LINEAR ACTUATOR
20200271205 ยท 2020-08-27
Assignee
Inventors
Cpc classification
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/204
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T74/18576
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T29/49826
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16H2025/2031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/2043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/2481
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A linear actuator is configured to provide the moving force for adjustable furniture, such as beds, chairs, or tables. The linear actuator includes a drive assembly, rigid arm, and linkage assembly. The rigid arm includes a pusher block with one or more attachment projections where the linkage assembly is attached.
Claims
1. An arm assembly for a linear actuator for adjustable furniture, the arm assembly comprising: a rigid arm; a threaded spindle extending along a threaded spindle axis; and a pusher block comprising: a pusher block body comprising: a rigid arm passage, wherein the rigid arm extends through the rigid arm passage such that the pusher block is movable along the rigid arm; and a spindle passage vertically offset, and physically separated, from the rigid arm passage, wherein the threaded spindle extends through the spindle passage; and two attachment arms extending from the pusher block body, the attachment arms defining a linkage channel therebetween and at least one securing aperture, wherein the at least one securing aperture extends along a securing aperture axis, wherein the securing aperture axis extends transversely to the threaded spindle axis and is vertically offset from the threaded spindle axis such that the securing aperture axis does not intersect the threaded spindle axis, and wherein the linkage channel is configured to receive an end of a linkage.
2. The arm assembly of claim 1, further comprising: the linkage comprising the end, wherein the linkage is pivotally connected to the pusher block at a position that is vertically offset from the threaded spindle axis; and a drive assembly configured to rotate the threaded spindle such that the pusher block moves along the rigid arm.
3. The arm assembly of claim 1, wherein the pusher block body comprises a top surface and at least one side surface extending downwardly from the top surface and wherein each of the two attachment arms extends from at least one of the top surface and the at least one side surface of the pusher block body.
4. The arm assembly of claim 1, further comprising a single fastener removably positioned within the at least one securing aperture and configured to engage the end of the linkage to pivotally connect the linkage to the pusher block.
5. The arm assembly of claim 4, wherein the at least one securing aperture comprises two securing apertures, each extending along the securing aperture axis and wherein the single fastener extends through the two securing apertures.
6. The arm assembly of claim 1, wherein the securing aperture axis is vertically offset above the threaded spindle axis.
7. The arm assembly of claim 1, wherein the pusher block body and the two attachment arms are formed integrally.
8. An arm assembly for a linear actuator for adjustable furniture, the arm assembly comprising: a rigid arm; a threaded spindle extending along a threaded spindle axis; a pusher block comprising: a pusher block body comprising: a rigid arm passage, wherein the rigid arm extends through the rigid arm passage such that the pusher block is movable along the rigid arm; and a spindle passage vertically offset, and physically separated, from the rigid arm passage, wherein the threaded spindle extends through the spindle passage; and two attachment arms extending from the pusher block body, the attachment arms defining a linkage channel therebetween and two securing apertures extending along a securing aperture axis, wherein the securing aperture axis extends transversely to the threaded spindle axis and is vertically offset from the threaded spindle axis such that the securing aperture axis and the threaded spindle axis do not intersect; and a single fastener extending through the two securing apertures and configured to engage an end of a linkage such that the end of the linkage is pivotally connected to the pusher block solely through the single fastener and such that a connection between the end of the linkage and the pusher block is vertically offset from the threaded spindle axis.
9. The arm assembly of claim 8, wherein the pusher block body and the two attachment arms are formed integrally.
10. The arm assembly of claim 8, further comprising: the linkage, wherein the linkage is configured to attach to a piece of adjustable furniture and comprises a first end and a second end, wherein the single fastener extends through the first end such that the linkage is pivotally connected to the pusher block solely through the single fastener; and a drive assembly configured to rotate the threaded spindle such that the pusher block moves along the rigid arm.
11. The linear actuator of claim 8, wherein the single fastener is a clevis pin.
12. The arm assembly of claim 8, wherein the pusher block body and the two attachment arms are formed integrally.
13. A pusher block for an arm assembly for a linear actuator for adjustable furniture, the pusher block comprising: a pusher block body comprising: a first end; a second end opposite the first end; a rigid arm passage extending through the pusher block body from the first end to the second end, wherein the rigid arm passage is configured to receive a rigid arm of the linear actuator through the rigid arm passage such that the pusher block is slidable along the rigid arm; and a spindle passage extending through the pusher block body from the first end to the second end, wherein the spindle passage extends along a spindle axis and is configured to receive a spindle of the linear actuator, and wherein the spindle passage is vertically offset and physically separated from the rigid arm passage; two attachment arms extending from the pusher block body and defining at least one securing aperture extending along a securing aperture axis, wherein the securing aperture axis extends transversely to the spindle axis and is vertically offset from the spindle axis such that the securing aperture axis and the spindle axis do not intersect; and a fastener removably positioned within the at least one securing aperture, wherein the fastener is configured to pivotally connect the pusher block with a first end of a linkage.
14. The pusher block of claim 13, wherein the pusher block body and the two attachment arms are formed integrally.
15. The pusher block of claim 13, wherein the at least one securing aperture comprises two securing apertures, each extending along the securing aperture axis, and wherein the fastener comprises a single fastener positioned within the two securing apertures.
