JP4293926B2 - Elevator car floor - Google Patents

Elevator car floor Download PDF

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Publication number
JP4293926B2
JP4293926B2 JP2004079329A JP2004079329A JP4293926B2 JP 4293926 B2 JP4293926 B2 JP 4293926B2 JP 2004079329 A JP2004079329 A JP 2004079329A JP 2004079329 A JP2004079329 A JP 2004079329A JP 4293926 B2 JP4293926 B2 JP 4293926B2
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floor
slit
beam members
members
floor plate
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JP2005263427A (en
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繁之 田中
良直 高橋
隆雄 西田
尚彦 佐直
誠治 渡辺
弘 木川
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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Description

この発明は、エレベータのかご床、特に、複数並設される断面コの字形状の床板部材により床面部分を構成するエレベータのかご床に関するものである。   The present invention relates to an elevator car floor, and more particularly to an elevator car floor in which a floor portion is constituted by a plurality of U-shaped floor plate members arranged side by side.

従来技術においては、エレベータのかご床のコア部分に、相互に交差し且つベースプレートおよびカバープレートへの取り外し不可能に接合された長手方向スラットおよび横方向スラットから成る格子状構造体を含む、サンドイッチ構造を採用したものが提案されている(例えば、特許文献1参照)。   In the prior art, a sandwich structure comprising a lattice structure of longitudinal and lateral slats intersecting each other and non-removably joined to a base plate and a cover plate at the core portion of the elevator car floor Has been proposed (see, for example, Patent Document 1).

特開2000−219461号公報JP 2000-219461 A

上記のように構成された従来のエレベータのかご床においては、構成部品の多くが溶接により結合されているため、溶接作業に多大の時間を要しており、また溶接後にも、溶接部の加熱によるひずみの修正、溶接バリの除去・清掃、清掃後の塗装に時間が必要であった。
さらに、溶接バリの除去・清掃は、ハンマー等でたたく、グラインダーで削る等の作業により実施されるため、騒音や粉塵が発生していた。
また、ベースプレートやカバープレートを格子状コア部分に溶接する祭には、1m角以上、20kg以上ともなるベースプレートやカバープレートを搬送、設置、反転もしくは傾斜する装置・設備が必要になり、製作コストが増加する。
ベースプレートやカバープレートには格子状コアと溶接するための穴が設けられるが、1m角以上ともなるベースプレートやカバープレートに精度よく穴加工をするための設備が必要となり、コストが増加する。
また、上記のように構成された従来のエレベータのかご床において、かご床が1つの隅によって釣り上げられて浸漬塗装を施す場合には、塗装液が流入および流出するための開口が格子状コアの各交差点に必要であり、このことは直ちに剛性の低下につながるという問題があった。
In the conventional elevator car floor configured as described above, since many of the components are joined together by welding, a great amount of time is required for the welding operation. It took time to correct the distortion caused by the process, remove and clean the welding burr, and paint after cleaning.
Furthermore, since removal and cleaning of welding burrs are performed by operations such as hitting with a hammer or the like and cutting with a grinder, noise and dust are generated.
In addition, when the base plate or cover plate is welded to the grid-shaped core part, equipment and facilities that transport, install, invert, or incline the base plate or cover plate that is 1 m square or more and 20 kg or more are required, and the production cost is high. To increase.
The base plate and the cover plate are provided with holes for welding with the grid-like core. However, equipment for accurately drilling holes in the base plate and the cover plate having a size of 1 m square or more is required, which increases the cost.
In addition, in the conventional elevator car floor configured as described above, when the car floor is lifted by one corner and is subjected to immersion coating, the openings for the inflow and outflow of the coating liquid are provided in the grid-like core. Necessary at each intersection, there is a problem that this leads to a decrease in rigidity immediately.

この発明は、溶接部を極力少なくでき、小型化できて、製造コストを適切な構成により削減できるエレベータのかご床を提供しようとするものである。   The present invention is to provide an elevator car floor in which the number of welds can be reduced as much as possible, the size can be reduced, and the manufacturing cost can be reduced by an appropriate configuration.

