Enclosure structure and articles using the same
The housing structure with a footrest and gripping means allows safe tilting over obstacles without lifting, ensuring stability and ease of transportation while maintaining appearance quality.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- FUJIFILM BUSINESS INNOVATION CORP
- Filing Date
- 2022-06-16
- Publication Date
- 2026-05-26
AI Technical Summary
Existing housing structures with movable support means require lifting to overcome obstacles like steps that the support means cannot navigate, posing difficulties in safe and easy transportation.
A housing structure with movable support means featuring a footrest positioned between support points on the opposite side of the travel direction, allowing tilting without lifting, and a gripping means on the top for stable maneuvering, with the footrest concealed when not in use.
Enables safe and easy traversal of obstacles without lifting, maintaining stability and appearance quality, and enhancing portability and mobility.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a housing structure and an article using the same.
Background Art
[0002] Conventionally, for this type of housing structure, for example, Patent Documents 1 and 2 are already known. In Patent Document 1, in the rear end wall of the cart body, between two wheels located on the side of the rear end wall, a concave portion that is recessed inward in a plan view is formed. A foothold member for a worker to step on when raising the front end wall of the cart body with two wheels as a rotation axis is detachably provided in the concave portion. A cart is disclosed. In Patent Document 2, the height position of the push handle is adjusted according to the height of the worker. When the front wheel approaches a step, while stepping on the foothold area, pull the push handle forward to lift the front of the platform, place the front wheel on the step, hold the handle and lift the rear of the platform upward, and place the rear wheel on the step. A cargo carrier is disclosed.
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Patent Document 2
Summary of the Invention
Problems to be Solved by the Invention
[0004] The technical problem that the present invention aims to solve is to provide a housing structure and an article using the same that, when transporting an article consisting of a housing structure having a movable support means at the bottom, allows a single transporter to safely and easily tilt the housing to overcome a step that cannot be overcome by the movable support means, without having to lift the housing. [Means for solving the problem]
[0005] The invention according to claim 1 comprises a housing having a top and a bottom, with at least its sides enclosed by flat surfaces; a plurality of movable support means provided on the bottom of the housing, with support points at two locations separated in the width direction intersecting the predetermined direction of travel on the opposite side of the housing, and supporting the housing via movable wheels; a gripping means provided on the top or upper half of the side of the housing, which can be grasped by an operator's hand when the housing is tilted; and a footrest means provided on the bottom of the housing between two movable support means located on the opposite side of the direction of travel, which can be used to hook an operator's foot when the housing is tilted, wherein the footrest means is positioned on the side of the housing in the direction of travel with respect to the center position of the wheel diameters of the two movable support means. Furthermore, the footrest means is covered with a removable cover when not in use, and the cover is removed when in use. This is a housing structure characterized by the following features.
[0006] The invention according to claim 2 is a housing structure according to claim 1, characterized in that the footrest means is provided below the bottom of the housing and has a footrest portion on which the tip of the worker's foot can be hooked. The invention according to claim 3 is a housing structure according to claim 2, characterized in that the footrest means fixes a member constituting the footrest portion to a bottom frame constituting the bottom of the housing. 。 Claim 4 The invention relating to this claim is 1 In the housing structure relating to this, the footrest means is characterized in that it also serves as a mounting part to which a support component for preventing tipping is attached. Claim 5The invention relating to this invention is a housing structure according to claim 1, characterized in that the footrest means is arranged on the side of the housing in the direction of travel, including the center position of the wheel diameters of the two movable support means. Claim 6 The invention relating to this claim is 5 In the housing structure relating to the present invention, the footrest means is provided between the center position of the wheel diameters of the two movable support means and the bottom of the housing. Claim 7 The invention relating to this invention is a housing structure according to claim 1, characterized in that the gripping means is provided so as not to protrude outward from the side of the housing. Claim 8 The invention relating to this claim is 7 In the housing structure relating to the present invention, the gripping means is provided at the top of the housing and also serves as a support means for supporting a reading means that reads an object to be read placed at the top of the housing.
[0007] Claim 9 The invention relating to this invention is as follows: 8 The article is characterized by comprising a housing structure relating to one of the above, and various article elements mounted within the housing. [Effects of the Invention]
[0008] According to the invention of claim 1, when transporting an article consisting of a housing structure having a movable support means at the bottom, if it is necessary to cross a step that cannot be overcome by the movable support means, the housing can be tilted safely and easily by a single person without having to lift the housing, allowing the transporter to cross the step. Furthermore, the footrest can be concealed when not in use, improving the overall appearance and quality of the enclosure structure. According to the invention of claim 2, a footrest can be easily constructed. According to the invention of claim 3, the strength of the footrest can be increased. 。 Claim 4 According to the invention, it is possible to provide a housing structure that achieves both portability and stability during installation. Claim5 According to the invention according to , the housing can be inclined more stably as compared with an aspect in which the footrest means is disposed on the traveling direction side of the housing rather than at the center position of the wheel diameters of the two movable support means. Claim 6 According to the invention according to , it is possible to provide a housing structure that keeps the traveling performance good because the footrest means does not interfere with traveling when carrying an article. Claim 7 According to the invention according to , the appearance quality of the housing structure can be kept good with a narrow installation area as compared with a case where the gripping means projects outward from the side portion of the housing. Claim 8 According to the invention according to , the housing can be easily inclined by using an existing element as the gripping means without providing a dedicated gripping means. Claim 9 When carrying an article having a housing structure having movable support means movable at the bottom, when crossing a step that cannot be overcome by the movable support means, it is possible to construct an article including a housing structure that allows a carrier to safely and easily tilt the housing without lifting the housing and cross the step. Furthermore, it is possible to construct an item in which the footrest can be concealed when not in use, thereby improving the appearance quality of the enclosure structure.
Brief Description of the Drawings
[0009] [Figure 1] (a) is an explanatory view showing an outline of an embodiment of an article provided with a housing structure to which the present invention is applied, (b) is an explanatory view showing a main part of the housing structure shown in (a), and (c) is a view seen from the direction of arrow C in (b). [Figure 2] (a) is an explanatory view showing an appearance of an image forming apparatus as an article according to Embodiment 1, and (b) is an explanatory view showing an outline of the overall configuration of the image forming apparatus shown in (a). [Figure 3] (a) is an explanatory view showing a housing structure at the bottom of the image forming apparatus according to Embodiment 1, and (b) is an explanatory view showing a state where a bottom cover is removed from the housing structure at the bottom shown in (a). [Figure 4] (a) is an explanatory view showing an attachment structure of a footrest component according to Embodiment 1, and (b) is an explanatory view showing a configuration example of the footrest component. [Figure 5] (a) is a perspective view seen from the V direction in Fig. 4(a), and (b) is an explanatory view of a cross section taken along line B-B in (a). [Figure 6] It is an explanatory view showing an example of a bottom cover that hides the step parts. [Figure 7] (a) is an explanatory view showing the relative positional relationship between a caster with a fixed moving direction and a step part in the image forming apparatus according to Embodiment 1, and (b) is an explanatory view showing the relative positional relationship between a caster with a changing moving direction and a step part in the same image forming apparatus. [Figure 8] (a) is an explanatory view showing an example of the use of a step part when transporting the image forming apparatus according to Embodiment 1, and (b) is a perspective view seen from obliquely below (a). [Figure 9] (a) is an explanatory view showing the action by the step part used in the image forming apparatus according to Embodiment 1, and (b) is an explanatory view showing the action by the step part used in the image forming apparatus according to Comparative Form 1. [Figure 10] It is an explanatory view showing an example of a support part for preventing tipping used at the bottom of the housing structure of the image forming apparatus according to Embodiment 1. [Figure 11] It is an explanatory view showing the method of using the support part shown in Fig. 10. [Figure 12] It is a perspective view seen from the XII direction in Fig. 3(b). [Figure 13] (a) is an explanatory view showing the details of the XIII part in Fig. 12, and (b) is a perspective view seen from the B direction in (a). [Figure 14] It is an explanatory view showing the appearance of the image forming apparatus as an article according to Embodiment 2. [Figure 15] (a) is an explanatory view showing the periphery of the step part in the housing structure at the bottom of the image forming apparatus according to Embodiment 2, and (b) is an explanatory view showing the state where a support part for preventing tipping is attached to the step part shown in (a). [Figure 16] It is an explanatory view showing the overall configuration of the support part used in Embodiment 2. [Figure 17] It is an explanatory view showing the details around the lifting operation part of the support part shown in Fig. 16. [Figure 18] This is an explanatory diagram illustrating the principle of lifting and lowering operation by the lifting mechanism of the support component. [Figure 19] (a) is an explanatory diagram showing the state when the support components are installed, and (b) is an explanatory diagram of the cross-section of line BB in (a). [Figure 20] (a) is an explanatory diagram showing the state when the support component is retracted upward, and (b) is an explanatory diagram of the cross-section along line BB in (a). [Modes for carrying out the invention]
[0010] ◎Overview of the Embodiment Figure 1(a) shows an overview of an embodiment of an article equipped with a housing structure to which the present invention is applied. In the figure, article 6 comprises a housing structure including a housing 1 having a top 1a and a bottom 1b, with at least its sides 1c enclosed by a flat surface, and a movable support means 2 provided in multiple locations on the bottom 1b of the housing 1, with support points at two locations separated in the width direction intersecting the predetermined direction of travel on the opposite side of the housing 1, and supporting the housing 1 via movable wheels 2a, and various article elements mounted on this housing 1. The term "item 6" as used herein broadly includes multifunction devices that combine the functions of photocopiers, printers, scanners, and facsimile machines, as well as products such as home appliances and furniture, and is intended to be transported in a manner that allows it to be moved to the installation location using wheels 2a.
