JP2013144042A - Fixture and image forming apparatus - Google Patents

Fixture and image forming apparatus Download PDF

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JP2013144042A
JP2013144042A JP2012005884A JP2012005884A JP2013144042A JP 2013144042 A JP2013144042 A JP 2013144042A JP 2012005884 A JP2012005884 A JP 2012005884A JP 2012005884 A JP2012005884 A JP 2012005884A JP 2013144042 A JP2013144042 A JP 2013144042A
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opening
floor
top plate
wall
fixed
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JP5899942B2 (en
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Yuki Kikushima
祐樹 菊島
Kazuhiro Shimojima
一浩 下島
Masami Takeshita
雅美 竹下
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Ricoh Co Ltd
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Ricoh Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a fixture that is hardly separated from a leg part even in an earthquake or the like, prevents an object to be fixed from moving or falling, and can be easily mounted to an object to be fixed that has already been installed.SOLUTION: When an object 20 to be fixed which is supported by a plurality of legs formed of shafts 11 for supporting the object 20 to be fixed, and a rotating part 12 for supporting the object 20 to be fixed in cooperation with the shaft 11 is installed, a fixture 1 can be attached to the legs. The fixture includes: a floor plate 2 positioned at one side; a top plate 4 positioned at the other end; and a shape having a wall 3 between the floor plate 2 and the top plate 4 for connection thereof. The floor plate 2 has: a fastening hole 5 for a fastening tool to be fastened to the install floor; a first opening 6 having formed from the wall 3 through the top plate 4, and having an opening width 6a wide enough for the rotating part to be inserted when the rotating part 12 is in a certain rotating posture among rotating posture thereof; and a second opening 7 formed in the top plate 4, communicating with the first opening 6, and having an opening width narrowed toward a downstream side of an insertion direction of the rotating part 12 such that the shaft 11 can fit therein.

Description

本発明は、固定具および画像形成装置に関する。さらに詳述すると、被固定物を床面に固定する際に用いる固定具、および該固定具を用いて設置される画像形成装置に関する。   The present invention relates to a fixture and an image forming apparatus. More specifically, the present invention relates to a fixing tool used when fixing an object to be fixed to a floor surface, and an image forming apparatus installed using the fixing tool.

オフィス、工場、家庭などの床に各種の装置、構造物を設置する際には、地震等の発生時においても、装置等が転倒して、故障、破損することや周囲の人に怪我をさせてしまうといった事態を防ぐことが重要である。このため、装置等を転倒防止のための固定具(耐震金具、固定金具ともいう)を用いて床面に設置することが広く行われている。   When installing various devices and structures on the floor of offices, factories, homes, etc., even in the event of an earthquake, etc., the devices may fall over, causing failure, damage, and injury to surrounding people. It is important to prevent such situations. For this reason, installing the apparatus etc. on the floor surface using the fixing tool (it is also called a seismic-proof metal fitting and a fixing metal fitting) for prevention of falling is widely performed.

このような地震発生時等における転倒防止のための固定具として、例えば、特許文献1には、二重床構造の床に電子機器を設置する際の転倒防止に関する技術が開示されている。特許文献1は、U字型の切り欠き(開口)を有する耐震金具を電子機器の4本の台足(脚部)に取り付け、各耐震金具を2本のボルトで床面に固定することにより転倒防止を図るものである。   As a fixture for preventing overturning in the event of such an earthquake, for example, Patent Document 1 discloses a technique relating to overturning prevention when an electronic device is installed on a floor having a double floor structure. In Patent Document 1, an earthquake-resistant fitting having a U-shaped notch (opening) is attached to four pedestals (legs) of an electronic device, and each earthquake-resistant fitting is fixed to the floor surface with two bolts. It is intended to prevent falls.

また、特許文献2には、U字型の切り欠きを有する固定金具を家具のアジャスタの軸部の異なる方向から挟みこんで組み合わせ、各固定金具を2本のボルトで床面に固定することで家具の転倒防止を図る技術が開示されている。   Further, in Patent Document 2, a fixing bracket having a U-shaped notch is sandwiched and combined from different directions of a shaft portion of a furniture adjuster, and each fixing bracket is fixed to the floor surface with two bolts. Techniques for preventing furniture from falling are disclosed.

しかしながら、特許文献1のように、1本の台足を1つのU字型の切り欠きを有する耐震金具で固定する方式では、地震発生時等に、U字の開口方向への抜けが生じやすく、また、U字の側部方向へ加振に対応するため、床面に固定するボルトを複数本にして耐震金具自体の回転を防止する必要がある。すなわち、床面に固定するボルトを1本にするとU字の側部方向への加振時に、耐震金具が台足の軸部に連れ回りしして、U字の開口側から台足が外れてしまうことが生じ得る。   However, in the method of fixing one foot with an earthquake-resistant metal fitting having one U-shaped notch as in Patent Document 1, the U-shaped opening in the opening direction is likely to occur when an earthquake occurs. Moreover, in order to respond to the vibration in the direction of the U-shaped side, it is necessary to prevent the earthquake-resistant metal fitting itself from rotating by using a plurality of bolts to be fixed to the floor surface. In other words, if one bolt is fixed to the floor, the seismic bracket rotates with the shaft part of the foot when the U-shaped side is vibrated, and the foot is detached from the U-shaped opening side. Can occur.

これに対し、耐震金具から台足が抜けないようにするために、切り欠き部を穴形状として、そこに台足の軸部を通して固定することも考えられるが、台足は、一般に軸部よりも径の大きいベース部を有しているので、台足を取り外ししなければ耐震金具を取付けることができず、既存の装置には取付けることは困難であった。また、台足の着脱ができない装置には、取付けることができない。   On the other hand, in order to prevent the foot from coming off from the seismic bracket, it is conceivable to make the notch part a hole shape and fix it there through the shaft part of the foot. Since the base portion has a large diameter, the seismic bracket cannot be attached unless the pedestal is removed, and it is difficult to attach it to an existing apparatus. Also, it cannot be attached to a device that cannot be attached or detached.

