WO2023125459A1 - 一种处理盒、处理盒组件及图像形成设备 - Google Patents

一种处理盒、处理盒组件及图像形成设备 Download PDF

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Publication number
WO2023125459A1
WO2023125459A1 PCT/CN2022/142112 CN2022142112W WO2023125459A1 WO 2023125459 A1 WO2023125459 A1 WO 2023125459A1 CN 2022142112 W CN2022142112 W CN 2022142112W WO 2023125459 A1 WO2023125459 A1 WO 2023125459A1
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WO
WIPO (PCT)
Prior art keywords
process cartridge
image forming
chip
positioning
contact portion
Prior art date
Application number
PCT/CN2022/142112
Other languages
English (en)
French (fr)
Inventor
邵哲
夏祥超
杨红建
Original Assignee
珠海奔图电子有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 珠海奔图电子有限公司 filed Critical 珠海奔图电子有限公司
Publication of WO2023125459A1 publication Critical patent/WO2023125459A1/zh

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    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03GELECTROGRAPHY; ELECTROPHOTOGRAPHY; MAGNETOGRAPHY
    • G03G21/00Arrangements not provided for by groups G03G13/00 - G03G19/00, e.g. cleaning, elimination of residual charge
    • G03G21/16Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements
    • G03G21/18Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements using a processing cartridge, whereby the process cartridge comprises at least two image processing means in a single unit
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03GELECTROGRAPHY; ELECTROPHOTOGRAPHY; MAGNETOGRAPHY
    • G03G15/00Apparatus for electrographic processes using a charge pattern
    • G03G15/06Apparatus for electrographic processes using a charge pattern for developing
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03GELECTROGRAPHY; ELECTROPHOTOGRAPHY; MAGNETOGRAPHY
    • G03G21/00Arrangements not provided for by groups G03G13/00 - G03G19/00, e.g. cleaning, elimination of residual charge
    • G03G21/16Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements
    • G03G21/18Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements using a processing cartridge, whereby the process cartridge comprises at least two image processing means in a single unit
    • G03G21/1803Arrangements or disposition of the complete process cartridge or parts thereof
    • G03G21/1814Details of parts of process cartridge, e.g. for charging, transfer, cleaning, developing
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03GELECTROGRAPHY; ELECTROPHOTOGRAPHY; MAGNETOGRAPHY
    • G03G21/00Arrangements not provided for by groups G03G13/00 - G03G19/00, e.g. cleaning, elimination of residual charge
    • G03G21/16Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements
    • G03G21/18Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements using a processing cartridge, whereby the process cartridge comprises at least two image processing means in a single unit
    • G03G21/1803Arrangements or disposition of the complete process cartridge or parts thereof
    • G03G21/1828Prevention of damage or soiling, e.g. mechanical abrasion

Definitions

  • the present application relates to the field of image forming technology, in particular to a process box, a process box assembly and an image forming device.
  • An image forming device is provided in the prior art, and a drawer is built in the image forming device, and at least one process cartridge is accommodated in the drawer, and the process cartridge can be installed or removed from the image forming device by pushing and pulling the drawer
  • the process box when the process box is mounted on the image forming device, the conductive contacts on the chip provided on the process box and the conductive terminals provided on the image forming device are in contact with each other.
  • the present application provides a process cartridge, a process cartridge assembly and an image forming device, aiming at reducing the distance between the positioning part and the printer when the process cartridge is loaded into the image forming device by limiting the positional relationship between the chip and the positioning part.
  • the risk of collision of the electric contact part on the body can be prevented, and the problem of communication abnormality caused by damage to the process cartridge can be prevented.
  • a first aspect of the present application provides a process cartridge for an image forming apparatus, the process cartridge comprising:
  • the rotating part is arranged on the box main body, and along the axial direction of the rotating part, the box main body has a first end and a second end;
  • the chip part including a contact part for electrically connecting with an electrical contact part of the image forming apparatus
  • the positioning part is used to be erected and supported on the moving parts of the image forming apparatus;
  • any point on the second end portion is taken as a reference point, and the contact portion and the reference point are in the axial direction of the rotating member.
  • the distance is L1
  • the minimum distance between the surface of the positioning part away from the second end and the reference point in the axial direction of the rotating member is L2, L1>L2.
  • a second aspect of the present application provides a process cartridge assembly, the process cartridge assembly comprising:
  • the process box is mounted on the moving part, and the process box is the above-mentioned process box;
  • the moving part is provided with a limiting part, and the positioning part of the process box is supported by the limiting part.
  • a third aspect of the present application provides an image forming device, the image forming device comprising:
  • a process box is the above-mentioned process box
  • the contact part is electrically connected to the electrical contact part.
  • the distance from the contact part to the reference point is greater than the distance from the side of the positioning part far away from the first end to the reference point, so that the positioning part is set away from the electrical contact part relative to the contact part, so as to ensure that the process cartridge is installed into the image forming device.
  • the positioning part will not collide with the electrical contact part, thereby ensuring the stability of the electrical connection between the contact part and the electrical contact part.
  • FIG. 1 is a schematic structural view of the process cartridge assembly provided by the present application when it is installed on the image forming apparatus body;
  • Figure 2 is a schematic cross-sectional view of Figure 1;
  • Fig. 3 is an enlarged schematic diagram of part A in Fig. 2;
  • Figure 4 is a schematic cross-sectional view of the process cartridge assembly provided by the present application loaded into the image forming apparatus body;
  • Figure 5 is an enlarged schematic view of part B in Figure 4.
