The present disclosure relates to a door handle and, more particularly, to apparatuses and methods for mounting a handle on a door.
A cabinet structure often includes various enclosed spaces that are accessible through a door. The door is generally equipped with a handle by way of which the door can be manipulated for opening and closing. There are a variety of ways in which the handle can be mounted to an outer surface of the door. However, the manner in which the handle is mounted to the door may not be sufficiently sturdy and the handle may be susceptible to being pulled out of the door.
Therefore, there is a need for apparatuses and methods that keep the handle fastened to the door in a sturdy fashion.
In one example aspect, a handle assembly for a door is provided and includes a first support member, a second support member, an elongate handle body, a first insert, a second insert, a first fastener and a second fastener. The first support member is configured to be mounted on a door and includes a first neck portion. The second support member is configured to be mounted on a door and includes a second neck portion. The elongate handle body includes a first opening at a first handle end and a second opening at a second handle end. The handle body is substantially defined by a shell. A first outer hole is formed on the shell near the first handle end so as to be in communication with the first opening. A second outer hole is formed on the shell near the second end so as to be in communication with the second opening. A first insert is configured to be inserted into the first opening and includes a first aperture and a first inner hole. The first aperture is configured to accommodate the first support member. The first inner hole is configured to be aligned with the first outer hole and be in communication with the first aperture. The first insert includes a first protrusion that protrudes into the first aperture. A second insert is configured to be inserted into the second opening and includes a second aperture and a second inner hole. The second aperture is configured to accommodate the second support member. The second inner hole is configured to be aligned with the second outer hole and be in communication with the second aperture. The first insert includes a second protrusion that protrudes into the second aperture. A first fastener is configured to be inserted through the first outer hole and the first inner hole and press the first support member against the first protrusion such that the first protrusion extends into the first neck portion. A second fastener is configured to be inserted through the second outer hole and the second inner hole and press the second support member against the second protrusion such that the second protrusion extends into the second neck portion.
In one example of the example aspect, the first aperture includes a first interior perimeter. The first inner hole is located across the first protrusion along the first interior perimeter. The second aperture includes a second interior perimeter. The second inner hole is located across the second protrusion along the second interior perimeter.
In another example of the example aspect, the first protrusion is shaped as a first bank extending along the first interior perimeter and the second protrusion is shaped as a second bank extending along the second interior perimeter.
In yet another example of the example aspect, the first bank extends along substantially half of the first interior perimeter, and the second bank extends along substantially half of the second interior perimeter.
In yet another example of the example aspect, the first protrusion is tapered toward a center of the first aperture, and the second protrusion is tapered toward a center of the second aperture.
In yet another example of the example aspect, the first bank includes ends that are chamfered, and the second bank includes ends that are chamfered.
In yet another example of the example aspect, each of the first and second support members includes an outer portion having an hourglass configuration. The first protrusion has a triangular cross-section shaped to mate with the first neck portion. The second protrusion has a triangular cross-section shaped to mate with the second neck portion.
In yet another example of the example aspect, each of the first and second fasteners includes a tip configured to engage the first support member and the second support member. The tip has a conical configuration shaped to fit with the first neck portion and the second neck portion.
In yet another example of the example aspect, each of the first interior perimeter and the second interior perimeter is configured as an oval with a first side at which the first protrusion and the second protrusion are formed and a second side at which the first inner hole and the second inner hole are formed. The first support member and the second support member are movable within the oval.
In yet another example of the example aspect, the location of the first support member within the first aperture is configured to shift from the second side to the first side as the first fastener is inserted. The location of the second support member within the second aperture is configured to shift from the second side to the first side as the second fastener is inserted.
In yet another example of the example aspect, the handle body includes a longitudinal axis. The first outer hole and the second outer hole extends transversely about the longitudinal axis.