[0011] In particular, the housing structure according to this embodiment, as shown in Figures 1(a) to (c), includes a gripping means 3 provided on the top 1a or the upper half of the side 1c of the housing 1, which can be grasped by the operator's hand when the housing 1 is tilted, and a footrest means 4 provided between two movable support means 2 located on the opposite side of the direction of travel of the housing 1 at the bottom 1b of the housing 1, which can be hooked onto by the operator's foot when the housing 1 is tilted, with the footrest means 4 positioned on the side of the housing 1 in the direction of travel, with the center position Q of the wheel diameters 2a of the two movable support means 2 as the boundary. With this configuration, for example, when moving the item 6, even if there is a step or obstacle that the wheels 2a cannot easily overcome (such as a wiring cable cover), a worker can move the item 6 without lifting it. By gripping the gripping means 3 and placing their feet on the footrest means 4, the worker can maintain the item 6 in an inclined position and overcome the step or obstacle.
[0012] In such technical means, the housing 1 can be a box-shaped form having a top 1a and a bottom 1b, with at least the sides 1c enclosed by flat surfaces. Even if the housing 1 has a cavity in part that serves as a medium discharge section for, for example, paper, it is broadly included if the sides 1c other than the cavity are enclosed by flat surfaces. Furthermore, in order to move the housing 1 in any direction, at least one of the multiple movable support means 2 must have a wheel 2a whose direction of movement can be changed. For this reason, the two movable support means 2 located on opposite sides of the direction of travel of the housing 1 can be configured to have either a wheel 2a whose direction of movement is fixed, or a wheel 2a whose direction of movement can be changed.
[0013] Furthermore, the gripping means 3 may be provided as a dedicated element, or it may be an existing element used for multiple purposes. Also, the location of the gripping means 3 is not limited to being provided on the top 1a of the housing 1, but broadly includes being provided on the upper half of the side 1c. In this case, the worker can grip the housing 1 when tilting it while standing. However, in the case where the gripping means is provided on the lower half of the side 1c or the bottom 1b of the housing 1, it is difficult for the worker to grip the housing 1 when tilting it while standing. Also, in the case where a covering member such as a cover is provided around the bottom 1b of the housing 1 to the extent that it partially hides the wheels 2a of the movable support means 2, the covering member gets in the way, making it difficult to put your hands on the bottom 1b and lift it.
[0014] Furthermore, the footrest means 4 broadly includes those having a footrest portion 4a on which a worker's foot can be hooked. Here, the footrest portion 4a can be appropriately selected from recesses, footboards, etc., as long as it has a structure on which a foot can be hooked. Furthermore, regarding the positional relationship between the footrest 4 and the two movable support means 2 that sandwich it, as shown in Figure 1(c), the footrest 4 should be positioned on the side of the housing 1 in the direction of travel, with the center position Q of the wheel diameter 2a of the two movable support means 2 as the boundary. In this embodiment, with the positional relationship described, when tilting the housing 1, the point of force application F when the foot is placed on the footrest means 4 is located in front of the direction of travel of the housing 1 compared to the point of contact of the wheel 2a (corresponding to the pivot point S). Therefore, the force applied to the point of force application F generates a force that moves the housing 1 forward in the direction of travel. However, since the force associated with placing the foot also acts in a downward direction on the pivot point S of the wheel 2a, the rolling of the wheel 2a is suppressed, which is preferable.
[0015] In particular, in embodiments having a wheel 2a whose direction of movement changes, the wheel 2a has a pivot axis extending vertically, and in some embodiments, the center position Q of the wheel 2a diameter changes in the direction of travel of the housing 1 as the direction of movement of the wheel 2a changes. In such embodiments, regardless of the direction of movement of the wheel 2a, the footrest means 4 must be positioned on the side of the housing 1 in the direction of travel, with respect to the center position Q of the wheel 2a diameter.
[0016] Next, a representative or preferred embodiment of the housing structure according to this embodiment will be described. First, a preferred embodiment of the housing structure according to this embodiment is a configuration in which the footrest means 4 is provided below the bottom 1b of the housing 1 and has a footrest portion 4a on which the tip of the worker's foot can be hooked. Here, the footrest portion 4a may be provided integrally with the bottom 1b of the housing 1, but from the viewpoint of simple construction, it is preferable that the footrest means 4 is configured in which the member constituting the footrest portion 4a is fixed to the bottom frame constituting the bottom 1b of the housing 1. In this example, the footrest portion 4a will be subjected to forces associated with foot placement, but to prevent deformation even when subjected to forces associated with foot placement, a member with a cross-sectional shape that has high bending rigidity should be firmly fixed to the mounting portion by welding or the like.
[0017] Furthermore, from the standpoint of maintaining good external appearance quality of the housing structure when the footrest means 4 is not used, one possible configuration is to cover the footrest means 4 with a removable cover (not shown) when not in use, and remove the cover when in use. Furthermore, although the footrest means 4 functions as a footrest, it may also have other functions; for example, it may also serve as a mounting part to which a support component (not shown) for preventing tipping is attached.
[0018] Furthermore, a preferred configuration of the footrest 4 is one in which the two movable support means 2 that sandwich the footrest 4 are positioned on the side of the housing 1 in the direction of travel, including the center position Q of the wheel 2a diameter. In this example, the footrest 4 is configured such that the point of force application F and the fulcrum S are on the same straight line (the entrance position of the footrest 4 coincides with the center position Q of the wheel 2a diameter), and the rolling of the wheel 2a is further suppressed compared to when they are not arranged on the same straight line. Furthermore, another preferred configuration of the footrest 4 is one in which it is provided between the center position Q of the wheel diameters 2a of the two movable support means 2 that sandwich the footrest 4 and the bottom 1b of the housing 1. In this example, compared to the configuration in which the footrest 4 is positioned below the center position Q of the wheel diameters 2a, it is easier to secure the distance between the footrest 4 and the contact surface of the wheel 2a when transporting the item 6, thereby making it less likely for the footrest 4 to collide with obstacles and maintaining good mobility of the movable support means 2.
[0019] Furthermore, a preferred configuration of the gripping means 3 is one in which it is provided so as not to protrude outward from the side portion 1c of the housing 1. In this example, even with a housing structure having a small contact area, the gripping means 3 does not become an external protrusion that extends outward from the side portion 1c of the housing 1, and the appearance quality of the housing 1 is maintained. In particular, in this example, a preferred configuration of the gripping means 3 is one in which it is provided on the top 1a of the housing 1 and also serves as a support means 8 for supporting a reading means 7 that reads an object to be read placed on the top 1a of the housing 1. This configuration is preferable because it makes it easy for the operator to grip the object while standing and because it utilizes an existing element as the gripping means 3.
[0020] The present invention will be described in more detail below based on the embodiments shown in the attached drawings. ◎Embodiment 1 Figure 2(a) shows the overall configuration of the image forming apparatus as an article according to Embodiment 1. -Overall configuration of the image forming apparatus- In the figure, the image forming apparatus 20 comprises an apparatus housing 21 and various article elements necessary for image formation, which are mounted on the apparatus housing 21.
[0021] In this example, as shown in Figure 2(a), the device housing 21 has a top 21a and a bottom 21b, and is configured as a vertically elongated, roughly rectangular parallelepiped with sides 21c enclosed by flat surfaces. If the user operation side is considered the front side, then one side adjacent to the front side (the right side in the figure) has a cavity 21d closer to the top 21a. Furthermore, in this example, the elements necessary for image formation include, for example, as shown in Figure 2(b), an image-forming engine 30 mounted in the upper region of the device housing 21 and forming an image on a medium 41 such as paper; a medium supply device 40 mounted in the lower region of the device housing 21 and supplying the medium 41 such as paper to the image-forming engine 30; a medium discharge receiver 50 provided using the cavity 21d of the device housing 21 and discharging and storing the medium 41 that has been imaged by the image-forming engine 30; a medium transport system 60 that transports the medium 41 supplied from the medium supply device 40 to the medium discharge receiver 50 via the image-forming engine 30; and an imaging device (e.g., a camera) 70 as a reading means, positioned opposite and above the top 21a of the device housing 21 to read an object to be read placed on the top 21a of the device housing 21.
