claim text (preview).
The invention claimed is: 1. A domestic appliance comprising: a base frame, an actuator connected to the base frame, the actuator being provided with a drive member, the actuator being arranged for reciprocating movement of the drive member at a reciprocating frequency (f r ), wherein the domestic appliance further comprises a first leaf spring and a second leaf spring, the first leaf spring being connected at a first end of the actuator at a first end surface in an axial direction along a direction of a movement of the drive member, the first leaf spring being connected at a second end to the base frame at a first interface, wherein first leaf spring extends perpendicular to the axial direction of the actuator, the second leaf spring being connected at a first end to the actuator at a second end surface of the actuator, opposite said first distal end surface, the second leaf spring being connected at a second end to the base frame at a second interface, whereby the second leaf spring extends perpendicular to the axial direction of the actuator, the first and second leaf springs enabling the actuator to move in a direction opposite to a direction of the movement of the drive member, wherein the end portions of the first and second leaf springs that are connected to the actuator conform to a U-shape, wherein the drive member causes reaction forces of the actuator to act on the first and second leaf springs to deflect the first and second leaf springs in a longitudinal direction opposite the movement of the drive member, in addition to the actuator forces deflecting the first and second leaf springs in the horizontal direction, the reaction forces further cause a residual widening of the opening of the U-shape of the first and second leaf springs from an initial substantially bent shape towards a straight line shape, the actuator, the drive member and the leaf springs together forming a mass spring system having a natural frequency (f n ) wherein a stiffness of the leaf springs is adapted so that a ratio between the reciprocating frequency (f r ) and the natural frequency (f n ) is at least √2 but no more than 10, wherein the first and second leaf springs comprise respective first and second attachment surfaces formed in a first lea of the U-shape, wherein the first and second attachment surfaces are attached to the first and second end surfaces of the actuator, respectively, via a first elastomer member positioned directly between the first attachment surface and the first end surface of the actuator, and via a second elastomer member positioned directly between the second attachment surface and the second end surface of the actuator, wherein the base frame comprises a first flexible tube and the first flexible tube comprises a corrugated tube having a flexibility for reducing transmission of vibrations from the actuator to the base frame, wherein dimensions of the leaf springs depend on a mass of the actuator member, the reciprocating frequency (f r ), a Young's modulus of a material of the leaf springs and a maximal allowed amplitude of the movement of the actuator in the base frame. 2. The domestic appliance according to claim 1 , wherein the leaf springs comprise a bended end portion. 3. The domestic appliance according to claim 1 , wherein the domestic appliance further comprises a water reservoir provided at the base frame, the water reservoir being operationally connected to the actuator via the first flexible tube. 4. The domestic appliance according to claim 3 wherein the water reservoir is detachably mounted at the base frame. 5. The domestic appliance according to claim 1 wherein the domestic appliance further comprises a boiler for water heating or steam generation provided at the base frame, the boiler being operationally connected to the actuator via a second flexible tube. 6. The domestic appliance according to claim 1 wherein the actuator comprises a plunger pump. 7. The domestic appliance according to claim 1 wherein the actuator comprises a plunger pump and the drive member comprises the plunger.
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by damping supports · CPC title
Casings; Cylinders; Cylinder liners or heads; Fluid connections · CPC title
Apparatus for making beverages (household machines or implements for straining foodstuffs A47J19/00; preparation of non-alcoholic beverages, e.g. by adding ingredients to fruit or vegetable juices, A23L2/00; coffee or tea pots A47G19/14; tea infusers A47G19/16; brewing of beer C12C; preparation of wine or other alcoholic beverages C12G) · CPC title
Stands or supports attached to the iron · CPC title
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