The present invention relates generally to motorized sofa beds and to kits which may convert a stationary furniture piece into a motorized sofa bed.
Numerous seating devices have been known to convert to a bed. However, the linkage mechanisms used for such conversion typically are large, heavy and cumbersome to use. The conversion is usually done manually and often requires a strong individual to perform the manual conversion.
Accordingly, there is a need for a motorized sofa bed which uses a simple linkage mechanism which may be activated quickly and easily.
There is further a need for a kit which may be shipped to a furniture manufacturer customer to convert a stationary seating furniture piece into a motorized sofa bed.
According to one aspect of the invention, a motorized furniture assembly movable between a sofa position and a bed position comprises a stationary frame having two sides, and seat and back support sections movable relative to the stationary frame. The seat section comprises two seat support brackets and a seat deck extending between the seat support brackets. The back support section comprises back deck support brackets and a back deck extending between the back deck support brackets.
The motorized furniture assembly further comprises a power assembly for moving the furniture assembly between the sofa and bed positions. The power assembly comprises a power supply, a controller and at least one actuator.
The motorized furniture assembly further comprises two control assemblies, each control assembly including a motorized drive assembly and a linkage assembly joined to the motorized drive assembly for controlling movement of the seat and back support sections relative to the stationary frame. Each of the motorized drive assemblies comprises a rotatable screw drive used to move a shuttle forward and backward relative to the stationary frame.
The motorized furniture assembly further comprises a universal bracket attached to each of the shuttles of each of the motorized drive assemblies. Each of the universal brackets is secured to one of the seat support brackets such that movement of the shuttles moves the seat support brackets of the seat section which moves the back deck support brackets of the back support section.
The motorized furniture assembly further comprises two stationary mounting assemblies, one of the stationary mounting assemblies being secured to each side of the stationary frame. One of the two motorized drive assemblies is mounted to one of the stationary mounting assemblies.
The motorized furniture assembly further comprises two linkage assemblies for controlling movement of the furniture assembly between the sofa and bed positions upon actuation of said at least one actuator. Each of the linkage assemblies comprises a strong arm having a first end and a second end. The first end of the strong arm is pivotally connected to one of the seat support brackets and the second end of the strong arm is pivotally connected to one of the stationary mounting assemblies. Movement of the shuttles of the motorized drive assemblies moves the seat section between forward and rearward positions which causes movement of the back support section between horizontal and raised positions.
Each of the linkage assemblies comprises a front arm having a first end and a second end. The first end of the front arm is pivotally connected to one of the stationary mounting assemblies. Each of the linkage assemblies further comprises an L-shaped arm having a first end and a second end. The first end of the L-shaped arm is pivotally connected to the second end of the front arm and the second end of the L-shaped arm is pivotally connected to one of the seat frame supports. Each of the linkage assemblies further comprises a connector arm having a first end and a second end. The first end of the connector arm is pivotally connected to the second end of the front arm and the first end of the L-shaped arm. Each of the linkage assemblies further comprises a swivel arm having an upper end and a lower end. The upper end of the swivel arm is pivotally connected to one of the stationary mounting assemblies and the lower end of the swivel arm is pivotally connected to the second end of the connector arm. Each of the linkage assemblies further comprises an intermediate arm having a front end and a rear end. The rear end of the intermediate arm is pivotally connected to the swivel arm between the upper and lower ends of the swivel arm. Each of the linkage assemblies further comprises a teeter arm having a front end and a rear end. The front end of the teeter arm is pivotally connected to the front end of the intermediate arm. Each of the linkage assemblies further comprises a rear arm having an upper end and a lower end. The upper end of the rear arm is pivotally connected to one of the seat support brackets and the lower end of the rear arm is pivotally connected to the second end of the connector arm. Each of the linkage assemblies further comprises an outer arm having a front end and a rear end. The front end of the outer arm is pivotally connected to the rear end of the teeter arm and the rear end of the outer arm is pivotally connected to the rear arm between the upper and lower ends of the rear arm.
