The present invention relates generally to an electronic image-forming apparatus and more particularly, to a lateral cap of a process cartridge.
A conventional electronic image-forming apparatus, such as photocopier or printer, is generally equipped with a replaceable process cartridge therein. Inside the housing of the process cartridge, a plurality of rollers, such as photosensitive roller, developer roller, etc., are installed. An end of the roller is connected with an end member, such that the end member and the roller can synchronously rotate. The end member is further connected with a rotational force receiving member, which protrudes outside the housing and is engageable with a driving head provided inside the electronic image-forming apparatus. As a result, when the driving head rotates, the roller is driven by the end member via the rotational force receiving member to rotate relative to the housing of the process cartridge so as to perform a developing or photosensitive work.
In a task of installing the process cartridge into the electronic image-forming apparatus, in order to engage the rotational force receiving member with the driving head, the rotational force receiving member will be restricted to a biased position in advance, and then when the rotational force receiving member is in contact with the driving head, the rotational force receiving member gradually returns back to a coaxial position in coaxial alignment with the driving head. After the process cartridge is positively installed into the electronic image-forming apparatus at a target position, the driving head, the rotational force receiving member, the end member and the roller are aligned in a line and rotatable synchronously. The conventional structure that can achieve the aforesaid function is quite complicated. Therefore, designing a simple and compact structure that can make the rotational force receiving member be positively and firmly coupled with the driving head after the rotational force receiving member returns from the biased position back to its initial position is always a challenge to the manufacturers in this industry field.
The present invention has been accomplished in view of the above-noted circumstances. It is an objective of the present invention to provide a lateral cap of a process cartridge, which can guide the rotational force receiving member to move toward the driving head so as to make them firmly coupled with each other when the rotational force receiving member returns from a biased position back to a coaxial position in coaxial alignment with the driving head.
Another objective of the present invention is to provide a lateral cap of a process cartridge, which has a simple and compact structure and can guide and position the rotational force receiving member at a desired position positively.
To attain the above objectives, the present invention provides a lateral cap of a process cartridge, which is adapted to be disposed to a housing of the process cartridge. The process cartridge is adapted to be installed into an electronic image-forming apparatus along an installation direction. The lateral cap of the process cartridge comprises a main body, a through hole, a flange and a guiding portion. The main body includes a first side configured for being disposed to the housing of the process cartridge, and a second side opposite to the first side. The through hole penetrates from the first side through the second side. The flange extends from the second side toward a direction away from the first side. The guiding portion extends from the flange toward an axis direction of the through hole. As a result, the lateral cap has a simple and compact structure and can guide a rotational force receiving member to be positively positioned at a desired position. That is, the lateral cap can guide the rotational force receiving member to move toward a driving head to make them firmly coupled with each other when the rotational force receiving member is moved from a biased position to a coaxial position in alignment with the driving head.
The present invention will become more fully understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
Hereunder an embodiment will be detailedly described with accompanying drawings for illustrating technical features and structure of the present invention. As shown in
Referring to
As shown in
The main body 32 is shaped like a plate having a first side 33 adapted to be abutted against the housing 12, and a second surface 34 opposite to the first side 33. The first side 33 of the main body 30 is for being stopped against the end member 14, such that the end member 14 and the photosensitive roller 13 are prohibited from escape from the case 12. The shape of the main body 32 may be modified according to actual requirement. The main body 32 may be connected to the housing 12 by adhesive attachment, engagement connection, screws, etc.
As shown in
The flange 40 extends from the second side 34 of the main body 30 toward a direction away from the first side 32. In this embodiment, the extending direction of the flange 40 is parallel to the axis direction B of the through hole 36. The flange 40 has substantially an arc shape and is located approximately above the engagement head 22 of the rotational force receiving member 18 for limiting the biasing angle of the rotational force receiving member 18 within a predetermined range.
The guiding portion 44 extends downwardly from a meddle section of the flange 40 toward the axis direction B of the through hole 36. The guiding portion 44 has a contact surface 46 adapted to be contacted with the taper portion 24 of the rotational force receiving member 18 in a linear contact manner, which is helpful to lower the friction between the contact surface 46 and the taper portion 24. The contact surface 46 extends approaching to the first side 33 in the installation direction D, as shown in
As shown in
As shown in
As shown in
In the design of the present invention, the lateral cap 30 has a simple and compact structure and can guide the rotational force receiving member 18 to be positively positioned at a desired position. That is, the lateral cap 30 can guide the rotational force receiving member 18 to move toward the driving head 6 to have them firmly coupled with each other when the rotational force receiving member 18 is moved from a biased position to a coaxial position in alignment with the driving head 6. With the technical features of the present invention, the malfunctional rate of the installation can be minimized, such that the process cartridge 10 can be positively and successfully coupled with the electronic image-forming apparatus 1.
Based on the above-mentioned technical features, various modifications to the structure of the lateral cap 30 may be made. For example, the contact surface 46 of the guiding portion 44 may be designed with various profiles, the rotational force receiving member 18 may be provided with no such a taper portion 24, and the contact surface 46 may be configured in point contact with the rotational force receiving member 18. To ensure that the rotational force receiving member 18 and the driving head 6 can be positively coupled with each other when the rotational force receiving member 18 is biased to a coaxial position in coaxial alignment with the driving head 6, a compression spring may be provided between the end member 14 and the center axle 19 for pushing the rotational force receiving member 18 toward the driving head 6.
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.
Number | Date | Country | Kind |
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107203240 U | Mar 2018 | TW | national |
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204374619 | Jun 2015 | CN |