また、特許文献2のように、2枚の固定金具を使用して台足を固定する場合、2枚の取付け位置がずれないように調整したうえで固定する必要があり、固定作業が煩雑となる。また、1つの台足に2つの固定金具を用いることが必要であり、かつ、2つの固定金具は起立壁の高さが異なる必要があるため同一形状とすることはできず、製造コストもかかってしまう。   Also, as in Patent Document 2, when fixing the foot using two fixing brackets, it is necessary to adjust the mounting position so that the two mounting positions do not deviate, and the fixing work is complicated. Become. In addition, it is necessary to use two fixing brackets for one foot, and the two fixing brackets cannot have the same shape because the height of the standing wall needs to be different. End up.

そこで本発明は、脚部のベース部分である回動部の大きさと固定具の切り欠き幅との関係を所定の関係として、被固定物の1本の脚部に対し、1枚の固定具および1本の締結具を用いて地震時等にも脚部から外れにくく被固定物の移動、転倒防止を図ることができ、かつ、設置済みの被固定物にも容易に後付けすることができる固定具、および該固定具を用いて設置される画像形成装置を提供することを目的とする。   In view of the above, the present invention provides one fixing tool for one leg portion of an object to be fixed, with the relationship between the size of the rotating portion, which is the base portion of the leg portion, and the notch width of the fixing device being a predetermined relationship. In addition, it is possible to prevent the object to be detached from the leg part during an earthquake or the like by using one fastener, and to prevent the object to be moved and toppled over, and it can be easily attached to the object already installed. It is an object of the present invention to provide a fixing tool and an image forming apparatus installed using the fixing tool.

かかる目的を達成するため、本発明に係る固定具は、それぞれが被固定物を支持する軸部と、該軸部の鉛直方向下部に設けられて該軸部と共に前記被固定物を支持する回動部と、からなる複数の脚部により支持される前記被固定物を設置する際に、前記脚部に取付け可能な固定具であって、一端側に位置する床板部と、他端側に位置する天板部と、前記床板部と前記天板部との間を壁部で連結してなる形状を有し、前記床板部は、設置床に締結するための締結具用の締結孔を有し、前記壁部の前記天板部側および前記天板部の前記壁部側に亘り形成され、前記回動部の回転姿勢のうち一部の回転姿勢の状態で挿入可能な開口幅を有する第一開口部と、前記天板部に形成され、前記第一開口部と連通し、前記回動部の挿入方向下流側に向けて開口幅が前記軸部を嵌合可能に狭められた第二開口部と、を有するものである。   In order to achieve such an object, the fixture according to the present invention includes a shaft portion that supports the object to be fixed, and a rotating portion that is provided at a lower portion in the vertical direction of the shaft portion and supports the object to be fixed together with the shaft portion. And a fixing member that can be attached to the leg when installing the fixed object supported by a plurality of legs including a moving part, and a floor plate located on one end and a second end A top plate portion positioned, and a shape formed by connecting the floor plate portion and the top plate portion with a wall portion, and the floor plate portion has a fastening hole for a fastener for fastening to an installation floor. Having an opening width that is formed across the top plate portion side of the wall portion and the wall portion side of the top plate portion, and can be inserted in a part of the rotation posture of the rotation portion. A first opening portion formed on the top plate portion, communicated with the first opening portion, and opened toward the downstream side in the insertion direction of the rotating portion. A second opening width is narrowed so as to be fitted to the shaft portion, and has a.

本発明によれば、地震時等にも脚部から外れにくく被固定物の移動、転倒防止を図ることができ、かつ、設置済みの被固定物にも容易に後付けすることができる。   According to the present invention, it is possible to prevent the fixed object from moving or toppling over even during an earthquake or the like, and to easily attach the fixed object already installed.

本発明に係る固定具の一実施形態である耐震金具を示す模式図である。It is a schematic diagram which shows the earthquake-resistant metal fitting which is one Embodiment of the fixing tool which concerns on this invention. 図1に示す耐震金具を画像形成装置の1本の脚部に取付ける際の様子を示す説明図である。It is explanatory drawing which shows a mode at the time of attaching the earthquake-resistant metal fitting shown in FIG. 1 to one leg part of an image forming apparatus. 画像形成装置の各脚部に耐震金具が取付けられた状態の全体概略図である。1 is an overall schematic view of a state in which a seismic bracket is attached to each leg portion of an image forming apparatus. 図3に示す画像形成装置の正面図である。FIG. 4 is a front view of the image forming apparatus illustrated in FIG. 3. 脚部の回動部の上面図であって、(A)長方形の形状、(B)六角形の形状、(C)オーバル形状の例を示している。It is a top view of the rotation part of a leg, Comprising: The example of (A) rectangular shape, (B) hexagonal shape, (C) oval shape is shown. 脚部の回動部を回転させて、脚部を下げている様子を示す説明図である。It is explanatory drawing which shows a mode that the rotation part of a leg part is rotated and the leg part is lowered | hung. 固定用ボルトで耐震金具を固定した様子を示す模式図である。It is a schematic diagram which shows a mode that the earthquake-resistant metal fitting was fixed with the volt | bolt for fixing. 耐震金具の一例を示す模式図である。It is a schematic diagram which shows an example of an earthquake-resistant metal fitting. 固定具の他の実施形態である耐震金具を示す模式図(1)である。It is a schematic diagram (1) which shows the earthquake-resistant metal fitting which is other embodiment of a fixing tool. 固定具の他の実施形態である耐震金具を示す模式図(2)である。It is a schematic diagram (2) which shows the earthquake-resistant metal fitting which is other embodiment of a fixing tool. 固定具の他の実施形態である耐震金具を示す模式図(3)である。It is a schematic diagram (3) which shows the earthquake-resistant metal fitting which is other embodiment of a fixing tool. 固定具の他の実施形態である耐震金具を示す模式図(4)である。It is a schematic diagram (4) which shows the earthquake-resistant metal fitting which is other embodiment of a fixing tool. 固定具の他の実施形態である耐震金具を示す模式図(5)である。It is a schematic diagram (5) which shows the earthquake-resistant metal fitting which is other embodiment of a fixing tool.

以下、本発明に係る構成を図1から図13に示す実施の形態に基づいて詳細に説明する。   Hereinafter, a configuration according to the present invention will be described in detail based on the embodiment shown in FIGS.