[0022] In this example, a support arm 71 with an L-shaped cross-section is provided on one side of the top 21a of the device housing 21. This support arm 71 has a vertical arm portion 71a that extends upward and a horizontal arm portion 71b that protrudes from the tip of the vertical arm portion 71a so as to face the top 21a, and the imaging device 70 is supported on the lower surface of the horizontal arm portion 71b. In this example, an operation panel mounting section 72 is provided in the middle of the vertical arm portion 71a of the support arm 71, to which an operation panel (not shown) for performing operations necessary for image formation on a control device (not shown) that controls the image formation engine 30, the media supply device 40, and the media transport system 60 is detachably held.
[0023] In this example, the image-forming engine 30 is equipped with, for example, multiple image-forming units 31 that form multiple color component images on multiple photoreceptors using an electrophotographic method, a belt-shaped intermediate transfer body 32 that temporarily transfers and transports the color component images from each image-forming unit 31, a transfer device 33 that transfers the primary transferred images on the intermediate transfer body 32 to a medium 41, and a fixing device 34 that fixes the images transferred to the medium 41, but it is of course not limited to this. In this example, the media supply device 40 is equipped with three media supply units, but the number and layout of these units can be modified as appropriate, and a manual feed type media supply unit may be added if necessary. Furthermore, the media discharge receiver 50 can be appropriately redesigned according to the discharge position of the media 41, and although this example employs a media transport system 60 that forms an image on one side of the media 41, it is also possible to form an image on both sides of the media 41 by adding, for example, a double-sided transport module.
[0024] -Bottom support structure of the device housing- In this example, the bottom support structure of the device housing 21 is provided at multiple locations (four corners in this example) on the lower surface of the bottom 21b of the device housing 21 and includes casters 22 as movable support means for transporting the device housing 21 in any movable manner, and support parts 23 for stably supporting the device housing 21 when installing the image forming apparatus 20.
[0025] <caster> In this example, as shown in Figures 3 to 5, the casters 22 are all configured to be movable in any direction. Mounting plates 81 are attached to the four corners of the lower surface of the bottom 21b of the device housing 21. Wheel holders 82 are rotatably mounted on these mounting plates 81 via bearings (not shown) with respect to a vertically suspended support shaft, and the wheel holders 82 are configured to rotatably hold the axles 84 of the pair of wheels 83. Reference numeral 85 in the figures indicates a stopper that stops the rotation of the wheels 83 of the caster 22. Furthermore, in this example, although all casters 22 have a configuration in which the direction of movement can change, in order to move the device housing 21 in any direction, it is sufficient that at least one caster 22 has a configuration in which the direction of movement can change, and the remaining casters 22 may have a fixed direction of movement (the wheel holder 82 does not rotate).
[0026] <Support parts> In this example, as shown in Figures 3 to 5, the support components 23 are provided, for example, on one side adjacent to the front side (left side in the figure) and approximately in the center of the rear side of the lower surface of the bottom 21b of the device housing 21, assuming the user operation side (U) is the front side. In this example, the drive system for the image forming engine 30 is mounted on the rear side of the device housing 21, and a cavity 21d is provided on the other side (right side in the figure) adjacent to the front side of the device housing 21. Furthermore, a support arm 71 is provided on the rear side of the top 21a of the device housing 21, and the imaging device 70 is supported by this support arm 71. Therefore, it is presumed that the center of gravity of the image forming apparatus 20 is shifted to the rear side, on the side adjacent to the front side of the device housing 21 (left side in the figure). For this reason, in this example, considering the center of gravity of the image forming apparatus 20, a support component 23 is installed on the bottom 21b of the device housing 21 on the side where the image forming apparatus 20 is most likely to tip over. Further details regarding the configuration of the support component 23 will be described later (see Figures 10 and 11).
[0027] -Footrest parts- <Necessity of installing footrests> In this example, for instance, when relocating or rearranging an office, it becomes necessary to move the image forming apparatus 20 within the office. At this time, the image forming apparatus 20 can be moved using the casters 22 after releasing the fixed state provided by the support parts 23. However, there may be obstacles on the office floor with steps, such as cable covers, that the casters 22 cannot overcome. In such cases, it is necessary to lift the image forming apparatus 20 in order to pass over obstacles with steps that the casters 22 cannot overcome. However, the image forming apparatus 20 is inherently heavy and requires considerable force to lift. Furthermore, as shown in Figure 3(a), a bottom cover 25 is sometimes attached to the lower edge of the side cover 24 that constitutes the side 21c of the apparatus housing 21, concealing the casters 22 to a height that partially hides them. In such a configuration, it is difficult to lift the apparatus housing 21 by placing one's hands on the bottom frame that constitutes the bottom 21b.
[0028] Therefore, in this embodiment, we have found a method that allows an operator to overcome obstacles with steps that cannot be overcome by the casters 22 by tilting the image forming apparatus 20 while standing, without having to lift the image forming apparatus 20. Specifically, as shown in Figures 2(a) and 3(b), a footrest component 100 is incorporated into the bottom 21b of the device housing 21 in an optimal position. By using the footrest component 100 as a footrest while simultaneously using the support arm 71 of the device housing 21 as a gripping component for the operator, the image forming apparatus 20 is stably held in an inclined position, and the casters 22 can easily overcome obstacles and steps.
[0029] <Example of bottom structure of the device housing> In this example, the bottom 21b of the device housing 21 is constructed of a bottom frame 90, as shown in Figures 3 to 5 and Figure 12. This bottom frame 90 has a roughly rectangular bottom plate 91, and left and right frame members and a rear frame member (hereinafter simply referred to as frame members 92 (see Figure 12)) are fixed to both the left and right sides and the rear side of the bottom plate 91 by welding or the like, except for the front side of the bottom plate 91. The left and right side frame members 92 and the rear side reinforce the left and right side and rear areas of the bottom plate 91, ensuring support strength for the four casters 22 and the two support parts 23.
[0030] Furthermore, the bottom plate 91 has a recess 94 with a roughly U-shaped cross-section that extends in the front-rear direction and is recessed downwards, within the area between the casters 22 located on both the left and right sides, and does not come into contact with the casters 22. The front frame material 95 is fixed to the front side of the bottom plate 91 by welding or the like without coming into contact with the installation surface 18 (see Figure 2(b)). Here, the shape and cross-sectional structure of each frame member 92, 95 may be selected as appropriate, but in this example, the frame members 92 on both the left and right sides and the rear side are selected and used from among those formed with a U-shaped cross-section, an L-shaped cross-section, or a closed cross-section.
[0031] <Mounting locations for footrest components> In this example, as shown in Figures 3 to 5, the footrest component 100 is provided between two casters 22 (e.g., 22a, 22b) located on the bottom frame 90 of the device housing 21, on the side opposite to the predetermined direction of travel of the device housing 21 (for example, direction H in Figure 4(a): corresponding to the direction from right to left when viewed from the front side of the device housing 21). Specifically, in the bottom frame 90, partition walls 97 that demarcate the recess 94 are formed on both sides of the recess 94, and protruding walls 98 that extend outwards from the partition walls 97 are formed on both sides. Casters 22 are positioned in front of and behind the protruding walls 98 of the L-shaped region enclosed by the partition walls 97 and the protruding walls 98, and a footrest component 100 is positioned between the casters 22 (specifically 22a, 22b) of the L-shaped region located on the opposite side of the direction of travel H of the device housing 21.
[0032] <Example of footrest component configuration> In this example, the footrest component 100 includes a footrest plate 101 integrally molded from a metal material such as SUS, as shown in Figures 4(a) and 4(b). The footrest plate 101 has an elongated rectangular footrest portion 102 on which the tip of the worker's foot rests, and a pair of side plate portions 103 bent at approximately right angles on both sides of the footrest portion 102, and the footrest portion 102 and the pair of side plate portions 103 are formed in a channel shape in cross-section. Furthermore, in this example, the width dimension w1 in the shorter direction of the tread portion 102 is set to be slightly longer than the width dimension w2 of the side plate portion 103, and the rear portion of the tread portion 102 is formed as a protruding portion 102a that protrudes from the side plate portion 103. Here, the dimensions of the footrest plate 101's tread portion 102 and the pair of side plate portions 103 are selected so that the space enclosed by the tread portion 102 and the pair of side plate portions 103 provides sufficient space to accommodate the tips of the worker's feet. Furthermore, the height dimension d of the pair of side plate portions 103 is selected to be approximately equal to the height dimension of the partition wall 97 of the recess 94.
