US20060244293A1 - Adjustable lumbar support for vehicle seat - Google Patents

Adjustable lumbar support for vehicle seat Download PDF

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Publication number
US20060244293A1
US20060244293A1 US11/118,662 US11866205A US2006244293A1 US 20060244293 A1 US20060244293 A1 US 20060244293A1 US 11866205 A US11866205 A US 11866205A US 2006244293 A1 US2006244293 A1 US 2006244293A1
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support member
lumbar support
cable
housing
set forth
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Granted
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US11/118,662
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US7131694B1 (en
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John Buffa
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Individual
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Individual
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Priority to US11/118,662 priority Critical patent/US7131694B1/en
Priority to US11/555,434 priority patent/US20070057548A1/en
Publication of US20060244293A1 publication Critical patent/US20060244293A1/en
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Publication of US7131694B1 publication Critical patent/US7131694B1/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/64Back-rests or cushions
    • B60N2/66Lumbar supports
    • B60N2/667Lumbar supports having flexible support member bowed by applied forces
    • B60N2/6671Lumbar supports having flexible support member bowed by applied forces with cable actuators

Definitions

  • the present invention pertains to a lumbar support for use with a seat; more particularly, to an adjustable lumbar support used in a vehicle seat.
  • Automobile manufacturers in a continued attempt to provide comfort to vehicle occupants, now provide adjustable vehicle seats that enable an operator or seat occupant to increase comfort and accessibility to vehicle controls by varying the seat position.
  • One of the many features now included in an automotive seat is an adjustable lumbar support located in the seat back. The lumbar support supports the lumbar region of a seat occupant's back.
  • Such mechanisms often include a flexible support member formed of a plurality of resilient axial members with a multitude of transverse members connected thereto.
  • the flexible support member is mounted in the seat back.
  • An actuator mounted in the vehicle such that it is accessible to the seat occupant is connected to the flexible support member and operates to flex or bend the flexible support member to adjust its shape or curvature. Accordingly, the seat occupant adjusts the shape or curvature of the flexible support member to achieve the desired level of lumbar support.
  • the present invention is a lumbar support mechanism for use with a seat.
  • the mechanism includes a support member including a panel having an upper and lower end and a rear surface. A rib located on the rear surface projects outward from the rear surface of the panel. The rib is located on a line extending between the upper end and lower end of the panel.
  • the support member is mounted to a guide structure.
  • the guide structure includes upright leg members.
  • An actuator is connected or coupled to the support member through an adjustment cable wherein one end of the cable is connected to the actuator and the other end of the cable is connected to the support member. Accordingly, the actuator operates to position the support member in a multitude of positions to vary the degree or amount of support provided to the seat occupant.
  • FIG. 1 is a schematic view showing a lumbar support mechanism according to the present invention located in a vehicle seat.
  • FIG. 2 is an exploded perspective view of a lumbar support mechanism according to the present invention.
  • FIG. 3 is a front view of a lumbar support mechanism according to the present invention.
  • FIG. 4 is a side view of the lumbar support of FIG. 3 .
  • FIG. 5 is an exploded perspective view of an actuator for use with the lumbar support mechanism according to the present.
  • FIG. 6 is a sectional view taken along lines 6 - 6 of FIG. 3 .
  • FIG. 7 is in exploded perspective view of a shell for use with the actuator of the present invention illustrated in FIG. 5 .
  • FIG. 1 illustrates a lumbar support mechanism, seen generally at 10 , according to the present invention located in a vehicle seat 12 .
  • the vehicle seat 12 includes a seat bolster 14 and a seat back 16 .
  • the seat back 16 includes a seat frame 18 , which is connected, typically in a pivotal manner, to the seat bolster 14 .
  • a plurality of upright 22 members cooperate with upper 24 and lower 26 cross bars to form the seat frame 18 .
  • the lumbar support mechanism 10 generally includes a lumbar support member 30 .
  • the lumbar support member 30 is supported in the seat back 16 by the upper 24 and lower 26 cross bars of the seat frame 18 .
  • the lumbar support member 30 positions or moves the lower seating surface 20 of the seat back 16 to provide support to the lumbar region of a seat occupant.
  • Secured to the seat bolster 14 is an actuator 32 .
  • the actuator 32 acts through an adjustment cable 34 to position the lumbar support member 30 .
  • the seat occupant uses the actuator 32 to vary the position of the lumbar support member 30 and consequently vary the amount of lumbar support provided at the lower seating surface 20 .
  • the lumbar support member 30 includes a sheet or panel 36 made of a resilient material, such as a resilient plastic, having a front surface 37 and a rear surface 39 .
  • the front surface 37 being that surface that engages or protrudes outward against the lower seating surface 20 .
  • the resilient material forming the sheet or panel 36 has suitable spring back or resilient properties that urge the panel 36 to return to its initial position. While disclosed herein as a panel, the shape and thickness of the panel 36 can vary across or over the dimensions of the panel 36 to vary the spring back or resiliency of the panel 36 in different regions or areas of the panel 36 . Accordingly, when at rest or in its initial position, the sheet or panel 36 is in the position shown in FIG. 2 .
  • the panel 36 includes a plurality of openings 38 located therein.
  • the openings 38 remove a portion of the material of the panel 36 giving the panel 36 a web-type configuration or shape.
  • the openings 38 help to reduce the rigidity of the panel 36 and to control the flexibility and bending stresses occurring in the panel 36 during use of the lumbar support member 30 .
  • the openings 38 may vary in shape, size and pattern depending upon the type, size and shape of the material used to form the lumbar support member 30 .
  • varying the size of the openings 38 adjusts the flexibility and bending stresses in different regions or areas of the panel 36 .
  • An upper flange 40 is located on the upper end 42 of the lumbar support member and a lower flange 44 is located at the lower end 46 of the lumbar support member 30 . Both the upper and lower flanges 40 , 44 extend rearward from the rear surface 39 . That is, the flanges 40 , 44 extend inward toward the seat frame 18 and away from the lower seating surface 20 .
  • the lower flange 44 also includes a mounting surface 50 located on the underside or bottom of the lower flange 44 .
  • Mounting apertures 54 are located in the lower flange 44 .
  • Each mounting aperture 54 includes an L-shaped slot 56 having a leg portion 58 extending inwardly from the face 59 of the lower flange 44 .
  • a base portion 60 of the slot 56 extends parallel to the face 59 and terminates at a cylindrically shaped seat 64 .
  • An additional aperture 70 extends through the lower flange 44 .
  • the aperture 70 includes an L-shaped slot 72 terminating at a cylindrical seat 74 .
  • the upper flange 40 like the lower flange 44 also includes mounting apertures 76 having L-shaped slots 77 terminating at cylindrical seats 78 .
  • the upper flange 40 further includes a pair of apertures 80 with a slot 82 extending to one of the apertures 80 .
  • the upper flange 40 includes apertures 66 for securing a spring member 105 to the upper flange 40 .
  • Ribs 84 protrude outward from the rear surface 39 of the lumbar support member 30 .
  • the ribs 84 generally lie on a line extending between the upper flange 40 and the lower flange 44 . While shown herein extending from the upper flange 40 to the lower flange 44 , the ribs 84 may also end prior to reaching the ends 42 , 46 of the lumbar support member 30 . In addition, the ribs 84 may extend at an angle with respect to the upper 40 and lower 44 flanges. In addition, while shown as a single member having a rectangular cross-section, the ribs 84 may have various shapes and configurations.
  • the ribs 84 When viewed from the side the ribs 84 have a plurality of indentations or relieved areas 88 extending along a portion of the length of the ribs 84 . As shown in FIG. 2 , the indentations 88 have a sinusoidal pattern and are located generally near the center or a midpoint of the ribs 84 . Gussets 89 extending from the ribs 84 to the upper and lower flanges 40 , 44 provide additional support to the panel 36 . The ribs 84 provide rigidity and support to the lumbar support member 30 . The indentations 88 provide flexibility to the panel 36 and enable the lumbar support member 30 to flex or bend without reducing support.
  • the shape, configuration and design of the ribs 84 are variable of depending upon the particular design parameters of the lumbar support member 30 .
  • the ribs 84 , indentations 88 , gussets 89 , openings 38 , material type, shape, size and configuration of the panel 36 all cooperate to determine and control the resiliency and flexibility of the lumbar support member 30 .
  • the lumbar support member 30 is mounted on a guide structure 90 .
  • the guide structure 90 includes a frame 92 having a pair of upright leg members 94 interconnected by a base member 96 .
  • Each leg member 94 having a bend or deflected portion 95 located near the base member 96 .
  • the base member 96 of the preferred embodiment has a sinuous shape or serpentine configuration.
  • a continuous member, such as a rod, formed into a desired shape and configuration depending upon the particular configuration of the seat back 16 and the size and shape of the lumbar support member 30 forms the frame 92 .
  • the base member 96 of the frame 92 As shown herein, seated on the lower cross bar 26 of the seat frame 18 is the base member 96 of the frame 92 .
  • the serpentine configuration is such that it extends or is located adjacent to but does not cover the apertures 98 located in the lower cross bar 26 .
  • the apertures 98 are used to attach the guide structure 90 to the lower cross bar 26 .
  • the middle or center aperture 100 provides clearance for the adjustment cable 34 and enables the adjustment cable 34 to pass through the lower cross bar 26 of the seat frame 18 .
  • the upper ends 102 of the leg members 94 extend upward and are attached to the upper cross bar 24 of the seat frame 18 . This may include extending the upper ends 102 of the legs 94 through apertures in the upper cross bar 24 and securing them to the upper cross bar 24 after attaching the base member 96 to the lower cross bar 26 .
  • fasteners 68 extending through the apertures 98 in the lower cross bar 26 secure the frame 92 to the lower cross bar 26 .
  • the fasteners 68 are of a type commonly referred to as a Christmas tree fastener, in that the fasteners 68 have a barbed end or projection 104 that deflects inward when the fastener 68 is inserted in to the apertures 98 .
  • the barbed end 104 of each fastener 68 extends outward and engages the undersurface of the lower cross bar 26 . Accordingly, the frame 92 is secured on both ends to the seat frame 22 with the upper ends 102 attached to the upper cross bar 24 and a base member 96 of the frame 92 attach to the lower cross bar 26 .
  • the leg members 94 are deflected slightly inward, toward one another, and are slid into the leg portion 58 of the L-shaped slot 56 located in the lower flange 44 of the lumbar support member 30 .
  • the leg members 94 Upon reaching the base portion 60 of the slot 56 the leg members 94 are urged outward until they enter into and are seated in the respective cylindrical seats 64 of the mounting apertures 54 located in the lower flange 44 .
  • the cylindrical seats 64 are sized such that the lower flange 44 of the lumbar support member 30 slides freely on the leg members 94 of the frame 92 .