  • Figure 6 is a schematic structural view of the process cartridge assembly provided by the present application.
  • Fig. 7 is a structural schematic diagram of another viewing angle of Fig. 6;
  • Figure 8 is a schematic structural view of a process cartridge provided by the present application in a specific embodiment
  • Fig. 9 is a schematic diagram of the position of the rotating member, the chip component and the positioning part in Fig. 8;
  • Figure 10 is a schematic structural view of the process box provided by the present application.
  • Fig. 11 is an enlarged schematic diagram of part C in Fig. 10;
  • FIG. 12 is a schematic structural view of the process cartridge provided by the present application when it is not installed on the image forming apparatus body;
  • Fig. 13 is an enlarged schematic diagram of part D in Fig. 12;
  • FIG. 14 is a schematic diagram of the structure of the process cartridge provided by the present application when it is installed on the main body of the image forming apparatus;
  • FIG. 15 is an enlarged schematic view of part E in FIG. 14 .
  • the present embodiment provides an image forming apparatus 3 including a main body 31 and a process cartridge 1 .
  • the body 31 includes a moving part 2 and an electrical contact part 311.
  • the moving part 2 can move relative to the body 31.
  • the process box 1 needs to be placed on the moving part 2 first. After the process box 1 is supported and positioned by the moving part 2 , and then the process cartridge 1 is loaded into the body 31 by pushing and pulling the moving part 2 to ensure the accuracy of the printed image.
  • the electrical contact portion 311 on the body 31 may be an elastic sheet, and the electrical contact portion 311 presses the chip component 12 by its own elasticity to ensure the stability of the electrical connection between the two.
  • the number of process cartridges 1 can be set as one, two or more, or the like. As shown in FIG. 4 , this image forming apparatus 3 can be mounted with four process cartridges 1 .
  • the chip part 12 of each process box 1 is provided with four contact portions 121, and the body 31 is provided with four electrical contact portions 311, and the four contact portions 121 are in one-to-one contact with the four electrical contact portions 311, so that The corresponding contact portion 121 forms an electrical connection with the electrical contact portion 311 .
  • the moving part 2 is provided with a limiting portion 21
  • the process cartridge 1 is provided with a positioning portion 13
  • the positioning portion 13 cooperates with the limiting portion 21 .
  • the position of the process box 1 on the moving part 2 is limited by the cooperation of the positioning part 13 and the stop part 21, so that the position of the process box 1 will not change when the process box 1 is loaded into the body 31 along with the moving part 2.
  • part of the moving part 2 is recessed to form a limiting portion 21, the inner surface of the limiting portion 21 is formed with a first limiting surface 211, and the outer surface of the positioning portion 13 is formed with a first fixed surface. Limiting surface 131.
  • the first limiting surface 211 abuts against the first limited surface 131 .
  • first limiting surface 211 and the first limited surface 131 may be in integral contact, or may also be in partial contact.
  • the first limiting surface 211 abuts against the first limited surface 131 to limit the process cartridge 1 so that the process cartridge 1 remains at the same position.
  • the first limiting surface 211 is formed on the inner surface of the limiting portion 21
  • the first limited surface 131 is formed on the outer surface of the positioning portion 13 .
  • the first limiting surface 211 and the first limited surface 131 can be set as arc surfaces, so as to limit the movement of the process cartridge 1 when it is pushed and pulled by the moving part 2 .
  • the cooperation of the positioning portion 13 and the limiting portion 21 can limit the displacement of the process cartridge 1 in the pulling direction of the moving part 2. Carry out the limit in other directions.
  • the positioning part 13 may not protrude from the limiting part 21 , or, when the positioning part 13 cooperates with the limiting part 21 , part of the positioning part 13 may protrude from the limiting part 21 .
  • the moving part 2 does not move in the process of pushing in or pulling out the body 31 due to different user operations. It must be moving horizontally, which may cause the moving part 2 to tilt to a certain extent, causing the positioning part 13 to be raised, and then the positioning part 13 will collide with the electrical contact part 311 on the body 31 during the movement of the moving part 2, resulting in electrical contact If the portion 311 is damaged or the process cartridge 1 is scratched, debris adheres to the electrical contact portion 311 , affecting the data transmission between the chip component 12 and the body 31 .
  • the process cartridge 1 includes a box main body 14 and a rotating member 11, the rotating member 11 is arranged on the box main body 14, and the rotating member 11 in the process cartridge 1 is used as a reference axis, along the axial direction of the rotating member 11,
  • the rotating member 11 has a first end 111 and a second end 112 .
  • the positioning portion 13 is disposed on the first end portion 111, the chip component 12 includes a contact portion 121 for electrical connection with the electrical contact portion 311 of the image forming device 3, and the positioning portion 13 is used to be supported on the moving parts of the image forming device 3 .
  • the distance between the contact portion 121 and the reference point in the axial direction of the rotating member 11 is L1
  • the positioning portion 13 The minimum distance between the side away from the second end portion 112 and the reference point in the axial direction of the rotating member 11 is L2, and L1>L2.
  • the contact portion 121 is fixedly arranged with respect to the cartridge main body 14; or the contact portion 121 can also be movably arranged with respect to the cartridge main body 14.
  • the above two settings The methods also need to satisfy L1>L2.
  • the rotating member 11 can be a photosensitive drum.