[0033] <Mounting structure for footrest components> As shown in Figures 4 and 5, the mounting structure for the footrest component 100 is as follows: the footrest plate 101 is positioned so that its U-shape faces upward, the rear edge and upper end of the pair of side plates 103 of the footrest plate 101 are abutted against the partition wall 97 and the overhanging wall 98 of the bottom frame 90, the protruding portion 102a of the tread portion 102 of the footrest plate 101 is abutted against the lower edge of the partition wall 97 of the bottom frame 90, the protruding portion 102a of the tread portion 102 is fixed to the lower edge of the partition wall 97 by welding E, and the upper ends of the pair of side plates 103 are fixed to the lower surface of the overhanging wall 98 by welding E. As a result, the footrest component 100 is firmly attached to the bottom frame 90 and functions as a footrest FT when tilting the image forming apparatus 20. It goes without saying that methods other than those in this embodiment (such as fastening with fasteners) may be used for the mounting structure of the footrest component 100.
[0034] -Concealing structure for the footrest- In this example, as shown in Figure 3(a), the footrest FT is covered by a bottom cover 25, which serves as a covering means, when not in use, thus concealing it from external view. Furthermore, as shown in Figure 3(b), the footrest FT is exposed when in use by removing the bottom cover 25. In this example, the bottom cover 25 is attached to and detached from the lower edge of the side cover 24, which constitutes the side portion 21c of the device housing 21, via a detachment mechanism 110, as shown in Figure 6. Figure 6 is an explanatory diagram showing the side cover 24 and the bottom cover 25 as viewed from the inside.
[0035] Here, the attachment / detachment mechanism 110 includes, for example, a guide element 111 that guides the bottom cover 25 so that it can move horizontally along a guide portion provided on the lower edge of the side cover 24, a coupling element 112 that, when the bottom cover 25 is moved horizontally in a predetermined direction, hooks a hook piece provided on the upper edge of the bottom cover 25 onto a hook provided on the lower edge of the side cover 24 to connect the two, and a positioning element 113 that, when the two are connected by the coupling element 112, positions the relative positional relationship of the side cover 24 and the bottom cover 25 by, for example, a combination of a positioning pin and a positioning hole. According to the attachment / detachment mechanism 110 of this example, when removing the bottom cover 25, the positioning by the positioning element 113 is released, and the bottom cover 25 is moved in the direction J that releases the connection by the connecting element 112 along the lower edge of the side cover 24. Once the connection by the connecting element 112 is released, the bottom cover 25 is moved downward away from the side cover 24. When attaching the bottom cover 25, the reverse operation of the removal operation is performed. It should be noted that the attachment / detachment mechanism 110 is not limited to the embodiment shown in Figure 6.
[0036] -The positional relationship between the footrest and the caster- (1) Caster whose direction of movement changes In this example, as shown in Figure 7(a), the caster 22 moves in any direction. If the wheel holder 82 rotates in any direction around the pivot axis, and if the pivot axis is positioned offset from the center position Q of the wheel diameter 83, then the center position Q of the wheel diameter 83 may change within the range from the position shown by the dashed line in Figure 7(a) to the position shown by the solid line in Figure 7(a). Therefore, in this example, regardless of the direction of movement of the wheel 83, the footrest portion FT must be positioned on the side of the device housing 21 in the direction of travel H, with the center position Q of the wheel 83 diameter as the boundary. In particular, in this example, the entrance position of the footrest FT is selected to coincide with the center position Q of the wheel 83 when the center position Q of the wheel 83 is at the position shown by the solid line in Figure 7(a). Therefore, in this example, even if the direction of movement of the wheel 83 changes to another position, the entrance position of the footrest FT is positioned on the side of the direction of travel H of the device housing 21 that is greater than the center position Q of the wheel 83.
[0037] (2) Casters with a fixed direction of movement When the casters 22 located on both sides of the footrest FT are fixed in their direction of movement, as shown in Figure 7(b), the wheel holder 82 does not rotate around the pivot axis, so the center position Q of the wheel diameter 83 is uniquely determined and does not change. For this reason, in this example, the footrest FT only needs to be positioned on the side of the device housing 21 in the direction of travel H, with the center position Q of the wheel diameter 83 as the boundary. In particular, it is preferable that the entrance position of the footrest FT coincides with the center position Q of the wheel diameter 83.
[0038] - How to use the footrest - Now, when transporting the image forming apparatus 20, in order to pass over obstacles such as steps that cannot be overcome by the casters 22, the bottom cover 25 that covers the footrest FT is removed, as shown in Figures 3(a) and 3(b), thereby exposing the footrest FT. Subsequently, as shown in Figures 2(a) and 8(a)(b), the operator grasps the vertical arm portion 71a of the support arm 71 provided on the top 21a of the device housing 21, places the tip of the foot MF on the footrest portion FT so as to hook it, and uses the contact points of the wheels 83 of the casters 22 (specifically 22a, 22b) on both sides of the footrest portion FT as pivot points to tilt the image forming apparatus 20 so as to overcome the obstacle.
[0039] -Function of the footrest- In such a footrest section FT, as shown in Figure 9(a), when tilting the device housing 21, the point of force application F when the foot is placed on the footrest section FT is in front of the device housing 21 in the direction of travel, relative to the point of contact (corresponding to the pivot point S) of the wheel 83 of the caster 22. Therefore, the force applied to the point of force application F generates a force that causes the device housing 21 to move forward in the direction of travel. However, a rotational moment M acts on the wheel 83, which rotates in the opposite direction to the direction of travel, and the force associated with placing the foot on the wheel 83 also acts in a downward direction, so the rolling of the wheel 83 is suppressed. For this reason, even if the foot is placed on the footrest section FT and the image forming apparatus 20 is tilted, there is little concern that the device housing 21 will move unnecessarily via the caster 22, and it is possible to maintain the tilted position of the image forming apparatus 20 and overcome obstacles with steps. In particular, in this example, if the entrance position of the footrest FT coincides with the center position Q of the wheel 83 diameter, the point of force application F and the fulcrum S of the footrest FT will be on the same straight line, and the rolling of the wheel 83 will be further suppressed compared to when they are not arranged on the same straight line.
[0040] Furthermore, in this example, as shown in Figures 4 and 5, the footrest FT is fixed to the bottom frame 90 by welding E at two points on the ridge of the footrest plate 101 (the protruding part 102a of the tread plate 102 and the upper end of the side plate 103). In addition, the ridge of the far side edge of the side plate 103 of the footrest plate 101 is abutted against the partition wall 97 of the bottom frame 90, although not by welding. Thus, the footrest FT is fixed in three axial directions by the three ridges of the footrest plate 101, and the support strength of the footrest FT is sufficiently maintained.
[0041] In particular, in this example, a recess 94 is provided in the bottom plate 91 at the mounting location of the footrest FT on the bottom frame 90, and the overhanging wall 98 is reinforced with frame material 92 (see Figure 12). As a result, the support rigidity of the bottom frame 90 at the mounting location of the footrest FT is also higher, and the support strength of the footrest FT is kept more stable.
[0042] -Selection of the vertical width of the footrest- Furthermore, in this example, the footrest FT is provided between the center position Q of the wheel diameter 83 of the caster 22 and the lower surface of the protruding wall 98 of the bottom frame 90, as shown in Figures 7(a) and (b). In this configuration, where the footrest portion FT is positioned below the center position Q of the wheel diameter 83, when transporting the image forming apparatus 20, the distance between the footrest portion FT and the contact surface of the wheel 83 becomes narrower, making the footrest portion FT more likely to collide with obstacles and impairing the mobility of the casters 22. In this example, when transporting the image forming apparatus 20, a certain distance is maintained between the footrest FT and the contact surface of the wheel 83, making it less likely for the footrest FT to collide with obstacles and ensuring good maneuverability by the caster 22.
[0043] ◎Comparison Form 1 Figure 9(b) shows an example of the configuration of the footrest FT' related to comparative form 1. In the figure, the footrest FT' is positioned such that the footrest member 120 protrudes outward from the bottom 21b of the device housing 21, and the point of force application F of the footrest is located behind the fulcrum S of the wheel 83 of the caster 22 with respect to the direction of travel of the device housing 21. In this example, when tilting the device housing 21, if a foot is placed on the footrest member 120, the force associated with placing the foot on the wheel 83 will cause a rotational moment M to be applied to the wheel 83 in the direction of travel. This may cause the wheel 83 to roll more easily, raising concerns that it may become difficult to tilt the device housing 21 stably.
[0044] -Example of support component configuration- In this example, two support components 23 are provided, but the basic configuration of the support component 23 is as shown in Figures 10 and 11, and includes an adjuster foot 130 as a leg component for height adjustment and a receiving component 140 provided on the bottom frame 90 to receive and support the adjuster foot 130. Here, the adjuster foot 130 has a male threaded portion 133 formed over almost the entire length of the rod 132 that extends in the height direction, and a base portion 135 with a larger outer diameter than the male threaded portion 133 of the rod 132 is provided at the lower end of the rod 132. In this example, the rod 132 can be appropriately selected from any metal with high bending strength and excellent thread machinability; for example, SUM material, which has better thread machinability than steel, can be used.