  • the lumbar support 30 rests on the bend or deflected portion 95 that functions as a stop to limit the lower travel of the lumbar support 30 on the frame 92 .
  • the upper end 42 of the lumber support member 30 is attached, in part, in a similar manner by again deflecting the leg members 94 of the frame 92 slightly inward and inserting them into the L-shaped slots 77 .
  • the leg members 94 slide in the slots 77 until they reach the respective cylindrical seats 78 .
  • the cylindrical seats 78 are sized such that the upper flange 40 , and correspondingly the upper end 42 , of the lumbar support member 30 moves freely along the leg members 94 of the frame 92 .
  • the adjustment cable 34 such as a flexible motion transmitter or push pull type cable, includes a wire or cable 106 that slides within a cable housing 108 , and is shown in the preferred embodiment as one way to adjust the curvature of the lumbar support member 30 .
  • This type of cable is often referred to as a Bowden cable.
  • a hook 110 is fastened to a first end 116 of the cable 106 .
  • the hook 110 has a U-shape wherein the legs 112 fit in the apertures 80 and the base 114 engages the upper flange 40 .
  • the cable 106 fits in the slot 82 adjacent the aperture 80 .
  • the cable housing 108 includes an end fitting or ferrule 120 secured to the first end 118 of the cable housing 108 .
  • the U-shaped hook 110 end and fitting 120 pass through the opening or aperture 100 in the lower cross bar 26 .
  • the end fitting 120 includes a shoulder 122 of a diameter sized such that the first end 118 of the cable housing 108 engages and remains stationary against the lower flange 44 of the lumbar support 30 .
  • a bushing portion 124 extends through the aperture 74 in the lower flange 44 and the shoulder 122 is seated against the lower or undersurface 50 of the lower flange 44 .
  • the first end 118 of the cable housing 108 is positioned on the lower flange 44 while the cable 106 and the hook 110 pass through and engage the upper flange 40 of the lumbar support member 30 .
  • the cable 106 compresses the lumbar support member 30 by drawing the upper flange 40 of the lumbar support member 30 downward along the frame 92 toward the lower flange 44 causing the lumbar support member 30 to bow outward in the direction of the lower seating surface 20 , see FIG. 4 .
  • drawing the upper flange 40 downward increases the outward deflection of the lumbar support member 30 .
  • a further aspect of the invention includes a tension member that operates to reduce the force necessary to move the support member 30 outward as shown in phantom in FIG. 4 .
  • a tension member that operates to reduce the force necessary to move the support member 30 outward as shown in phantom in FIG. 4 .
  • positioned on the rear surface 39 of the panel 36 between the ribs 84 is a spring bracket 107 .
  • a pair of tensile springs 105 are attached on a first end to the spring bracket 107 .
  • the second end of the springs 105 are attached to the upper flange 40 at mounting holes 66 .
  • varying the position of the spring bracket 107 on the support member 30 varies the applied force.
  • varying the number or tensile strength of the springs 105 also varies the applied force.
  • the cable 106 could be tightened by several different methods, all of which can provide a suitable means to correspondingly move the upper flange 40 of the lumbar support member 30 and vary the amount or degree of curvature of the lumbar support member 30 .
  • FIGS. 5-7 illustrate a preferred embodiment of the actuator 32 .
  • the actuator 32 tightens or loosens the cable 106 and correspondingly varies the degree of curvature of the lumbar support member 30 .
  • the actuator 32 includes a housing 130 , screw member 132 , shell 134 , formed of two sections 134 a, 134 b, and knob 136 . These components fit together such that rotation of the knob 136 causes axial movement, in the direction of the arrow 158 , of the screw member 132 in the housing 130 to increase or decrease the tension on the cable 106 .
  • the housing 130 has first and second ends 138 , 140 .
  • the first end 138 having a cylindrical bore 142 extending from the first end 138 toward the second end 140 .
  • the cylindrical bore 142 terminates prior to reaching the second end 140 of the housing 130 .
  • a shaped passageway or socket 144 extends from the base or bottom 146 of the cylindrical bore 142 toward the second end 140 of the housing 130 .
  • An aperture 148 is located in the second end 140 of the housing 130 and communicates with the shaped passageway or socket 144 .
  • the aperture 148 is sized to receive a bushing portion 150 of a ferrule or end fitting 152 attached to the second end 128 of the cable housing 108 .
  • the end fitting 152 further includes a shoulder 154 .
  • the shoulder 154 is sized to provide a stop on the outer face 156 of the second end 140 of the housing 130 . Accordingly, the first end 118 of the cable housing 108 is connected by the first end fitting 120 to the lower flange 44 of the support member 30 and the second end 128 of the cable housing 108 is connected by the second end fitting 152 to the housing 130 of the actuator 32 .
  • the second end 126 of the wire or cable 106 has a ball 160 staked thereto.
  • the ball 160 and cable 106 pass through the aperture 148 located in the second end 140 of the housing 130 . Accordingly, the ball 160 and cable 106 to extend through the aperture 148 and are received in the screw member 132 .
  • the screw member 132 has a threaded cylindrical portion 162 and a post portion 164 .
  • the post portion 164 is configured such that it has a cross sectional shape, illustrated in the preferred embodiment as a hexagon, that is complementary to the cross sectional shape of the shaped passageway or socket 144 .
  • the complementary cross sectional shape of the socket 144 and the post portion 164 enables-the screw member 132 to move longitudinally within the housing 130 and prevents rotation about the longitudinal axis or direction of movement of the screw member 132 as illustrated by the arrow 158 in FIG. 6 .
  • the ball 160 staked to the cable 106 connects the cable 106 to the screw member 132 .
  • the ball 160 fits in a cylindrical seat 165 located in the post portion 164 .
  • a slot or groove 166 located in the post portion 164 receives the cable 106 . Accordingly, as the screw member 132 moves longitudinally within the housing 130 , in the direction of the arrow 158 , the screw member 132 functions to increase or decrease the tension on the cable 106 and correspondingly adjusts the degree of curvature or outward bow of the lumbar support member 32 .
  • the shell 134 is cylindrically shaped and sized to fit within the cylindrical bore 142 of the housing 130 .
  • the inner circumferential surface 168 of the shell 134 includes a plurality of threads 170 .
  • the threads 170 are complementary to and engage the cylindrical threaded portion 162 of the screw member 132 .
  • the distal end 172 of the shell 134 is positioned adjacent the bottom 146 of the bore 142 .
  • the outer circumferential surface 174 of the shell 134 includes a plurality of longitudinally extending grooves 176 .
  • the knob 136 includes an annular flange 180 defining a cylindrical socket 182 of a size and diameter suitable to receive the shell 134 .
  • the socket 182 has a bottom surface 183 .
  • Tabs 184 project radially inward from an inner circumferential surface 186 of the socket 182 .
  • FIG. 6 when the shell 134 is disposed within the cylindrical bore 142 of the housing 130 , the proximal end 178 of the shell 134 is located adjacent the bottom surface 183 of the socket 182 with the tabs 184 fitting within the grooves 176 located in the outer circumferential surface 174 of the shell 134 .
  • the shell 134 is coupled or connected to the knob 136 such that rotation of the knob 136 causes rotation of the shell 134 within the cylindrical bore 142 of the housing 130 .
  • the shell 134 is secured between the bottom 183 of the socket 182 and the bottom 146 of the cylindrical bore 142 .
  • the shell 134 is shown as a split shell, formed of two opposed semicircular sections 134 a, 134 b. These sections 134 a, 134 b fit on opposite sides of the screw member 132 .
  • Each of the first and second shell sections 134 a, 134 b includes a corresponding mating surface 179 .
  • a pair of locating tabs 177 extending upward from the mating surface 179 of the first shell section 134 a engage a pair of locating grooves 175 formed in the mating surface 179 of the second shell section 134 b.
  • the tabs 179 and grooves 175 prevent the respective first and second shell sections 134 a, 134 b from moving longitudinally and creating a gap or misalignment of the threads 170 . Forming the shell 134 in sections reduces manufacturing and assembly time.
  • the shell 134 may be made as a single or unitary member wherein the threads 170 are cut or machined therein.
  • the knob 136 further includes a latch assembly, seen generally at 190 , that rotatably secures the knob 136 to the housing 130 .
  • the latch assembly 190 includes a plurality of locking fingers 192 formed on the outer end 188 of the annular flange 180 .
  • Each locking finger 192 includes an inwardly facing locking projection 194 adjacent an outwardly extending annular groove 196 .
  • a ramp surface 198 is formed on the leading end of the locking projection 194 .
  • An inwardly extending annular groove 200 is located on the outer circumferential surface of the housing 130 near the second end 140 of the housing 130 .
  • the annular groove 200 cooperates with the second end 140 of the housing 130 to define an annular flange 202 formed on or located at the first end 138 of the housing 130 .
  • the annular flange 202 having a width or thickness less than the width or thickness of the annular groove 196 located in the knob 136 .
  • the knob 136 is placed adjacent the housing 130 such that the ramp surface 198 of the locking projection 194 engages the annular flange 202 of the housing 130 . Applying a suitable force to the knob 136 causes the locking projection 194 to deflect outward as the ramp surface 198 travels over the annular flange 202 . Once the locking projection 194 travels past the annular flange 202 , it snaps inwardly into the annular groove 196 located in the housing 130 . Accordingly, the knob 136 is retained on the housing 130 as the locking surface 204 of the locking projection 194 engages the wall or corresponding locking surface 206 of the annular flange 202 . As set forth previously, the size of the respective grooves, flanges and spacing is such that the knob 136 is coupled to and rotates freely about the housing 130 .
  • a pair of ears 208 having mounting apertures 210 are connected to or formed integral with the housing 130 . Mounting screws or fasteners extend through the mounting apertures 210 and secure the housing 130 to the seat bolster 14 at a location adjacent to the vehicle operator.
  • rotation of the knob 136 of the present invention correspondingly rotates the shell 134 causing longitudinal travel of the screw member 132 between first and second positions, as shown by the arrow 158 in FIG. 6 .
  • the screw member 132 cooperates with the bottom 183 of the socket 182 and the bottom 146 of the cylindrical bore 142 to limit the travel of the cable 106 and correspondingly limit the travel of the support member 30 .
  • continued rotation of the knob 136 in a clockwise direction pulls the screw member 132 toward the knob 136 until ultimately the screw 132 engages the bottom surface 183 of the knob 136 . Once this happens, the knob 136 will no longer turn as the bottom surface 183 functions as a positive step to limit travel of the screw member 132 .
  • the screw member 132 when rotating the knob 136 in a counterclockwise direction, the screw member 132 will move towards and ultimately engage the bottom surface 146 of the cylindrical bore 142 located in the housing 130 .
  • bottom surface 146 of the cylindrical bore 142 functions as a stop to limit travel of the screw member 132 .
  • the actuator 32 of the present invention has a positive stop on both ends thereby limiting travel and reducing the opportunity for the operator or occupant to over torque the adjustment cable 34 or pull the lumbar support member 30 past a point of maximum deflection.
  • the present invention provides a lumbar support mechanism 10 including a lumbar support member 30 connected to an actuator 32 used to position the lumbar support member 30 and a multitude of various positions.