  • the rotating member 11 can also be other parts on the process cartridge 1 that can rotate and are parallel to the axial direction of the photosensitive drum, such as a developing roller.
  • part of the positioning part 13 and part of the electrical contact part 311 may be at the same height, resulting in a partial positioning part 13 and a part of the electrical contact part 311 A collision occurs, resulting in damage to the electrical contact portion 311 .
  • the distance between the contact portion 121 on the chip component 12 and the reference point along the axial direction of the rotating member 11 is greater than that of the positioning portion 13. The minimum distance from one side of the second end portion 111 to the reference point makes the positioning portion 13 away from the electrical contact portion 311 relative to the contact portion 121 .
  • the positioning part 13 is farther away from the electrical contact part 311 relative to the contact part 121, which can ensure that the process cartridge 1 is installed in the process of the image forming device 3, and the positioning part 13 It will not collide with the electrical contact portion 311 on the body 31 , and avoid affecting the electrical connection between the contact portion 121 and the electrical contact portion 311 . Moreover, the positioning portion 13 is farther away from the electrical contact portion 311 relative to the contact portion 12, which can reduce the possibility of positional interference between the positioning portion 13 and the electrical contact portion 311 during the process of loading the process cartridge 1, and prevent the positioning of the process cartridge 1.
  • Part 13 is scraped off particle debris, and the debris rubs against the contact portion 121 and the electrical contact portion 311, resulting in the risk of unstable electrical connection between the contact portion 121 and the electrical contact portion 311, ensuring that the chip components 12 on the process cartridge 1 The stability of data transmission with the main body 31.
  • the chip component 12 includes a chip body, and the contact part 121 can be directly provided on the chip body.
  • the chip component 12 may also include an adapter, which is electrically connected to the chip body and the electrical contact portion 311 respectively, and the contact portion 121 is a part on the adapter used to be electrically connected to the electrical contact portion 311 to realize contact.
  • the dot portion 121 is indirectly disposed on the chip body.
  • the adapter is an elastic member.
  • the adapter is in a state of being under pressure.
  • the adapter is no longer under pressure. , so that the electrical contact portion 311 on the adapter moves relative to the chip body.
  • the contact portion 121 and the positioning portion 13 protrude from the end surface of the box main body 14 along the axial direction of the rotating member 11 .
  • the positioning part 13 is protruded from the end surface of the box main body 14, so that when the process cartridge 1 is installed on the moving part 2, the positioning part 13 can be aligned with the stopper of the moving part 2. 21 fits.
  • the contact portion 121 protrudes from the end surface of the cartridge body 14 so that the contact portion 121 can be electrically connected to the electrical contact portion 311 when the process cartridge 1 is installed in the body 31 .
  • the contact part 121 is the surface farthest from the reference point on the process cartridge 1, that is, there is no distance from other parts on the process cartridge 1 to the reference point It is greater than the distance from the contact portion 121 to the reference point to ensure that when the process cartridge 1 is loaded into the body 31, other parts of the process cartridge 1 except the contact portion 121 will not collide with the electrical contact portion 311 on the body 31.
  • the distance between the end surface of the first end portion 111 and the reference point in the axial direction of the rotating member 11 is La, wherein L1>L2>La. That is, along the axial direction of the rotating member 11, the distance from the reference point on the side of the contact portion 121 away from the second end portion 112 is greater than the distance from the reference point on the side of the positioning portion 13 away from the second end portion 112, so that the positioning The portion 13 is closer to the reference point relative to the contact portion 121, so as to prevent the positioning portion 13 from contacting the electrical contact portion 311 when the process cartridge 1 is mounted on the image forming apparatus 3, thereby affecting the electrical connection between the contact portion 121 and the electrical contact portion 311.
  • the distance between the side of the positioning part 13 away from the second end 112 and the reference point is greater than the distance between the first end 111 and the reference point, so that the positioning part 13 protrudes relative to the first end 111, which is convenient for the positioning part 13 and the moving parts Cooperate with the limit part 21 of 2.
  • the process cartridge 1 further includes a chip holder 15 on which the chip component 12 is mounted.
  • the chip holder 15 and the positioning part 13 can be a separate structure, both of which are fixed on the box main body 14 .
  • the chip holder 15 and the positioning portion 13 can also be integrally formed, and the chip holder 15 and the positioning portion 13 are manufactured by integral molding of a mold, which improves efficiency compared to separately manufacturing the chip holder 15 and the positioning portion 13 .
  • the chip holder 15 is integrally formed with the positioning portion 13 , part of the chip holder 15 can extend away from the chip component 12 to form the positioning portion 13 .
  • the surface of the positioning portion 13 away from the second end 112 includes a first area and a second area, the first area is located on the side of the second area away from the chip component 12, that is, the first area is the process box 1
  • the positioning portion 13 is an area on the side away from the second end portion 112 that does not overlap with the projection of the electrical contact portion 311 on the axial direction of the rotating member 11 .
  • the second area is the area where the projection of the electrical contact portion 311 on the axial direction of the rotating member 11 overlaps on the side of the positioning portion 13 away from the second end portion 112 when the process cartridge 1 is installed in the image forming apparatus 3 .
  • the distance between the second region and the reference point in the axial direction of the rotating member 11 is smaller than L1 to limit the second region from colliding with the electrical contact portion 311 .
  • the surface of the positioning portion 13 away from the second end 112 is an annular surface or a circular surface with a notch, the notch is located on the side of the annular surface or the circular surface close to the chip component 12, and the annular surface or the circular surface The part close to the notch is the second area.
