1. Field of the Invention
This patent document relates generally to chairs and more specifically to a chair arm assembly that requires no tools to assemble and provides a smaller form factor for the chair for convenient shipping and storage.
2. Background of the Related Art
Chairs, such as office swivel chairs, are often assembled by the end customer. Assembling the chair requires that the customer have certain tools, such as screwdrivers, Allen wrenches and conventional wrenches. However, customers do not all possess these tools and have various mechanical aptitude for assembling components together. Therefore, it is desirable that the chair, to the extent possible, come as preassembled as possible to minimize the inconvenience to the customer.
Weighing against this situation is that it is also desirable that the chair be as compact as possible during shipping and storage. Understandably, a preassembled chair occupies a larger volume than a disassembled chair. The main obstacle to overcoming this problem is the backrest, seat cushion and chair arms (if provided) of the chair, which occupies a significant volume of space when assembled together.
Therefore, there is a need in the art for a chair and chair arm assembly that can be easily assembled or require minimal assembly, and that requires no tools, yet is still compact for shipping and storage.
The present invention solves the problems of the prior art by providing a no-tools chair arm assembly that enables a chair, such as an office swivel chair, to be shipped and stored in a smaller form factor. Furthermore, the assembly permits a variety of chair arm configurations (or none at all) to be used as desired by the customer.
The assembly includes an armrest support configured and arranged to connect to a seat cushion of a chair. The armrest support has mating formations thereon. A backrest support is configured and arranged to connect to a backrest of a chair. The backrest support is pivotally connected to the armrest support. A chair arm has an armrest portion and support member depends from the armrest portion. A connector extends from the support member and has reciprocal mating formations thereon configured and arranged to interlock with the mating formations on the armrest support. The chair arm locks the backrest support in position when coupled to the armrest portion.
These and other features, aspects, and advantages of the present invention will become better understood with reference to the following description, appended claims, and accompanying drawings where:
Referring to
A right and a left armrest support 22 are connected to each side of the seat cushion 20. Only the left armrest support is shown 22, but it is to be understood that the right armrest is the mirror image thereof. Each armrest support 22 includes a lower member 24, connected to the seat cushion 20 and an upper member 26 extending from a rear portion of the lower member 24.
Pivotally connected to the upper member 26 is a backrest support 28. The backrest support 28 further includes a lock member 30 extending from a lower end of the backrest support 28. The lock member 30 has an aperture 32 formed therethrough. As will be further described below, the lock member 30 is pinned via the aperture 32 to prevent the backrest support 28 from pivoting. A backrest 34 is connected between the two backrest supports 28 and may be pivoted between a lower, unlocked position for compact shipping and storage (best seen in
Near the joint formed between the lower member 24 and the upper member 26 of the armrest support 22 is an armrest base 36. The armrest base 36 includes an aperture 38 formed therethrough. Spaced around the aperture 38 are three mating formations 40 configured to receive reciprocal mating formations 54 on the chair arm 44, described further below. The mating formations 40 shown include a slot 40a with a narrowed portion 40b. However, other mating formations may be used. For instance, the mating formations may have a keyhole shape instead. Furthermore the mating formations 40 may include rounded slot 40a and end of the narrowed portion 40b. A spring button 42 extends from the armrest base 36 and, as will be described further below, is configured to engage an aperture 56 on the chair arm 44.
Referring to
Referring now to
The spring button 42 engages the aperture 56 on the connector 50, preventing the chair arm 44 from being rotated back to an unlocked state. The chair arm 44 may be removed by depressing the spring button 42 via an access hole 58, which extends into aperture 56, on the connector 50. Once the spring button 42 is released from aperture 56, the chair arm 44 may then be rotated back up to disengage the mating formations 40 and reciprocal mating formations 52 from each other.
Referring to
Referring to
A forward support member 160 depends below the armrest portion 146 and includes a locking lug 162 configured to engage a well 164 on the lower portion 124 of the armrest support 122. The locking lug 162 includes a spring button 166 configured to be received in an aperature 168 located in the well 164 of the in the armrest support 122 (best seen in
Referring to
Therefore, it can be seen that the present invention provides a unique solution to the problem of providing a chair that requires no-tools to assemble yet still has a compact form factor for shipping and storage.
It would be appreciated by those skilled in the art that various changes and modifications can be made to the illustrated embodiments without departing from the spirit of the present invention. All such modifications and changes are intended to be within the scope of the present invention except as limited by the scope of the appended claims.
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Number | Date | Country | |
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20140191551 A1 | Jul 2014 | US |