[0045] Furthermore, the base portion 135 is formed using PC resin, ABS resin, or the like to create a disc-shaped base body, and a recess is formed in the center of this base body to accommodate the lower end of the rod 132. The lower end of the rod 132 is inserted into this recess and fixed in place with adhesive or the like. In addition, a grooved portion 136 is formed on the outer circumference of the base portion 135 to prevent slipping during rotational operation, and a stepped portion 137 is formed around the recess of the base portion 135. This increases the connection area between the recess of the base portion 135 and the lower end of the rod 132, thereby ensuring the connection strength between the two. In this example, a stepped portion 137 is shown on the base portion 135, but this stepped portion 137 is not necessarily required and can be selected as appropriate.
[0046] Furthermore, the receiving component 140 is provided on the upper plate material 92a of the frame frame material (specifically the left frame frame material or the rear frame frame material) 92 which is a component of the bottom frame 90, and includes a burring section 141 into which the male threaded portion 133 of the rod 132 is screwed, and a through hole 145 provided on the lower plate material 92b of the frame frame material 92 through which the rod 132 can pass.
[0047] In this example, the vertical distance g between the burring section 141 and the through hole 145 is selected so that when the adjuster foot 130 is lowered to the ground position (when height adjustment is performed), the rod 132 remains inserted through both the burring section 141 and the through hole 145. Here, when the adjuster foot 130 is subjected to the load when the image forming apparatus 20 is tilted, the rod 132 of the adjuster foot 130 will undergo elastic deformation. It is preferable that the diameter of the through hole 145 is selected so as to fall within the elastic deformation range of the rod 132. Furthermore, the through-hole 145 is shaped to a tolerance equal to or greater than the tolerance of the hole diameter of the burring section 141. It is preferable that this is done.
[0048] - How to use the support parts - <When adjusting height> When installing the image forming apparatus 20, as shown in Figures 10 and 11, rotating the base portion 135 of the adjuster foot 130 causes the male thread portion 133 of the rod 132 of the adjuster foot 130 to move in the direction of grounding along the female thread portion of the burring portion 141. For example, as shown by the dashed line in Figure 11, it is possible to lower the adjuster foot 130, which was retracted to the retracted position B, to the grounding position A shown by the solid line. When the adjuster foot 130 reaches the ground position A, the adjuster foot 130 maintains a state in which the rod 132 is inserted through the burring section 141, which is the receiving part 140, and the through hole 145.
[0049] <During evacuation> When installing the image forming apparatus 20, if the image forming apparatus 20 is moved using the casters 22 to select a desired installation location, the adjuster foot 130 should be held in the retraction position B shown by the dashed line in Figure 11 so that the support parts 23 do not interfere with the movement of the image forming apparatus 20. In this example, when the adjuster foot 130 is in the retracted position B, the base portion 135 and the stepped portion 137 of the adjuster foot 130 are positioned so as not to pass through the through hole 145, while the rod 132 of the adjuster foot 130 passes through the through hole 145 and the burring portion 141, and further penetrates the plate material 92a located above the frame material 92. In this example, a burring section 141 is used as the receiving part 140, but it is also possible to use a nut component instead.
[0050] -Caster protection structure- In this embodiment, in order to prevent damage to the casters 22 when they collide with an obstacle during the transport of the image forming apparatus 20, a structure is adopted to protect the casters 22 using the frame material that constitutes the bottom frame 90 of the apparatus housing 21, specifically the front frame material 95, as shown in Figures 12 and 13. In other words, in this example, the front frame material 95 that constitutes the bottom frame 90 of the device housing 21 functions as a protective component to protect the caster 22. In this example, the basic structure of the front frame member 95 has a long rectangular flat plate portion 95a extending in the left-right direction, and a U-shaped notch 95b is formed on the upper edge side of this flat plate portion 95a surrounding the recess 94 of the bottom plate 91 that constitutes the bottom frame 90, while on the lower edge side of the flat plate portion 95a there is a roughly L-shaped portion that is bent at an angle of less than 90 degrees relative to the flat plate portion 95a in a range corresponding to the area of the recess 94 of the bottom plate 91 A first bent portion 95c is formed, and on the lower edge side of the flat portion 95a, in areas other than the recess 94 region of the bottom plate 91, a second bent portion 95d is formed, which is connected in a roughly triangular shape with a gradually decreasing amount of bending from the area adjacent to the first bent portion 95c, and a third bent portion 95e is formed adjacent to the second bent portion 95d, which is bent in a roughly L-shape with a short amount of bending approximately equal to the minimum amount of bending of the second bent portion 95d. Furthermore, the front frame member 95 has its flat portion 95a welded to the front edge of the recess 94 of the bottom plate 91, and the leading edge of the first bent portion 95c is welded to the bottom outer surface of the recess 94 of the bottom plate 91.
[0051] (1) The longitudinal end position P1 of the front frame member 95 is located in an outer region greater than or equal to the outer end position of the caster 22, as shown in Figures 13(a) and 13(b). Here, the outer end position of the caster 22 basically refers to the position of the component of the caster 22 (mainly the wheel holder 82 and the wheel 83) that is located at the outermost end. However, in the case of the component stopper 85, since it is a movable element, even if it is located at the outer end position of the caster 22 when released, it is excluded if its position when restrained is not at the outer end position of the caster 22.
[0052] ◆Condition 1: When the longitudinal end position P1 of the front frame material 95 is located at the same position as the outer end position of the caster 22. Under these conditions, when the caster 22 collides with the obstacle 150, the leading edge of the front frame member 95, specifically the leading edge of the flat plate portion 95a, collides with the obstacle 150 simultaneously with the caster 22. As a result, the impact force from the collision is distributed between the caster 22 and the front frame member 95, thereby reducing the impact force on the caster 22 and suppressing its deformation. Under these conditions, the portion of the front frame member 95 that collides with the obstacle 150 is the flat plate portion 95a. However, since the impact force during the collision with the obstacle 150 is received along the longitudinal direction, the rigidity of the front frame member 95 is higher than that of the caster 22, making it possible to reduce the impact force acting on the caster 22.
[0053] ◆Condition 2: When the longitudinal end position P1 of the front frame material 95 is positioned further outward than the outer end position of the caster 22. Under these conditions, when the caster 22 collides with the obstacle 150, the leading edge of the front frame member 95, specifically the leading edge of the flat plate portion 95a, collides with the obstacle 150 first. Therefore, in this example, it is possible to avoid the caster 22 colliding with the obstacle 150. Under these conditions, even if the transport direction of the image forming apparatus 20 is oblique to the longitudinal direction of the front frame material 95, or if there are assembly tolerances in the apparatus housing 21 and casters 22, it is possible to avoid a situation where only the casters 22 collide with the obstacle 150, and the front frame material 95 can collide before the casters 22 collide.
[0054] (2) The longitudinal ends of the front frame members 95 are positioned at a distance that prevents contact when the caster 22 rotates in any direction. In this example, the relative positional relationship between the flat plate portion 95a of the front frame material 95 and the caster 22 is such that they are kept at a distance from each other and do not come into contact. Furthermore, although the second bent portion 95d and the third bent portion 95e of the front frame material 95 are located close to the caster 22, the amount of bending of the second bent portion 95d and the third bent portion 95e is sufficiently smaller compared to the first bent portion 95c. Therefore, there is no concern that the front frame material 95 and the caster 22 will interfere with each other.
[0055] (3) The lower end position P2 of the longitudinal end of the front frame member 95 is located in the lower region below the center position Q of the caster 22 (specifically, corresponding to the center position of the axle 84 of the wheel 83). Compared to the case where the lower end position P2 of the longitudinal end of the front frame member 95 is positioned above the center position Q of the caster 22, this configuration does not hinder overcoming obstacles 150 and effectively protects the caster 22. In particular, positioning the lower end position P2 of the longitudinal end of the front frame member 95 below the center position Q of the caster 22 is even more effective in protecting the caster 22.
[0056] (4) The front frame member 95 has a U-shaped notch 95b surrounding the recess 94 of the bottom plate 91, thereby maintaining the rigidity of the front edge of the bottom plate 91. In this example, a recess 94 is provided in advance in the bottom plate 91, and the bottom plate 91, along with the left and right frame members (not shown) and the rear frame member, is designed to ensure the rigidity of its surroundings with the front frame member 95. Therefore, the recess 94 in the bottom plate 91 can be effectively utilized, for example, as a housing for the lowest media supply section (not shown) of the media supply device 40.