  • the first region further includes a protrusion 16 extending along the positioning portion 13 in a direction away from the second end portion 112 .
  • the process cartridge 1 is installed in the image forming apparatus 3 , projections of the protrusion 16 and the electric contact portion 311 in the axial direction of the rotating member 11 do not overlap.
  • the protrusion 16 is arranged on the side of the positioning part 13 away from the chip part 12, and during the process of the process cartridge 1 being loaded into the body 31, the protrusion 16 and the electrical contact part 311
  • the projections on the axial direction of the rotating member 11 do not overlap, that is, the protrusion 16 is lifted up with the moving part 2 , and the protrusion 16 will not interfere with the electrical contact portion 311 in the body 31 .
  • the distance from the side of the protrusion 16 away from the first end 111 to the reference point is L3, which satisfies L3>L1, that is, the side of the protrusion 16 away from the first end 111 to The distance from the reference point is greater than the distance from the side of the contact portion 121 away from the first end portion 111 to the reference point.
  • the protrusion 16 protrudes relative to the contact portion 121 and can guide the process cartridge 1 to be installed on the moving part 2 .
  • the protrusion 16 can also be used as a force application point, and the process cartridge 1 can be removed from the moving part 2 by lifting the protrusion 16 .
  • the process cartridge 1 further includes a pressing mechanism, which is installed on the chip holder 15 and can drive the chip component 12 to move relative to the chip holder 15 .
  • the pressing mechanism presses the chip part 12 so that L2 ⁇ L1 is satisfied.
  • the chip part 12 is pressed by the pressing mechanism and is in a pressed state, so that the distance from the contact part 121 to the reference point is smaller than the distance from the positioning part 13 to the reference point , so as to protect the contact portion 121 and reduce the risk of the contact portion 121 being bumped due to protrusion.
  • the chip part 12 can be released by the pressing mechanism, and the contact part 121 can be pushed toward a position far away from the reference point, so that the distance from the contact part 121 to the reference point is greater than that of the positioning part 13. Distance to datum point.
  • the pressing mechanism may include an elastic member 18 and a locking member 17, the elastic member 18 may be arranged between the chip component 12 and the chip holder 15, and the locking member 17 may be arranged along the diameter of the rotating member 11. connected to the side end of the chip component 12.
  • the locking member 17 can press the chip part 12 against the elastic force of the elastic member 18, satisfying L2 ⁇ L1.
  • what the pressing mechanism actually presses is the chip body of the chip component 12 .
  • the chip part 12 can be released by the locking member 17, and the elastic member 18 drives the contact part 121 to move away from the rotating member 11 by its own elastic force, satisfying L1>L2.
  • the elastic member 18 can adopt a spring.
  • the pressing mechanism can be like the pressing structure in the existing pressing pen, pressing the chip part 12 so that the chip part 12 is locked by the locking part 17 in a compressed state, and the elastic part 18 is also in a compressed state.
  • the protruding structure in the image forming device presses the chip part 12 again, the chip part 12 can be released by the locking part 17, and the compression of the elastic part 18 is also released, so that the elastic part 18 can pass through The rebound force drives the chip component 12 to move.
  • the locking member 17 is at least partly located on the side of the chip part 12 away from the second end 112 and abuts against the chip part 12.
  • the elastic member 18 Pressed; when the process cartridge 1 is installed in the image forming device 3, the protruding structure in the image forming device 3 pushes the locking part 17 to separate the locking part 17 from the chip part 12, releases the compression of the elastic part 18, and makes the elastic The component 18 can drive the chip component 12 to move through the resilience force.
  • the locking member 17 can also press the adapter part or the contact part 121, so that the contact part 121 can be fixed when the process cartridge 1 is not mounted on the image forming apparatus 3. In a pressed state, when the process cartridge 1 is mounted on the image forming apparatus 3 , the locking member 17 releases the restriction on the contact part 121 , so that the contact part 121 moves relative to the chip part 12 .

