Stackable folding chair

Information

  • Patent Grant
  • 6592182
  • Patent Number
    6,592,182
  • Date Filed
    Friday, March 22, 2002
    22 years ago
  • Date Issued
    Tuesday, July 15, 2003
    21 years ago
Abstract
An injection molded plastic stackable folding chair having a pair of parallel front legs and a pair of parallel back legs pivotally connected to the front legs. The front legs are separated by top, bottom and intermediate crosspieces, wherein the top crosspiece forms a back rest. The back legs are separated by top and bottom crosspieces. A seat is rotatably connected to the front legs by a rod between the backrest and intermediate crosspiece and slidably connected to the back legs by a pair of dowel pins engaging dowel slots formed within inner side faces of the back legs. The seat includes a plurality of stacking guides and a stacking lip integrally formed therein. The stacking guides extend downward and away from a bottom surface of the seat and the stacking lip extends in a direction relatively orthogonal to a top surface of the seat to form a substantially right angle shape. The extending direction of the stacking lip is substantially opposite the extending direction of the stacking guides. The stacking lip includes a notch that engages the top crosspiece of the back legs when the chair is in the open or in use position and receives a lower back corner of a second seat in the closed or folded position, wherein the first and second chairs are orderly stacked together.
Description




BACKGROUND OF THE INVENTION




The invention relates to an improved folding chair. More particularly, the invention relates to a stackable folding chair having stacking guides and a notch that permit multiple chairs to be stacked on top of each other and maintained in an organized manner.




DESCRIPTION OF RELATED ART




It is well known that conventional folding chairs provide readily available seating. Typically, such chairs are used as temporary seating arrangements and are easily folded and stored when not in use. For situations involving large audiences, such as when used in arenas, for weddings, and other such events, the large number of folding chairs are usually stacked on top of each other and stored accordingly. Unfortunately, the conventional folding chair suffers from a drawback of being difficult to stack in an organized manner and tend to slide relative to each other when stacked. An attempt to overcome the sliding problem has been to configure containers or carts that are specifically structured to receive and hold the folded chairs in an orderly manner.




Attempts have also been made to design and manufacture folding chairs that do not require separate containers and/or carts specifically configured to store the folded chairs.




U.S. Pat. No. 5,634,684 to Kojima et al. discloses a typical example of stacked folding chairs wherein a separate brace device is attached to the chair legs so as to engage the brace of a second folded chair in order to stack multiple folded chairs. The Kojima et al. folding chair suffers from the drawback of requiring the brace as an additional component that is attached to chair, which increases the cost of manufacturing each chair and adds a step in stacking the chairs as a result of having to ensure the braces of the stacked chairs engage each other.




U.S. Pat. No. 5,738,408 to Wu discloses a stackable folding chair having protrusions integrally formed on a front side of the front legs and a corresponding number of indentations integrally formed on a back side of the same front legs opposite the protrusions. The indentations are configured to receive the protrusions from a second chair.




Therefore, when the chairs are folded and positioned adjacent to one another, the protrusions on the front side of the front legs of a first chair fit within the corresponding indentations on the back side of the front legs of the next or second chair. The first and second chairs are thus retained in the stacked arrangement. Furthermore, each protrusion has a first geometric shape occupying a first surface area. Each indentation is multi-leveled to have a first region adjacent an outer surface of the back leg having the same general geometric shape of the protrusion, but occupies a larger surface area. A second, inner region of each indentation is positioned inward of the first region and has the same geometric shape as the protrusion. The second region is dimensioned so the protrusion sits flush within the second region.




The indentations are formed to have multi levels so the person stacking the chairs can first locate the protrusion within the first region of the indentation. Because the first region of the indentation is larger than the protrusion, the person stacking the chairs is able to generally position the protrusion of the first chair within the first region of the corresponding indentation on the second chair. After the protrusions of the first chair are positioned within the first regions of the corresponding indentations of the second chair, the person stacking the chairs can position the protrusions within the second region to securely stack the first and second chairs together as the outer edges of the first region act as a boundary.




As such, the Wu folding chair suffers from complicated and costly manufacturing methods in order to machine the legs to have the multi leveled indentations capable of receiving the protrusions therein, thereby raising the cost of each chair. Furthermore, the step of aligning the protrusion first with the first region of the indentation and then the second region of the indentation can become rather cumbersome if a large number of chairs is involved in the stacking process.




