Many reprographic and/or electrostatographic image-forming devices, such as copiers, facsimile apparatus, printers, and the like include a replaceable or refillable material supply module. The material supply module is typically connected to such a device via a drive shaft and gear shaft coupling arrangement, which generally includes a drive shaft integral to the module that interacts with a gear shaft integral to the particular device.
During the life of a device, driveshaft cylinder 24 and drive shaft 25 may be replaced one or more times depending on the frequency of use. Typically, the cylinder flange 34 is replaced when the driveshaft cylinder 24 and the drive shaft 25 are replaced. Because twisted triangular coupling member 40 of cylinder flange 34 generally twists in one direction and its torque forces are adjacent its axis of rotation, its fabrication is both complicated and expensive. In addition, because the torque forces acting on twisted triangular coupling member 40 of cylinder flange 34 are adjacent its axis of rotation, the member encounters high stresses.
With reference to
According to one aspect, there is provided a coupling mechanism for detachably connecting a material supply module with a reprographic device. A driving coupling is attached to the reprographic device, and a driven coupling is joined with the material supply module. The driven coupling includes a cylinder flange having a concentric shaft extending axially outwardly therefrom. A cylindrical coupling member extends axially outwardly from the concentric shaft of the driven coupling. The cylindrical coupling member comprises a flexible membrane that encases non-rigid fill material and has a non-twisted, triangular cross-section. When the driving and driven couplings are operationally engaged, the non-rigid material substantially solidifies, thereby imparting a rigid, substantially non-flexible structure to the membrane. The driving coupling may include an axial socket, and an alignment pin that extends axially outwardly therefrom. The cylindrical coupling member is configured to fit within the driving coupling's socket and includes a central hole for receiving the alignment pin.
According to another aspect, there is provided a photoreceptor drum for use in producing an image in conjunction with a reprographic device. At one of its ends, the photoreceptor drum is joined with a cylinder flange having a concentric shaft that extends axially outwardly therefrom. A cylindrical coupling member extends axially outwardly from the concentric shaft and is configured to mate with a driving coupling that may be attached to the reprographic device. The cylindrical coupling member comprises a flexible membrane that encases non-rigid fill material and has a non-twisted, triangular cross-section. During operational use, the non-rigid material substantially solidifies, thereby imparting a substantially non-flexible structure to the membrane.
According to yet another aspect, there is provided a material supply module for detachable connection to a reprographic device. The material supply module comprises a housing and a photoreceptor drum joined with the housing. The drum is joined, at one of its ends, with a cylinder flange that has a concentric shaft extending axially outwardly therefrom. A cylindrical coupling member extends axially outwardly from the concentric shaft and is configured to mate with a driving coupling that may be attached to the reprographic device. The cylindrical coupling member comprises a flexible membrane that encases non-rigid fill material and has a non-twisted, triangular cross-section. During operational use, the non-rigid material substantially solidifies, thereby imparting a rigid, substantially non-flexible structure to the membrane.
A detailed description of embodiments of the invention will be made with reference to the accompanying drawings, wherein like numerals designate corresponding parts in the several figures:
In accordance with an embodiment of the present invention,
The driven coupling member 75 has a first, or bottom, end 76 that is attached to the outer surface 73 of the concentric shaft 74. Opposite first end 76, the driven coupling member 75 has a second, or top, end 78. As shown in
In a preferred embodiment, the driven coupling member 75 comprises a durable, but flexible, membrane that is shaped into a cylindrical “sack” having a non-twisted, triangular cross-section. As shown in
In embodiments of the invention, the driven coupling member 75 of the driven coupling 70 is adapted to fit within the socket 67 of the driving coupling 60 shown in
In practice, when the driven coupling 70 is not attached to, or engaged with, a driving coupling (such as, e.g., the driving coupling 60), the driven coupling member 75 has no stress applied to it. As such, the fill material inside the sack is in a non-rigid state, which allows the membrane to have sufficient flexibility such that the driven coupling member 75 may enter and fit within the socket 67 with relative ease. However, once the driving and driven couplings have been engaged, and the driving coupling is operated, the torque that is applied generates stress forces that cause the fill material to transform to a rigid state. This, in turn, causes the membrane to have a substantially non-flexible structure that is able to transmit the applied torque during operation. In general, in embodiments of the invention, the torque that is applied may generate stress forces that cause the fill material in combination with the sack material and the surface and material of the driving coupling's surface to transfer the applied torque from the driving coupling to the driven coupling.
In embodiments of the invention, the membrane of the driven coupling member may be made of plastic, rubber, or other durable, but flexible material. In yet other embodiments, rather than a membrane that encases fill material, the driven coupling member 75 may be made of a homogeneous or non-homogeneous substance that exhibits some of the same properties (e.g., conformability, durability, flexibility, etc.) of the driven coupling member 75 described above.
Referring now to
Material supply module 100 includes a housing 138 and a photoreceptor drum 190 which may be removably joined with the housing 138. Housing 138 generally includes an integral reservoir 140 for containing materials. However, reservoir 140 may also be separate but connectable to the housing 138. At one end thereof, the photoreceptor drum 190 includes cylinder flange 171. A concentric shaft 174 extends axially outwardly from cylinder flange 171 and includes outer surface 173, which is configured to be substantially parallel to front surface 161 of machine drive 162. The driven coupling member 175 extends longitudinally outwardly from outer surface 173 of concentric shaft 174 and is configured to engage the socket 167.
It should be understood that any of the features, characteristics, alternatives, or modifications described regarding a particular embodiment herein may also be applied, used, or incorporated with any other embodiment described herein.
While the description above refers to particular embodiments of the present invention, it will be understood that many modifications may be made without departing from the spirit thereof. The accompanying claims are intended to cover such modifications as would fall within the true scope and spirit of the present invention.
The presently disclosed embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims, rather than the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.
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5788151 | Moroi et al. | Aug 1998 | A |
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Number | Date | Country | |
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20090080936 A1 | Mar 2009 | US |