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Computer Vision & Pattern Recognition (AREA)
  • Electrophotography Configuration And Component (AREA)

Abstract

一种处理盒、处理盒组件及图像形成设备。处理盒(1)包括盒主体(14);设于盒主体(14)的转动件(11),沿转动件(11)的轴向,盒主体(14)具有第一端部(111)及第二端部(112);设于盒主体(14)的芯片部件(12),其包括用于与图像形成设备(3)的电接触部(311)电连接的触点部(121);定位部(13)位于第一端部(111),用于支撑在图像形成设备(3)的移动部件(2)上;以第二端部(112)的任意一点为基准点,触点部(121)与基准点在转动件(11)的轴向上的距离为L1,定位部(13)远离第二端部(112)的面与基准点在转动件(11)的轴向上的最小距离为L2,当处理盒(1)安装于图像形成设备(3)时,L1>L2。避免了处理盒(1)在安装时,定位部(13)与图像形成设备(3)的电接触部(311)发生碰撞。

Description

一种处理盒、处理盒组件及图像形成设备
本申请要求于2021年12月29日提交中国专利局、申请号为202123372434.9、申请名称为“处理盒及图像形成装置”,以及要求于2022年09月30日提交中国专利局、申请号为202211217029.6、申请名称为“一种处理盒、处理盒组件及图像形成装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及图像形成技术领域,尤其涉及一种处理盒、处理盒组件及图像形成设备。
背景技术
现有技术中提供一种图像形成装置,图像形成装置中内置有抽屉,抽屉内容纳有至少一个处理盒,通过推拉抽屉从而实现将处理盒安装至图像形成装置中,或者从图像形成装置中拆卸处理盒,当处理盒安装于图像形成装置时,处理盒上设置的芯片上的导电触点与图像形成装置上设置的导电端子相互接触。
然而,在处理盒的装入过程中,当用户将抽屉抬升较高时,处理盒上设置的其他部件也能接触到图像形成装置侧端设置的导电端子,从而损坏图像形成装置侧端的导电端子或处理盒被划伤后碎屑附着在导电端子上,导致图像形成装置上设置的导电端子与处理盒上设置的芯片通信异常。
发明内容
鉴于上述问题,本申请提供了一种处理盒、处理盒组件及图像形成设备,旨在通过限定芯片与定位部的位置关系,减小了处理盒在装入图像形成设备时,定位部与打印机体上的电接触部发生碰撞的风险,可防止出现由于处理盒损伤导致通信异常的问题。
本申请第一方面提供了一种处理盒,用于图像形成设备,所述处理盒包括:
盒主体;
转动件,所述转动件设于所述盒主体,沿所述转动件的轴向,所述盒主体具有第一端部及第二端部;
芯片部件,所述芯片部件设于所述盒主体,所述芯片部件包括用于与所述图像形成设备装置的电接触部电连接的触点部;
定位部,所述定位部用于搭设支撑在所述图像形成设备装置的移动部件上;
其中,当所述处理盒安装于所述图像形成设备装置时,以所述第二端部的任意一点为基准点,所述触点部与所述基准点在所述转动件的轴向上的距离为L1,所述定位部远离所述第二端部的面与所述基准点在所述转动件的轴向上的最小距离为L2,L1>L2。
本申请第二方面提供了一种处理盒组件,所述处理盒组件包括:
移动部件;
处理盒,所述处理盒安装于所述移动部件,所述处理盒为上述所述的处理盒;
其中,所述移动部件设有限位部,所述处理盒的定位部支撑于所述限位部。
本申请第三方面提供了一种图像形成设备,所述图像形成设备包括:
本体,所述本体设有移动部件和电接触部;
处理盒,所述处理盒为上述所述的处理盒;
所述处理盒安装于所述移动部件时,所述触点部与所述电接触部电连接。
本申请提供的技术方案可以达到以下有益效果:
本申请通过限定触点部到基准点的距离大于定位部远离第一端部的一面到基准点的距离,使定位部相对触点部远离电接触部设置,保证处理盒装入图像形成设备的过程中,定位部不会与电接触部发生碰撞,进而保证触点部与电接触部电连接稳定性。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性的,并不能限制本申请。
附图说明
图1为本申请所提供处理盒组件安装于图像形成设备本体时的结构示意图;
图2为图1的剖视示意图;
图3为图2中A部放大示意图;
图4为本申请所提供处理盒组件装入图像形成设备本体的剖视示意图;
图5为图4中B部放大示意图;
图6为本申请所提供处理盒组件的结构示意图;
图7为图6另一视角的结构示意图;
图8为本申请所提供处理盒在一种具体实施例中的结构示意图;
图9为图8中转动件、芯片部件和定位部的位置示意图;
图10为本申请所提供处理盒的结构示意图;
图11为图10中C部放大示意图;
图12为本申请所提供处理盒未安装于图像形成设备本体时的结构示意图;
图13为图12中D部放大示意图;
图14为本申请所提供处理盒安装于图像形成设备本体时的结构示意图;
图15为图14中E部放大示意图。
附图标记:
1-处理盒;
11-转动件;
111-第一端部;
112-第二端部;
12-芯片部件;
121-触点部;
13-定位部;
131-第一被限位面;
14-盒主体;
15-芯片支架;
16-凸起;
17-锁定件;
18-弹性件;
2-移动部件;
21-限位部;
211-第一限位面;
3-图像形成设备;
31-本体;
311-电接触部。
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本申请的实施例,并与说明书一起用于解释本申请的原理。
具体实施方式
为了更好的理解本申请的技术方案,下面结合附图对本申请实施例进行详细描述。