Another example of an attempt to provide a stackable folding chair is disclosed in U.S. Pat. No. 6,099,073 to Bruschi. Bruschi discloses a stackable plastic folding chair having front legs with shaped portions that extend outwardly from opposite sides of an intermediate section to form stop abutments for ends of a back leg of an adjacent folding chair. The seat of the chair is connected to the front legs by pivot pins and is connected to the back legs by pivot pins. The pivot pins connecting the seat to the front legs are only rotatable, whereas the pivot pins connecting the seat to the back legs are slidable in grooves formed along a longitudinal axis of the back legs. The seat also has a transverse housing positioned at the rear of the seat.




The transverse housing has a U-shape when seen from a side view and is configured to hook a crosspiece connecting the back legs from below. It is important to note that the transverse housing is not a feature of the Bruschi chair involved in the stacking process.




Rather, each front and back leg has a right-angled profile including a larger wing and a smaller wing, respectively, with each large wing being perpendicular to its respective small wing. In the compacted position, the front and back legs are close to each other so as to substantially define side columns having C-shaped profiles. In the compacted position side columns, the large wings of the front legs are next to the small wings of the back legs. Accordingly, first and second shaped portions are provided at upper and lower end sections, respectively, of the front legs to form stop abutments for the first and second ends of the back legs of a second chair in the compacted position that is to be stacked with the first chair in the compacted position.




Put simply, Bruschi uses the wings formed by the shaped portions of the front and back legs to facilitate stacking of multiple chairs. The shaped portions require additional materials and manufacturing steps, thereby increasing the amount of time needed to produce each chair as well as the cost of such.




U.S. Pat. No. 5,967,605 to Stanfield discloses a folding chair having a stacking device or brace that is sized to be fitted snugly to a cylindrical chair leg. The brace engages the brace of a second chair wherein multiple chairs can be stacked in an orderly manner. The braces require additional materials as they are an additional component that must be added to the standard framework of the chair. The braces therefore require additional manufacturing time and material which result in an increased overall cost of the chair.




SUMMARY OF THE INVENTION




It is an object of this invention to overcome the above-described drawbacks of the related art.




It is also an object of this invention to provide a stackable folding chair having stacking guides and a stacking notch integrated into the structure of the seat of the chair.




It is yet another object of this invention to provide a stackable folding chair having a pair of parallel front legs and a pair of parallel back legs pivotally connected to the front legs. The front legs are separated by top, bottom and intermediate crosspieces, wherein the top crosspiece forms a back rest. The back legs are separated by a top and a bottom crosspiece. A seat is rotatably connected to the front legs by a rod between the backrest and intermediate crosspiece and slidably connected to the back legs by a pair of dowel pins that engage dowel slots formed on the inner side face of each back leg. The seat includes a plurality of stacking guides and a stacking lip integrally formed therein. The stacking guides extend downward and away from a bottom surface of the seat and the stacking lip extends in a direction relatively orthogonal to a top surface of the seat to form a substantially right angle shape. The extending direction of the stacking lip is substantially opposite the extending direction of the stacking guides. The stacking lip includes a notch that engages the top crosspiece of the back legs when the chair is in the open or in use position and receives a lower back corner of a second seat in the closed or folded position, wherein the first and second chairs are orderly stacked together.




These and other objects and aspects of the invention will be described in or be apparent from the following description of the preferred embodiment.











BRIEF DESCRIPTION OF THE DRAWINGS




The invention will be described in conjunction with the following drawings in which like reference numerals designate like elements and wherein:





FIG. 1

is a perspective view of the stackable folding chair according to the preferred embodiment of this invention with the chair in the open or in use position;





FIG. 2

is a perspective view of the seat of the stackable folding chair according to this invention;





FIG. 3

is a perspective view of two stackable folding chairs before being stacked together;





FIG. 4

is a perspective view of two seats stacked together;





FIG. 5

is a sectional view of two stacked chairs; and





FIG. 6

is a perspective view of a folded chair.











DETAILED DESCRIPTION OF PREFERRED EMBODIMENT





FIG. 1

is a perspective view of a stackable folding chair


1


according to the preferred embodiment of this invention with the chair in the open or in use position. Preferably, the below-described components of the chair


1


are primarily formed using plastic or resin injection molding techniques. However, it is within the scope of this invention to manufacture the components of the chair


1


from any other suitable material, such, as, for example, metal, wood, and the like.




