The present application relates generally to a handle assembly for baggage or a tool box. More particularly, the present application relates to a single axis telescoping handle that is slideably received in a receiving portion integrally located within a housing.
Conventional baggage or containers can be carried in a variety of ways. Many bagagges or other types of luggage include wheels disposed on the bottom of the baggage that allow the user to roll the bag on the ground rather than having to lift the bag and carry it in mid-air. Wheeled baggage can also include four wheels to allow the user to push or pull the baggage when upright, or can include two wheels so that the user can push or pull the baggage when carried at an angle to the ground plane.
Collapsible or telescopic handles are commonly used with wheeled baggage so that a user can walk upright and pull the baggage behind them. As shown in
The present application discloses a handle assembly that includes two sets of handle members that are vertically engageable with one another and where at least one of the sets of handle members extends substantially across a width of the receiving portion in the baggage that is adapted to telescopically receive the handle. Also, the receiving portion can be integral with the housing such that no additional receiving portion needs to be produced during the manufacturing process, resulting in a less complex and expensive manufacturing operation. The handle can further include a detent mechanism that is adapted to detain the handle in an extended position, and further release the handle to allow the handle to telescopically collapse into the housing without the need for a separate button and lock mechanism.
In particular, the present application discloses a handle assembly that is telescopically collapsible into a receiving portion of a housing, the handle assembly including a first handle member extending in a substantially vertical direction and telescopically receivable by the receiving portion, a second handle member telescopically receivable by the first handle member in the vertical direction, the first and second handle members extending substantially across a width of the receiving portion, the width being a direction substantially perpendicular to the vertical direction, wherein the first handle member and the second handle member are frictionally engageable with one another to maintain the first and second handle members in a partially vertically outstretched position.
In addition, the present application discloses a case including a housing that has a receiving portion integrally provided with rails, a handle assembly including a first handle member extending in a substantially vertical direction and slidably receivable by the rails, and a second handle member slidably receivable by the first handle member in the vertical direction, the first and second handle members extending substantially across a width of the receiving portion, the width being a direction substantially perpendicular to the vertical direction.
The present application further discloses a method of collapsing a handle into a housing including providing a handle including a first handle member and a second handle member frictionally engageable with the first handle member; applying a collapsing force to overcome the frictional engagement of the first handle member and the second handle member to thereby collapse the handle; and continuing the collapsing force until the first handle member and the second handle member are substantially concealed by the housing.
For the purpose of facilitating an understanding of the subject matter sought to be protected, there is illustrated in the accompanying drawing embodiments thereof, from an inspection of which, when considered in connection with the following description, the subject matter sought to be protected, its construction and operation, and many of its advantages should be readily understood and appreciated.
While the present invention is susceptible of embodiments in many different forms, there is shown in the drawings and will herein be described in detail a preferred embodiment of the invention with the understanding that the present disclosure is to be considered as an exemplification of the principles of the invention and is not intended to limit the broad aspect of the invention to embodiments illustrated.
The present application discloses a handle assembly that includes two sets of handle members that are vertically engageable with one another and where at least one of the sets of handle members extends substantially across a width of the receiving portion in the luggage that receives the handle, making the handle more structurally stable and capable of receiving a heavy load. Also, the receiving portion can be integral with the housing such that no additional receiving portion needs to be produced during the manufacturing process, resulting in a less complex and expensive manufacturing operation. The handle can further include a detent mechanism or other frictional engagement system to allow the handle to telescopically collapse into the housing without the need for a lock release, as with conventional handles.
As shown in
The housing 105 can be any container, luggage, bag or enclosure without departing from the spirit and scope of the present application. For example, the housing 105 can be a wheeled baggage device where the user can pull the housing 105 using the handle 110. In an embodiment, the housing 105 is a tool container.
The lid 120 of the housing 105 is coupled to the base 115 to enclose the base 115 in a well known manner. For example, lid 120 can be coupled to the base 115 by hinges, screws, a friction fit, or the lid 120 can simply rest on top of the base 115 without any structural attachment to the lid 120.
In an embodiment, the receiving portion 125 of the housing 105 includes structure that is adapted to receive the handle 110 when the handle 110 is collapsed to conceal a substantial portion of the first handle member 130 and the second handle member 135. In an embodiment, the receiving portion 125 includes a structure that is integral with the housing 105 and that receives the handle 110. For example, the receiving portion 125 can be injection molded together with the base 115 of the housing 105 so that the receiving portion 125 can be homogenously constructed of the same material as the housing 105.
The first handle member 130 and the second handle member 135 are adapted to slide within the receiving portion 125 of the housing 105 in a vertical direction relative thereto. In an emobidment, the first handle member 130 is constructed of a pair of brackets that are joined together by a first shelf 150, and the second handle member 135 is similarly constructed of a pair of brackets that are joined together by a second shelf 155. The extension member 140 is adapted to be slidably received in a vertical direction inside the second handle member 135 and the second handle member 135 is adapted to be slidably received in a vertical direction inside the first handle member 130. In an embodiment, the first handle member 130, the second handle member 135, and the extension portion 140 are each made of extruded aluminum to obtain a structurally stable configuration while maintaining a minimal weight of material. Alternately, the extension portion 140 can be constructed of other light weight materials, such as plastic, titanium or other materials to reduce the overall weight of the case 100.
In an embodiment, a grip member 145 can be disposed at an end of the extension portion and can include a structure that is adapted to allow a user to grip the handle 110, such as when pulling the baggage, and to apply a collapsing force or a lifting force, or any other type of force, to the handle 110. As shown, the grip member 145 includes a portion adapted to receive a hand of a user, including structure that receives the user's fingers to provide a more comfortable gripping area. However, the grip member 145 is not limited to the illustrated embodiment, and can include any structure that allows a user to grip and apply a force to the handle 110, for example, a ball, ring, T-shaped structure, or any other similar structure.
As shown in
As shown in
In an emobodiment, as shown in
In an embodiment, the first handle member 130, second handle member 135 and extension portion 140 can further include vents 195 that allow air to flow through the handle 110 components to help prevent a vacuum from forming at the interface between the components. As shown, the vents 195 are oval shaped, but it can be appreciated that the vents 195 can be any size and shape, and any number of vents 195 can be provided on the first handle member 130, second handle member 135 and extension portion 140, without departing from the spirit and scope of the present application.
In an embodiment, as shown in
In an embodiment, the receiving portion 125 can include internal detents 205 that engage indents 210 on an external surface of the first handle member 130 to maintain the handle in an outstretched position, similar to the discussion above with the first and second detents 165, 170 and the first and second indents 175, 180. Similar to the first shelf 150 and the second shelf 155, the receiving portion 125 can include a shelf 215 that sufficiently impedes the movement of the first handle member 130 when the first handle member 130 extends outwardly and the third ledge 190 of the first handle member 130 abuts the shelf 215.
A method of operating the case 100 will now be described with reference to
The manner set forth in the foregoing description and accompanying drawings and examples, is offered by way of illustration only and not as a limitation. More particular embodiments have been shown and described, and it will be apparent to those skilled in the art that changes and modifications may be made without departing from the broader aspects of Applicant's contribution. The actual scope of the protection sought is intended to be defined in the following claims when viewed in their proper prospective based on the prior art.