(第1の実施形態)
本実施形態に係る固定具(耐震金具1)は、それぞれが被固定物(画像形成装置20)を支持する軸部(軸部11)と、該軸部の鉛直方向下部に設けられて該軸部と共に被固定物を支持する回動部(回動部12)と、からなる複数の脚部(台足、アジャスタ)により支持される被固定物を設置する際に、脚部に取付け可能な固定具であって、一端側に位置する床板部(床板部2)と、他端側に位置する天板部(天板部4)と、床板部と天板部との間を壁部(壁部3)で連結してなる形状を有し、床板部は、設置床(設置床30)に締結するための締結具用の締結孔(締結孔5)を有し、壁部の天板部側および天板部の壁部側に亘り形成され、回動部の回転姿勢のうち一部の回転姿勢の状態で挿入可能な開口幅を有する第一開口部(第一開口部6)と、天板部に形成され、第一開口部と連通し、回動部の挿入方向下流側に向けて開口幅が軸部を嵌合可能に狭められた第二開口部(第二開口部7)と、を有するものである。なお、回転姿勢とは、回動部の360度の回転時の各回転位置での状態をいうものとする。
(First embodiment)
The fixture (earthquake-resistant metal fitting 1) according to the present embodiment is provided at a shaft portion (shaft portion 11) that supports an object to be fixed (image forming apparatus 20) and a lower portion in the vertical direction of the shaft portion. When the object to be fixed supported by a plurality of legs (pedestal, adjuster) composed of a rotation part (rotation part 12) that supports the object to be fixed together with the part can be attached to the leg. It is a fixture, Comprising: The floor part (floor board part 2) located in one end side, the top board part (top board part 4) located in the other end side, and the wall part (between the floor board part and the top board part) The floor portion has a fastening hole (fastening hole 5) for fastening to the installation floor (installation floor 30), and the top of the wall portion A first opening (first opening) having an opening width that can be inserted in a part of the rotation posture of the rotation portion and is inserted in the rotation posture of the rotation portion. ) And a second opening (second opening) that is formed in the top plate portion, communicates with the first opening, and has an opening width narrowed so that the shaft portion can be fitted toward the downstream side in the insertion direction of the rotating portion. Part 7). In addition, a rotation attitude shall mean the state in each rotation position at the time of 360 degree rotation of a rotation part.

以下、本実施形態では、被固定物として、適宜、大型の電子写真式画像形成装置(例えば、(1)奥行990mm、横1280mm、高さ1260mm、重量約630kg、や(2)奥行910mm、横1320mm、高さ1218mm、重量約580kg等である。以下、単に画像形成装置という)を用いた場合を例に説明するが、被固定物の外形寸法や重量は、特に限られるものではなく、本発明に係る固定具は、所定の脚部形状を有するオフィスなどに設置されている一般的な電子写真方式の画像形成装置(複合機)、その他の電子機器、家庭用電子機器、家具等にも適用可能であることは勿論である。   Hereinafter, in this embodiment, a large electrophotographic image forming apparatus (for example, (1) depth 990 mm, width 1280 mm, height 1260 mm, weight about 630 kg, and (2) depth 910 mm, width is suitably used as the fixed object. 1320 mm, height 1218 mm, weight about 580 kg, etc. Hereinafter, the case where the image forming apparatus is used) will be described as an example, but the external dimensions and weight of the fixed object are not particularly limited. The fixing device according to the present invention is also applied to a general electrophotographic image forming apparatus (multifunction machine) installed in an office or the like having a predetermined leg shape, other electronic devices, household electronic devices, furniture, etc. Of course, it is applicable.

図1は、本実施形態の耐震金具1の斜視図を示している。また、図2は、図1に示す耐震金具1を画像形成装置20の1本の脚部(台足ともいう、軸部11と回動部12で構成される)に取付ける際の様子を示す説明図である。また、図3は、画像形成装置20の4本の脚部それぞれに耐震金具1が取付けられ、固定用ボルト13により設置床30に固定された状態の全体概略図を示している。また、図4は、図3に示す画像形成装置20の正面図を示している。   FIG. 1 shows a perspective view of the earthquake-resistant metal fitting 1 of the present embodiment. 2 shows a state in which the earthquake-resistant metal fitting 1 shown in FIG. 1 is attached to one leg portion (also referred to as a foot, which includes a shaft portion 11 and a rotating portion 12) of the image forming apparatus 20. It is explanatory drawing. FIG. 3 shows an overall schematic diagram of the state in which the earthquake-resistant metal fitting 1 is attached to each of the four legs of the image forming apparatus 20 and fixed to the installation floor 30 by the fixing bolts 13. 4 shows a front view of the image forming apparatus 20 shown in FIG.

被固定物としての画像形成装置20は、本体部の下部に設けられた移動手段であるキャスタ21により水平方向への移動が可能となっており、設置時には、所望の設置位置までキャスタ21により移動させて設置位置決めを行った後、脚部である4本のアジャスタ(高さ調整手段)の回動部12を回転させて、各アジャスタのネジ状の軸部11の本体からの突出量を調整することで、画像形成装置20の設置高さを所望の高さとすることができる。また、設置床30に凹凸、傾き等がある場合でも、各アジャスタの突出量を調整することで、画像形成装置20が所望の水平基準を満たすように設置することができる。   The image forming apparatus 20 as a fixed object can be moved in the horizontal direction by a caster 21 which is a moving means provided at the lower part of the main body, and is moved by the caster 21 to a desired installation position at the time of installation. Then, after the installation positioning is performed, the rotation part 12 of the four adjusters (height adjustment means) as the leg parts is rotated to adjust the protruding amount from the main body of the screw-like shaft part 11 of each adjuster. Thus, the installation height of the image forming apparatus 20 can be set to a desired height. Even when the installation floor 30 has irregularities, inclinations, and the like, the image forming apparatus 20 can be installed so as to satisfy a desired horizontal reference by adjusting the protruding amount of each adjuster.