The chair


1


includes a main frame


10


having a pair of substantially parallel front legs


11


and


12


separated by a bottom crosspiece


13


, an intermediate crosspiece


14


, and a top crosspiece


15


, wherein the top crosspiece


15


forms a backrest. A support frame


20


has a pair of substantially parallel back legs


21


and


22


pivotally connected to the front legs


11


and


12


by pivot pins


27


,


27


. The back legs


21


and


22


are separated by a bottom crosspiece and a top crosspiece,


23


and


24


, respectively.




A seat


30


has a substantially rectangular shape body and is pivotally connected to the front legs


11


and


12


by a rod


31


at a location above the intermediate crosspiece


14


and below the pivot pins


27


,


27


connecting the support frame


20


to the main frame


10


. It should be noted that it is within the scope of this invention to have the rod


31


formed either from plastic or resin injection molding techniques, metal, wood or any other suitable material. Furthermore, the seat


30


is connected to the back legs


21


and


22


by dowel pins


38


(

FIG. 2

) positioned within dowel slots


29


(

FIG. 3

) formed within the inner side faces


21


a and


22




a


of the back legs


21


and


22


, respectively, at a location below the upper crosspiece


24


of the support frame


20


. The dowel pins


38


are slidable in the substantially linear dowel slots


29


formed in the back legs


21


and


22


.




It should be noted that the seat


30


shown in the drawing figures has an opening


32


defined therein merely for explanatory purposes as well as to better illustrate the spatial and working relationship of the features of the chair


1


. It is within the scope of this invention to have a seat


30


with a solid body, i.e., no opening, or even a covering element (not shown) that covers or fills the opening


32


.




As shown in

FIG. 2

, a bottom surface


33


of the seat


30


includes a pair of stacking guides


34


extending away therefrom and a receiving groove


35


that receives the intermediate crosspiece


14


of the main frame


10


when the chair


1


is folded. A stacking lip


40




a


is integrally formed with the seat


30


and extends away from an upper surface


39


of the seat in an orthogonal direction relative thereto to form a substantially right angle shape. The extending direction of the stacking lip


40




a


is substantially opposite relative to the extending direction of the stacking guides


34


, i.e., upward and away from the upper surface


39


of the seat


30


. The stacking lip


40




a


includes a notch


41




a


extending substantially across an entire width W of the seat


30


. The notch


41




a


that engages the top crosspiece


24


of the support frame


20


when the chair


1


is in the open or in use position. Furthermore, the stacking lip


40




a


has vertical height H relative to the upper surface


39


of the seat


30


. The vertical height H of the stacking lip


40




a


is of a length wherein the notch


41




a


of the stacking lip


40




a


extends beyond an outer boundary defined by a rear face of either the front and back legs,


11


,


12


and


21


,


22


, respectively, when the chair is in the folded position. As shown within the circle of

FIG. 4

, the notch


41




a


receives a lower rear corner


42




b


of a second seat when the first and second seats are in the closed or folded position (FIG.


5


), thereby permitting the first and second chairs to be orderly stacked together.




As shown in

FIG. 5

, when multiple chairs are folded to be stacked on top of each other, the stacking guides


34


of the first chair extend toward the second chair. The stacking guides


34


of each chair are designed to prevent the stacked chairs from sliding side to side as indicated by the line S-S when the chairs are stacked vertically, i.e., the support frame and seat of each chair are folded up or closed. Furthermore, the notch


41




a


prevents the stacked chairs from sliding forward and backward relative to each other.




The stacking guides


34


also provide an important function when the chair


1


is in the open or in use position. In particular, the stacking guides


34


extending downward and away from the bottom surface


33


of the seat


30


engage the intermediate crosspiece


14


separating the front legs


11


and


12


of the main frame


10


(FIG.


1


). This arrangement of the stacking guides


34


in conjunction with the notch


41




a


of the stacking lip


40




a


engaging the top crosspiece


24


of the support frame


20


prevent the seat


30


from sliding on top of the crosspiece


14


. Therefore, when a downward force is applied to the seat


30


, such as, for example, when a person sits down on the seat when the chair is in the open or in use position, the stacking guides


34


engaging the intermediate crosspiece


14


and the notch


41




a


engaging the top crosspiece


24


prevent the back legs


21


and


22


from separating away from the front legs


11


and


12


.