16. An arm assembly for a linear actuator for adjustable furniture, the arm assembly comprising: a rigid arm; a threaded spindle extending along a threaded spindle axis; a pusher block comprising: a pusher block body comprising: a spindle nut threadably engaged with the threaded spindle; and a rigid arm passage, wherein the rigid arm extends through the rigid arm passage such that the pusher block body is slidable along the rigid arm; and two attachment arms extending from the pusher block body and defining a linkage channel and a securing aperture, wherein the securing aperture extends transversely to the linkage channel and is in communication with the linkage channel, wherein the securing aperture extends along a securing aperture axis, wherein the securing aperture axis is vertically offset from the threaded spindle axis, and wherein the linkage channel is configured to receive an end of a linkage within the linkage channel.
17. The arm assembly of claim 16, wherein an outer surface of the pusher block body comprises a top surface and at least one side surface extending downwardly from the top surface, and wherein the two attachment arms extend outwardly from at least one of the top surface and the at least one side surface of the pusher block body.
18. The arm assembly of claim 16, wherein the pusher block body and the two attachment arms are formed integrally.
19. The arm assembly of claim 16, further comprising: the linkage, wherein the linkage is configured to attach to a piece of adjustable furniture; and a fastener removably positioned within the securing aperture, wherein the fastener is configured to engage with the end of the linkage within the linkage channel.
20. The arm assembly of claim 16, wherein the spindle nut defines a spindle passage in the pusher block body that is vertically offset and physically separated from the rigid arm passage of the pusher block body, and wherein the threaded spindle is received within the spindle passage.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The features and components of the following figures are illustrated to emphasize the general principles of the present disclosure. Corresponding features and components throughout the figures can be designated by matching reference characters for the sake of consistency and clarity.
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DETAILED DESCRIPTION
[0022] The subject matter of embodiments of the present invention is described here with specificity to meet statutory requirements, but this description is not necessarily intended to limit the scope of the claims. The claimed subject matter may be embodied in other ways, may include different elements or steps, and may be used in conjunction with other existing or future technologies. This description should not be interpreted as implying any particular order or arrangement among or between various steps or elements except when the order of individual steps or arrangement of elements is explicitly described. Directional references such as up, down, top, left, right, front, back, and corners, among others are intended to refer to the orientation as illustrated and described in the figure (or figures) to which the components and directions are referencing.
[0023]
[0024] The pusher block 7 provides a connection point for communicating force generated by the improved linear actuator 16 to the adjustable furniture. To simplify assembly of the actuator 16 with adjustable furniture, the top of the pusher block 7 incorporates a clevis 18. Apertures in the clevis 18 are adapted to receive a clevis pin 19 or other suitable fastener. A single linkage 8 connects the pusher block 7 to a torque tube assembly 14. An aperture at the lower end of the single linkage 8 is adapted to receive the clevis pin 19. A cotter pin 20 may be used to secure the clevis pin 19. Use of a clevis pin 19 to attach the linkage 8 and pusher block 7 eliminates the need for additional brackets and threaded fasteners to facilitate the attachment. The pin 19 also eliminates the need to mold threaded screw-receiving apertures into the pusher block 7.
[0025] The clevis 18 may also be incorporated onto one or more sides of the pusher block 7 (see
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[0027] The improved linear actuator 16 contains other improvements that reduce time to assemble the actuator 16.
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[0030] The spindle 5 rests within the rigid arm 3. A plastic cover 17 shields the spindle 5. The spindle nut 6 is threaded onto the spindle 5 and is attached to the pusher block 7. Switches 34 are mounted within the rigid arm 3 using threaded screws 35. The switches 34 sense the position of the pusher block 7 and are connected to the controls (not shown) and power source (not shown) for the improved linear actuator 16. When the pusher block 7 contacts a switch 34, power to the electric motor 26 is cut and travel of the pusher block 7 is stopped.
[0031] The holder 4 is attached to the end of the rigid arm 3 using threaded fasteners 24 that are screwed into fastener receiving channels 23 in the rigid arm 3. The holder 4 may incorporate apertures 36 for receiving fasteners 37 that can be used to attach the actuator 16 to mounting points on the frame of a piece of adjustable furniture.
[0032] The foregoing description of preferred embodiments for the improved linear actuator is presented for the purposes of illustration and description. They are not intended to be exhaustive or to limit the invention to the precise form disclosed. Obvious modifications or variations are possible in light of the above teachings. The embodiments are chosen and described in an effort to provide the best illustration of the principles of the invention and its practical applications, and to thereby enable one of ordinary skill in the art to utilize the invention in various embodiments and with various modifications as are suited to the particular use contemplated.
[0033] It should be emphasized that the above-described aspects are merely possible examples of implementations, merely set forth for a clear understanding of the principles of the present disclosure. Many variations and modifications can be made to the above-described embodiment(s) without departing substantially from the spirit and principles of the present disclosure. All such modifications and variations are intended to be included herein within the scope of the present disclosure, and all possible claims to individual aspects or combinations of elements or steps are intended to be supported by the present disclosure. Moreover, although specific terms are employed herein, as well as in the claims that follow, they are used only in a generic and descriptive sense, and not for the purposes of limiting the described invention, nor the claims that follow.