This application claims priority to Chinese Patent Application No. 201120259567.2 filed on Jul. 21, 2011, which is incorporated by reference in its entirety herein.
Many pressure cooker devices typically include a fastening mechanism operable to engage a pressure cooker lid to a pressure cooker pot. Pressure cooker lids may also include a separate mechanism to regulate the pressure in the pressure cooker during operation. Pressure cooker lids may further include a separate mechanism to release pressure during use of a pressure cooker device. It may however be cumbersome for a user to operate separate fastening, pressure control, and pressure release mechanisms during use of a pressure cooker.
Briefly, aspects of the present disclosure are directed to a pressure cooker lid, including a lid body, one or more lid clamps, a pressure valve, and a single control mechanism operable to sequentially control radial movement of the one or more lid clamps and actuation of the pressure valve. Each of the one or more lid clamps may include a connection element and a clamp element. The pressure valve may include a valve stem. The control mechanism may include a rotary disc coupled to one or more of the connection elements and a knob mechanism operable to drive rotation of the rotary disc. Rotation of the rotary disc may sequentially drive radial movement of the connection elements and drive movement of the valve stem along an axial direction of the pressure valve.
This SUMMARY is provided to briefly identify some aspects of the present disclosure that are further described below in the DESCRIPTION. This SUMMARY is not intended to identify key or essential features of the present disclosure nor is it intended to limit the scope of any claims.
The term “aspects” is to be read as “at least one aspect”. The aspects described above and other aspects of the present disclosure described herein are illustrated by way of example(s) and not limited by any of the accompanying figures.
A more complete understanding of the present disclosure may be realized by reference to the accompanying figures in which:
The illustrative aspects are described more fully by the Figures and detailed description. The present disclosure may, however, be embodied in various forms and is not limited to specific aspects described in the Figures and detailed description.
Reference will now be made in detail to exemplary aspects of the present disclosure, including the best modes contemplated by the inventors for carrying out aspects of the disclosure. Examples of these exemplary aspects are illustrated in the accompanying drawings. While the disclosure is described in conjunction with these aspects, it will be understood that it is not intended to limit the invention to the described aspects. Rather, the disclosure is also intended to cover alternatives, modifications, and equivalents as may be included within the spirit and scope of the disclosure as defined by the appended claims. In the following description, specific details are set forth in order to provide a thorough understanding of the present disclosure. Aspects of the present disclosure may be practiced without some or all of these specific details. In other instances, well-known aspects have not been described in detail in order not to unnecessarily obscure the present disclosure.
In this specification and the appended claims, the singular forms “a,” “an,” and “the” include plural references unless the context clearly dictates otherwise. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood to one of ordinary skill in the art to which this disclosure belongs.
Unless otherwise explicitly specified herein, the drawings are not drawn to scale.
The pressure cooker lid (for example, cover) of the present disclosure provides a device that is simple in structure and convenient to use. The pressure cooker lid includes a control mechanism (for example, a control interface) operable to control two or more pressure cooker functions including, for example, pressure cooker lid attachment, cooking pressure adjustment, pressure release, and/or other functions. A pressure cooker lid control mechanism may control multiple functions including movement of lid clamps and degree of closure of a pressure valve to control the pressure value in the pressure cooker and to release pressure from the pressure cooker.
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The control mechanism 30 may include, for example, a rotary disc 50 coupled to one or more connection elements 40, a knob mechanism 32 operable to drive rotation of the rotary disc 50, and possibly other elements. Rotation of the rotary disc 50 may, for example, sequentially, concurrently, and/or simultaneously drive radial movement of the connection elements 40 and drive movement of a valve stem (for example, associated with the pressure valve) along an axial direction of a pressure valve. Rotation of the rotary disc 50 may, for example, sequentially drive radial movement of the connection elements 40 then drive movement of the valve stem. Similarly, rotation of the rotary disc 50 may, for example, concurrently and/or simultaneously drive radial movement of the connection elements 40 and drive movement of the valve stem (for example, at same time). The rotary disc 50 may include one or more sliding slots 52. Each of the sliding slots may include, for example, a first slot segment 54 defined by a first arc concentric with the lid body 12 and a second slot segment 56 defined by a second arc. The second slot segment 56 may be defined by the second arc such that a radial distance between a first end (for example, an initial end) of the second slot segment 56 and a center of the lid body 12 is larger than a radial distance between a second end (for example, a terminating end) of the second slot segment 56 and the center of the lid body 12. The second end of the second slot segment 56 may meet the first end of the first slot segment 54.
According to some aspects, each of the connection elements 40 may include a protruding element 44. The protruding element 44 of each connection element 40 may be coupled to one or more sliding slots 52. One or more protruding elements 44 may, for example, slide within one or more sliding slots 52. The protruding elements 44 and the sliding slots 52 may translate relative to one another, resulting in a translation of the lid clamps 20 along a radial direction relative to the lid body 12. The protruding elements 44 may, for example, slide in the sliding slots 52 as a result of rotation of the rotary disc 50. The rotary disc 50 is coupled to the knob mechanism 32 such that the rotary disc 50 may rotate in conjunction with rotation of knob mechanism 32. The knob mechanism 32 may, thus, drive rotation of the rotary disc 50 and translation of lid clamps 20 along a radial direction.