应当明确,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围。
在本申请实施例中使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本申请。在本申请实施例和所附权利要求书中所使用的单数形式的“一种”、“所述”和“该”也旨在包括多数形式,除非上下文清楚地表示其他含义。
应当理解,本文中使用的术语“和/或”仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。
需要注意的是,本申请实施例所描述的“上”、“下”、“左”、“右”等方位词是以附图所示的角度来进行描述的,不应理解为对本申请实施例的限定。此外,在上下文中,还需要理解的是,当提到一个元件连接在另一个元件“上”或者“下”时,其不仅能够直接连接在另一个元件“上” 或者“下”,也可以通过中间元件间接连接在另一个元件“上”或者“下”。
如图1至图7所示,本实施例提供了一种图像形成设备3,图像形成设备3包括本体31和处理盒1。本体31包括移动部件2和电接触部311,移动部件2可相对本体31移动,安装处理盒1时,需先将处理盒1放置在移动部件2上,处理盒1被移动部件2支撑定位后,再通过推拉移动部件2将处理盒1装入本体31中,以保证打印画像精度。当处理盒1完全装入本体31时,处理盒1上设置的芯片部件12与本体31上设置的电接触部311相互接触,使处理盒1上的芯片部件12与本体31电连接,实现数据传输。其中,本体31上的电接触部311可以为弹性片,电接触部311通过自身弹性压置芯片部件12,保证二者电连接的稳定性。
处理盒1的数量可以设置为一个、两个或多个等。如图4所示,该图像形成设备3可安装有四个处理盒1。每个处理盒1的芯片部件12上设置有四个触点部121,本体31中设置有四个电接触部311,四个触点部121与四个电接触部311一一对应接触,相对应的触点部121与电接触部311形成电连接。
为保证处理盒1设置在移动部件2上的稳定性,以及处理盒1随着移动部件2装入本体31内后,处理盒1上的芯片部件12能够与本体31上的电接触部311接触,移动部件2设有限位部21,处理盒1设有定位部13,定位部13与限位部21配合。通过定位部13与限位部21配合,限定处理盒1在移动部件2上的位置,使处理盒1随着移动部件2装入本体31的过程中,处理盒1的位置不会发生变动。
具体地,如图2至图5所示,部分移动部件2凹陷形成限位部21,限位部21的内表面形成有第一限位面211,定位部13的外表面形成有第一被限位面131。处理盒1安装于移动部件2时,第一限位面211与第一被限位面131抵接。
其中,第一限位面211与第一被限位面131可整体接触,或也可部分接触。
处理盒1装入移动部件2时,第一限位面211与第一被限位面131抵接,对处理盒1进行限位,以使处理盒1保持在同一位置。第一限位面211形成于限位部21的内表面,第一被限位面131形成于定位部13的外表面。 第一限位面211与第一被限位面131可以设定为弧形面,从而限制处理盒1被移动部件2推拉时发生移动。
具体的,定位部13与限位部21的配合能够限制处理盒1在移动部件2抽拉方向上的位移,同时移动部件2及处理盒1上还设有其他结构,用于对处理盒1进行其他方向上的限位。
其中,定位部13可能不凸出限位部21,或者,定位部13与限位部21配合时,部分定位部13可能凸出限位部21。
如图2所示,将处理盒1随着移动部件2装入本体31或从本体31拉出的过程中,因用户操作不同,移动部件2在推入或拉出本体31的过程中并不一定是水平运动的,可能会使移动部件2出现一定倾斜,导致定位部13被抬高,则定位部13在移动部件2运动过程中会碰撞到本体31上的电接触部311,导致电接触部311损坏或处理盒1被划伤后碎屑附着在电接触部311上,影响芯片部件12与本体31的数据传输。
为此,本实施例提供的处理盒1中,对处理盒1上芯片部件12与定位部13的位置关系进行限定。如图8和图9所示,处理盒1包括盒主体14和转动件11,转动件11设于盒主体14,以处理盒1中转动件11作为基准轴,沿转动件11的轴向,转动件11具有第一端部111和第二端部112。定位部13设置于第一端部111,芯片部件12包括用于与图像形成设备3的电接触部311电连接的触点部121,定位部13用于支撑在图像形成设备3的移动部件上。其中,当处理盒1安装于图像形成设备3时,以第二端部112的任意一点为基准点,触点部121与基准点在转动件11的轴向上的距离为L1,定位部13远离第二端部112的一面与基准点在转动件11的轴向上的最小距离为L2,L1>L2。
可选地,触点部121相对于盒主体14固定设置;或触点部121也可相对于盒主体14可移动设置,当然,在处理盒1安装于图像形成设备3时,上述两种设置方式也均需要满足L1>L2。
可选地,转动件11可为感光鼓。此外,转动件11也可为处理盒1上其他能够转动,且与感光鼓的轴向平行的部件,例如显影辊等。
因处理盒1在装入图像形成设备3的过程中,处理盒1能够被抬升,可能会使部分定位部13与部分电接触部311位于同一高度,导致部分定 位部13与部分电接触部311发生碰撞,造成电接触部311的损坏。本实施例中,以转动件11的第二端部112的任意一点为基准点,满足沿转动件11的轴向,芯片部件12上的触点部121到基准点的距离大于定位部13远离第二端部111的一侧到基准点的最小距离,使定位部13相对触点部121远离电接触部311。因触点部121会与电接触部311电连接,所以定位部13相对触点部121更远离电接触部311,即可保证处理盒1在装入图像形成设备3的过程中,定位部13不会与本体31上的电接触部311发生碰撞,避免影响触点部121与电接触部311电连接。并且,定位部13相对触点部12更远离电接触部311,能够减小在装入处理盒1的过程中定位部13与电接触部311发生位置干涉的可能性,防止处理盒1的定位部13被刮出颗粒碎屑,碎屑蹭到触点部121和电接触部311上,导致触点部121与电接触部311电连接不稳定的风险,保证处理盒1上的芯片部件12与本体31数据传输的稳定性。