According to another aspect of the invention, a kit comprising the components of the motorized furniture assembly are packed in a container for shipping to a furniture manufacturer customer. The components are pre-assembled and ready to mount to a stationary sofa frame to convert the stationary sofa frame to a motorized sofa bed quickly and easily.
The shippable conversion kit comprises a power supply, a controller, at least one actuator, and two control assemblies including a left hand control assembly and a right-hand control assembly. Each control assembly comprises a stationary mounting assembly, a motorized drive assembly secured to the stationary mounting assembly and a linkage assembly secured to the stationary mounting assembly for controlling movement of the furniture assembly between the sofa and bed positions upon actuation of said at least one actuator. Each control assembly includes a seat deck support bracket and a back deck support bracket pivotally secured to the seat deck support bracket. Each linkage assembly comprises the components described herein.
Various additional features and advantages of the invention will become more apparent to those of ordinary skill in the art upon review of the following detailed description of the illustrative embodiments taken in conjunction with the accompanying drawings.
The drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and, together with the general description given above and the detailed description given below, explain the embodiments of the invention.
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For simplicity, the components on the left side of the motorized furniture assembly 10 will be referenced by an “a” while the same components on the right side of the motorized furniture assembly 10 will be referenced by a “b”. Although one configuration of seat deck 26 is illustrated, any other configuration of seat deck may be used; the drawings are not intended to be limiting. Although one configuration of seat deck support bracket 24 is illustrated, any other configuration of seat support bracket may be used; the drawings are not intended to be limiting. As shown in
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The motorized furniture assembly 10 is a wall hugger type of mechanism so that upon moving from its sofa position shown in
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Each of the left and right control assemblies 44a, 44b contain the same elements but oriented differently. Each of the elements is machined so that it may be used in either the left or right control assembly 44a, 44b.
Each control assembly 44a, 44b comprises a two-piece stationary mounting assembly 74. The unitary front or mounting piece 92 is shown in
The rear or motor mounting piece 102 of the stationary mounting assembly 74 is secured to the front or mounting piece 92 of the stationary mounting assembly 74 with rivets 104, as shown in
Each control assembly 44a, 44b further comprises a linkage assembly 110 secured to the two-piece stationary mounting assembly 74 and secured to the motorized drive assemblies 62 for controlling movement of the seat and back support sections 22, 30, respectively. Although not numbered, each end of each of the links has an opening through which a rivet passes.
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Each linkage assembly 110 further comprises an L-shaped arm 118 having a first end 120 pivotally secured with a rivet 122 to the second end 116 of the front arm 112 to pivot about axis 124. The L-shaped arm 118 has a second end 126 pivotally secured with a rivet 128 to a vertical flange 130 of one of the seat deck support brackets 24 to pivot about axis 132. As shown in
Each linkage assembly 110 further comprises a connector arm 134 having a first end 136 pivotally secured with rivet 122 to the second end 116 of the front arm 112 and to the first end 120 of the L-shaped arm 118. The first end 136 of connector arm 134 is between the second end 116 of the front arm 112 and the first end 120 of the L-shaped arm 118 and pivots about axis 124. As shown in
Each linkage assembly 110 further comprises a swivel arm 142 having an upper end 144 and a lower end 146. The lower end 146 of the swivel arm 142 is pivotally secured with a rivet 148 to the second end 140 of the connector arm 134 to pivot about axis 150. The upper end 144 of the swivel arm 142 is pivotally secured with a rivet 145 to the front piece 92 of stationary mounting assembly 74 to pivot about axis 158. As shown in
Each linkage assembly 110 further comprises an intermediate arm 152 having a front end 154 and a rear end 156. The rear end 156 of the intermediate arm 152 is pivotally secured with a rivet 160 to the swivel arm 142 between the upper and lower ends 144, 146 of the swivel arm 142.