[0057] (5) The front frame member 95 is positioned even further forward than the front caster 22. In this example, the front frame member 95 suppresses damage caused by the caster 22 colliding with an obstacle 150 at its longitudinal end, and by concealing it from the front with the flat plate portion 95a, it is possible to prevent situations such as the user's toes touching the caster 22 when operating it. (6) The front frame material 95 has a structure that protects the casters 22 located on both sides at both ends in the longitudinal direction. In this example, it is effective in protecting multiple casters 22 with a single front frame member 95.
[0058] (7) The front frame member 95 has a structure that includes not only a flat plate portion 95a but also first to third bent pieces 95c to 95e, which increases the rigidity of the front edge of the bottom plate 91 compared to a structure with only a flat plate portion 95a. In other words, the flat portion 95a is fixed to the front edge of the bottom plate 91, and the first bent portion 95c is fixed to the bottom lower surface of the recess 94 of the bottom plate 91, forming a closed cross-sectional structure with respect to the front side of the bottom plate 91. This makes it possible to increase the support rigidity of the front side of the bottom plate 91. Furthermore, in this example, the longitudinal end of the front frame member 95 has an L-shaped cross-section consisting of a flat plate portion 95a and a third bent portion 95e. As a result, the rigidity is higher compared to when the third bent portion 95e is absent, and consequently, it is possible to withstand the impact of an obstacle 150 without deformation.
[0059] ◎Embodiment 2 Figure 14 shows the main components of an image forming apparatus according to Embodiment 2. -Overall configuration of the image forming apparatus- In this example, the basic configuration of the image forming apparatus 20 is substantially the same as in Embodiment 1, comprising an apparatus housing 21 and various elements mounted on the apparatus housing 21 for forming images; however, the bottom support structure of the apparatus housing 21 differs from that of Embodiment 1. In other words, in this example, the bottom support structure of the device housing 21 is provided at multiple locations (four corners in this example) on the bottom surface of the device housing 21 and includes casters 22 as movable support means for transporting the device housing 21 so that it can be moved at will, and support parts 23 for stably supporting the device housing 21 when the image forming apparatus 20 is installed. The support parts 23 are attached using the footrest FT of Embodiment 1, as shown in Figures 15(a) and (b).
[0060] -Overall configuration of support components- In this example, the center of gravity of the image forming apparatus 20 is located approximately in the center of the apparatus housing 21 in a plan view, and the support components 23 are symmetrically provided on the lower part of the side (corresponding to the side) adjacent to the front (corresponding to the front side) of the apparatus housing 21, as shown in Figures 14 to 16. In this example, footrest components 100 are symmetrically incorporated into the lower left-right portion of the bottom frame 90, and a pair of footrest sections FT are provided. The basic configuration of the support component 23 includes a leg component 180 that contacts the installation surface 18 and supports the device housing 21, a lifting mechanism 200 provided at the bottom of the device housing 21 as a means for raising and lowering the leg component 180, and an operating handle 230 as an operating means for operating the lifting and lowering movement of the lifting mechanism 200.
[0061] - Leg parts - In this example, as shown in Figures 16 and 17, the leg component 180 is provided so as to be in contact with the installation surface 18 and has an outer leg portion 181 that extends outward from the outer surface of the device housing 21 through the gap between the lower part of the device housing 21 and the installation surface 18, an inner leg portion 190 that is positioned above the outer leg portion 181 and extends inward from the outer surface of the device housing 21, and a connecting portion 195 that connects the outer leg portion 181 and the inner leg portion 190 on the inner side of the outer surface of the device housing 21. In this example, the leg component 180 is formed by bending a single sheet of metal to create the outer leg portion 181, the inner leg portion 190, and the connecting portion 195. Here, the metal plate material used as the leg component 180 can be appropriately selected as long as it has the necessary rigidity to support the image forming apparatus 20. However, in this example, the thickness t1 of the leg component 180 (see Figure 19(b)) is selected to be thicker than the thickness of the frame material that constitutes the framework of the apparatus housing 21. Generally, the frame material is often made of plate material such as SUS with a thickness of 2 mm or less, but in this example, the leg component 180 is made of a metal plate material that is thicker than the frame material, for example, a metal plate material with a thickness of 4 mm.
[0062] <Outer leg> In this example, as shown in Figures 14, 16 to 18, the outer leg portion 181 is made of a long rectangular plate material that extends along the direction of the outer surface on the side of the device housing 21. Its length dimension L1 is longer than that of the inner leg portion 190, and is greater than or equal to the horizontal length dimension L0 of the outer surface on the side of the device housing 21 (greater than L0 in this example). Furthermore, the width dimension w3 of the outer leg portion 181 that protrudes outward from the outer surface on the side of the device housing 21 is selected considering the installation area including the leg component 180 relative to the height of the device housing 21, and taking into account its relationship with the length dimension L1 of the outer leg portion 181. Furthermore, to prevent damage to the mounting surface 18, the leg components 180 have long, rectangular elastic materials 182 attached to the underside of the outer leg portion 181, ensuring they do not protrude from the periphery of the outer leg portion 181. Here, the elastic material 182 is made of a hard elastic rubber (such as Poron rubber), although this depends on the weight of the image forming apparatus 20, assuming a somewhat heavy weight. Also, regarding the thickness of the elastic material 182, if it is too thick, there is a concern that the outer leg portion 181 may obstruct passage, so it is preferable to select a thickness of around 2 mm.
[0063] <Inner leg> In this example, as shown in Figures 17 and 18, the inner leg portion 190 is made of a rectangular plate material that extends in a direction along the outer surface of the side of the device housing 21, and has a length dimension L2 that is about 1 / 3 of the horizontal length dimension L0 of the outer surface of the side of the device housing 21, and is positioned near the center in the front-rear direction of the outer surface of the side of the device housing 21. In this example, the width dimension w4 of the inner leg portion 190 extending inward from the outer surface of the side of the device housing 21 can be selected as appropriate, but in this example it is slightly shorter than the width dimension w3 of the outer leg portion 181. Here, the load applied to the image forming apparatus 20 is transmitted from the inner leg portion 190 to the leg component 180. If the inner leg portion 190 is too small, a large load stress will act on the inner leg portion 190 and the connecting portion 195, requiring sufficient rigidity of the inner leg portion 190 and the connecting portion 195. On the other hand, by appropriately selecting the size of the inner leg portion 190 in consideration of the arrangement of surrounding components, it is possible to reduce the load stress acting on the inner leg portion 190 and the connecting portion 195, thereby simplifying the strength design of the inner leg portion 190 and the connecting portion 195.
[0064] <Connection section> In this example, the connecting portion 195 is made of a rectangular plate extending in a substantially vertical direction and has a length dimension similar to the length dimension L2 of the inner leg portion 190. The vertical dimension between the outer leg portion 181 and the inner leg portion 190 should be set to a value greater than the sum of the thickness of the operating handle 230 and the amount the leg component 180 is retracted upward when the image forming apparatus 20 is being transported. In this example, the connecting portion 195 is connected to the outer leg portion 181 and the inner leg portion 190 by a curved bend at the boundary. Furthermore, the connecting portion 195 has a rectangular opening 196 that allows a portion of the operating handle 230 to be exposed, ensuring that the leg component 180 and the operating handle 230 do not interfere with each other during the raising and lowering operation of the leg component 180.
[0065] - Lifting mechanism, mounting structure of the operating handle - In this example, the lifting mechanism 200 and the operating handle 230 are incorporated into the lower side of the bottom frame 90 that constitutes the bottom 21b of the device housing 21. The flanges at both ends of a fixing bracket 201, which has a roughly hat-shaped cross section in the direction along the outer side surface of the device housing 21 (corresponding to the front-to-back direction of the device housing 21), are fixed to the lower surface of the bottom frame 90 via fasteners 204 such as screws, and are used to incorporate the lifting mechanism 200 and the operating handle 230. Here, the fixing bracket 201 is formed to a size that allows it to accommodate the inner leg portion 190 of the leg component 180 in a non-contact manner within its inner region. Bent flanges 203 are formed on both left and right edges of the rectangular bottom wall 202 that intersect the front-rear direction of the device housing 21, rising upward, thereby increasing the surface rigidity of the bottom wall 202 of the fixing bracket 201. In this example, a wide, channel-shaped footrest component 100, a footrest plate 101, is welded to the lower surface of the bottom frame 90 so as to surround the fixing bracket 201, and the outer surface of the bottom wall 202 of the fixing bracket 201 is in contact with the inner surface of the stepping plate portion 102 of the footrest plate 101.