In another example aspect, a handle assembly for a door is provided and including a first support member, a second support member, an elongate handle body, a first insert, a second insert, a first fastener and a second fastener. The first support member is configured to be mounted on a door and includes a first neck portion. The second support member is configured to be mounted on a door and includes a second neck portion. The elongate handle body includes a first opening at a first handle end and a second opening at a second handle end. The handle body is substantially defined by a shell. A first outer hole is formed on the shell near the first handle end so as to be in communication with the first opening. A second outer hole is formed on the shell near the second end so as to be in communication with the second opening. The first insert is configured to be inserted into the first opening and includes a first aperture and a first inner hole. The first aperture is configured to accommodate the first support member. The first inner hole is configured to be aligned with the first outer hole and be in communication with the first aperture. The first insert includes a first protrusion that protrudes into the first aperture. The first aperture includes a first interior perimeter. The first inner hole is located across the first protrusion along the first interior perimeter. The first protrusion is shaped as a first bank extending along the first interior perimeter. The second insert is configured to be inserted into the second opening and includes a second aperture and a second inner hole. The second aperture is configured to accommodate the second support member. The second inner hole is configured to be aligned with the second outer hole and be in communication with the second aperture. The first insert includes a second protrusion that protrudes into the second aperture. The second aperture includes a second interior perimeter. The second inner hole is located across the second protrusion along the second interior perimeter. The second protrusion is shaped as a second bank extending along the second interior perimeter. The first fastener is configured to be inserted through the first outer hole and the first inner hole and press the first support member against the first protrusion such that the first protrusion extends into the first neck portion. The second fastener is configured to be inserted through the second outer hole and the second inner hole and press the second support member against the second protrusion such that the second protrusion extends into the second neck portion. Each of the first and second support members includes an outer portion having an hourglass configuration. The first protrusion has a triangular cross-section shaped to mate with the first neck portion. The second protrusion has a triangular cross-section shaped to mate with the second neck portion. Each of the first and second fasteners includes a tip configured to engage the first support member and the second support member. The tip has a conical configuration shaped to fit with the first neck portion and the second neck portion.
In yet another example aspect, a handle assembly for a door is provided and including a first support member, a second support member, an elongate handle body, a first insert, a second insert, a first fastener and a second fastener. The first support member is configured to be mounted on a door and includes a first neck portion. The second support member is configured to be mounted on a door and includes a second neck portion. The elongate handle body includes a first opening at a first handle end and a second opening at a second handle end. The handle body is substantially defined by a shell. A first outer hole is formed on the shell near the first handle end so as to be in communication with the first opening. A second outer hole is formed on the shell near the second end so as to be in communication with the second opening. The first insert is configured to be inserted into the first opening and includes a first aperture and a first inner hole. The first aperture is configured to accommodate the first support member. The first inner hole is configured to be aligned with the first outer hole and be in communication with the first aperture. The first insert includes a first protrusion that protrudes into the first aperture. The first aperture includes a first interior perimeter. The first inner hole is located across the first protrusion along the first interior perimeter. The first protrusion is shaped as a first bank extending along the first interior perimeter. The second insert is configured to be inserted into the second opening and includes a second aperture and a second inner hole. The second aperture is configured to accommodate the second support member. The second inner hole is configured to be aligned with the second outer hole and be in communication with the second aperture. The first insert includes a second protrusion that protrudes into the second aperture. The second aperture includes a second interior perimeter. The second inner hole is located across the second protrusion along the second interior perimeter. The second protrusion is shaped as a second bank extending along the second interior perimeter. The first fastener is configured to be inserted through the first outer hole and the first inner hole and press the first support member against the first protrusion such that the first protrusion extends into the first neck portion. The second fastener is configured to be inserted through the second outer hole and the second inner hole and press the second support member against the second protrusion such that the second protrusion extends into the second neck portion. Each of the first interior perimeter and the second interior perimeter is configured as an oval with a first side at which the first protrusion and the second protrusion are formed and a second side at which the first inner hole and the second inner hole are formed. The first support member and the second support member are movable within the oval. The location of the first support member within the first aperture is configured to shift from the second side to the first side as the first fastener is inserted. The location of the second support member within the second aperture is configured to shift from the second side to the first side as the second fastener is inserted.
These and other aspects are better understood when the following detailed description is read with reference to the accompanying drawings, in which:
Examples will now be described more fully hereinafter with reference to the accompanying drawings in which example embodiments are shown. Whenever possible, the same reference numerals are used throughout the drawings to refer to the same or like parts. However, aspects may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein.
Referring now to
A handle assembly is provided to allow the handle 14 to be secured to the door 12. The handle assembly may include a handle body 16, a pair of support members 18, a pair of inserts 20 and a pair of fasteners 22.