Abstract

An adjustable lumbar support mechanism located in a seat back of a vehicle seat for supporting the lower back of a seat occupant. The lumbar support mechanism generally includes a lumbar support member supported on a frame within the seat back. The support member includes a sheet or panel formed of a resilient material. The panel including a plurality of openings located therein. A rib extending on the rear surface of the panel helps to control and provide rigidity to the support member. A seat occupant utilizes an actuator, coupled by an adjustment cable to the support member, to adjust the curvature and thereby vary support provided by the lumbar support mechanism.

Description

    BACKGROUND OF THE INVENTION
  • 1. Field of the Invention
  • The present invention pertains to a lumbar support for use with a seat; more particularly, to an adjustable lumbar support used in a vehicle seat.
  • 2. Description of Related Art
  • Automobile manufacturers, in a continued attempt to provide comfort to vehicle occupants, now provide adjustable vehicle seats that enable an operator or seat occupant to increase comfort and accessibility to vehicle controls by varying the seat position. One of the many features now included in an automotive seat is an adjustable lumbar support located in the seat back. The lumbar support supports the lumbar region of a seat occupant's back.
  • The design of lumbar support mechanisms installed in vehicles seats has changed over time. Many of these mechanisms are complex and require a multitude of components. Such mechanisms often include a flexible support member formed of a plurality of resilient axial members with a multitude of transverse members connected thereto. The flexible support member is mounted in the seat back. An actuator mounted in the vehicle such that it is accessible to the seat occupant is connected to the flexible support member and operates to flex or bend the flexible support member to adjust its shape or curvature. Accordingly, the seat occupant adjusts the shape or curvature of the flexible support member to achieve the desired level of lumbar support.
  • As with many mechanical devices, more parts typically results in a more complex device that usually costs more to manufacture and is often more difficult to assemble and install. In addition, as the number of parts or complexity of a device increases the possibility that the device may ultimately break or fail usually increases. Increased occurrences of failure results not only in consumer dissatisfaction, they also increase overall costs resulting from repair or warranty concerns.
  • Accordingly, it is desirable to have a cost-efficient, simple and durable lumbar support mechanism that is easily installed in a vehicle seat utilizing an actuator assembly that easily adjust the position of the lumbar support member to provide support to the lumbar region of a seat occupants back.
  • SUMMARY OF THE INVENTION
  • The present invention is a lumbar support mechanism for use with a seat. The mechanism includes a support member including a panel having an upper and lower end and a rear surface. A rib located on the rear surface projects outward from the rear surface of the panel. The rib is located on a line extending between the upper end and lower end of the panel. The support member is mounted to a guide structure. The guide structure includes upright leg members. An actuator is connected or coupled to the support member through an adjustment cable wherein one end of the cable is connected to the actuator and the other end of the cable is connected to the support member. Accordingly, the actuator operates to position the support member in a multitude of positions to vary the degree or amount of support provided to the seat occupant.
  • Further areas of applicability of the present invention will become apparent from the detailed description provided hereinafter. It should be understood that the detailed description and specific examples, while indicating the preferred embodiment of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • The present invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
  • FIG. 1 is a schematic view showing a lumbar support mechanism according to the present invention located in a vehicle seat.
  • FIG. 2 is an exploded perspective view of a lumbar support mechanism according to the present invention.
  • FIG. 3 is a front view of a lumbar support mechanism according to the present invention.
  • FIG. 4 is a side view of the lumbar support of FIG. 3.
  • FIG. 5 is an exploded perspective view of an actuator for use with the lumbar support mechanism according to the present.
  • FIG. 6 is a sectional view taken along lines 6-6 of FIG. 3.
  • FIG. 7 is in exploded perspective view of a shell for use with the actuator of the present invention illustrated in FIG. 5.
  • DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
  • The following description of the preferred embodiment(s) is merely exemplary in nature and, thus, variations that do not depart from the gist of the invention are intended to be within the scope of the invention. Such variations are not to be regarded as a departure from the spirit and scope of the invention.
  • FIG. 1 illustrates a lumbar support mechanism, seen generally at 10, according to the present invention located in a vehicle seat 12. The vehicle seat 12 includes a seat bolster 14 and a seat back 16. The seat back 16 includes a seat frame 18, which is connected, typically in a pivotal manner, to the seat bolster 14. A plurality of upright 22 members cooperate with upper 24 and lower 26 cross bars to form the seat frame 18.
  • The lumbar support mechanism 10 generally includes a lumbar support member 30. The lumbar support member 30 is supported in the seat back 16 by the upper 24 and lower 26 cross bars of the seat frame 18. The lumbar support member 30 positions or moves the lower seating surface 20 of the seat back 16 to provide support to the lumbar region of a seat occupant. Secured to the seat bolster 14 is an actuator 32. The actuator 32 acts through an adjustment cable 34 to position the lumbar support member 30. The seat occupant uses the actuator 32 to vary the position of the lumbar support member 30 and consequently vary the amount of lumbar support provided at the lower seating surface 20.
  • As shown in FIG. 2-4, the lumbar support member 30 includes a sheet or panel 36 made of a resilient material, such as a resilient plastic, having a front surface 37 and a rear surface 39. The front surface 37 being that surface that engages or protrudes outward against the lower seating surface 20. The resilient material forming the sheet or panel 36 has suitable spring back or resilient properties that urge the panel 36 to return to its initial position. While disclosed herein as a panel, the shape and thickness of the panel 36 can vary across or over the dimensions of the panel 36 to vary the spring back or resiliency of the panel 36 in different regions or areas of the panel 36. Accordingly, when at rest or in its initial position, the sheet or panel 36 is in the position shown in FIG. 2.
  • The panel 36 includes a plurality of openings 38 located therein. The openings 38 remove a portion of the material of the panel 36 giving the panel 36 a web-type configuration or shape. The openings 38 help to reduce the rigidity of the panel 36 and to control the flexibility and bending stresses occurring in the panel 36 during use of the lumbar support member 30. Accordingly, the openings 38 may vary in shape, size and pattern depending upon the type, size and shape of the material used to form the lumbar support member 30. In addition, varying the size of the openings 38 adjusts the flexibility and bending stresses in different regions or areas of the panel 36.
  • An upper flange 40 is located on the upper end 42 of the lumbar support member and a lower flange 44 is located at the lower end 46 of the lumbar support member 30. Both the upper and lower flanges 40, 44 extend rearward from the rear surface 39. That is, the flanges 40, 44 extend inward toward the seat frame 18 and away from the lower seating surface 20. The lower flange 44 also includes a mounting surface 50 located on the underside or bottom of the lower flange 44.
  • Mounting apertures 54 are located in the lower flange 44. Each mounting aperture 54 includes an L-shaped slot 56 having a leg portion 58 extending inwardly from the face 59 of the lower flange 44. A base portion 60 of the slot 56 extends parallel to the face 59 and terminates at a cylindrically shaped seat 64. An additional aperture 70 extends through the lower flange 44. The aperture 70 includes an L-shaped slot 72 terminating at a cylindrical seat 74.
  • The upper flange 40, like the lower flange 44 also includes mounting apertures 76 having L-shaped slots 77 terminating at cylindrical seats 78. The upper flange 40 further includes a pair of apertures 80 with a slot 82 extending to one of the apertures 80. In addition, the upper flange 40 includes apertures 66 for securing a spring member 105 to the upper flange 40.
  • Ribs 84 protrude outward from the rear surface 39 of the lumbar support member 30. The ribs 84 generally lie on a line extending between the upper flange 40 and the lower flange 44. While shown herein extending from the upper flange 40 to the lower flange 44, the ribs 84 may also end prior to reaching the ends 42, 46 of the lumbar support member 30. In addition, the ribs 84 may extend at an angle with respect to the upper 40 and lower 44 flanges. In addition, while shown as a single member having a rectangular cross-section, the ribs 84 may have various shapes and configurations.
  • When viewed from the side the ribs 84 have a plurality of indentations or relieved areas 88 extending along a portion of the length of the ribs 84. As shown in FIG. 2, the indentations 88 have a sinusoidal pattern and are located generally near the center or a midpoint of the ribs 84. Gussets 89 extending from the ribs 84 to the upper and lower flanges 40, 44 provide additional support to the panel 36. The ribs 84 provide rigidity and support to the lumbar support member 30. The indentations 88 provide flexibility to the panel 36 and enable the lumbar support member 30 to flex or bend without reducing support. Therefore, the shape, configuration and design of the ribs 84 are variable of depending upon the particular design parameters of the lumbar support member 30. Thus, the ribs 84, indentations 88, gussets 89, openings 38, material type, shape, size and configuration of the panel 36 all cooperate to determine and control the resiliency and flexibility of the lumbar support member 30.
  • As shown in FIG. 2-4 the lumbar support member 30 is mounted on a guide structure 90. The guide structure 90 includes a frame 92 having a pair of upright leg members 94 interconnected by a base member 96. Each leg member 94 having a bend or deflected portion 95 located near the base member 96. The base member 96 of the preferred embodiment has a sinuous shape or serpentine configuration. As shown in the present embodiment, a continuous member, such as a rod, formed into a desired shape and configuration depending upon the particular configuration of the seat back 16 and the size and shape of the lumbar support member 30 forms the frame 92.
  • As shown herein, seated on the lower cross bar 26 of the seat frame 18 is the base member 96 of the frame 92. The serpentine configuration is such that it extends or is located adjacent to but does not cover the apertures 98 located in the lower cross bar 26. The apertures 98 are used to attach the guide structure 90 to the lower cross bar 26. The middle or center aperture 100 provides clearance for the adjustment cable 34 and enables the adjustment cable 34 to pass through the lower cross bar 26 of the seat frame 18. The upper ends 102 of the leg members 94 extend upward and are attached to the upper cross bar 24 of the seat frame 18. This may include extending the upper ends 102 of the legs 94 through apertures in the upper cross bar 24 and securing them to the upper cross bar 24 after attaching the base member 96 to the lower cross bar 26.
  • As illustrated in FIG. 3, fasteners 68 extending through the apertures 98 in the lower cross bar 26 secure the frame 92 to the lower cross bar 26. The fasteners 68 are of a type commonly referred to as a Christmas tree fastener, in that the fasteners 68 have a barbed end or projection 104 that deflects inward when the fastener 68 is inserted in to the apertures 98. Upon passing through the apertures 98, the barbed end 104 of each fastener 68 extends outward and engages the undersurface of the lower cross bar 26. Accordingly, the frame 92 is secured on both ends to the seat frame 22 with the upper ends 102 attached to the upper cross bar 24 and a base member 96 of the frame 92 attach to the lower cross bar 26.