可选地,处理盒1从图像形成设备3中取出时,也满足L1>L2。
进一步地,芯片部件12包括芯片本体,触点部121可以直接设于芯片本体上。
或者,芯片部件12还可以包括转接件,转接件分别与芯片本体及电接触部311电连接,触点部121为转接件上用于与电接触部311电连接的部分,实现触点部121间接设于芯片本体上。通过增加转接件电连接芯片本体与电接触部311,避免发生芯片本体与电接触部311未连接的情况,提高芯片本体与电接触部311电连接的稳定性。此时,触点部121可相对于芯片本体固定设置,或触点部121也可相对于芯片本体移动,使触点部121相对盒主体14可移动。例如,转接件为弹性件,在未将处理盒1安装到图像形成设备3时,转接件处于受压状态,当处理盒1安装到图像形成设备3时,转接件不再受压,使转接件上的电接触部311相对芯片本体移动。
在一些实施例中,触点部121与定位部13沿转动件11的轴向凸出盒主体14的端面。本实施例中,沿转动件11的轴向,将定位部13凸出盒主体14的端面设置,可使处理盒1安装至移动部件2时,定位部13能够与移动部件2的限位部21配合。将触点部121凸出盒主体14的端面设置, 可使处理盒1装入本体31时,触点部121能够与电接触部311电连接。因触点部121与定位部13距基准点的距离满足L1>L2,则触点部121为处理盒1上距离基准点最远的面,即处理盒1上没有其他部分到基准点的距离大于触点部121到基准点的距离,保证处理盒1装入本体31时,处理盒1上除了触点部121以外的其他部分不会与本体31上的电接触部311发生碰撞。
进一步地,第一端部111的端面与基准点在转动件11的轴向上的距离为La,其中,L1>L2>La。即,沿转动件11的轴向,触点部121远离第二端部112的一侧的距基准点的距离大于定位部13远离第二端部112的一侧距基准点的距离,使定位部13相对触点部121更靠近基准点,避免处理盒1安装于图像形成设备3时,定位部13与电接触部311接触,影响触点部121与电接触部311电连接。定位部13远离第二端部112的一侧距基准点的距离大于第一端部111距基准点的距离,使定位部13相对于第一端部111凸出,便于定位部13与移动部件2的限位部21配合。
如图10所示,在一些实施例中,处理盒1还包括芯片支架15,芯片部件12安装于芯片支架15。芯片支架15与定位部13可以为分体结构,二者均固定于盒主体14。或者,芯片支架15与定位部13也可以为一体结构,芯片支架15与定位部13通过模具一体成型制作,相比于分别制作芯片支架15和定位部13,提高效率。芯片支架15与定位部13一体成型时,部分芯片支架15可沿远离芯片部件12的方向延伸形成定位部13。
在一些实施例中,定位部13远离第二端部112的面包括第一区域及第二区域,第一区域设于第二区域远离芯片部件12的一侧,即第一区域为处理盒1安装于图像形成设备3的过程中,定位部13远离第二端部112的一面中与电接触部311在转动件11的轴向上的投影不重叠的区域。第二区域为处理盒1安装于图像形成设备3的过程中,定位部13远离第二端部112的一面中与电接触部311在转动件11的轴向上的投影重叠的区域。第二区域与基准点在转动件11的轴向上的距离小于L1,以限制该第二区域与电接触部311发生碰撞。
进一步地,定位部13远离第二端部112的面为具有缺口的圆环状面或圆面,缺口位于圆环状面或圆面靠近芯片部件12的一侧,圆环状面或 圆面靠近缺口的部分为第二区域。
如图10和图11所示,进一步地,第一区域还包括凸起16,凸起16沿定位部13朝远离第二端部112的方向延伸。处理盒1被安装于图像形成设备3的过程中,凸起16与电接触部311在转动件11的轴向上的投影也不重叠。如图11所示,沿转动件11的径向,凸起16设置在定位部13远离芯片部件12的一侧,且处理盒1装入本体31的过程中,凸起16与电接触部311在转动件11的轴向上的投影不重叠,即凸起16随移动部件2被抬高,凸起16也不会与本体31中的电接触部311发生位置干涉。
如图9和图10所示,其中,凸起16远离第一端部111的一侧到基准点的距离为L3,满足L3>L1,即凸起16远离第一端部111的一侧到基准点的距离大于触点部121远离第一端部111的一侧到基准点的距离,凸起16相对触点部121凸出设置,能够引导处理盒1安装至移动部件2。并且,该凸起16还能作为施力点,通过抬该凸起16将处理盒1从移动部件2中拆卸。
如图12至图15所示,在一些实施例中,处理盒1还包括按压机构,按压机构安装于芯片支架15,可带动芯片部件12相对芯片支架15运动。处理盒1未被安装于图像形成设备3时,按压机构压置芯片部件12,满足L2≥L1。本实施例中,处理盒1未被安装至打印机体31时,芯片部件12被按压机构压置,处于受压状态,使触点部121到基准点的距离小于定位部13到基准点的距离,以保护触点部121,减小触点部121因凸出受碰撞的风险。处理盒1装入本体31的过程中,芯片部件12能够被按压机构释放,触点部121能够被推动朝远离基准点的位置运动,以满足触点部121到基准点的距离大于定位部13到基准点的距离。
具体地,如图13和图15所示,按压机构可以包括弹性件18和锁定件17,弹性件18可以设置在芯片部件12与芯片支架15之间,锁定件17可沿转动件11的径向连接于芯片部件12的侧端。处理盒1未被安装于图像形成设备3时,锁定件17能够克服弹性件18的弹力压置芯片部件12,满足L2≥L1。其中,按压机构实际按压的为芯片部件12的芯片本体。处理盒1被安装于图像形成设备3的过程中,芯片部件12能够被锁定件17释放,弹性件18通过自身弹力带动触点部121朝远离转动件11的方向运 动,满足L1>L2。