この発明に係るエレベータのかご床では、相対向する第1および第2の梁部材、前記第1および第2の梁部材と直角方向に配設され相対向する第3および第4の梁部材、前記第1および第2の梁部材間に橋絡結合されそれぞれ複数のスリット係合部が設けられた複数の床梁部材、前記床梁部材のスリット係合部とそれぞれ係合する複数のスリット係合部が設けられた断面コの字形状の床板部材を備え、前記複数の床板部材が床板部材のスリット係合部を前記床梁部材のスリット係合部に係合して嵌め込み接続されることにより床面部分を構成するものであって、前記床梁部材および床板部材のスリット係合部に設けられたスリット先端の角部形状をフィレット形状もしくは半円形状とするとともに、前記床板部材の平面部側縁に設けられた対をなす垂直部は自由状態において前記床板部材の平面部側縁に位置する根元から先端に向って互いに間隔が広くなるように構成されていることを特徴とするものである。 In the elevator car floor according to the present invention, the first and second beam members facing each other, the third and fourth beam members disposed in a direction perpendicular to the first and second beam members and facing each other, A plurality of floor beam members that are bridge-coupled between the first and second beam members and each provided with a plurality of slit engaging portions, and a plurality of slit members that respectively engage with the slit engaging portions of the floor beam members A floor plate member having a U-shaped cross section provided with a joint portion is provided, and the plurality of floor plate members are fitted and connected by engaging the slit engaging portions of the floor plate member with the slit engaging portions of the floor beam member. The floor surface portion of the floor beam member and the slit engaging portion of the floor plate member is formed into a fillet shape or a semicircular shape at the corner of the slit, and the floor plate member has a flat surface. Pair provided on the side edge Vertical section Nasu is characterized in that it is configured such that the distance from each other becomes wider toward the tip from the base located on the flat side edges of the floor plate member in a free state.

この発明によれば、溶接部を極力少なくでき、小型化できて、製造コストを適切な構成により削減できるとともに、負荷荷重によって生じる応力集中を避けることができ、しかも、高い剛性を持った床が得られるエレベータのかご床を提供することができる。 According to the present invention, the welded portion can be reduced as much as possible, the size can be reduced, the manufacturing cost can be reduced by an appropriate configuration, stress concentration caused by a load can be avoided, and a floor with high rigidity can be obtained. The resulting elevator car floor can be provided.

実施の形態1.
この発明による実施の形態1を図1および図2について説明する。図1は実施の形態1によるエレベータのかご床を示す図であり、具体的には、分解可能な部材ごとに示した部品分解図である。図2は実施の形態1における床板部材の構成および圧接状況を示す説明図である。図2(a)は実施の形態1における床板部材の構成を示す斜視図である。図2(b)は実施の形態1における床板部材の圧接前の状態を示す床板部材端面から見た説明図である。図2(c)は実施の形態1における床板部材の圧接後の状態を示す床板部材端面から見た説明図である。図2(d)は実施の形態1における床板部材の圧接状態での外力印加状況を示す床板部材端面から見た説明図である。図2(e)は従来技術における外力印加状況を示す床板部材端面から見た説明図である。
Embodiment 1 FIG.
A first embodiment of the present invention will be described with reference to FIGS. FIG. 1 is a view showing a car floor of an elevator according to Embodiment 1, and specifically, is an exploded view showing parts for each member that can be disassembled. FIG. 2 is an explanatory diagram showing the configuration of the floor board member and the pressure contact state in the first embodiment. FIG. 2A is a perspective view showing the configuration of the floor board member in the first embodiment. FIG.2 (b) is explanatory drawing seen from the floor-plate member end surface which shows the state before the press-contact of the floor-plate member in Embodiment 1. FIG. FIG.2 (c) is explanatory drawing seen from the floor-plate member end surface which shows the state after the press-contact of the floor-plate member in Embodiment 1. FIG. FIG. 2D is an explanatory view seen from the end face of the floor board member showing the external force application state in the pressure contact state of the floor board member in the first embodiment. FIG.2 (e) is explanatory drawing seen from the floor board member end surface which shows the external force application condition in a prior art.