Each linkage assembly 110 further comprises a teeter arm 162 having a front end 164 and a rear end 166. The front end 164 of the teeter arm 162 is pivotally secured with a rivet 168 to the front end 154 of the intermediate arm 152 underneath the connector arm 134 to pivot about axis 171. A bushing 170 is located between the front end 164 of the teeter arm 162 and the front end 154 of the intermediate arm 152. The teeter arm 162 is pivotally joined to a middle portion of the connector arm 134 via rivet 172 to pivot about axis 174. A shim 176 is located between the teeter arm 162 and the connector arm 134.
Each linkage assembly 110 further comprises a rear arm 178 having an upper end 180 and a lower end 182. Rivet 148 passes through the lower end 182 of the rear arm 178, through a bushing 184 located between the rear arm 178 and second end 140 of the connector arm 134, through the second end 140 of the connector arm 134, through shim 149 and through the lower end 146 of the swivel arm 142. The lower end 182 of the rear arm 178 pivots relative to the second end 140 of the connector arm 134 and relative to the middle of the rear arm 178 about axis 150. The upper end 180 of the rear arm 178 is pivotally secured to the vertical flange 130 of seat deck support bracket 24 with a rivet 186 which extends through an opening 188 in the vertical flange 130 of seat deck support bracket 24, through a shim 190 between the vertical flange 130 of seat deck support bracket 24 and the rear arm 178. The upper end 180 of the rear arm 178 pivots relative to the vertical flange 130 of seat deck support bracket 24 about axis 192.
Each linkage assembly 110 further comprises an outer arm 194 having a front end 196 and a rear end 198. Rivet 200 passes through the rear end 198 of the outer arm 194, through a shim 202 located between the outer arm 194 and the rear arm 178, through a middle portion of the rear arm 178. The rear end 198 of the outer arm 194 pivots relative to the rear arm 178 about axis 204. Similarly, another rivet 206 extends through the front end 196 of the outer arm 194, through shim 208, through a rear end 166 of the teeter arm 162. The front end 196 of the outer arm 194 pivots relative to the rear end 166 of the teeter arm 162 about axis 210.
Each linkage assembly 110 further comprises a strong arm 212 having a first end 214 and a second end 216. Rivet 218 passes through the first end 214 of the strong arm 212, through a shim 220 located between the strong arm 212 and the long portion 106 of the motor mounting piece 102 of the stationary mounting assembly 74. The first end 214 of the strong arm 212 pivots relative to the motor mounting piece 102 of the stationary mounting assembly 74 about axis 222.
Similarly, rivet 224 passes through flange 230 of one of the back deck support brackets 32, through a shim 226 located between the strong arm 212 and the back deck support bracket 32. The second end 216 of the strong arm 212 pivots relative to the back deck support bracket 32 about axis 228.
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In order to begin movement of each linkage assembly 110, the motorized drive assemblies 62 must be activated by at least one actuator 58a or 58b. Upon being activated the shuttles 88 of the motorized drive assemblies 62 move linearly together which moves the seat section 22. Movement of the seat section 22 moves the back support section 30.
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While the present invention has been illustrated by the description of specific embodiments thereof, and while the embodiments have been described in considerable detail, it is not intended to restrict or in any way limit the scope of the appended claims to such detail. The various features discussed herein may be used alone or in any combination. Additional advantages and modifications will readily appear to those skilled in the art. The invention in its broader aspects is therefore not limited to the specific details, representative apparatus and methods and illustrative examples shown and described. Accordingly, departures may be made from such details without departing from the scope of the general inventive concept.
Number | Name | Date | Kind |
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3028607 | Anderson | Apr 1962 | A |
3657747 | Rogers, Jr. | Apr 1972 | A |
3747135 | Barabas | Jul 1973 | A |
4365836 | Jackson | Dec 1982 | A |
4563784 | Shrock | Jan 1986 | A |
4756034 | Stewart | Jul 1988 | A |
4937900 | Bridges | Jul 1990 | A |
5195194 | Bradley | Mar 1993 | A |
8196236 | Smythe | Jun 2012 | B2 |
8464370 | Beck et al. | Jun 2013 | B2 |
20060096027 | Thurow | May 2006 | A1 |
Number | Date | Country | |
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20190313805 A1 | Oct 2019 | US |