なお、設置完了時には、キャスタ21は、設置床30から離間した状態となり、4本のアジャスタにより本体は支持される。なお、アジャスタから設置床30への荷重を分散させることを目的として、設置床30にアジャスタ受け(図示せず)を置いて、アジャスタ受けを介して、アジャスタの回動部12を載置するようにしても良い。   When the installation is completed, the caster 21 is separated from the installation floor 30 and the main body is supported by the four adjusters. For the purpose of distributing the load from the adjuster to the installation floor 30, an adjuster receiver (not shown) is placed on the installation floor 30, and the rotating portion 12 of the adjuster is placed via the adjuster receiver. Anyway.

固定具としての耐震金具1は、その一端側に位置する床板部2と他端側に位置する天板部4が壁部3で連結されたクランク形状を有している。なお、耐震金具1は、板金加工により1枚の板金を加工したもの、または、複数枚の板金を溶接加工したものであればよく、加工方法は特に限られるものではない。また、耐震金具1の寸法、材質、厚み等は、被固定物の重量や脚部の形状に応じて適宜選択されるものであればよい。   The earthquake-resistant metal fitting 1 as a fixture has a crank shape in which a floor plate portion 2 located on one end side and a top plate portion 4 located on the other end side are connected by a wall portion 3. The earthquake-resistant metal fitting 1 is not particularly limited as long as one metal plate is processed by sheet metal processing or a plurality of metal plates are welded. Moreover, the dimension, material, thickness, etc. of the earthquake-resistant metal fitting 1 should just be suitably selected according to the weight of a to-be-fixed object, or the shape of a leg part.

床板部2は、設置床30に載置された状態で固定用ボルト13により締結可能な締結孔5を有している。なお、図3に示す例では、1本の固定用ボルト13により耐震金具1の設置床30への固定をしている。後述するように、本実施形態に係る耐震金具1は、脚部からの抜け防止を図っているため、1本の固定用ボルト13により固定しても、連れ回りによる抜けを防止することができるが、複数本の固定用ボルトを用いて締結可能な形状の締結孔5とし、設置床30への固定力を高めるようにしても良いのは勿論である。   The floor plate portion 2 has a fastening hole 5 that can be fastened by a fixing bolt 13 while being placed on the installation floor 30. In the example shown in FIG. 3, the earthquake-resistant metal fitting 1 is fixed to the installation floor 30 with one fixing bolt 13. As will be described later, since the earthquake-resistant metal fitting 1 according to the present embodiment is intended to prevent removal from the leg portion, even if it is fixed by one fixing bolt 13, it can be prevented from coming off due to rotation. However, it is needless to say that the fastening hole 5 having a shape that can be fastened using a plurality of fixing bolts may be used to increase the fixing force to the installation floor 30.

また、壁部3の天板部4側および天板部4の壁部3側に亘って、第一開口部6が形成されている。第一開口部6は、脚部の回動部12が360度回転する回転姿勢のうち、少なくとも一部の回転姿勢の状態で挿入可能な開口幅6a(図2)を有している。   Further, a first opening 6 is formed across the top plate 4 side of the wall 3 and the wall 3 side of the top plate 4. The first opening 6 has an opening width 6a (FIG. 2) that can be inserted in at least a part of the rotation posture of the rotation posture in which the rotation portion 12 of the leg portion rotates 360 degrees.

また、天板部4には、第一開口部6と連通しており、回動部12の挿入方向下流側に向けて、その開口幅が回動部12のいずれの回転姿勢の状態でも抜去しない、すなわち、軸部11のみが嵌合可能な開口幅に狭められた第二開口部7が形成されている。   Further, the top plate portion 4 communicates with the first opening 6, and the opening width is removed toward the downstream side in the insertion direction of the rotating portion 12 regardless of the rotational position of the rotating portion 12. In other words, the second opening 7 narrowed to an opening width into which only the shaft 11 can be fitted is formed.

次に、耐震金具1の画像形成装置20の脚部および設置床30への取付けについて説明する。図5は、回動部12を軸11の方向から見た場合の模式図を示している。   Next, attachment of the seismic bracket 1 to the legs of the image forming apparatus 20 and the installation floor 30 will be described. FIG. 5 is a schematic diagram when the rotating unit 12 is viewed from the direction of the shaft 11.

図2に示す例では、回動部12は、直方体形状であり、図5(A)に示すように、軸11の設置面は短辺12aと長辺12bからなる長方形の形状である(設置床30との接触面についても同様)。   In the example illustrated in FIG. 2, the rotating unit 12 has a rectangular parallelepiped shape, and as illustrated in FIG. 5A, the installation surface of the shaft 11 has a rectangular shape including a short side 12 a and a long side 12 b (installation). The same applies to the contact surface with the floor 30).

ここで、耐震金具1を取付ける脚部における回動部12の軸11の設置面は短辺12aと長辺12bとを有する形状であることが必要である。なお、ここでいう短辺12aとは、回動部12が360度回転する姿勢をみる際に、所定方向における幅が最も短くなる長さをいい、長辺12bとは、所定方向における幅が最も長くなる長さをいうものとし、必ずしも、軸11の設置面の辺の長さとは一致しない。   Here, the installation surface of the shaft 11 of the rotating part 12 in the leg part to which the earthquake-resistant metal fitting 1 is attached needs to have a shape having a short side 12a and a long side 12b. Here, the short side 12a refers to a length in which the width in the predetermined direction becomes the shortest when the rotation unit 12 is rotated 360 degrees, and the long side 12b refers to the width in the predetermined direction. The length is the longest length, and does not necessarily match the length of the side of the installation surface of the shaft 11.

また、回動部12の形状は直方体形状に限られるものではなく、図5(B)にしめすような六角形の立方体形状や、その他の多角形の立方体形状でもよい。また、図5(C)に示すようなオーバル形状でも良い。なお、回動部12はスパナ等の工具で回転させるため、工具で挟んで回転が容易なように軸11を挟んで平行な部分を有していることが好ましい。   Further, the shape of the rotating portion 12 is not limited to a rectangular parallelepiped shape, and may be a hexagonal cubic shape as shown in FIG. 5B or another polygonal cubic shape. Further, an oval shape as shown in FIG. In addition, since the rotation part 12 is rotated with tools, such as a spanner, it is preferable to have a parallel part which pinched | interposed the axis | shaft 11 so that rotation is easy to pinch | interpose with a tool.