  • To attach the lumbar support member 30 to the frame 92 the leg members 94 are deflected slightly inward, toward one another, and are slid into the leg portion 58 of the L-shaped slot 56 located in the lower flange 44 of the lumbar support member 30. Upon reaching the base portion 60 of the slot 56 the leg members 94 are urged outward until they enter into and are seated in the respective cylindrical seats 64 of the mounting apertures 54 located in the lower flange 44. The cylindrical seats 64 are sized such that the lower flange 44 of the lumbar support member 30 slides freely on the leg members 94 of the frame 92. As illustrated in FIG. 4, the lumbar support 30 rests on the bend or deflected portion 95 that functions as a stop to limit the lower travel of the lumbar support 30 on the frame 92.
  • The upper end 42 of the lumber support member 30 is attached, in part, in a similar manner by again deflecting the leg members 94 of the frame 92 slightly inward and inserting them into the L-shaped slots 77. The leg members 94 slide in the slots 77 until they reach the respective cylindrical seats 78. The cylindrical seats 78 are sized such that the upper flange 40, and correspondingly the upper end 42, of the lumbar support member 30 moves freely along the leg members 94 of the frame 92.
  • The adjustment cable 34, such as a flexible motion transmitter or push pull type cable, includes a wire or cable 106 that slides within a cable housing 108, and is shown in the preferred embodiment as one way to adjust the curvature of the lumbar support member 30. This type of cable is often referred to as a Bowden cable. As shown in FIG. 2, a hook 110 is fastened to a first end 116 of the cable 106. The hook 110 has a U-shape wherein the legs 112 fit in the apertures 80 and the base 114 engages the upper flange 40. The cable 106 fits in the slot 82 adjacent the aperture 80.
  • The cable housing 108 includes an end fitting or ferrule 120 secured to the first end 118 of the cable housing 108. As shown in FIG. 2-4, the U-shaped hook 110 end and fitting 120 pass through the opening or aperture 100 in the lower cross bar 26. The end fitting 120 includes a shoulder 122 of a diameter sized such that the first end 118 of the cable housing 108 engages and remains stationary against the lower flange 44 of the lumbar support 30. Specifically, a bushing portion 124 extends through the aperture 74 in the lower flange 44 and the shoulder 122 is seated against the lower or undersurface 50 of the lower flange 44. Thus, the first end 118 of the cable housing 108 is positioned on the lower flange 44 while the cable 106 and the hook 110 pass through and engage the upper flange 40 of the lumbar support member 30. Accordingly, as the cable 106 is pulled or placed in tension, it compresses the lumbar support member 30 by drawing the upper flange 40 of the lumbar support member 30 downward along the frame 92 toward the lower flange 44 causing the lumbar support member 30 to bow outward in the direction of the lower seating surface 20, see FIG. 4. Thus, drawing the upper flange 40 downward increases the outward deflection of the lumbar support member 30.
  • As set forth previously, a further aspect of the invention includes a tension member that operates to reduce the force necessary to move the support member 30 outward as shown in phantom in FIG. 4. In the preferred embodiment, positioned on the rear surface 39 of the panel 36 between the ribs 84 is a spring bracket 107. A pair of tensile springs 105 are attached on a first end to the spring bracket 107. The second end of the springs 105 are attached to the upper flange 40 at mounting holes 66. In keeping with the invention, varying the position of the spring bracket 107 on the support member 30 varies the applied force. In addition, varying the number or tensile strength of the springs 105 also varies the applied force.
  • It should be understood that the cable 106 could be tightened by several different methods, all of which can provide a suitable means to correspondingly move the upper flange 40 of the lumbar support member 30 and vary the amount or degree of curvature of the lumbar support member 30.
  • FIGS. 5-7 illustrate a preferred embodiment of the actuator 32. The actuator 32 tightens or loosens the cable 106 and correspondingly varies the degree of curvature of the lumbar support member 30. As shown in FIG. 5, the actuator 32 includes a housing 130, screw member 132, shell 134, formed of two sections 134 a, 134 b, and knob 136. These components fit together such that rotation of the knob 136 causes axial movement, in the direction of the arrow 158, of the screw member 132 in the housing 130 to increase or decrease the tension on the cable 106.
  • Turning now in greater detail to the actuator 32, the housing 130 has first and second ends 138, 140. The first end 138 having a cylindrical bore 142 extending from the first end 138 toward the second end 140. The cylindrical bore 142 terminates prior to reaching the second end 140 of the housing 130. A shaped passageway or socket 144 extends from the base or bottom 146 of the cylindrical bore 142 toward the second end 140 of the housing 130. An aperture 148 is located in the second end 140 of the housing 130 and communicates with the shaped passageway or socket 144.
  • The aperture 148 is sized to receive a bushing portion 150 of a ferrule or end fitting 152 attached to the second end 128 of the cable housing 108. The end fitting 152 further includes a shoulder 154. The shoulder 154 is sized to provide a stop on the outer face 156 of the second end 140 of the housing 130. Accordingly, the first end 118 of the cable housing 108 is connected by the first end fitting 120 to the lower flange 44 of the support member 30 and the second end 128 of the cable housing 108 is connected by the second end fitting 152 to the housing 130 of the actuator 32.
  • The second end 126 of the wire or cable 106 has a ball 160 staked thereto. The ball 160 and cable 106 pass through the aperture 148 located in the second end 140 of the housing 130. Accordingly, the ball 160 and cable 106 to extend through the aperture 148 and are received in the screw member 132.
  • As illustrated, the screw member 132 has a threaded cylindrical portion 162 and a post portion 164. The post portion 164 is configured such that it has a cross sectional shape, illustrated in the preferred embodiment as a hexagon, that is complementary to the cross sectional shape of the shaped passageway or socket 144. The complementary cross sectional shape of the socket 144 and the post portion 164 enables-the screw member 132 to move longitudinally within the housing 130 and prevents rotation about the longitudinal axis or direction of movement of the screw member 132 as illustrated by the arrow 158 in FIG. 6.
  • The ball 160 staked to the cable 106 connects the cable 106 to the screw member 132. The ball 160 fits in a cylindrical seat 165 located in the post portion 164. A slot or groove 166 located in the post portion 164 receives the cable 106. Accordingly, as the screw member 132 moves longitudinally within the housing 130, in the direction of the arrow 158, the screw member 132 functions to increase or decrease the tension on the cable 106 and correspondingly adjusts the degree of curvature or outward bow of the lumbar support member 32.
  • The shell 134 is cylindrically shaped and sized to fit within the cylindrical bore 142 of the housing 130. The inner circumferential surface 168 of the shell 134 includes a plurality of threads 170. The threads 170 are complementary to and engage the cylindrical threaded portion 162 of the screw member 132. The distal end 172 of the shell 134 is positioned adjacent the bottom 146 of the bore 142. The outer circumferential surface 174 of the shell 134 includes a plurality of longitudinally extending grooves 176.
  • The knob 136 includes an annular flange 180 defining a cylindrical socket 182 of a size and diameter suitable to receive the shell 134. The socket 182 has a bottom surface 183. Tabs 184 project radially inward from an inner circumferential surface 186 of the socket 182. As shown in FIG. 6, when the shell 134 is disposed within the cylindrical bore 142 of the housing 130, the proximal end 178 of the shell 134 is located adjacent the bottom surface 183 of the socket 182 with the tabs 184 fitting within the grooves 176 located in the outer circumferential surface 174 of the shell 134. Accordingly, the shell 134 is coupled or connected to the knob 136 such that rotation of the knob 136 causes rotation of the shell 134 within the cylindrical bore 142 of the housing 130. As shown, the shell 134 is secured between the bottom 183 of the socket 182 and the bottom 146 of the cylindrical bore 142.
  • In the embodiment illustrated in FIG. 7, the shell 134 is shown as a split shell, formed of two opposed semicircular sections 134 a, 134 b. These sections 134 a, 134 b fit on opposite sides of the screw member 132. Each of the first and second shell sections 134 a, 134 b includes a corresponding mating surface 179. To maintain proper alignment of the threads 170 when the respective shell sections 134 a, 134 b are placed together, a pair of locating tabs 177 extending upward from the mating surface 179 of the first shell section 134 a engage a pair of locating grooves 175 formed in the mating surface 179 of the second shell section 134 b. The tabs 179 and grooves 175 prevent the respective first and second shell sections 134 a, 134 b from moving longitudinally and creating a gap or misalignment of the threads 170. Forming the shell 134 in sections reduces manufacturing and assembly time. The shell 134 may be made as a single or unitary member wherein the threads 170 are cut or machined therein.
  • The knob 136 further includes a latch assembly, seen generally at 190, that rotatably secures the knob 136 to the housing 130. The latch assembly 190 includes a plurality of locking fingers 192 formed on the outer end 188 of the annular flange 180. Each locking finger 192 includes an inwardly facing locking projection 194 adjacent an outwardly extending annular groove 196. A ramp surface 198 is formed on the leading end of the locking projection 194.
  • An inwardly extending annular groove 200 is located on the outer circumferential surface of the housing 130 near the second end 140 of the housing 130. The annular groove 200 cooperates with the second end 140 of the housing 130 to define an annular flange 202 formed on or located at the first end 138 of the housing 130. The annular flange 202 having a width or thickness less than the width or thickness of the annular groove 196 located in the knob 136.
  • To rotatably couple the knob 136 to the housing 130, the knob 136 is placed adjacent the housing 130 such that the ramp surface 198 of the locking projection 194 engages the annular flange 202 of the housing 130. Applying a suitable force to the knob 136 causes the locking projection 194 to deflect outward as the ramp surface 198 travels over the annular flange 202. Once the locking projection 194 travels past the annular flange 202, it snaps inwardly into the annular groove 196 located in the housing 130. Accordingly, the knob 136 is retained on the housing 130 as the locking surface 204 of the locking projection 194 engages the wall or corresponding locking surface 206 of the annular flange 202. As set forth previously, the size of the respective grooves, flanges and spacing is such that the knob 136 is coupled to and rotates freely about the housing 130.
  • A pair of ears 208 having mounting apertures 210 are connected to or formed integral with the housing 130. Mounting screws or fasteners extend through the mounting apertures 210 and secure the housing 130 to the seat bolster 14 at a location adjacent to the vehicle operator.
  • Accordingly, rotation of the knob 136 of the present invention correspondingly rotates the shell 134 causing longitudinal travel of the screw member 132 between first and second positions, as shown by the arrow 158 in FIG. 6. The screw member 132 cooperates with the bottom 183 of the socket 182 and the bottom 146 of the cylindrical bore 142 to limit the travel of the cable 106 and correspondingly limit the travel of the support member 30. Specifically, continued rotation of the knob 136 in a clockwise direction pulls the screw member 132 toward the knob 136 until ultimately the screw 132 engages the bottom surface 183 of the knob 136. Once this happens, the knob 136 will no longer turn as the bottom surface 183 functions as a positive step to limit travel of the screw member 132. Conversely, when rotating the knob 136 in a counterclockwise direction, the screw member 132 will move towards and ultimately engage the bottom surface 146 of the cylindrical bore 142 located in the housing 130. Once again, bottom surface 146 of the cylindrical bore 142 functions as a stop to limit travel of the screw member 132. Accordingly, the actuator 32 of the present invention has a positive stop on both ends thereby limiting travel and reducing the opportunity for the operator or occupant to over torque the adjustment cable 34 or pull the lumbar support member 30 past a point of maximum deflection.
  • Accordingly, the present invention provides a lumbar support mechanism 10 including a lumbar support member 30 connected to an actuator 32 used to position the lumbar support member 30 and a multitude of various positions.