As shown in
The handle body 16 may be substantially curved, straight or a combination of curved or straight sections and may be sufficiently elongate so as to extend from one support member 18 to another support member 18. In the present embodiment, the handle body 16 is U-shaped with a substantially straight intermediate section 16a and curved handle ends 16b as shown in
The inserts 20 for the handle assembly may be configured to be inserted in the opening 24 at each handle end 16b and may provide features through which the handle 14 may be mounted to the door 12. The support members 18 are mounted on the door 12 spaced apart such that each handle end 16b can engage a support member 18. The shape of the insert 20 is such that the insert 20 can substantially fit within the opening 24 at the handle end 16b. For example, the insert 20 may be dimensioned so as to cause a friction fit between the insert 20 and the opening 24 or the insert 20 may be secured in the opening 24 through other means known in the art (e.g., glue). The insert 20 may include an aperture 26 configured to accommodate a support member 18. The aperture 26 may extend through the insert 20 as shown in
The outer portion 18b of the support member 18 is configured to be inserted into the aperture 26 of the insert 20 and may be shaped and dimensioned to substantially fit within the narrow side 30b. Specifically, the outer portion 18b of the support member 18 may include a neck portion 34 with an hourglass configuration such that the protrusion 32 with the triangular cross-section can mate with the neck portion 34 of the outer portion 18b. The dimensions of the narrow side 30b of the aperture 26 may be such that the outer portion 18b of the support member 18 substantially fits therein while the dimensions of the wide side 30a of the aperture 26 may allow the outer portion 18b to be inserted freely without significant interference. Moreover, the ramped ends 32b of the protrusion 32 are provided to fix misalignment of the neck portion 34 about the aperture 26 and help center the protrusion 32 with respect to the neck portion 34 of the support member 18. Furthermore, the triangular cross-section of the protrusion 32 and the hourglass configuration of the neck portion 34 may also bring the support member 18 to a predetermined level relative to the aperture 26 of the insert 20.
The shell around the opening 24 of the handle body 16 may include an outer hole 36 that is in communication with the opening 24. The insert 20 may also include an inner hole 38 that is in communication with the aperture 26 near the interior perimeter. The insert 20 is mounted within the opening 24 such that the outer hole 36 is aligned with the inner hole 38 and such that the fastener 22 can be inserted through both the outer hole 36 and the inner hole 38 to engage the neck portion 34 of the support member 18. As shown in
In one manner of assembling the aforementioned handle assembly, the support members 18 are mounted on the door 12 by screwing the threaded inner portion 18a into the surface of the door 12. The support members 18 are mounted a predetermined distance apart on the surface of the door 12 which corresponds to the distance between the apertures 26 of the handle ends 16b. An insert 20 is inserted into the opening 24 at each handle end 16b of the handle body such that the outer hole 36 on the shell is aligned with the inner hole 38 of the insert 20. The handle 14 is placed on the door 12 such that the outer portion 18b of the support member 18 is inserted into the wide side 30a of the aperture 26 of the respective insert 20. Thereafter, the fastener 22 is inserted into the outer hole 36 and inner hole 38, for example. Once the fastener 22 is sufficiently inserted to engage the neck portion 34, additional screwing of the fastener 22 moves the handle end 16b such that the narrow side 30b of the aperture 26 is brought toward the neck portion 34 and the protrusion 32 is centered around the neck portion 34. Although the support members 18 cannot actually move once mounted on the door 12, the handle ends 16b can be moved with respect to the support member 18 and the support members 18 can thus move relative to the aperture 26. Moreover, the triangular cross-section of the protrusion 32 is configured to mate with the hourglass configuration of the neck portion 34 and also helps bring the handle end 16b to a predetermined level about the support member 18 since the apex of the protrusion 32 is directed toward the narrowest part of the neck portion 34. The neck portion 34 becomes centered about the protrusion 32 by the insertion of the fastener 22 and the handle ends 16b can be positioned at the desired locations on the door 12 in a simple manner. Furthermore, the engagement of the neck portion 34 by the protrusion 32 mounts the handle end 16b in a sturdy fashion to the door 12 and makes it difficult for the handle end 16b to come off from the door 12 by suddenly pulling the handle 14.
It will be apparent to those skilled in the art that various modifications and variations can be made without departing from the spirit and scope of the claimed invention.
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