上述のように、画像形成装置20は、設置位置に移動した段階では、キャスタ21により支持されており、脚部の回動部12は設置床30から離間した状態となっている。耐震金具1の脚部への取付け時には、先ず、図2に示すように、脚部が設置床30から離れている状態で、耐震金具1の壁部3と天板部4との境目部分に設けられた第一開口部6に、脚部の回動部12を挿入するものである。   As described above, when the image forming apparatus 20 is moved to the installation position, the image forming apparatus 20 is supported by the casters 21, and the leg rotation unit 12 is separated from the installation floor 30. When attaching the seismic bracket 1 to the leg portion, first, as shown in FIG. 2, with the leg portion being away from the installation floor 30, at the boundary between the wall portion 3 and the top plate portion 4 of the seismic bracket 1. The rotating part 12 of the leg part is inserted into the first opening part 6 provided.

ここで、耐震金具1の第一開口部6の開口幅6aは、少なくとも回動部12の長辺12bの長さよりも短く形成されている。このように構成することで、第一開口部6に回動部12を挿入する際には、長辺12bが開口幅6aに対向する回転姿勢では挿入されない。換言すれば、回動部12を第一開口部6に挿入可能な回転姿勢で挿入した後、第一開口部6の内側で回動部12が第一開口部6よりも幅広になる回転姿勢として対向させることで、回動部12が内側から第一開口部6から抜け出すことができない状態とすることができる。   Here, the opening width 6 a of the first opening 6 of the earthquake-resistant metal fitting 1 is formed to be shorter than at least the length of the long side 12 b of the rotating part 12. By configuring in this way, when the rotating part 12 is inserted into the first opening 6, the long side 12 b is not inserted in a rotational posture facing the opening width 6 a. In other words, after the rotation unit 12 is inserted in a rotation posture that can be inserted into the first opening 6, the rotation posture in which the rotation unit 12 is wider than the first opening 6 inside the first opening 6. As a result, the rotating part 12 can be brought into a state in which it cannot come out of the first opening 6 from the inside.

本実施形態では、第一開口部6の開口幅6aは、回動部12の短辺12aが丁度嵌合して、挿入可能な幅となっており、開口幅6aをこの長さとすることが最も好ましい。この場合、回動部12の挿入後には、回動部12の回転姿勢が第一開口部6に短辺12aが対向する場合にのみしか抜けないこととなる。   In the present embodiment, the opening width 6a of the first opening 6 is such that the short side 12a of the rotating portion 12 is just fitted and can be inserted, and the opening width 6a can be this length. Most preferred. In this case, after the rotation unit 12 is inserted, the rotation posture of the rotation unit 12 can be removed only when the short side 12 a faces the first opening 6.

よって、回動部12を第一開口部6に挿入した後、回動部12の回転姿勢を変動させることで、第一開口部6の内側から抜けない状態とすることができる。なお、後述するように、回動部12の挿入後に、回動部12を回転させて、設置床30に接地させるため、回転姿勢は必ず変化することとなる。   Therefore, after inserting the rotation part 12 in the 1st opening part 6, it can be set as the state which cannot be removed from the inner side of the 1st opening part 6 by changing the rotation attitude | position of the rotation part 12. FIG. As will be described later, since the rotation unit 12 is rotated and grounded to the installation floor 30 after the rotation unit 12 is inserted, the rotation posture always changes.

また、第一開口部6は、第二開口部7と連通している。なお、第二開口部7は、軸部11が嵌合する幅で形成されていることが好ましい。これにより、第二開口部7が軸部11を挟持して支持することができる。また、軸部11が第一開口部6から第二開口部7へスムーズに案内されるように、第一開口部6と第二開口部7との接続部分は下流側に傾斜形状を有していることも好ましい。   Further, the first opening 6 communicates with the second opening 7. In addition, it is preferable that the 2nd opening part 7 is formed in the width | variety which the axial part 11 fits. Thereby, the 2nd opening part 7 can pinch | interpose and support the axial part 11. FIG. Further, the connecting portion between the first opening 6 and the second opening 7 has an inclined shape on the downstream side so that the shaft portion 11 is smoothly guided from the first opening 6 to the second opening 7. It is also preferable.

図6は、回動部12を回転させて、軸部11の画像形成装置20からの突出量を増やしている(脚部を下げている)様子を示す説明図である。上述のように、脚部に耐震金具1を取り付けた後は、回動部12を回転させて脚部を下げ、回動部12を設置床30に接地させて、キャスタ21は離間した状態となる。この時、回動部12の回転姿勢が挿入時とは変化した位置とすることで、耐震金具1から脚部が外れてしまうことを防ぐことができる。   FIG. 6 is an explanatory diagram showing a state in which the rotation portion 12 is rotated to increase the protruding amount of the shaft portion 11 from the image forming apparatus 20 (the leg portion is lowered). As described above, after attaching the earthquake-resistant metal fitting 1 to the leg portion, the rotating portion 12 is rotated to lower the leg portion, the rotating portion 12 is grounded to the installation floor 30, and the casters 21 are separated from each other. Become. At this time, it can prevent that a leg part remove | deviates from the earthquake-resistant metal fitting 1 by setting it as the position which the rotation attitude | position of the rotation part 12 changed from the time of insertion.

なお、天板部4の軸部11の挿入方向における長さ4aのうち、軸部11の軸中心までの長さ4bは、回動部12が、軸部11が第二開口部7の端部まで嵌合した状態で回動可能なように構成する。例えば、軸部11の軸中心が回動部12の設置面の中心位置である場合、回動部12の軸部11の設置面の対角線の長さ12cとすると、その1/2よりも長く構成する。脚部を下げる際には、耐震金具1の床板部2を作業の障害とならない位置(例えば、図6の位置)に回しておけばよい。これにより、回動部12を回転させる際に使用するスパナ等の工具の使用も容易である。   Of the length 4 a in the insertion direction of the shaft portion 11 of the top plate portion 4, the length 4 b to the shaft center of the shaft portion 11 is the rotation portion 12 and the shaft portion 11 is the end of the second opening 7. It is configured to be rotatable in a state where it is fitted to the part. For example, when the shaft center of the shaft portion 11 is the center position of the installation surface of the rotating portion 12, the length 12c of the diagonal line of the installation surface of the shaft portion 11 of the rotating portion 12 is longer than ½ thereof. Configure. When the legs are lowered, the floor plate 2 of the earthquake-resistant metal fitting 1 may be turned to a position that does not hinder the work (for example, the position shown in FIG. 6). Thereby, use of tools, such as a spanner, used when rotating the rotation part 12, is also easy.