Claims (27)

1. A lumbar support mechanism for use with a seat comprising:
a support member, said support member including a panel having an upper end, a lower end and a rear surface, a rib, the entire rib located on and projecting outward from the rear surface of said panel, said rib located on a line extending between said upper end and said lower end;
a guide structure, said guide structure including a frame having upright leg members, said support member mounted on said guide structure;
an actuator; and
an adjustment cable, one end of said cable connected to said actuator and an other end of said cable connected to said support member.
2. A lumbar support mechanism as set forth in claim 1 wherein said support member includes an upper flange and a lower flange, said upper flange slidably secured to said upright leg members.
3. A lumbar support mechanism as set forth in claim 1 wherein said rib includes at least one indentation, said indentation having a configuration that aids in controlling flexibility of the support member.
4. A lumbar support mechanism as set forth in claim 1 wherein said support member includes a plurality of openings, said openings having a variable size and shape to aid in controlling flexibility of the support member.
5. A lumbar support mechanism as set forth in claim 3 wherein said support member includes a plurality of openings, said openings having a variable size and shape to aid in controlling flexibility of the support member.
6. A lumbar support mechanism as set forth in claim 2 wherein said upper flange includes a plurality of apertures, said upright leg members slidably received in said apertures; and
said lower flange including a plurality of apertures, said upright leg members received in said apertures in said lower flange.
7. A lumbar support mechanism as set forth in claim 1 including a spring connected at a first end to said upper end of said support member and at a second end to said support member, said spring operative to provide a tensile force on said support member to reduce the force necessary to move said support member towards an outwardly bowed position.
8. A lumbar support mechanism as set forth in claim 2 including:
at least one fastener engaging said guide structure, said fastener used for securing said guide structure to the seat.
9. A lumbar support mechanism as set forth in claim 8 including:
said frame of said guide structure having a base member connected to said upright leg members;
said fastener engaging said base member to secure said guide structure to the seat; and
said upright leg members having a bend wherein said lower flange of said support member engages said bend.
10. A lumbar support mechanism as set forth in claim 1 wherein said adjustment cable includes a cable and a cable housing, said cable disposed within said cable housing and having first and second ends, each of said ends extending beyond said cable housing, said first end of said cable having a hook attached thereto, and said second end of said cable attached to a screw member of said actuator, said hook operative to connect said first end of said cable to said upper flange.
11. A lumbar support mechanism as set forth in claim 1 wherein said actuator includes:
a housing having a cylindrical bore and a socket;
a screw member having a post portion disposed within said socket, said screw member further including a threaded portion, said screw member disposed in said housing such that said post portion is disposed within said socket;
a shell, said shell including an interior threaded surface, said shell disposed within said cylindrical bore wherein the threaded portion of said screw member engages the interior threaded surface of said shell; and
a knob, said knob engaging said shell.
12. A lumbar support mechanism as set forth in claim 11 wherein said knob includes a latch assembly, said latch assembly engaging an annular groove on said housing such that said the knob is rotatably secured to said housing.
13. A lumbar support mechanism as set forth in claim 12 including:
said knob having a cylindrical bore including at least one inwardly extending rib;
said shell having at least one groove located in an outer circumferential surface of said shell, said groove cooperating with said rib when said shell is inserted into said cylindrical bore of said knob to couple said shell to said knob such that rotation of said knob causes rotation of said shell.
14. A lumbar support mechanism for use with a seat comprising:
a support member, said support member including a panel having an upper end, a lower end and a rear surface, a rib located on and projecting outward from the rear surface of said panel, said rib oriented on a line extending between said upper end and said lower end;
a guide structure, said guide structure including a frame having upright leg members, said support member mounted on said guide structure;
an actuator said actuator including a housing, a screw member disposed within said housing and a knob; said knob including a latch assembly engaging a groove located in the outer surface of said housing such that rotation of said knob causes movement of said screw member within said housing;
said actuator including a stop limiting the movement of said screw member within said housing; and
an adjustment cable, said adjustment cable including a cable and a cable housing, one end of said cable connected to said screw member and an other end of said cable connected to said support member.
15. A lumbar support mechanism as set forth in claim 14 including first and second stops, said first stop being a bottom surface of a cylindrical bore located in said housing and said second stop being a bottom surface of a socket located in said knob.
16. A lumbar support mechanism as set forth in claim 14 wherein said rib includes an inwardly extending indentation, said indentation configured to vary the flexibility of said support member.
17. A lumbar support mechanism as set forth in claim 14 including a plurality of openings located in said panel of said support member.
18. A lumbar support mechanism as set forth in claim 14 including:
an upper flange extending rearwardly from said upper end of said panel;
a lower flange extending rearwardly from said lower end of said panel; and
said upper flange and said lower flange having mounting apertures located therein for securing said support member to said upright leg members of said guide structure, said mounting apertures including a slot extending inwardly from an outer face of said upper and lower flanges and a cylindrically shaped seat.
19. A lumbar support mechanism as set forth in claim 14 including a spring connected at a first end to said upper end of said support member and at a second end to said support member, said spring operative to provide a tensile force on said support member to reduce the force necessary to move said support member towards an outwardly bowed position.
20. A lumbar support mechanism for use with a seat comprising:
a guide structure, said guide structure including a frame having upright leg members;
a support member, said support member including a panel having an upper end, a lower end and a rear surface, a rib, said entire rib located on and projecting outward from the rear surface of said panel, said rib oriented on a line extending between said upper end and said lower end, said support member further having a plurality of openings and an upper flange and a lower flange, said upper flange including mounting apertures for securing said support member to said upright leg members;
an actuator said actuator including a housing, said housing having a cylindrical bore and a socket;
a screw member, said screw member having a threaded portion and a post
portion, said screw member disposed within said housing such that said post portion is positioned in said socket;
a shell, said shell including an interior threaded surface, said shell disposed within said cylindrical bore and about the threaded portion of said screw member such that the threaded portion of said screw member engages the interior threaded surface of said shell;
a knob, said knob rotatably connected to said housing and engaging said shell such that rotation of said knob causes rotation of said shell and correspondingly movement of said screw member within said housing; and
an adjustment cable, said adjustment cable including a cable and a cable housing, one end of said cable connected to said screw member and an other end of said cable connected to said upper end of said support member.
21. A lumbar support mechanism as set forth in claim 20 including a spring connected at a first end to said upper end of said support member and at a second end to said support member, said spring operative to provide a tensile force on said support member to reduce the force necessary to move said support member towards an outwardly bowed position.
22. A lumbar support mechanism as set forth in claim 21 including first and second stops, said first stop being a bottom surface of a cylindrical bore located in said housing and said second stop being a bottom surface of a socket located in said knob.
23. A lumbar support mechanism as set forth in claim 20 wherein said rib includes at the least one indentation, said the indentation having a configuration that aids in controlling the flexibility of the support member.
24. A lumbar support mechanism for use with a seat comprising:
a support member, said support member including a flexible panel having an upper end, a lower end and a rear surface, a rib, said entire rib located on and projecting outward from the rear surface of said panel, said rib located on a line extending between said upper end and said lower end; and
an actuator connected to said support member.
25. A lumbar support mechanism as set forth in claim 24 wherein said rib includes at least one indentation, said indentation having a configuration that aids in controlling the flexibility of the panel.
26. A lumbar support mechanism as set forth in claim 24 wherein said support member includes a plurality of openings, said openings having a variable size and shape to aid in controlling the flexibility of the panel.
27. A lumbar support mechanism as set forth in claim 24 wherein said support member includes a plurality of openings, said openings having a variable size and shape; and
said rib having a variable configuration.
US11/118,662 2005-04-29 2005-04-29 Adjustable lumbar support for vehicle seat Expired - Fee Related US7131694B1 (en)