図1において、左右一対の側梁部材1に複数の床梁部材2が溶接によって接続されており、この床梁部材2には複数の上方開口のスリット2aが設けられている。
床板をなす平面部3aとそれと垂直な2つのリブ3bから成る断面コの字形状で、且つ2つのリブ3bに上記の床梁部材2のスリット2aと噛み合うように下方開口のスリット3cを設けた床板部材3が嵌め込み接続される。
なお、床梁部材2のスリット2aは床板部材3の厚さに対応する幅を有し、床板部材3のスリット3cは床梁部材2の厚さに対応する幅を有しており、これらのスリット長さは噛み合い長さのそれぞれ半分程度である。
また、スリット2aおよびスリット3cの先端は、荷重負荷によって生じる応力集中を避けるために、少なくとも角部をフィレット形状や半円形状にすることが望ましい。
In FIG. 1, a plurality of floor beam members 2 are connected to a pair of left and right side beam members 1 by welding, and the floor beam members 2 are provided with a plurality of slits 2a having upper openings.
A slit 3c having a lower opening is provided so as to engage with the slit 2a of the above-mentioned floor beam member 2 in a U-shaped cross section composed of a flat portion 3a forming a floor plate and two ribs 3b perpendicular to the flat portion 3a. The floor board member 3 is fitted and connected.
The slit 2a of the floor beam member 2 has a width corresponding to the thickness of the floor plate member 3, and the slit 3c of the floor plate member 3 has a width corresponding to the thickness of the floor beam member 2. The slit length is about half of the meshing length.
Further, it is desirable that at least the corners of the ends of the slits 2a and 3c have a fillet shape or a semicircular shape in order to avoid stress concentration caused by a load.

側梁部材1の前端のスリット1aおよび後端のスリット1b、床板部材3の前端のスリット3dおよび3eにそれぞれ、断面コの字形状の前梁部材4と後梁部材5は嵌め込み接続されている。
なお、スリット1bおよびスリット3d、3eの先端は、荷重負荷によって生じる応力集中を避けるために、少なくとも角部をフィレット形状や半円形状にすることが望ましい。
The front beam member 4 and the rear beam member 5 having a U-shaped cross section are fitted and connected to the slits 1a and 1b at the front end of the side beam member 1 and the slits 3d and 3e at the front end of the floor board member 3, respectively. .
Note that it is desirable that the ends of the slit 1b and the slits 3d and 3e have a fillet shape or a semicircular shape at least in order to avoid stress concentration caused by a load.

前梁部材4および後梁部材5は図示しない取付部材によって側梁部材1に取り外し可能に取り付けられ、前梁部材4には図示しないドア敷居部材を支持する構造と後梁部材5には図示しないかごの後壁を支持する構造を有する。
側梁部材1には図示しないかご床とかご枠との間のコネクタとして働く遮断部材を固定する支持部が設けられる。
The front beam member 4 and the rear beam member 5 are detachably attached to the side beam member 1 by an attachment member (not shown). The front beam member 4 supports a door sill member (not shown) and the rear beam member 5 (not shown). It has a structure that supports the rear wall of the car.
The side beam member 1 is provided with a support portion for fixing a blocking member that functions as a connector between a car floor and a car frame (not shown).

なお、床板部材3は概略コの字形状であればよく、垂直な2つのリブ3bは必ずしも同じ大きさである必要はなく、例えば、床の中心側のリブを大きく、反対側のリブを小さくするなどして、全体剛性が許容される範囲で調整することが出来る。
また、前梁部材4および後梁部材5は、必ずしも断面コの字形状である必要はなく、例えば、全体剛性が許容される範囲であれば、逆Lの字形状であっても構わない。
The floor plate member 3 only needs to have a substantially U-shape, and the two vertical ribs 3b do not necessarily have the same size. For example, the rib on the center side of the floor is large and the rib on the opposite side is small. For example, the overall rigidity can be adjusted within the allowable range.
Further, the front beam member 4 and the rear beam member 5 do not necessarily have a U-shaped cross section, and may have an inverted L shape as long as the overall rigidity is allowable.