其中弹性件18可以采用弹簧。
一实施例中,该按压机构可如现有的按动笔中的按压结构,按压芯片部件12,使芯片部件12被锁定件17锁定处于受压状态,此时弹性件18也处于压缩状态。处理盒被安装于图像形成设备的过程中,图像形成设备内的突出结构再次按压芯片部件12,芯片部件12能够被锁定件17释放,也解除对弹性件18的压缩,使弹性件18能够通过回弹力带动芯片部件12运动。
另一实施例中,在处理盒1未安装于图像形成设备3时,锁定件17至少部分位于芯片部件12远离第二端部112的一侧并与芯片部件12抵接,此时弹性件18受压;在处理盒1被安装于图像形成设备3的过程中,图像形成设备3内的突出结构推动锁定件17使锁定件17与芯片部件12分离,解除对弹性件18的压缩,使弹性件18能够通过回弹力带动芯片部件12运动。
此外,当触点部121能够相对于芯片部件12可移动设置时,锁定件17也可按压转接件或触点部121,使触点部121在处理盒1未安装于图像形成设备3时处于受压状态,并在处理盒1安装于图像形成设备3时解除锁定件17对触点部121的限制,使触点部121相对芯片部件12移动。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (16)

  1. 一种处理盒,用于图像形成设备,其特征在于,所述处理盒包括:
    盒主体;
    转动件,所述转动件设于所述盒主体,沿所述转动件的轴向,所述盒主体具有第一端部及第二端部;
    芯片部件,所述芯片部件设于所述盒主体,所述芯片部件包括用于与所述图像形成设备的电接触部电连接的触点部;
    定位部,所述定位部位于所述第一端部,所述定位部用于支撑在所述图像形成设备的移动部件上;
    其中,当所述处理盒安装于所述图像形成设备时,以所述第二端部的任意一点为基准点,所述触点部与所述基准点在所述转动件的轴向上的距离为L1,所述定位部远离所述第二端部的面与所述基准点在所述转动件的轴向上的最小距离为L2,L1>L2。
  2. 根据权利要求1所述的处理盒,其特征在于,所述触点部相对于所述盒主体固定设置。
  3. 根据权利要求1所述的处理盒,其特征在于,所述触点部相对于所述盒主体可移动设置。
  4. 根据权利要求1所述的处理盒,其特征在于,所述芯片部件包括芯片本体,所述触点部设于所述芯片本体上。
  5. 根据权利要求1所述的处理盒,其特征在于,所述芯片部件包括芯片本体及转接件,所述转接件用于分别与所述芯片本体及所述电接触部电连接,所述触点部为所述转接件上用于与所述电接触部电连接的部分。
  6. 根据权利要求1所述的处理盒,其特征在于,所述触点部与所述定位部沿所述转动件的轴向凸出所述盒主体的端面。
  7. 根据权利要求6所述的处理盒,其特征在于,所述第一端部的端面与所述基准点在所述转动件的轴向上的距离为La,其中,L1>L2>La。
  8. 根据权利要求1所述的处理盒,其特征在于,所述处理盒还包括芯片支架,所述芯片部件安装于所述芯片支架;
    所述芯片支架与所述定位部分体设置或者一体成型。
  9. 根据权利要求1-8任一项所述的处理盒,其特征在于,所述定位部远离 所述第二端部的面包括第一区域及第二区域,所述第一区域设于所述第二区域远离所述芯片部件的一侧,所述第二区域与所述基准点在所述转动件的轴向上的距离小于L1。
  10. 根据权利要求9所述的处理盒,其特征在于,所述第一区域设有凸起,所述凸起沿所述定位部朝远离所述第二端部的方向延伸;
    所述处理盒被安装于所述图像形成设备时,所述凸起与所述电接触部在所述转动件的轴向上的投影不重叠。
  11. 根据权利要求10所述的处理盒,其特征在于,所述凸起远离所述第二端部的一侧到所述基准点的距离为L3,满足所述L3>L1。
  12. 根据权利要求1-8任一项所述的处理盒,其特征在于,所述处理盒还包括按压机构;
    所述处理盒未被安装于所述图像形成设备时,所述按压机构压置所述芯片部件,满足L2≥L1。
  13. 根据权利要求12所述的处理盒,其特征在于,所述按压机构包括弹性件和锁定件;
    所述处理盒未被安装于所述图像形成设备时,所述锁定件能够克服所述弹性件的弹力压置所述芯片部件,满足L2≥L1;
    所述处理盒被安装于所述图像形成设备时,所述芯片部件能够被所述锁定件释放,所述弹性件通过自身弹力带动所述触点部朝远离所述转动件的方向运动,满足L1>L2。
  14. 一种处理盒组件,其特征在于,所述处理盒组件包括:
    移动部件;
    处理盒,所述处理盒安装于所述移动部件,所述处理盒为权利要求1~13中任一项所述的处理盒;
    其中,所述移动部件设有限位部,所述处理盒的定位部支撑于所述限位部。
  15. 根据权利要求14所述的处理盒组件,其特征在于,部分所述移动部件凹陷形成所述限位部;
    所述限位部的内表面形成有第一限位面,所述定位部的外表面形成有第一被限位面,所述处理盒安装于所述移动部件时,所述第一限位面与所述第一被限位面抵接。
  16. 一种图像形成设备,其特征在于,所述图像形成设备包括:
    本体,所述本体设有移动部件和电接触部;
    处理盒,所述处理盒为权利要求1~13中任一项所述的处理盒;
    所述处理盒安装于所述移动部件时,所述触点部与所述电接触部电连接。
PCT/CN2022/142112 2021-12-29 2022-12-26 一种处理盒、处理盒组件及图像形成设备 WO2023125459A1 (zh)

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