The chair


1


is used as follows.




When the chair


1


is in the dosed or folded position as shown in

FIG. 6

, the chair


1


is ready to be stacked onto other such chairs. Furthermore, the support frame


20


of the chair


1


rotates toward the main frame


10


wherein outer side surfaces of the back legs


21


and


22


of the support frame


20


abut inner side surface of the front legs


11


and


12


of the main frame


10


. Additionally, a front portion of the seat


30


is proximate the backrest


15


of the main support


10


while the rear portion of the seat having the stacking lip


40




a


is located between the intermediate crosspiece


14


and the lower crosspiece


13


of the main support


10


. The receiving groove


35


of the seat


30


is configured to engage the intermediate crosspiece


14


of the main support


10


.




Therefore, when viewed from the side of the folded chair


1


, the notch


41




a


of the stacking lip


40




a


extends beyond an outer boundary defined by a rear face of either the front and back legs,


11


,


12


and


21


,


22


, respectively. As such, the notch


41




a


is able to receive a lower rear corner


42




b


of a second seat when the first and second seats are in the closed or folded position (FIG.


5


), thereby permitting the first and second chairs to be orderly stacked together. Furthermore, the stacking guides


34


of each chair prevent the stacked chairs from sliding side to side relative to each other.




Accordingly, an orderly and manageable stacking of multiple folding chairs is obtained.




To place the folded chair


1


in the open or in use position, the front portion of the seat


30


is rotated around rod


31


outwardly in a direction away from the abutting front and back legs


11


,


12


and


21


,


22


, respectively. Simultaneously, the dowel pins


38


slide along the substantially linear dowel slots


29


formed in the rear legs


21


, and


22


in an upward direction relative to the backrest


15


. The sliding motion of the dowel pins


38


within the dowel slots


29


forces the rear legs


21


,


22


of the support frame


20


to rotate around pins


27


and away from the front legs


11


,


12


of the main frame


10


. At the moment the dowel pins


38


reach the top of the dowel slots


29


, the notch


41




a


of the stacking lip


40




a


engages the top crosspiece


24


of the support frame


20


.




While the invention has been described in conjunction with the preferred embodiment thereof, it is evident that many alternatives, modifications and variations may be apparent to those skilled in the art. For example, the stacking guides may be configured to have any suitable geometric configuration, such as, for example, circular, rectangular, trapezoidal, triangular, rhomboidal, oval, square, pentagonal, octagonal, parabolic, hyperbolic, elliptical, conical, and the like. Accordingly, the specific embodiment of the invention as set forth herein is intended merely to be illustrative, not limiting. Various changes may be made without departing from the spirit and scope of the invention as set forth in the following claims.