以上のような構成をとれば、エレベータのかご床は、左右一対の側梁部材1に溶接した複数の床梁部材2に床板部材3を嵌め込み、さらに前梁部材4および後梁部材5を嵌め込むことになる。
したがって、溶接箇所は側梁部材1と床梁部材2の接合箇所のみとなり、従来に比べて溶接に関わる作業時間を大幅に削減することが出来る。
かつ、床面に対して格子状にリブが構成されるので、高い剛性のかご床を得ることが出来る。
また、床板部材3が小型で軽量に構成できるので、ハンドリングが容易となり、従来のような大型の床板を加工・搬送するための大型装置・設備を必要としない。
且つ、床板部材3、前梁部材4および後梁部材5は嵌め込みによる組立てなので、溶接などの特別な技術を持たない人にも作業が可能となり、製造工程の人員配置の自由度が増すという効果もある。
さらに、床板部材3は、長さが等しいかご床に共用できるので、部品の共通化がなされ、管理費等のコスト削減にも有効である。
加えて、床板部材3は小型に構成されるので、材料歩留が向上し、製造コストの削減にも効果がある。
かご床全体に塗装が必要な場合にあっては、かご床部材の全てが表面に現れるため、従来のように塗装液が流入および流出するための特定部位の開口は不要となり、構造上の制約が殆どない。
また、部材ごとに塗装した後に全体組立てをすることも可能なので、製造行程の構成の自由度が向上し、効率よくラインを稼動させることが出来、結果として製造コストを低減することも可能となる。
With the above-described configuration, the elevator car floor has the floor plate member 3 fitted in the plurality of floor beam members 2 welded to the pair of left and right side beam members 1, and the front beam member 4 and the rear beam member 5 are further fitted. Will be included.
Therefore, the welding location is only the joint location of the side beam member 1 and the floor beam member 2, and the working time related to welding can be greatly reduced as compared with the conventional case.
And since a rib is comprised by the grid | lattice form with respect to a floor surface, a highly rigid cage floor can be obtained.
Moreover, since the floor board member 3 can be configured to be small and light, handling becomes easy, and a conventional large apparatus and equipment for processing and transporting a large floor board are not required.
In addition, since the floor plate member 3, the front beam member 4 and the rear beam member 5 are assembled by fitting, it is possible to perform work even for a person who does not have a special technique such as welding, and the degree of freedom of personnel assignment in the manufacturing process is increased. There is also.
Furthermore, since the floor board member 3 can be shared by the car floors having the same length, the parts are shared, and it is effective in reducing the management cost and the like.
In addition, since the floor board member 3 is configured in a small size, the material yield is improved, and the production cost can be reduced.
If the entire car floor needs to be painted, all the car floor members will appear on the surface, so there is no need to open a specific part for the coating liquid to flow in and out as in the past, which is a structural limitation. There is almost no.
In addition, since it is possible to assemble the whole after painting each member, the degree of freedom in the configuration of the manufacturing process is improved, the line can be operated efficiently, and as a result, the manufacturing cost can be reduced. .

そして、図2(a)に示すように、床板部材3の対をなすリブ3bは、自由状態において平面部3a側縁の根元から先端に向かって互いの間隔が若干広くなっているように構成されている。床板部材3は、図2(b)に示すように、平面部3aが床面を形成するように並設され、最外側の側面から加圧される。床板部材3の床梁部材2への嵌め込み接続状態では、図2(c)に示すように、隣接する床板部材3のリブ3bは互いに圧接され、リブ3の幾分外側に曲げられていた先端が内側に曲げられるように応力を印加されて、床板部材3のリブbに圧縮内力が蓄積された状態で床板部材3は床梁部材2に結合されている。
床板部材3に荷重がかかった時には、図2(e)に示すように、リブ3bの先端を広げるような引張の力が作用する。
床板部材3のリブ3bに蓄積された圧縮内力は、図2(d)に示すように、床板部材3に荷重がかかった時にリブ3bの先端を広げる力に対する抵抗力となり、変形を抑制するので、高い剛性を持った床を得ることが可能となる。
例えば、かご床の寸法が幅1m、奥行き1.5m、最大積載荷重600kgの9人載りエレベータに、この発明による構造を適用したところ、最大荷重の600kgが負荷された場合の床のたわみ量はおよそ0.5mmであり、許容値1mmの半分であった。

