The application relates to means for attaching a filter bag to a vacuum cleaner.
A filter bag collects dirt that is removed from household surfaces by a vacuum cleaner. The filter bag has a mounting collar with an opening. The bag can be removably mounted on a fill tube of the vacuum cleaner, with the fill tube extending through the collar opening into the bag to extend dirt-laden air into the bag.
A filter bag includes a bag structure of filter material. A panel is adhered to the bag structure and has a fill opening. A securing tab is attached by a hinge to the panel. The panel is configured to have a mounted position in which a fill tube projects through the fill opening into the bag structure to exhaust air into the bag structure. The panel can be secured in the mounted position by the attachment tab being manually pivoted about the hinge into attachment with a securing structure coupled to the fill tube.
Preferably, a second tab is attached to the panel by a second hinge, and is configured to be pivoted about the second hinge to bring the second hinge into attachment with a securing structure coupled to the fill tube. The two hinges can be at laterally opposite sides of a top edge of the panel from each other. The panel can have laterally opposite side edges that are inclined toward each other in a direction away from the top edge, such that the top edge and the side edges define a trapezoid. The trapezoid is further defined by a laterally-extending bottom edge of the panel, with the bottom edge being narrower than the width of the fill opening.
The drawings and following description provide examples of the elements recited in the claims. These examples enable a person of ordinary skill in the art to make and use the invention, including best mode, without implying limitations not recited in the claims.
Mounting Bracket
The mounting bracket 30 includes a tube structure comprising a proximal vertical tube section 41, a distal tube section 42, and an elbow section in-between 43. The distal tube section 42 is a “fill tube” in that, during use, it projects forward through bag collar 40 into the inner bag 32 to fill the inner bag 32 with dirt. The proximal and distal tube sections 41, 42 each have a cylindrical inner surface 46 and a cylindrical outer surface 48. To facilitate describing the bracket 30, the proximal tube section 41 is shown centered on the vertical axis AV. The fill tube section 42 is centered on a fill tube axes AF. The fill tube 42 axis is at an angle θ (relative to a vertically upward direction) of 90-135° (135° in this example), so that it redirects the air flowing through it by the angle θ. Increasing the angle θ above 90° can reduce air resistance. In the side profile of the bracket 30, shown in
As shown in
From each side edge of the plate 70, an upper side rail 81 and a lower side rail 82 project forward, with a gap 83 in-between. A bottom hook 84 has two sections: a ledge 86 extending forward from the proximal tube section 41 and an upward projection 88.
Two top securing structures 90, in this case hooks, are located at opposite ends of the top edge 74 of the abutment plate 70. Each top hook 90 includes a proximal flange 91 projecting rearward from the top edge 74, an upward-projecting middle flange 92, and a rearward-projecting distal flange 93. Each top hook 90 is thus coupled to the fill tube 42 by the abutment plate 70.
The top edge 74 is interrupted by a suspension tab 96 that projects upward from the abutment plate 70. The tab 96 is coplanar with and an extension of the plate 70, and is laterally centered on the plate 70. The tab 96 removably connects the plate 70 to a strap 100 suspended from an attachment point 101 at the top of the interior of the outer bag 36. The strap 100 extends through a hole 102 in the suspension tab 96 and over a T-shaped hook 103 at the top of the tab 96.
Mounting Collar
The inner filter bag 32 is shown in
The mounting collar 40 includes a stiff cardboard panel 120. In
Two securing tabs 140 extend upward from laterally-opposite ends of the panel's top edge 121. Each securing tab 140 is coplanar with, and an extension of, the panel 120. The tabs 140 and the panel 120 can be stamped out from a single piece of cardboard as a one-piece unit. Each tab 140 is attached to the panel 120 by a hinge 141. In this example, the hinge is a living hinge, comprising a weakened portion of the cardboard itself, such as by a slit that extends partially through the cardboard's thickness, or a crease or fold line in the cardboard material. In
In an alternative embodiment not shown, a substantial portion of, including possibly all of, each attachment tab can be of flexible, elastically flexibly and/or elastically stretchable material.
The panel 120 has an oval almost-circular fill opening 150. A diaphragm 152 extends across the fill opening 150 and has an anchor-shaped slit pattern 154. The slit pattern 154 has three slits projecting in three different directions from a common node 155. The diaphragm 152 has a round hole 156 at the distal end of each slit to reduce concentration of tension at the distal end when the diaphragm 152 is stretched about the fill tube 42 (
Procedure for Mounting the Collar on the Bracket
A procedure for mounting the collar 40 on the fill tube bracket 30 can have a sequence of steps illustrated in
In a seating step shown in
Next, in a pivoting step, the collar 40 is pivoted (arrow 160 in
During the pivoting step, the user's fingers grasp the collar 40 by the laterally-outer edges of its side tabs 126. The side rails 81, 82 would obstruct the fingers from engaging the collar's side edges 124U, 124L when the reaching the mounted position of
During the pivoting step, the first parts of the fill tube 42 to engage the diaphragm 152 are the vertical centers 52 of the front edge 50. Accordingly, the force that opens the slit pattern 154 (
In a securing step, each of the collar's two securing tabs 140 is pivoted (arrow 162) about its hinge 141 downward over the respective top hook 90. The tab 140 is pulled rearward to bring the tab's hole 142 over the end of the hook 90. This brings each tab 140 into an attached condition shown in
Removing the collar 40 requires moving each top tab 140 rearward, against bias of the aforementioned elasticity components, to clear the distal flange 93 and slip the tab 140 off the hook 90.
Increasing the lateral distance between the collar's two securing tabs 140, by lengthening the collar's top edge 121, increases the stability of the collar 40 on the bracket 30. It also provides more room for the user's fingers when manipulating the securing tabs 140. To enable lengthening the top edge 74 without increasing the overall surface area of the panel 120, the panel's bottom 122 is made narrower than its top 121, thus yielding the trapezoidal shape. The collar's bottom edge 122 can be narrower than the laterally-extending width (inner diameter) of the panel opening 150, and even narrower than the laterally-extending width (outer diameter) of the fill tube 42.
Alternative Mounting Collar
The second bracket 30′ differs from the first bracket 30 in the following ways:
The central axis AF of the second bracket's fill tube 42 is perpendicular to the vertical axis AV.
The second bracket's suspension tab 96′ does not project from the abutment plate 70′. It instead projects from the elbow section 43′ behind the abutment plate 70′. It is inline with the vertical central axis AV of the proximal tube section 41′, to position the suspension point directly above the center of gravity of the outlet tube 28 (
As shown in
As shown in
As shown in
As shown in
The scope of the invention is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal language of the claims.
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