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Cited By (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070246285A1 (en) * 2006-04-17 2007-10-25 Gm Global Technology Operations, Inc. Active material based conformable and reconfigurable seats
US20070267905A1 (en) * 2006-02-03 2007-11-22 Sava Cvek Post-Assembly Tension Adjustment in Elastomeric Material Applications
FR2926644A1 (en) * 2008-01-22 2009-07-24 Faurecia Sieges Automobile Manual control mechanism i.e. handle mechanism, for seat of motor vehicle, has intermediate element comprising external wall that defines clips cooperating with groove coaxial to axle, where axle is carried by adjustment element
US20100078974A1 (en) * 2008-10-01 2010-04-01 Lear Corporation Vehicle seat lumbar system
ITAN20090014A1 (en) * 2009-04-15 2010-10-16 German Plast S R L ADJUSTMENT DEVICE FOR BOWDEN CABLES
US20100301650A1 (en) * 2009-05-27 2010-12-02 Cheong Myung Hong Lumbar support for a car seat
CN102256512A (en) * 2008-12-18 2011-11-23 La-Z-博伊有限公司 Lumbar support system for furniture member
KR20150018553A (en) * 2012-05-07 2015-02-23 존슨 컨트롤스 테크놀러지 컴퍼니 Vehicle seat with a lumbar support
US20150091349A1 (en) * 2013-10-02 2015-04-02 Chun Yoo HONG Lumbar Support of Car Seat
JP2015067173A (en) * 2013-09-30 2015-04-13 トヨタ紡織株式会社 Vehicle seat
US9511687B2 (en) 2012-05-07 2016-12-06 Johnson Controls Technology Company Seat adjustment device for vertical adjustment of a vehicle seat
US9744891B2 (en) * 2015-04-03 2017-08-29 Dae Chang Seat Co., Ltd. Lumbar support assembly
US9796308B2 (en) * 2015-05-05 2017-10-24 Ami Industries, Inc. Flexible lumbar support of aircraft seat
CN108040477A (en) * 2015-09-01 2018-05-15 大众汽车有限公司 Protection element, seat for seat
US10086728B2 (en) * 2013-11-19 2018-10-02 Adient Luxembourg Holding S.a.r.l. Adjustable seat
CN110352145A (en) * 2017-01-05 2019-10-18 安道拓工程技术知识产权有限公司 Vehicle seat with adjustable seat backrest and/or adjustable seat cushion
US10561247B2 (en) * 2018-05-31 2020-02-18 Chem Shing Top Co., Ltd. Chair back structure
US10952535B2 (en) 2018-11-05 2021-03-23 La-Z-Boy Incorporated Furniture member having lumbar adjustment mechanism
US11091060B2 (en) * 2019-01-10 2021-08-17 Toyota Motor Engineering & Manufacturing North America, Inc. Components with SMA-controlled hinge
US11324324B2 (en) 2018-11-05 2022-05-10 La-Z-Boy Incorporated Furniture member having lumbar adjustment mechanism
US20230012911A1 (en) * 2021-07-19 2023-01-19 Pierre Heroux Cushioned furntiure restoration kit
US11672348B2 (en) 2018-11-05 2023-06-13 La-Z-Boy Incorporated Furniture member having lumbar adjustment mechanism