Then, as shown in FIG. 2 (a), the ribs 3b forming a pair of the floor plate members 3 are configured such that in the free state, the distance from each other toward the tip is slightly wider from the base of the side edge of the flat surface portion 3a. Has been. As shown in FIG. 2B, the floor plate member 3 is juxtaposed so that the flat surface portion 3a forms a floor surface, and is pressed from the outermost side surface. In the fitting connection state of the floor board member 3 to the floor beam member 2, as shown in FIG. 2 (c), the ribs 3 b of the adjacent floor board members 3 are pressed against each other, and the tips of the ribs 3 are bent slightly outward. The floor plate member 3 is coupled to the floor beam member 2 in a state where stress is applied so as to be bent inward and the compression internal force is accumulated in the rib 3 b of the floor plate member 3.
When a load is applied to the floor board member 3, as shown in FIG. 2 (e), a tensile force is applied so as to widen the tip of the rib 3b.
As shown in FIG. 2 (d), the compression internal force accumulated in the ribs 3b of the floor board member 3 becomes a resistance force against the force of expanding the ends of the ribs 3b when a load is applied to the floor board member 3 and suppresses deformation. It becomes possible to obtain a floor having high rigidity.
For example, when a structure according to the present invention is applied to a 9-seater elevator with a car floor dimension of 1 m in width, 1.5 m in depth, and a maximum load capacity of 600 kg, the amount of floor deflection when the maximum load of 600 kg is applied is as follows. It was approximately 0.5 mm, which was half of the allowable value of 1 mm.

この実施の形態1では、床板部材3、側梁部材1、床梁部材2、前梁部材4、後梁部材5からなるエレベータのかご床であって、一対の側梁部材1,1に複数のスリット2aを設けた床梁部材2が複数溶接され、床梁部材2のスリット2aと噛み合うスリット3cを設けた断面略コの字形状の床板部材3が複数嵌め込み接続され、前梁部材4および後梁部材5が側梁部材1,1および床板部材2の前端および後端に設けたスリット1a,1b,3d,3eに嵌め込み接続されていることを特徴とするエレベータのかご床が提案されている。
この構成によれば、かご床の溶接部が少なく、溶接作業にかかる時間が極めて少なく済むので、製造コストが大幅に削減できる。また、比較的小型で軽量な部材で構成されるので、大型搬送装置・設備を必要とせず、部材が小型化されることによって材料歩留が向上し、製造コストの抑制が可能となるという効果もある。
In the first embodiment, an elevator car floor comprising a floor plate member 3, a side beam member 1, a floor beam member 2, a front beam member 4, and a rear beam member 5 is provided. A plurality of floor beam members 2 provided with slits 2a are welded, and a plurality of substantially U-shaped floor plate members 3 provided with slits 3c engaging with the slits 2a of the floor beam members 2 are fitted and connected. An elevator car floor is proposed in which the rear beam member 5 is fitted and connected to slits 1a, 1b, 3d and 3e provided at the front and rear ends of the side beam members 1 and 1 and the floor plate member 2. Yes.
According to this configuration, the number of welded portions of the car floor is small, and the time required for the welding work is extremely small. Therefore, the manufacturing cost can be greatly reduced. In addition, since it is composed of relatively small and lightweight members, there is no need for a large conveying device / equipment, and by reducing the size of the members, the material yield is improved and the manufacturing cost can be suppressed. There is also.