また、軸部11の軸方向長さに余裕があり、耐震金具1を上方へ上げた際に、回動部12の軸部11の設置面の高さよりも床板部2の底面を高くすることが可能であれば、天板部4の軸部11の挿入方向における長さ4aが回動部12の対角線の長さ12cよりも長くなくとも良い。なお、この場合、例えば、天板部4の上面と被固定物とを一時的に接着させてもよい。または、磁性部材等を天板部4の上面側に取り付け、被固定物に一時的に保持させるようにしてもよい。   In addition, the axial length of the shaft portion 11 has a margin, and when the earthquake-resistant metal fitting 1 is lifted upward, the bottom surface of the floor plate portion 2 is made higher than the height of the installation surface of the shaft portion 11 of the rotating portion 12. If possible, the length 4 a in the insertion direction of the shaft portion 11 of the top plate portion 4 may not be longer than the diagonal length 12 c of the rotating portion 12. In this case, for example, the upper surface of the top plate portion 4 and an object to be fixed may be temporarily bonded. Or a magnetic member etc. may be attached to the upper surface side of the top-plate part 4, and you may make it hold | maintain temporarily to a to-be-fixed object.

図7は、固定用ボルト13で耐震金具1を固定した様子を示す模式図である。各脚部の調整により、画像形成装置20が所望の水平基準を満たすように調整した後、耐震金具1を固定位置にあわせ固定用ボルト13を設置床30へ打ち込んで固定する。   FIG. 7 is a schematic diagram showing a state in which the earthquake-resistant metal fitting 1 is fixed with the fixing bolt 13. After the image forming apparatus 20 is adjusted so as to satisfy a desired horizontal reference by adjusting each leg portion, the seismic fitting 1 is aligned with the fixing position and the fixing bolt 13 is driven into the installation floor 30 and fixed.

なお、既に所定位置に設置された画像形成装置20に、設置位置を変更せずに耐震金具1を取付ける場合も同様である。一旦設置された後は、アジャスタにより支持されているので、先ず回動部12を回転させて、回動部12を設置床から離間させ、キャスタ21により支持した状態とした後、上述の取付け動作を行えばよい。   The same applies to the case where the seismic bracket 1 is attached to the image forming apparatus 20 already installed at a predetermined position without changing the installation position. After being installed, since it is supported by the adjuster, the rotating unit 12 is first rotated, the rotating unit 12 is separated from the installation floor, and is supported by the caster 21, and then the above-described mounting operation. Can be done.

耐震金具1の具体的形状の一例を図8に示す。なお、耐震金具1の材質は一般構造用鋼材(SPCC等)で厚さは3.2mmであって、各部の寸法は図示のとおりである(単位:mm)。また、脚部の軸部11は径20mm、回動部12は短辺30mm、長辺35mm、高さ11mmである。また、固定用ボルト13としては、M20ボルトを用いた。また、脚部の高さ(設置床30から本体部まで)は50mmである。   An example of a specific shape of the earthquake-resistant metal fitting 1 is shown in FIG. In addition, the material of the earthquake-resistant metal fitting 1 is a general structural steel material (SPCC or the like), the thickness is 3.2 mm, and the dimensions of each part are as shown (unit: mm). Further, the shaft portion 11 of the leg portion has a diameter of 20 mm, the rotating portion 12 has a short side of 30 mm, a long side of 35 mm, and a height of 11 mm. Further, as the fixing bolt 13, an M20 bolt was used. The height of the leg (from the installation floor 30 to the main body) is 50 mm.

以上、説明した本実施形態に係る耐震金具1によれば、耐震金具1の脚部への取付け後に、地震等により被固定物に外力が加わり加振された場合でも、脚部の回動部12が耐震金具1から外れるための所定の回転姿勢で第一開口部6から抜けてしまわない限り、耐震金具1は脚部から外れないため、耐震金具1が脚部から外れることを防止することができ、被固定物の移動、転倒防止を図ることができる。また、既存の被固定物にも容易に後から取付けを行うことが可能である。   As mentioned above, according to the earthquake-resistant metal fitting 1 which concerns on this embodiment demonstrated, even if it attaches to a to-be-fixed object by an earthquake etc. and vibrates after attaching to the leg part of the earthquake-resistant metal fitting 1, it is a rotation part of a leg part. Since the seismic bracket 1 does not come off the leg unless the 12 is removed from the first opening 6 in a predetermined rotational posture so as to be detached from the seismic bracket 1, the seismic fitting 1 is prevented from coming off the leg. Therefore, it is possible to prevent the fixed object from moving and falling. Further, it can be easily attached to an existing fixed object later.

(第2の実施形態)
以下、本発明に係る固定具のその他の実施形態について説明する。なお、上記実施形態と同様の点についての説明は省略する。
(Second Embodiment)
Hereinafter, other embodiments of the fixture according to the present invention will be described. In addition, the description about the same point as the said embodiment is abbreviate | omitted.

図9に示すように、第二開口部7の軸部11の挿入方向両側に沿って、設置床30側に折り曲げ部10を備えることも好ましい。なお、折り曲げ部10は天板部4と一体成型されていても、着脱可能な別部材として構成されるものであっても良い。   As shown in FIG. 9, it is also preferable to provide a bent portion 10 on the installation floor 30 side along both sides in the insertion direction of the shaft portion 11 of the second opening 7. In addition, even if the bending part 10 is integrally molded with the top-plate part 4, it may be comprised as another member which can be attached or detached.