In some aspects, when a pressure cooker lid 12 is in a closed lid position, a protruding element 44 of each connection element 40 may be coupled to a first sliding slot segment 54 of the one or more sliding slots 52. In an open lid position, a protruding element 44 of each connection element 40 may be coupled to a second sliding slot segment 56 of one of the one or more sliding slots 52.
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According to some aspects, a knob mechanism 32 may include a knob cover 64 including a substantially cylindrical outer surface 643 (for example, a cylindrical outer surface), a pushrod 641, a threaded inner surface 642, and/or other elements. In some aspects, a user may actuate and/or operate the knob mechanism 32 by applying a rotational input (for example, twist input) to knob cover 62 (for example, a substantially cylindrical outer surface) in a direction (for example, clockwise, counter-clockwise, or another direction).
In some aspects, the pressure valve 62 and/or components of the pressure valve 62 may be operably coupled to knob mechanism 64 and/or components of the knob mechanism 32 (for example, knob cover 64). A first end of the valve stem spring 624 may be in substantial contact with a pushrod 641, and a second end of the spring 624 may be in substantial contact with the valve stem 621. A knob cover inner threaded surface 642 may be coupled to a threaded outer surface 625 of the pressure valve.
In some aspects, a rotational input to the knob mechanism 32 in a predefined direction (for example, clockwise, counterclockwise, or another direction) may drive movement of the valve stem 621 along an axial direction toward a closed position of the pressure valve 62. The rotational input to the knob mechanism 32 may drive movement of the knob cover 64 along an axial direction by translating the knob cover inner threaded surface 642 relative to the threaded outer surface 625 of the pressure valve. A pushrod 641 portion of the knob cover 64 may be in substantial contact with the valve stem spring 624, and rotational movement of the knob cover 64 generating movement of the cover 64 in an axial direction may drive compression of the valve stem spring 624. The valve stem spring 624 may be in substantial contact with the pressure valve sealing element 623, and compression of the valve stem spring 624 may drive axial translation of the valve stem 621 to achieve a increase a pressure of the of the pressure valve 62.
In some aspects, when the knob cover 64 is rotated downward, the pressure valve spring 624 and the valve stem 621 may simultaneously translate downward. When the knob cover 64 is moved downward to different positions, a tightness or level of contact between sealing element 623 and the valve seat 627 may vary. When, for example, the sealing element 623 and valve seat 627 are in substantial contact, a significant contact pressure between the sealing element 623 and valve seat 627 is generated. A sealing pressure of the pressure valve 62 may be generated by, for example, contact between the sealing element 623 and valve seat 627. A level of sealing pressure of the pressure valve 62 may be related to a level and/or amount of load and/or pressure between the sealing element 623 and valve seat 627. The level and/or amount of load and/or pressure between the sealing element 623 and valve seat 627 may be related to a level or amount of compression of the pressure valve spring 624. The compression of the pressure valve spring 624 may, for example, apply a load to the sealing element 623. The applied load to the sealing element 623 may increase a force between the sealing element 623 and the valve seat 627. Each valve position may, for example, correspond to a different degree of compression of the pressure valve spring 624 and/or a different operating pressure of the pressure cooker pot 14.
In some aspects, the sealing element 623, valve seat 627, and pressure valve spring 624 may be positioned to define an open valve position (for example, no contact between sealing element 623 and valve seat 627), a partially closed valve position (for example, substantial contact between sealing element 623 and valve seat 627), a fully closed valve position (for example, increased compression of the pressure valve spring 624 and contact between sealing element 623 and valve seat 627), or other possible valve positions. As shown in
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In some aspects, the knob mechanism 32 upon rotation in a predefined direction (for example, clockwise) may be sequentially, concurrently, and/or simultaneously operable to translate the one or more lid clamps 20 from an open lid position (as depicted in
In some aspects, as control mechanism 30 is rotated in a predetermined direction from a first position (as depicted in
According to some aspects, a knob mechanism 32, upon rotation in a predefined direction, may be sequentially, concurrently, and/or simultaneously operable to first drive movement of the valve stem 621 along the axial direction toward an open position of the pressure valve 62 and then rotate the rotary disc 50 in the predefined direction driving radial movement of the connection elements 40 in a direction away from a center of the lid body 12. As the valve stem 621 is moved to an open position of the pressure valve 62, for example, as shown in
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In some aspects, although not shown, the control mechanism 30 may be rotated in a counter-clockwise direction from a first position (as depicted in FIG's 2 and 3) to a second position (as depicted in FIG's 4 and 5), to a third position (as depicted in FIG's 6 and 7) and a fourth position (as depicted in FIG's 8 and 9).
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In some aspects, knob cover may include cover element 80. The cover element 80 may cover the connection elements 40, rotary disc 50 and/or other components of the control mechanism 30. Cover element 80 may be fabricated from metal, plastic, or any other suitable materials.
In some aspects, the cover element 80 may include a window element 82. The window element 82 may be glass, clear plastic, or another transparent or translucent material. The window element 82 may, for example, allow a user to determine a position of the control mechanism 30. A user may, for example, determine a rotation position of the control mechanism 30 or components of the control mechanism 30 (for example, the rotary disc 50.
At this point, while we have discussed and described the disclosure using some specific examples, those skilled in the art will recognize that our teachings are not so limited. Accordingly, the disclosure should be only limited by the scope of the claims attached hereto.
Number | Date | Country | Kind |
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201120259567.2 | Jul 2011 | CN | national |