この発明による実施の形態1によれば、互いに並行して配設され相対向する第1および第2の側梁部材1,1、互いに並行して前記第1および第2の梁部材と直角方向に配設され相対向する前梁部材4および後梁部材5、前記第1および第2の梁部材1,1間に橋絡結合されそれぞれ複数のスリット係合部2aが設けられた複数の床梁部材2、前記床梁部材2のスリット係合部2aとそれぞれ係合する複数のスリット係合部3cが設けられた断面コの字形状の床板部材3を備え、前記複数の床板部材3が床板部材3のスリット係合部3cを前記床梁部材2のスリット係合部2aに係合して嵌め込み接続されることにより床面部分を構成するとともに、前記前梁部材4および後梁部材5が前記第1および第2の側梁部材1,1および前記床板部材2の前端および後端に設けたスリット係合部1a,1b,3d,3eに嵌め込み接続されているようにしたので、溶接部を極力少なくでき、小型化できて、製造コストを適切な構成により削減できるエレベータのかご床を提供することができる。   According to the first embodiment of the present invention, the first and second side beam members 1 and 1 arranged in parallel with each other and facing each other, and in the direction perpendicular to the first and second beam members in parallel with each other. A plurality of floors provided with a plurality of slit engaging portions 2a that are bridge-coupled between the front beam member 4 and the rear beam member 5, and the first and second beam members 1 and 1 facing each other. A beam member 2 and a floor plate member 3 having a U-shaped cross section provided with a plurality of slit engaging portions 3c that respectively engage with the slit engaging portions 2a of the floor beam member 2, and the plurality of floor plate members 3 are provided. The floor engaging portion 3c of the floor plate member 3 is engaged with and connected to the slit engaging portion 2a of the floor beam member 2 to form a floor portion, and the front beam member 4 and the rear beam member 5 Are the first and second side beam members 1, 1 and the floor plate portion. 2 is fitted and connected to the slit engaging portions 1a, 1b, 3d, 3e provided at the front end and the rear end, so that the welded portion can be reduced as much as possible, the size can be reduced, and the manufacturing cost can be reduced by an appropriate configuration. Elevator car floors that can be reduced can be provided.

また、この発明による実施の形態1によれば、前項の構成において、平面部3aと、前記平面部3aの両側縁からそれぞれ垂下する対をなすリブ3bからなる垂直部を有する断面コの字形状の床板部材3を複数並設して床面部分を構成するものであって、前記床板部材3を前記垂直部3bが互いに圧縮内力を加えられて圧接した状態で配設したので、溶接部を極力少なくでき、小型化できて、製造コストを適切な構成により削減できるとともに、耐荷重性を向上できるエレベータのかご床を提供することができる。   Also, according to Embodiment 1 of the present invention, in the configuration of the preceding paragraph, a U-shaped cross section having a vertical portion comprising a flat portion 3a and a pair of ribs 3b that respectively hang from both side edges of the flat portion 3a. A plurality of floor plate members 3 are arranged side by side to constitute a floor surface portion, and the floor plate member 3 is disposed in a state in which the vertical portions 3b are in pressure contact with each other by applying a compression internal force to each other. It is possible to provide an elevator car floor that can be reduced as much as possible, can be miniaturized, can reduce the manufacturing cost by an appropriate configuration, and can improve load resistance.

実施の形態2.
この発明による実施の形態2を図3について説明する。図3は実施の形態2におけるエレベータのかご床を示す図であり、具体的には、分解可能な部材ごとに示した部品分解図である。
この実施の形態2において、ここで説明する特有の構成以外の構成については、先に説明した実施の形態1における構成と同一の構成内容を具備し、同様の作用を奏するものである。図中、同一符号は同一または相当部分を示す。
Embodiment 2. FIG.
A second embodiment of the present invention will be described with reference to FIG. FIG. 3 is a diagram showing an elevator car floor according to the second embodiment. Specifically, FIG. 3 is an exploded view of each component that can be disassembled.
In the second embodiment, the configuration other than the specific configuration described here has the same configuration contents as the configuration in the first embodiment described above, and exhibits the same operation. In the drawings, the same reference numerals indicate the same or corresponding parts.