Families Citing this family (107)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10338737B4 (en) * 2003-08-22 2014-05-22 Schukra Gerätebau AG Adjustment device for a Bowden cable arrangement
JP4925176B2 (en) * 2006-07-07 2012-04-25 テイ・エス テック株式会社 Vehicle seat
US7874619B2 (en) * 2007-01-29 2011-01-25 Allseating Corporation Adjustable lumbar support for a chair back
US8840186B2 (en) * 2007-11-07 2014-09-23 L&P Swiss Holding Ag Support assembly and corresponding seat structure
US8876209B2 (en) 2008-05-26 2014-11-04 Steelcase Inc. Conforming back for a seating unit
US7841664B2 (en) 2008-06-04 2010-11-30 Steelcase Inc. Chair with control system
DE102008047248A1 (en) * 2008-09-10 2010-03-11 Brose Fahrzeugteile Gmbh & Co. Kommanditgesellschaft, Coburg Spindle drive for a lumbar support in the backrest structure of a motor vehicle seat
US7874616B2 (en) * 2008-09-18 2011-01-25 Lear Corporation Horizontal lumbar suspension for vehicle seats
US7770972B2 (en) * 2008-10-01 2010-08-10 Lear Corporation Seat lumbar actuator
US8056983B2 (en) * 2008-12-18 2011-11-15 La-Z-Boy Incorporated Lumbar support and head rest adjustment mechanism
US8025337B2 (en) * 2008-12-18 2011-09-27 La-Z-Boy Incorporated Adjustable head rest assembly for furniture member
US7918506B2 (en) * 2009-02-06 2011-04-05 Chern Shing Top Co., Ltd. Padding structure for a chair
US8885299B1 (en) 2010-05-24 2014-11-11 Hutchinson Technology Incorporated Low resistance ground joints for dual stage actuation disk drive suspensions
US8474909B2 (en) 2010-09-21 2013-07-02 La-Z-Boy Incorporated Power lift lumbar support system
US8439441B2 (en) 2010-09-29 2013-05-14 Lear Corporation Adjustable lumbar assembly for vehicle seats
US10632882B2 (en) 2012-09-13 2020-04-28 Leggett & Platt Canada Co. Lumbar support system
US9193287B2 (en) 2012-09-13 2015-11-24 Leggett & Platt Canada Co. Lumbar support system
US9199565B2 (en) 2012-09-13 2015-12-01 Leggett & Platt Canada Co. Lumbar support system
US9193280B2 (en) 2012-09-13 2015-11-24 Leggett & Platt Canada Co. Lumbar support system
US9004594B2 (en) * 2012-11-02 2015-04-14 Cheong Myung Hong Actuator system for controlling lumbar support
JP2014094597A (en) * 2012-11-07 2014-05-22 Shiroki Corp Lumber support device
JP2014094040A (en) * 2012-11-07 2014-05-22 Shiroki Corp Lumbar support device
US9126508B2 (en) 2013-01-24 2015-09-08 Ford Global Technologies, Llc Upper seatback pivot system
US9216677B2 (en) 2013-01-24 2015-12-22 Ford Global Technologies, Llc Quick-connect trim carrier attachment
US9902293B2 (en) 2013-01-24 2018-02-27 Ford Global Technologies, Llc Independent cushion extension with optimized leg-splay angle
US9399418B2 (en) 2013-01-24 2016-07-26 Ford Global Technologies, Llc Independent cushion extension and thigh support
US9061616B2 (en) 2013-01-24 2015-06-23 Ford Global Technologies, Llc Articulating headrest assembly
US9409504B2 (en) 2013-01-24 2016-08-09 Ford Global Technologies, Llc Flexible seatback system
US9096157B2 (en) 2013-01-24 2015-08-04 Ford Global Technologies, Llc Seating assembly with air distribution system
US9016783B2 (en) 2013-01-24 2015-04-28 Ford Global Technologies, Llc Thin seat flex rest composite cushion extension
US9016784B2 (en) 2013-01-24 2015-04-28 Ford Global Technologies, Llc Thin seat leg support system and suspension
US9415713B2 (en) 2013-01-24 2016-08-16 Ford Global Technologies, Llc Flexible seatback system
US9126504B2 (en) 2013-01-24 2015-09-08 Ford Global Technologies, Llc Integrated thin flex composite headrest assembly
US8727374B1 (en) 2013-01-24 2014-05-20 Ford Global Technologies, Llc Vehicle seatback with side airbag deployment
US8896969B1 (en) 2013-05-23 2014-11-25 Hutchinson Technology Incorporated Two-motor co-located gimbal-based dual stage actuation disk drive suspensions with motor stiffeners
US9193284B2 (en) 2013-06-11 2015-11-24 Ford Global Technologies, Llc Articulating cushion bolster for ingress/egress
USD711125S1 (en) * 2013-06-12 2014-08-19 Komatsu Ltd. Vehicle seat
USD696545S1 (en) 2013-07-30 2013-12-31 Steelcase, Inc. Rear surface of a chair back
US9527418B2 (en) 2013-09-12 2016-12-27 Ford Global Technologies, Llc Semi rigid push/pull vented envelope system
US8905431B1 (en) 2013-09-24 2014-12-09 Ford Global Technologies, Llc Side airbag assembly for a vehicle seat
US9187019B2 (en) 2013-10-17 2015-11-17 Ford Global Technologies, Llc Thigh support for customer accommodation seat
US9505322B2 (en) 2013-10-25 2016-11-29 Ford Global Technologies, Llc Manual lumbar pump assembly
US9566884B2 (en) 2013-11-11 2017-02-14 Ford Global Technologies, Llc Powered head restraint electrical connector
US9315130B2 (en) 2013-11-11 2016-04-19 Ford Global Technologies, Llc Articulating head restraint
US9365143B2 (en) 2013-12-12 2016-06-14 Ford Global Technologies, Llc Rear seat modular cushion
US9315131B2 (en) 2014-01-23 2016-04-19 Ford Global Technologies, Llc Suspension seat back and cushion system having an inner suspension panel
USD737586S1 (en) * 2014-01-24 2015-09-01 Tachi-S Co., Ltd. Automotive vehicle seat with ornamental beading
US9649963B2 (en) 2014-03-04 2017-05-16 Ford Global Technologies, Pllc Trim and foam assembly for a vehicle seat
US9527419B2 (en) 2014-03-31 2016-12-27 Ford Global Technologies, Llc Vehicle seating assembly with manual cushion tilt
US9302643B2 (en) 2014-04-02 2016-04-05 Ford Global Technologies, Llc Vehicle seating assembly with side airbag deployment
US9421894B2 (en) 2014-04-02 2016-08-23 Ford Global Technologies, Llc Vehicle seating assembly with manual independent thigh supports
JP6110333B2 (en) * 2014-04-21 2017-04-05 本田技研工業株式会社 Vehicle parking lock release device
US9694741B2 (en) 2014-08-25 2017-07-04 Ford Global Technologies, Llc Ambient functional lighting of a seat
US10471874B2 (en) 2014-09-02 2019-11-12 Ford Global Technologies, Llc Massage bladder matrix
US9776533B2 (en) 2014-10-03 2017-10-03 Ford Global Technologies, Llc Torsion bar upper seatback support assembly
US9789790B2 (en) 2014-10-03 2017-10-17 Ford Global Technologies, Llc Tuned flexible support member and flexible suspension features for comfort carriers
US9333882B2 (en) 2014-10-03 2016-05-10 Ford Global Technologies, Llc Manual upper seatback support
US9771003B2 (en) 2014-10-29 2017-09-26 Ford Global Technologies, Llc Apparatus for customizing a vehicle seat for an occupant
US9340131B1 (en) 2014-11-06 2016-05-17 Ford Global Technologies, Llc Head restraint with a multi-cell bladder assembly
US9517777B2 (en) 2014-11-06 2016-12-13 Ford Global Technologies, Llc Lane departure feedback system
US10065570B2 (en) 2014-12-10 2018-09-04 Ford Global Technologies, Llc Electronic device holder for a vehicle seat
US9070392B1 (en) 2014-12-16 2015-06-30 Hutchinson Technology Incorporated Piezoelectric disk drive suspension motors having plated stiffeners
US9593642B2 (en) 2014-12-19 2017-03-14 Ford Global Technologies, Llc Composite cam carrier
US9663000B2 (en) 2015-01-16 2017-05-30 Ford Global Technologies, Llc Vehicle seat configured to improve access
US9707877B2 (en) 2015-01-20 2017-07-18 Ford Global Technologies, Llc Independent thigh extension and support trim carrier
US9365142B1 (en) 2015-01-20 2016-06-14 Ford Global Technologies, Llc Manual independent thigh extensions
US9566930B2 (en) 2015-03-02 2017-02-14 Ford Global Technologies, Llc Vehicle seat assembly with side-impact airbag deployment mechanism
US9802535B2 (en) 2015-04-27 2017-10-31 Ford Global Technologies, Llc Seat having ambient lighting
US9734852B2 (en) 2015-06-30 2017-08-15 Hutchinson Technology Incorporated Disk drive head suspension structures having improved gold-dielectric joint reliability
US10046682B2 (en) 2015-08-03 2018-08-14 Ford Global Technologies, Llc Back cushion module for a vehicle seating assembly
US9718387B2 (en) 2015-08-03 2017-08-01 Ford Global Technologies, Llc Seat cushion module for a vehicle seating assembly
US9688174B2 (en) 2015-08-07 2017-06-27 Ford Global Technologies, Llc Multi-cell seat cushion assembly
US9573528B1 (en) 2015-08-25 2017-02-21 Ford Global Technologies, Llc Integrated seatback storage
US9616776B1 (en) 2015-11-16 2017-04-11 Ford Global Technologies, Llc Integrated power thigh extender
US9809131B2 (en) 2015-12-04 2017-11-07 Ford Global Technologies, Llc Anthropomorphic pivotable upper seatback support
US9931999B2 (en) 2015-12-17 2018-04-03 Ford Global Technologies, Llc Back panel lower clip anchorage features for dynamic events
US10093214B2 (en) 2016-01-14 2018-10-09 Ford Global Technologies, Llc Mechanical manual leg tilt
US9914421B2 (en) 2016-01-15 2018-03-13 Ford Global Technologies, Llc Seatback flexible slip plane joint for side air bag deployment
US9776543B2 (en) 2016-01-25 2017-10-03 Ford Global Technologies, Llc Integrated independent thigh supports
US10052990B2 (en) 2016-01-25 2018-08-21 Ford Global Technologies, Llc Extended seatback module head restraint attachment
US10035442B2 (en) 2016-01-25 2018-07-31 Ford Global Technologies, Llc Adjustable upper seatback module
US9756408B2 (en) 2016-01-25 2017-09-05 Ford Global Technologies, Llc Integrated sound system
US9849817B2 (en) 2016-03-16 2017-12-26 Ford Global Technologies, Llc Composite seat structure
US10286818B2 (en) 2016-03-16 2019-05-14 Ford Global Technologies, Llc Dual suspension seating assembly
US10046681B2 (en) 2016-04-12 2018-08-14 Ford Global Technologies, Llc Articulating mechanical thigh extension composite trim payout linkage system
US9994135B2 (en) 2016-03-30 2018-06-12 Ford Global Technologies, Llc Independent cushion thigh support
US10220737B2 (en) 2016-04-01 2019-03-05 Ford Global Technologies, Llc Kinematic back panel
US9889773B2 (en) 2016-04-04 2018-02-13 Ford Global Technologies, Llc Anthropomorphic upper seatback
US10625646B2 (en) 2016-04-12 2020-04-21 Ford Global Technologies, Llc Articulating mechanical thigh extension composite trim payout linkage system
US10081279B2 (en) 2016-04-12 2018-09-25 Ford Global Technologies, Llc Articulating thigh extension trim tensioning slider mechanism
US9802512B1 (en) 2016-04-12 2017-10-31 Ford Global Technologies, Llc Torsion spring bushing
US9646638B1 (en) 2016-05-12 2017-05-09 Hutchinson Technology Incorporated Co-located gimbal-based DSA disk drive suspension with traces routed around slider pad
US9845029B1 (en) 2016-06-06 2017-12-19 Ford Global Technologies, Llc Passive conformal seat with hybrid air/liquid cells
US9834166B1 (en) 2016-06-07 2017-12-05 Ford Global Technologies, Llc Side airbag energy management system
US9849856B1 (en) 2016-06-07 2017-12-26 Ford Global Technologies, Llc Side airbag energy management system
US10166894B2 (en) 2016-06-09 2019-01-01 Ford Global Technologies, Llc Seatback comfort carrier
US10166895B2 (en) 2016-06-09 2019-01-01 Ford Global Technologies, Llc Seatback comfort carrier
US10377279B2 (en) 2016-06-09 2019-08-13 Ford Global Technologies, Llc Integrated decking arm support feature
US10286824B2 (en) 2016-08-24 2019-05-14 Ford Global Technologies, Llc Spreader plate load distribution
US10279714B2 (en) 2016-08-26 2019-05-07 Ford Global Technologies, Llc Seating assembly with climate control features
US10391910B2 (en) 2016-09-02 2019-08-27 Ford Global Technologies, Llc Modular assembly cross-tube attachment tab designs and functions
US10239431B2 (en) 2016-09-02 2019-03-26 Ford Global Technologies, Llc Cross-tube attachment hook features for modular assembly and support
KR101926921B1 (en) * 2016-10-18 2018-12-07 현대자동차주식회사 Driver monitoring apparatus and method
US9914378B1 (en) 2016-12-16 2018-03-13 Ford Global Technologies, Llc Decorative and functional upper seatback closeout assembly
US10596936B2 (en) 2017-05-04 2020-03-24 Ford Global Technologies, Llc Self-retaining elastic strap for vent blower attachment to a back carrier
US10351030B2 (en) * 2017-09-14 2019-07-16 Ford Global Technologies, Llc Seat trim retention system with asymmetrical retention force
US11273743B1 (en) 2020-12-22 2022-03-15 Adient Engineering and IP GmbH Mat mounting structure in seat back and vehicle seat