これにより、折り曲げ部10は、挿入位置から回転した姿勢で固定される回動部12の上部相当位置であって、天板部4よりも間隔の短い位置に位置することになるため、回動部12の鉛直方向上下側への移動を規制することができる。したがって、地震時等において、画像形成装置20が上下方向に揺動する際に、回動部12の上下方向の移動を規制し、耐震金具1が外れてしまうことを防止することができる。   As a result, the bent portion 10 is located at a position corresponding to the upper portion of the rotating portion 12 that is fixed in a posture rotated from the insertion position, and is positioned at a shorter interval than the top plate portion 4. The movement of the portion 12 in the vertical direction can be restricted. Therefore, when the image forming apparatus 20 swings in the vertical direction during an earthquake or the like, it is possible to restrict the vertical movement of the rotating unit 12 and prevent the earthquake-resistant metal fitting 1 from being detached.

(第3の実施形態)
また、図10に示すように、天板部4の厚みを床板部2や壁部3の厚みよりも増す形状とすることも好ましい。これにより、天板部4の剛性を向上させるとともに、回動部12と天板部4との間隔を狭めることができるので、第2の実施形態と同様に、回動部12の上下方向の移動を規制し、耐震金具1が外れてしまうことを防止することができる。
(Third embodiment)
Moreover, as shown in FIG. 10, it is also preferable to make the top plate part 4 thicker than the floor plate part 2 and the wall part 3. Thereby, while improving the rigidity of the top-plate part 4, the space | interval of the rotation part 12 and the top-plate part 4 can be narrowed, Therefore Like 2nd Embodiment, the vertical direction of the rotation part 12 is sufficient. It is possible to restrict the movement and prevent the earthquake-resistant metal fitting 1 from coming off.

(第4の実施形態)
また、図11に示すように、床板部2と壁部3との連結位置の両側部側、および/または壁部3と天板部4との連結位置の両側部側にリブ8を有することで、床板部2や天板部4の変形を防ぎ、耐震金具1の耐久性を向上させることも好ましい。なお、リブ8は、床板部2や天板部4と一体成型されるものであっても、別部材として構成されるものであっても良い。
(Fourth embodiment)
Further, as shown in FIG. 11, ribs 8 are provided on both sides of the connecting position between the floor plate 2 and the wall 3 and / or on both sides of the connecting position of the wall 3 and the top plate 4. Thus, it is also preferable to prevent the deformation of the floor plate portion 2 and the top plate portion 4 and improve the durability of the earthquake-resistant metal fitting 1. In addition, even if the rib 8 is integrally molded with the floor board part 2 and the top-plate part 4, it may be comprised as another member.

(第5の実施形態)
また、図12、図13に示すように、壁部3を第一壁部3とした場合に、床板部2と天板部4との間が開口部を有しない第二壁部9により連結されるようにしても良い。換言すれば、床板部2は、必ずしも第一開口部6の下部側に設けられている必要はなく、この場合、第一壁部3は下部が直接、設置床30に設置される。
(Fifth embodiment)
As shown in FIGS. 12 and 13, when the wall portion 3 is the first wall portion 3, the second wall portion 9 having no opening is connected between the floor plate portion 2 and the top plate portion 4. You may be made to do. In other words, the floor plate portion 2 is not necessarily provided on the lower side of the first opening 6, and in this case, the lower portion of the first wall portion 3 is directly installed on the installation floor 30.

なお、第二壁部9を設ける位置は、特に限られるものではないが、成型を容易にするために、天板部4から見て第一壁部3に対し、90度、180度(図12)、270度(図13)のいずれかの位置に設けられることが好ましい。   The position where the second wall portion 9 is provided is not particularly limited. However, in order to facilitate molding, 90 ° and 180 ° with respect to the first wall portion 3 as viewed from the top plate portion 4 (see FIG. 12) It is preferably provided at any position of 270 degrees (FIG. 13).

尚、上述の実施形態は本発明の好適な実施の例ではあるがこれに限定されるものではなく、本発明の要旨を逸脱しない範囲において種々変形実施可能である。   The above-described embodiment is a preferred embodiment of the present invention, but is not limited thereto, and various modifications can be made without departing from the gist of the present invention.

1 耐震金具(固定具)
2 床板部
3 壁部(第一壁部)
4 天板部
5 締結孔
6 第一開口部
7 第二開口部
8 リブ
9 壁部(第二壁部)
10 折り曲げ部
11 軸部(脚部)
12 回動部(脚部)
13 固定用ボルト
20 画像形成装置(被固定物)
21 キャスタ
30 設置床
1 Seismic bracket (fixture)
2 Floor board part 3 Wall part (first wall part)
4 Top plate portion 5 Fastening hole 6 First opening portion 7 Second opening portion 8 Rib 9 Wall portion (second wall portion)
10 Bending part 11 Shaft part (leg part)
12 Rotating part (leg part)
13 Fixing bolt 20 Image forming apparatus (fixed object)
21 Casters 30 Installation floor

特開2004− 36121号公報JP 2004-36121 A 特開2001−161475号公報JP 2001-161475 A

Claims (10)