図3が図1と異なる点は、側梁部材1に対する床梁部材2と床板部材3の位置関係が反転している点である。
図3において、左右一対の側梁部材1の前端および後端にそれぞれ断面逆Lの字形状の前梁部材4および後梁部材5の両端がそれぞれ溶接によって接続されており、これら前梁部材4と後梁部材5に複数の床梁部材2の両端が溶接されている。この床梁部材2には複数の上方開口スリット2aが設けられている。
3 is different from FIG. 1 in that the positional relationship between the floor beam member 2 and the floor plate member 3 with respect to the side beam member 1 is reversed.
In FIG. 3, both ends of a front beam member 4 and a rear beam member 5 having a reverse L-shaped cross section are connected to the front and rear ends of the pair of left and right side beam members 1 by welding, respectively. Both ends of the plurality of floor beam members 2 are welded to the rear beam member 5. The floor beam member 2 is provided with a plurality of upper opening slits 2a.

床板をなす平面部3aとそれと垂直な2つのリブ3bから成る断面コの字形状で、且つ2つのリブ3bに上記の床梁部材2のスリット2aと噛み合うように下方開口のスリット3cを設けた床部材3が嵌め込み接続されている。
なお、床梁部材2のスリット2aは床板部材3の厚さに対応する幅を有し、床板部材3のスリット3cは床梁部材2の厚さに対応する幅を有しており、これらのスリット長さはそれぞれ噛み合い長さの半分程度である。
また、スリット2aおよびスリット3cの先端は、荷重不可によって生じる応力集中を避けるために、少なくとも角部をフィレット形状や半円形状にすることが望ましい。
A slit 3c having a lower opening is provided so as to engage with the slit 2a of the above-mentioned floor beam member 2 in a U-shaped cross section composed of a flat portion 3a forming a floor plate and two ribs 3b perpendicular to the flat portion 3a. The floor member 3 is fitted and connected.
The slit 2a of the floor beam member 2 has a width corresponding to the thickness of the floor plate member 3, and the slit 3c of the floor plate member 3 has a width corresponding to the thickness of the floor beam member 2. Each slit length is about half of the meshing length.
Further, it is desirable that at least the corners of the tips of the slits 2a and 3c have a fillet shape or a semicircular shape in order to avoid stress concentration caused by improper load.

前梁部材4は図示しないドア敷居部材を支持する構造を有し、後梁部材5には図示しないかごの後壁を支持する構造を有する。
側梁部材1には図示しないかご床とかご枠との間のコネクタとして働く遮断部材を固定する支持部が設けられる。
The front beam member 4 has a structure for supporting a door sill member (not shown), and the rear beam member 5 has a structure for supporting a rear wall of a car (not shown).
The side beam member 1 is provided with a support portion for fixing a blocking member that functions as a connector between a car floor and a car frame (not shown).

なお、床板部材3は概略コの字形状であればよく、床板面と垂直な2つの面は必ずしも同じ大きさである必要はなく、例えば、床の中心側の面を大きく、反対側の面を小さくするなどして、全体剛性や製造コストが許容される範囲で調整することが出来る。   Note that the floor plate member 3 only needs to have a substantially U-shape, and the two surfaces perpendicular to the floor plate surface do not necessarily have the same size. For example, the surface on the center side of the floor is enlarged and the surface on the opposite side Can be adjusted within a range where the overall rigidity and manufacturing cost are allowed.

また、前梁部材4および後梁部材5は、必ずしも断面逆Lの字形状である必要はなく、例えば、全体剛性が許容される範囲であれば、逆コの字形状であっても構わない。   In addition, the front beam member 4 and the rear beam member 5 do not necessarily have an inverted L-shaped cross section, and may be, for example, an inverted U shape as long as the overall rigidity is allowed. .