Claims
  • 1. A seat usable with a stackable folding chair having a main frame including a pair of substantially parallel front legs separated by lower, intermediate, and upper crosspieces, the top crosspiece forming a backrest, each of the front legs having an inner side face and a rear face, a support frame including a pair of substantially parallel back legs separated by upper and lower crosspieces, each of the back legs having inner and outer side faces along with a rear face and being pivotally connected to the front legs by pivot pins, the inner side faces of each of the back legs having a dowel slot, the seat comprising:a body, wherein the body has an upper surface; a rod pivotally connecting the seat to the main frame; and a stacking lip that extends away from the upper surface of the seat body in an orthogonal direction relative thereto to form a substantially right angle shape, the stacking lip including a notch extending substantially across an entire width of the seat body, the stacking lip having a vertical height wherein the notch extends beyond an outer boundary defined by the rear face of either one of the front and back legs when the chair is in a folded position.
  • 2. The seat according to claim 1, further comprising a pair of dowel pins that slidingly engage the dowel slots of the inner side faces of the back legs.
  • 3. The seat according to claim 1, wherein the notch is configured to receive a lower back portion of a seat of another folding chair and wherein the notch permits stacking of a plurality of chairs.
  • 4. The seat according to claim 1, wherein the notch engages the upper crosspiece of the support frame when the chair is in an open position.
  • 5. The seat according to claim 1, Wherein the seat body further comprises:a lower surface opposite the upper surface; and a pair of stacking guides extending away from the lower surface of the seat, wherein the stacking guides engage the inner side faces of the back legs when the chair is in the folded position to prevent the chair from sliding off another chair upon which the chair is stacked.
  • 6. The seat according to claim 5, wherein the stacking guides engage the intermediate crosspiece of the main frame when the chair is in an open position to prevent the seat from sliding relative to the main frame while the chair is in use.
  • 7. The seat according to claim 5, further comprising a pair of receiving grooves positioned on the lower surface of the seat, the receiving grooves engage the intermediate crosspiece of the main frame when the seat is in the folded position.
  • 8. The seat according to claim 1, wherein the seat is formed of an injection molded plastic.
  • 9. A stackable folding chair, comprising:a main frame including a pair of substantially parallel front legs separated by lower, intermediate, and upper crosspieces, wherein the top crosspiece forms a backrest, each of the front legs having an inner side face and a rear face; a support frame including a pair of substantially parallel back legs separated by upper and lower crosspieces, wherein each back leg has inner and outer side faces along with a rear face and is pivotally connected to the front legs by pivot pins, the inner side faces of each of the back legs having a dowel slot; and a seat connected to the main frame, the seat comprising: a rod pivotally connecting the seat to the main frame; an upper surface; and a stacking lip that extends away from the upper surface of the seat in an orthogonal direction relative thereto to form a substantially right angle shape, the stacking lip including a notch extending substantially across an entire width of the seat, the stacking lip having a vertical height wherein the notch extends beyond an outer boundary defined by of the rear face of either the front and back legs when the chair is in a folded position.
  • 10. The folding chair according to claim 9, wherein the seat further comprises a pair of dowel pins that slidingly engage the dowel slots of the inner side faces of the back legs.
  • 11. The folding chair according to claim 9, wherein the notch is configured to receive a lower back portion of a seat of another folding chair and wherein the notch permits stacking of a plurality of chairs.
  • 12. The folding chair according to claim 9, wherein the notch engages the upper crosspiece of the support frame when the chair is in an open position.
  • 13. The folding chair according to claim 9, wherein the seat further comprises:a lower surface; and a pair of stacking guides extending away from the lower surface of the seat, wherein the stacking guides engage the inner side faces of the back legs when the chair is in the folded position to prevent the chair from sliding off another chair upon which the chair is stacked, and wherein the notch of the stacking lip prevents the chair in the folded position from sliding forward and backward relative to the other chair upon which the chair is stacked.
  • 14. The folding chair according to claim 13, wherein the stacking guides engage the intermediate crosspiece of the main frame when the chair is in an open position to prevent the seat from sliding relative to the main frame while the chair is in use.
  • 15. The folding chair according to claim 13, wherein the seat further comprises a pair of receiving grooves positioned on the lower surface of the seat, the receiving grooves engage the intermediate crosspiece of the main frame when the seat is in the folded position.
  • 16. The folding chair according to claim 9, wherein the chair is formed of an injection molded plastic.
Priority Claims (1)
Number Date Country Kind
PI 2002 0231 Jan 2002 MY
US Referenced Citations (20)
Number Name Date Kind
1674220 Percival Jun 1928 A
1876549 Bales Sep 1932 A
2390878 Greitzer Dec 1945 A
3021175 Norquist Feb 1962 A
3042447 Wilkinson Jul 1962 A
3431022 Poppe et al. Mar 1969 A
3655239 Agosti Apr 1972 A
3695687 Uyeda Oct 1972 A
3825302 Kurtz Jul 1974 A
4298227 Berthier et al. Nov 1981 A
4619207 Boyce et al. Oct 1986 A
4682816 Massonnet Jul 1987 A
5064247 Clark et al. Nov 1991 A
5096259 Stanfield Mar 1992 A
5167436 Wu Dec 1992 A
5634684 Kojima et al. Jun 1997 A
5718474 Kojima et al. Feb 1998 A
5738408 Wu Apr 1998 A
5967605 Stanfield Oct 1999 A
6099073 Bruschi Aug 2000 A
Foreign Referenced Citations (4)
Number Date Country
78 37000 Jul 1980 FR
2445125 Aug 1980 FR
20 98471 Nov 1982 GB
536500 Dec 1955 IT