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5217278A (en) * 1991-03-13 1993-06-08 Findlay Industries, Inc. Mechanism for providing adjustable lumbar support in a seat
US5299851A (en) * 1993-05-19 1994-04-05 Lin Kuen Yuan Adjustable cushion assembly for a chair
US5651583A (en) * 1992-09-29 1997-07-29 Ameu Management Corp. Seat back rest with an adjustment device for a flexible arching element for adjusting the convex curvature of the back rest
US5911477A (en) * 1997-05-29 1999-06-15 L&P Property Management Company Lumbar support structure for automotive vehicle
US6036265A (en) * 1996-07-22 2000-03-14 Schukra Manufacturing, Inc. Shape-adjusting mechanism for backrest
US6334651B1 (en) * 2000-02-01 2002-01-01 Schukra Geratebau Gmbh Lumbar support adjusting mechanism
US20020195854A1 (en) * 2001-06-25 2002-12-26 Hong Jung-Myung Lumbar support locking apparatus for car seat
US6520580B1 (en) * 2000-06-16 2003-02-18 Hong Jung-Myung Lumbar support controlling apparatus for a car seat
US6666511B2 (en) * 1989-08-04 2003-12-23 Schukra Geratebau Ag Arching mechanism and method of use
US6668679B2 (en) * 2001-12-07 2003-12-30 L & P Property Management Company Apparatus and method for pulley actuator
US6688687B2 (en) * 2000-06-20 2004-02-10 Global Total Office Backrest with adjustable lumbar support
US20040080197A1 (en) * 2002-10-25 2004-04-29 Robert Kopetzky Transmission amplifier for bowden cables and method of using the same
US6820933B2 (en) * 2000-06-19 2004-11-23 Fico Cables, Lda Spine support for vehicle seats

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2931427A (en) * 1959-02-24 1960-04-05 Goldstein Joseph Ventilated seat cushion
US3037814A (en) * 1959-09-14 1962-06-05 Shwayder Brothers Inc Backrest assembly for chairs
US3131970A (en) * 1962-05-21 1964-05-05 Aerotec Ind Inc Seats
US6220661B1 (en) * 1999-04-19 2001-04-24 Steelcase Development Inc. Chair back and method of assembly
US6446945B1 (en) * 2000-10-26 2002-09-10 David M. Wisniewski Spring recoil stamping for biasing a vehicle seat bottom
US20050231019A1 (en) * 2004-04-15 2005-10-20 Sears Manufacturing Company Vehicle seat frame

Patent Citations (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040066071A1 (en) * 1989-08-04 2004-04-08 Schukra Geratebau Ag Arching mechanism and method of use
US6666511B2 (en) * 1989-08-04 2003-12-23 Schukra Geratebau Ag Arching mechanism and method of use
US5217278A (en) * 1991-03-13 1993-06-08 Findlay Industries, Inc. Mechanism for providing adjustable lumbar support in a seat
US5651583A (en) * 1992-09-29 1997-07-29 Ameu Management Corp. Seat back rest with an adjustment device for a flexible arching element for adjusting the convex curvature of the back rest
US5299851A (en) * 1993-05-19 1994-04-05 Lin Kuen Yuan Adjustable cushion assembly for a chair
US6036265A (en) * 1996-07-22 2000-03-14 Schukra Manufacturing, Inc. Shape-adjusting mechanism for backrest
US5911477A (en) * 1997-05-29 1999-06-15 L&P Property Management Company Lumbar support structure for automotive vehicle
US6334651B1 (en) * 2000-02-01 2002-01-01 Schukra Geratebau Gmbh Lumbar support adjusting mechanism
US6520580B1 (en) * 2000-06-16 2003-02-18 Hong Jung-Myung Lumbar support controlling apparatus for a car seat
US6820933B2 (en) * 2000-06-19 2004-11-23 Fico Cables, Lda Spine support for vehicle seats
US6688687B2 (en) * 2000-06-20 2004-02-10 Global Total Office Backrest with adjustable lumbar support
US20020195854A1 (en) * 2001-06-25 2002-12-26 Hong Jung-Myung Lumbar support locking apparatus for car seat
US6668679B2 (en) * 2001-12-07 2003-12-30 L & P Property Management Company Apparatus and method for pulley actuator
US20040080197A1 (en) * 2002-10-25 2004-04-29 Robert Kopetzky Transmission amplifier for bowden cables and method of using the same

Cited By (35)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070267905A1 (en) * 2006-02-03 2007-11-22 Sava Cvek Post-Assembly Tension Adjustment in Elastomeric Material Applications
US7517024B2 (en) * 2006-02-03 2009-04-14 Sava Cvek Post-assembly tension adjustment in elastomeric material applications
US20070246285A1 (en) * 2006-04-17 2007-10-25 Gm Global Technology Operations, Inc. Active material based conformable and reconfigurable seats
US7758121B2 (en) * 2006-04-17 2010-07-20 Gm Global Technology Operations, Inc. Active material based conformable and reconfigurable seats
FR2926644A1 (en) * 2008-01-22 2009-07-24 Faurecia Sieges Automobile Manual control mechanism i.e. handle mechanism, for seat of motor vehicle, has intermediate element comprising external wall that defines clips cooperating with groove coaxial to axle, where axle is carried by adjustment element
US20100078974A1 (en) * 2008-10-01 2010-04-01 Lear Corporation Vehicle seat lumbar system
US7841663B2 (en) * 2008-10-01 2010-11-30 Lear Corporation Vehicle seat lumbar system
CN102256512A (en) * 2008-12-18 2011-11-23 La-Z-博伊有限公司 Lumbar support system for furniture member
ITAN20090014A1 (en) * 2009-04-15 2010-10-16 German Plast S R L ADJUSTMENT DEVICE FOR BOWDEN CABLES
US20100301650A1 (en) * 2009-05-27 2010-12-02 Cheong Myung Hong Lumbar support for a car seat
US9511688B2 (en) 2012-05-07 2016-12-06 Johnson Controls Technology Company Seating part of a vehicle seat
KR101678400B1 (en) * 2012-05-07 2016-12-06 존슨 컨트롤스 테크놀러지 컴퍼니 Vehicle seat with a lumbar support
US20150091345A1 (en) * 2012-05-07 2015-04-02 Johnson Controls Technology Company Vehicle seat with a lumbar support
US9637030B2 (en) * 2012-05-07 2017-05-02 Johnson Controls Technology Company Vehicle seat with a lumbar support
JP2015515944A (en) * 2012-05-07 2015-06-04 ジョンソン コントロールズ テクノロジー カンパニーJohnson Controls Technology Company Vehicle seat with lumbar support
US9630530B2 (en) 2012-05-07 2017-04-25 Johnson Controls Technology Company Longitudinal adjuster for a vehicle seat
KR20150018553A (en) * 2012-05-07 2015-02-23 존슨 컨트롤스 테크놀러지 컴퍼니 Vehicle seat with a lumbar support
US9573492B2 (en) 2012-05-07 2017-02-21 Johnson Controls Technolgy Company Vehicle seat
US9511687B2 (en) 2012-05-07 2016-12-06 Johnson Controls Technology Company Seat adjustment device for vertical adjustment of a vehicle seat
JP2015067173A (en) * 2013-09-30 2015-04-13 トヨタ紡織株式会社 Vehicle seat
US9254768B2 (en) * 2013-10-02 2016-02-09 Chun Yoo HONG Lumbar support of car seat
US20150091349A1 (en) * 2013-10-02 2015-04-02 Chun Yoo HONG Lumbar Support of Car Seat
US10086728B2 (en) * 2013-11-19 2018-10-02 Adient Luxembourg Holding S.a.r.l. Adjustable seat
US9744891B2 (en) * 2015-04-03 2017-08-29 Dae Chang Seat Co., Ltd. Lumbar support assembly
US9796308B2 (en) * 2015-05-05 2017-10-24 Ami Industries, Inc. Flexible lumbar support of aircraft seat
CN108040477A (en) * 2015-09-01 2018-05-15 大众汽车有限公司 Protection element, seat for seat
US10682937B2 (en) 2015-09-01 2020-06-16 Volkswagen Aktiengesellschaft Protection element for a vehicle seat, vehicle seat
CN110352145A (en) * 2017-01-05 2019-10-18 安道拓工程技术知识产权有限公司 Vehicle seat with adjustable seat backrest and/or adjustable seat cushion
US10561247B2 (en) * 2018-05-31 2020-02-18 Chem Shing Top Co., Ltd. Chair back structure
US10952535B2 (en) 2018-11-05 2021-03-23 La-Z-Boy Incorporated Furniture member having lumbar adjustment mechanism
US11284724B2 (en) * 2018-11-05 2022-03-29 La-Z-Boy Incorporated Furniture member having lumbar adjustment mechanism
US11324324B2 (en) 2018-11-05 2022-05-10 La-Z-Boy Incorporated Furniture member having lumbar adjustment mechanism
US11672348B2 (en) 2018-11-05 2023-06-13 La-Z-Boy Incorporated Furniture member having lumbar adjustment mechanism
US11091060B2 (en) * 2019-01-10 2021-08-17 Toyota Motor Engineering & Manufacturing North America, Inc. Components with SMA-controlled hinge
US20230012911A1 (en) * 2021-07-19 2023-01-19 Pierre Heroux Cushioned furntiure restoration kit

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