それぞれが被固定物を支持する軸部と、該軸部の鉛直方向下部に設けられて該軸部と共に前記被固定物を支持する回動部と、からなる複数の脚部により支持される前記被固定物を設置する際に、前記脚部に取付け可能な固定具であって、
一端側に位置する床板部と、他端側に位置する天板部と、前記床板部と前記天板部との間を壁部で連結してなる形状を有し、
前記床板部は、設置床に締結するための締結具用の締結孔を有し、
前記壁部の前記天板部側および前記天板部の前記壁部側に亘り形成され、前記回動部の回転姿勢のうち一部の回転姿勢の状態で挿入可能な開口幅を有する第一開口部と、
前記天板部に形成され、前記第一開口部と連通し、前記回動部の挿入方向下流側に向けて開口幅が前記軸部を嵌合可能に狭められた第二開口部と、を有することを特徴とする固定具。
Each of which is supported by a plurality of legs each including a shaft portion that supports an object to be fixed, and a rotating portion that is provided in a vertically lower portion of the shaft portion and supports the object to be fixed together with the shaft portion. A fixing tool that can be attached to the leg when installing an object to be fixed,
A floor plate portion located on one end side, a top plate portion located on the other end side, and a shape formed by connecting the floor plate portion and the top plate portion with a wall portion;
The floor plate portion has a fastening hole for a fastener for fastening to an installation floor,
A first opening width is formed across the top plate portion side of the wall portion and the wall portion side of the top plate portion, and has an opening width that can be inserted in a part of the rotation posture of the rotation portion. An opening,
A second opening formed in the top plate portion, communicated with the first opening, and narrowed so that the opening can be fitted into the shaft toward the downstream side in the insertion direction of the rotating portion; A fixture characterized by having.
前記第一開口部の開口幅は、前記回動部の回転姿勢において、最も幅狭となる回転姿勢の状態でのみ挿入可能な開口幅であることを特徴とする請求項1に記載の固定具。   2. The fixture according to claim 1, wherein the opening width of the first opening portion is an opening width that can be inserted only in a rotation posture that is the narrowest in the rotation posture of the rotation portion. . 前記締結孔は、1のボルト状締結具により前記床板部を前記設置床に固設可能な形状であることを特徴とする請求項1または2のいずれかに記載の固定具。   The said fastening hole is a shape which can fix the said floor-plate part to the said installation floor with one bolt-shaped fastener, The fixing tool in any one of Claim 1 or 2 characterized by the above-mentioned. 前記壁部は、前記第一開口部を有する第一壁部と前記第一開口部を有しない第二壁部とからなり、
前記床板部と前記天板部との間は、前記第二壁部により連結されていることを特徴とする請求項1から3のいずれか1項に記載の固定具。
The wall portion includes a first wall portion having the first opening portion and a second wall portion not having the first opening portion,
The fixture according to any one of claims 1 to 3, wherein the floor plate portion and the top plate portion are connected by the second wall portion.
前記第二壁部は、前記天板部から見て前記第一壁部に対し、90度、180度、270度のいずれかの位置に設けられることを特徴とする請求項4に記載の固定具。   The said 2nd wall part is provided in any position of 90 degree | times, 180 degree | times, and 270 degree | times with respect to said 1st wall part seeing from the said top plate part, The fixing of Claim 4 characterized by the above-mentioned. Ingredients. 前記第二開口部の前記軸部の挿入方向両側に、前記回動部の鉛直方向への移動を規制する折り曲げ部を有することを特徴とする請求項1から5のいずれか1項に記載の固定具。   The bending part which controls the movement to the perpendicular direction of the said rotation part is provided in the insertion direction both sides of the said axial part of said 2nd opening part, The any one of Claim 1 to 5 characterized by the above-mentioned. Fixture. 前記天板部の厚みが前記床板部の厚みよりも大きいことを特徴とする請求項1から6のいずれか1項に記載の固定具。   The thickness of the said top-plate part is larger than the thickness of the said floor-plate part, The fixing tool of any one of Claim 1 to 6 characterized by the above-mentioned. 前記床板部と前記壁部との連結位置の両側部側、および/または前記壁部と前記天板部との連結位置の両側部側にリブを有することを特徴とする請求項1から7のいずれか1項に記載の固定具。   The ribs are provided on both sides of the connection position between the floor plate and the wall and / or on both sides of the connection between the wall and the top plate. The fixture according to any one of the above. 前記被固定物であって、請求項1〜8のいずれか1項に記載の固定具により4本の脚部が固定されることで、所定の水平基準を満たして設置されることを特徴とする画像形成装置。   It is the said to-be-fixed object, Comprising: Four legs are fixed by the fixing tool of any one of Claims 1-8, It satisfy | fills predetermined horizontal reference | standard, It is characterized by the above-mentioned. Image forming apparatus. 本体部の下部に移動手段としてのキャスタと、前記脚部であって高さ調整手段としての
アジャスタと、を有し、前記アジャスタを前記設置床から離間でさせた状態で、前記キャスタにより前記設置床上を移動し、所望の設置位置で前記アジャスタの前記回動部を回動させることで、前記軸部の前記本体部からの突出量を調整し、前記アジャスタにより前記設置床を支持して、前記キャスタは前記設置床から離間することを特徴とする請求項9に記載の画像形成装置。
The caster as a moving means and a leg adjuster as a height adjusting means at the lower part of the main body, and the installation by the caster in a state where the adjuster is separated from the installation floor. Move on the floor, rotate the rotating portion of the adjuster at a desired installation position, adjust the amount of protrusion of the shaft portion from the main body, and support the installation floor by the adjuster, The image forming apparatus according to claim 9, wherein the caster is separated from the installation floor.
JP2012005884A 2012-01-16 2012-01-16 Fixing device and image forming apparatus Expired - Fee Related JP5899942B2 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013151982A (en) * 2012-01-25 2013-08-08 Ricoh Co Ltd Fixing device for mechanical apparatus and method of fixing mechanical apparatus
US9578965B2 (en) 2014-03-03 2017-02-28 Fuji Xerox Co., Ltd. Fixing device, fixing structure of apparatus, and fixing method of apparatus
US10088094B2 (en) 2014-09-19 2018-10-02 Srm, Llc System for anchoring a portable device to a floor

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JPH0844130A (en) * 1994-07-26 1996-02-16 Canon Inc Image forming device
JPH1023938A (en) * 1996-07-15 1998-01-27 Matsushita Electric Works Ltd Structure for fixing adjusting instrument
JP2001161475A (en) * 1999-12-03 2001-06-19 Kokuyo Co Ltd Floor fixing device of furniture
JP2002153342A (en) * 2000-11-20 2002-05-28 Sony Corp Stopper of utensil having caster to floor

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0844130A (en) * 1994-07-26 1996-02-16 Canon Inc Image forming device
JPH1023938A (en) * 1996-07-15 1998-01-27 Matsushita Electric Works Ltd Structure for fixing adjusting instrument
JP2001161475A (en) * 1999-12-03 2001-06-19 Kokuyo Co Ltd Floor fixing device of furniture
JP2002153342A (en) * 2000-11-20 2002-05-28 Sony Corp Stopper of utensil having caster to floor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013151982A (en) * 2012-01-25 2013-08-08 Ricoh Co Ltd Fixing device for mechanical apparatus and method of fixing mechanical apparatus
US9578965B2 (en) 2014-03-03 2017-02-28 Fuji Xerox Co., Ltd. Fixing device, fixing structure of apparatus, and fixing method of apparatus
US10088094B2 (en) 2014-09-19 2018-10-02 Srm, Llc System for anchoring a portable device to a floor

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