[0066] -Operating handle- In this example, as shown in Figures 16 to 18, the operating handle 230 has a disc-shaped handle body 231 integrally molded using, for example, PC resin or ABS resin. The outer circumference of the handle body 231 has a grooved portion 232 for preventing slippage during rotation. A cylindrical stepped portion 233 protruding in the thickness direction of the handle body 231 is formed in the center of one side of the handle body 231. A bottomed pin insertion hole 234 is formed on the side of the stepped portion 233 in the center of the handle body 231, into which one end of a metal shaft pin 235, which serves as the rotation axis, is housed. The shaft pin 235 is inserted into this pin insertion hole 234, and the end of the shaft pin 235 is fixed to the bottom of the pin insertion hole 234 on the back side of the handle body 231 with a fastener 236. A male threaded portion 213 is formed in the region near the tip of the shaft pin 235. In this example, the fixed bracket 201 and the footrest plate 102 have retaining holes 237 into which the stepped portion 233 of the operating handle 230 can be inserted. The operating handle 230 is held so that the stepped portion 233 is rotatably held in the retaining holes 237 of the fixed bracket 201, and an axle pin 235 is placed inside the fixed bracket 201. As will be described later, the axle pin 235 is engaged with the lifting mechanism 200, thereby holding the handle body 231 so that it can rotate at a fixed position on the lower surface of the footrest plate 101. In this state, the handle body 231 of the operating handle 230 is positioned so as to be exposed to the outside of the device housing 21 through an opening 196 made in the connecting portion 195 of the leg component 180. Here, the amount of protrusion m (see Figure 19) of the handle body 231 from the outer surface of the connecting portion 195 is sufficient to maintain good rotational operability of the operating handle 230, and can be appropriately selected within a range of about 5 to 10 mm (approximately 7 mm in the figure).
[0067] -Lifting mechanism- In this example, as shown in Figures 16 to 18, the lifting mechanism 200 has a lifting plate 205 as a lifting element that moves up and down in conjunction with the operation of the operating handle 230, and the inner leg portion 190 is raised and lowered in accordance with this lifting plate 205. Furthermore, the lifting mechanism 200 has inner legs 190 positioned on the lower surface of the lifting plate 205, and a biasing spring 220 (a coil spring is used in this example) as a biasing element that biases these inner legs 190 toward the lifting plate 205. Furthermore, the lifting mechanism 200 includes a guide mechanism 225, which serves as a guide element to guide the lifting plate 205 so that it can move up and down while being prevented from rotating.
[0068] <Lifting plate> In this example, as shown in Figures 16 to 18, the lifting plate 205 is made of a metal plate such as SUS and has a roughly rectangular plate body 206 that is roughly the same size as the inner leg portion 190 of the leg component 180. On the three rear sides of the plate body 206 in the front-rear and left-right directions of the device housing 21, there are bent flanges 207 that rise downwards, and a burring portion 210 is formed approximately in the center of the plate body 206, having a hole diameter into which the tip of the shaft pin 235 of the operating handle 230 can be inserted. The burring section 210 referred to here is formed by machining a hole in the plate body 206, then flange processing around the hole to create a rising flange 211 that protrudes upward, and further, forming a female threaded portion 212 on the inner circumference of the rising flange 211. The female threaded portion 212 may be formed simultaneously with the flange processing, or it may be formed after the flange processing.
[0069] Furthermore, a male threaded portion 213 is formed in the area near the tip of the shaft pin 235 of the operating handle 230, and this male threaded portion 213 is positioned in a state where it is screwed into the female threaded portion 212 of the burring process portion 210. In this example, a burring section 210 is formed on the lifting plate 205, but this is not the only option. Alternatively, a through hole may be created through which the male threaded portion 213 of the shaft pin 235 of the operating handle 230 passes, a nut component may be fixed around this through hole, and the male threaded portion 213 of the shaft pin 235 may be screwed into the female threaded portion of the nut component. In this example, the inner leg portion 190 of the leg component 180 is positioned on the lower surface of the lifting plate 205, and a through hole 191 is provided in the area of the lifting plate 205 corresponding to the burring portion 210, through which the male threaded portion 213 of the shaft pin 235 can pass, as shown in Figure 18. In this example, the lifting mechanism 200 uses a lifting plate 205, but it is also possible to form a female threaded portion in the through hole 191 of the inner leg portion 190 without using the lifting plate 205, and screw in the male threaded portion 213 of the shaft pin 235.
[0070] <Biasing spring, guide mechanism> Furthermore, in this example, as shown in Figures 16 to 18, the guide mechanism 225 has a pair of guide pins 226 fixed upward with fasteners 227 such as screws on the bottom wall 202 of the fixed bracket 201 at positions approximately symmetrical with respect to the front-rear direction of the device housing 21, with the holding hole 237 in between. In addition, a pair of guide holes 228 and 229 are provided in the inner leg portion 190 of the lifting plate 205 and the leg component 180, through which the pair of guide pins 226 can pass. Although the fasteners 227 are exposed on the outer surface of the bottom wall 202 of the fixed bracket 201, the footrest plate 101 has a relief hole (not shown) in the step portion 102 to avoid interference with the fasteners 227. Therefore, in this example, the lifting plate 205 and the inner leg portion 190 of the leg component 180 are guided to move up and down along the guide pins 226 while being prevented from rotating, by inserting a pair of guide pins 226 into a pair of guide holes 228 and 229. In this example, a biasing spring 220 is wrapped around a pair of guide pins 226, and this biasing spring 220 is interposed in a compressed state between the inner surface of the bottom wall 202 of the fixing bracket 201 and the lower surface of the inner leg portion 190 of the leg component 180. Therefore, in this example, the biasing spring 220 biases the inner leg portion 190 of the leg component 180 to press towards the lifting plate 205. Thus, when the lifting plate 205 moves up and down, the inner leg portion 190 of the leg component 180 moves up and down in accordance with the lifting plate 205.
[0071] - How to use the support parts - <When installing an image forming apparatus> When installing the image forming apparatus 20, as shown in Figures 19(a) and (b), the operating handle 230 of the support component 23 should be rotated in the appropriate direction to lower the leg component 180 so that the outer leg portion 181 of the leg component 180 comes into contact with the installation surface 18. In this example, when the operating handle 230 is rotated along the winding direction of the male threaded portion 213 of the shaft pin 235, the handle body 231 of the operating handle 230 rotates to a fixed position, and the male threaded portion 213 is screwed into the female threaded portion 212 of the burring portion 210. In this state, as the screwing operation of the shaft pin 235 of the operating handle 230 progresses, the lifting plate 205 is pulled downward and descends against the biasing force of the biasing spring 220, and the inner leg portion 190 follows the descent of the lifting plate 205 and descends against the biasing force of the biasing spring 220.
[0072] At this time, a rotational moment M acts on the lifting plate 205 as the operating handle 230 is rotated, but the lifting plate 205 is prevented from rotating by the guide mechanism 225 (guide pin 226, guide hole 228), so it descends stably along the guide pin 226. In addition, the rotational moment M from the operating handle 230 does not directly act on the inner leg portion 190 of the leg component 180, but a rotational moment M acts indirectly from the contact point between the two due to the pressure contact with the lifting plate 205. However, the inner leg portion 190 of the leg component 180 is prevented from rotating by the guide mechanism 225 (guide pin 226, guide hole 229), so it descends stably along the guide pin 226.
[0073] Furthermore, in this example, the lifting plate 205 has bent flanges 207 along three sides of the plate body 206, and these bent flanges 207 are positioned opposite the side plate portion 103 of the footrest plate 101 and the vertical wall which is part of the bottom frame 90 of the device housing 21. Therefore, there is no concern that the lifting plate 205 will tilt when descending, and it descends while maintaining a nearly horizontal posture. Furthermore, the inner leg portion 190 of the leg component 180 is surrounded by the bent flange 207 that encloses three sides of the lifting plate 205, and the three sides of the inner leg portion 190 are positioned opposite the bent flange 207 of the lifting plate 205 in close proximity. Therefore, there is no concern that the position of the inner leg portion 190 will tilt during descent, and it will descend while maintaining a nearly horizontal position.
[0074] Furthermore, when the leg component 180 is in contact with the installation surface 18, as shown in Figures 16 and 19(a) and (b), the outer leg portion 181 of the leg component 180 is positioned in contact with the installation surface 18 with the outer leg portion 181 protruding outward from the outer surface of the device housing 21. In this case, the thickness t of the outer leg portion 181 is the sum of the thickness t1 of the metal plate portion and the thickness t2 of the elastic material 182 on the back side, but it can be kept to approximately 7 to 10 mm, so there is little concern that the outer leg portion 181 will obstruct passage. Furthermore, in this example, as shown in Figure 14, the outer legs 181 have a length L1 that is longer than the front-to-back length L0 of the device housing 21 on both the left-to-right sides of the device housing 21. Therefore, assuming that a load in the tilting direction acts on the image forming apparatus 20, this load is transmitted to the outer legs 181 via the inner legs 190 and connecting parts 195. However, because the installation area of the outer legs 181 extends over a wide area in the front-to-back direction, straddling the center of gravity of the image forming apparatus 20, the load is efficiently distributed.
[0075] -During transport of image forming equipment- When transporting the image forming apparatus 20 without removing the support component 23, as shown in Figures 20(a) and 20(b), the operating handle 230 of the support component 23 should be rotated in the appropriate direction to raise the leg component 180 so that the outer leg portion 181 of the leg component 180 is retracted upward from the installation surface 18. In this example, when the operating handle 230 is rotated along the opposite direction to the winding direction of the male threaded portion 213 of the shaft pin 235, the handle body 231 of the operating handle 230 rotates to a fixed position, and the male threaded portion 213 is screwed in in a direction that disengages it from the female threaded portion 212 of the burring portion 210. In this state, as the screwing operation of the shaft pin 235 of the operating handle 230 progresses, the lifting plate 205 is pulled upward, and the inner leg portion 190 is biased toward the lifting plate 205 by the biasing force of the biasing spring 220 and rises in accordance with the upward movement of the lifting plate 205.
[0076] In this example, the range of motion of the leg component 180 by the lifting mechanism 200 depends on the constraints of the location (mounting area) where the lifting mechanism 200 and the operating handle 230 are housed, and the maximum amount of floating h of the outer leg portion 181 of the leg component 180 is determined by the range of motion of the lifting mechanism 200. When transporting the image forming apparatus 20, from the viewpoint of maximizing the transportability by the casters 22, it is preferable that the maximum lift amount h of the leg component 180 exceeds the height from the installation surface 18 to the center position Q of the caster 22's wheel 83. If the maximum lift amount h of the leg component 180 cannot be sufficiently secured, and there is an obstacle (not shown) on the installation surface 18, and the height dimension of the obstacle is less than or equal to the diameter of the caster 22, the caster 22 can overcome the obstacle. However, there is a concern that the leg component 180, with its small maximum lift amount h, will hit the obstacle, impairing the transportability of the image forming apparatus 20 by the casters 22. Furthermore, the anti-rotation operation of the lifting plate 205 and the inner leg portion 190 of the leg component 180, as well as the tilt suppression operation, are substantially the same as when the image forming apparatus 20 is installed.
[0077] Furthermore, when removing the support component 23 and transporting the image forming apparatus 20, as in Embodiment 1, the worker should grasp the vertical arm portion 71a of the support arm 71 provided on the top portion 21a of the apparatus housing 21, as shown in Figure 14, and place the tip of the foot MF on the footrest portion FT, as shown in Figure 15(a). Using the contact points of the wheels 83 of the casters 22 (specifically 22a, 22b) on both sides of the footrest portion FT as pivot points, the worker should tilt the image forming apparatus 20 to overcome obstacles.
[0078] (Note) (((1))) A housing having a top and a bottom, and at least its sides being enclosed by flat surfaces, Multiple movable support means are provided at the bottom of the housing, with two support points located at different widthwise locations on the opposite side of the housing from a predetermined direction of travel, and the housing is supported via movable wheels. A gripping means provided on the top or upper half of the side of the housing, which can be grasped by the operator's hand when the housing is tilted, The housing is provided with a footrest between two movable support means located on the opposite side of the housing's direction of travel at its bottom, and which allows an operator to hook their foot onto the housing when it is tilted. The housing structure is characterized in that the footrest means is arranged on the side of the housing in the direction of travel, with the center position of the wheel diameters of the two movable support means as the boundary. (((2))) In the enclosure structure described in (((1))), The aforementioned footrest means is provided below the bottom of the housing and has a footrest portion on which the tip of the worker's foot can be hooked and rested, characterized in that housing structure. (((3))) In the enclosure structure described in (((1))) or (((2))), The aforementioned footrest means is characterized by fixing a member constituting the footrest portion to a bottom frame that constitutes the bottom of the housing. (((4))) In the enclosure structure described in any of (((1))) to (((3))), The aforementioned footrest means is covered by a removable cover when not in use, and the cover is removed when in use, characterized in that the housing structure is such that the footrest means is covered by a removable cover when not in use. (((5))) In the enclosure structure described in any of (((1))) to (((4))), The aforementioned footrest means is characterized in that it also serves as a mounting part to which a support component for preventing tipping is attached. (((6)))) In the enclosure structure described in any of (((1))) to (((5))), The housing structure is characterized in that the footrest means is positioned on the side of the housing in the direction of travel, including the center position of the wheel diameters of the two movable support means. (((7))) In the enclosure structure described in any of (((1))) to (((6))), The housing structure is characterized in that the footrest means is provided between the center position of the wheel diameters of the two movable support means and the bottom of the housing. (((8))) In the enclosure structure described in any of (((1))) to (((7))), The housing structure is characterized in that the gripping means is provided so as not to protrude outward from the side of the housing. (((9))) In the enclosure structure described in (((8))), The housing structure is characterized in that the gripping means is provided on the top of the housing and also serves as a support means for supporting a reading means that reads an object to be read placed on the top of the housing. (((10))) A housing structure as described in any of (((1))) to (((9))), Various article elements mounted within the aforementioned housing, An article characterized by having the following features.
[0079] According to the housing structure of (((1))), when transporting an article consisting of a housing structure having a movable support means at the bottom, if it is necessary to cross a step that cannot be crossed by the movable support means, the housing can be tilted safely and easily by a single person without having to lift the housing, allowing the transporter to cross the step. According to the housing structure of (((2))), a footrest can be easily constructed. According to the housing structure of (((3))), the strength of the footrest can be increased. According to the housing structure of (((4))), the footrest can be concealed when not in use, and the appearance quality of the housing structure can be improved. According to the enclosure structure of (((5))), it is possible to provide an enclosure structure that achieves both portability and stability during installation. According to the housing structure of (((6))), the housing can be tilted more stably than in the configuration in which the footrest means is positioned on the direction of travel side of the housing than the center position of the leg wheel diameter of the two movable support means. According to the housing structure of (((7))), the footrest means does not obstruct movement when transporting goods, and a housing structure that maintains good maneuverability can be provided. According to the housing structure of (((8))), compared to the case where the gripping means protrudes outward from the side of the housing, the appearance quality of the housing structure can be maintained in a small installation area. According to the housing structure of (((9))), the housing can be easily tilted by using existing elements as gripping means, without providing dedicated gripping means. According to the article relating to (((10))), when transporting an article consisting of a housing structure having a movable support means at the bottom, it is possible to construct an article that includes a housing structure that allows a single transporter to safely and easily tilt the housing to overcome a step that cannot be overcome by the movable support means, without having to lift the housing. [Explanation of Symbols]
[0080] 1…Housing, 1a…Top, 1b…Bottom, 1c…Side, 2…Movable support means, 2a…Wheel, 3…Gripping means, 4…Footrest means, 4a…Footrest part, 6…Article, 7…Reading means, 8…Support means, Q…Center position of wheel diameter, F…Point of force application, S…Fulfillment point
Claims
1. A housing having a top and a bottom, and at least its sides being enclosed by flat surfaces, Multiple movable support means are provided at the bottom of the housing, with two support points located at different widthwise locations on the opposite side of the housing from a predetermined direction of travel, and the housing is supported via movable wheels. A gripping means provided on the top or upper half of the side of the housing, which can be grasped by the operator's hand when the housing is tilted, The housing is provided with a footrest between two movable support means located on the opposite side of the housing's direction of travel at its bottom, and which allows an operator to hook their foot onto the housing when it is tilted. The footrest means is positioned on the side of the housing in the direction of travel, with the center position of the wheel diameters of the two movable support means as the boundary. The aforementioned footrest means is covered by a removable cover when not in use, and the cover is removed when in use, characterized in that the housing structure is such that the footrest means is covered by a removable cover when not in use.
2. In the housing structure described in claim 1, The aforementioned footrest means is provided below the bottom of the housing and has a footrest portion on which the tip of the worker's foot can be hooked and rested, characterized in that housing structure.
3. In the housing structure described in claim 2, The aforementioned footrest means is characterized by fixing a member constituting the footrest portion to a bottom frame that constitutes the bottom of the housing.
4. In the housing structure described in claim 1, The aforementioned footrest means is characterized in that it also serves as a mounting part to which a support component for preventing tipping is attached.
5. In the housing structure described in claim 1, The housing structure is characterized in that the footrest means is positioned on the side of the housing in the direction of travel, including the center position of the wheel diameters of the two movable support means.
6. In the housing structure described in claim 5, The housing structure is characterized in that the footrest means is provided between the center position of the wheel diameters of the two movable support means and the bottom of the housing.
7. In the housing structure described in claim 1, The housing structure is characterized in that the gripping means is provided so as not to protrude outward from the side of the housing.
8. In the housing structure described in claim 7, The housing structure is characterized in that the gripping means is provided on the top of the housing and also serves as a support means for supporting a reading means that reads an object to be read placed on the top of the housing.
9. A housing structure according to any one of claims 1 to 8, Various article elements mounted within the aforementioned housing, An article characterized by having the following features.