以上のような構成をとれば、エレベータのかご床は、左右一対の側梁部材1に前梁部材4および後梁部材5を溶接し、これらの前梁部材4および後梁部材5に溶接した複数の床梁部材2に床板部材3を嵌め込むことになる。
したがって、溶接箇所は側梁部材1と前梁部材4および後梁部材5、前梁部材4および後梁部材5と床梁部材2の接合箇所のみとなり、従来に比べて溶接に関わる作業時間を大幅に削減することが出来る。
かつ、床面に対して格子状にリブが構成されるので、高い剛性のかご床を得ることが出来る。
また、床板部材3が小型で軽量に構成できるので、ハンドリングが容易となり、従来のような大型の床板を加工・搬送するための大型装置・設備を必要としない。
且つ、床板部材3、前梁部材4および後梁部材5は嵌め込みによる組立てなので、溶接などの特別な技術を持たない人にも作業が可能となり、製造工程の人員配置の自由度が増すという効果もある。
さらに、床板部材3は、幅が等しいかご床に共用できるので、部品の共通化がなされ、管理費等のコスト削減にも有効である。
加えて、床板部材3は小型に構成されるので、材料歩留が向上し、製造コストの削減にも効果がある。
かご床全体に塗装が必要な場合にあっては、かご床部材の全てが表面に現れるため、従来のように塗装液が流入および流出するための特定部位の開口は不要となり、構造上の制約が殆どない。
また、部材ごとに塗装した後に全体組立てをすることも可能なので、製造行程の構成の自由度が向上し、効率よくラインを稼動させることが出来、結果として製造コストを低減することも可能となる。
If the above structure is taken, the elevator car floor welds the front beam member 4 and the rear beam member 5 to the pair of left and right side beam members 1 and welds them to the front beam member 4 and the rear beam member 5. The floor plate member 3 is fitted into the plurality of floor beam members 2.
Accordingly, the welded portions are only the side beam member 1 and the front beam member 4 and the rear beam member 5, and the front beam member 4 and the rear beam member 5 and the floor beam member 2 are joined to each other. It can be greatly reduced.
And since a rib is comprised by the grid | lattice form with respect to a floor surface, a highly rigid cage floor can be obtained.
Moreover, since the floor board member 3 can be configured to be small and light, handling becomes easy, and a conventional large apparatus and equipment for processing and transporting a large floor board are not required.
In addition, since the floor plate member 3, the front beam member 4 and the rear beam member 5 are assembled by fitting, it is possible to perform work even for a person who does not have a special technique such as welding, and the degree of freedom of personnel assignment in the manufacturing process is increased. There is also.
Furthermore, since the floor board member 3 can be shared by the car floors having the same width, the parts are shared, and it is effective for cost reduction such as management costs.
In addition, since the floor board member 3 is configured in a small size, the material yield is improved, and the production cost can be reduced.
If the entire car floor needs to be painted, all the car floor members will appear on the surface, so there is no need to open a specific part for the coating liquid to flow in and out as in the past, which is a structural limitation. There is almost no.
In addition, since it is possible to assemble the whole after painting each member, the degree of freedom in the configuration of the manufacturing process is improved, the line can be operated efficiently, and as a result, the manufacturing cost can be reduced. .

この実施の形態2では、床板部材3、側梁部材1、床梁部材2、前梁部材4、後梁部材5からなるエレベータのかご床であって、一対の側梁部材1,1に溶接された前梁部材4および後梁部材5に複数のスリット2aを設けた床梁部材2が複数溶接され、床梁部材2のスリット2aと噛み合うスリット3cを設けた断面略コの字形状の床板部材3が複数嵌め込み接続されていることを特徴とするエレベータのかご床が提案されている。
この構成によれば、かご床の溶接部が少なく、溶接に関わる作業時間が極めて少なく済むので、製造コストが大幅に削減できる。また、小型で軽量な部材で構成されるので、大型の加工・搬送のための装置・設備を必要とせず、部材が小型化されることによって材料歩留が向上し、製造コストの抑制が可能となるという効果もある。
In the second embodiment, an elevator car floor comprising a floor plate member 3, a side beam member 1, a floor beam member 2, a front beam member 4, and a rear beam member 5 is welded to a pair of side beam members 1 and 1. A floor plate having a substantially U-shaped cross section in which a plurality of floor beam members 2 provided with a plurality of slits 2a are welded to the front beam member 4 and the rear beam member 5 and a slit 3c that engages with the slit 2a of the floor beam member 2 is provided. There has been proposed an elevator car floor in which a plurality of members 3 are fitted and connected.
According to this configuration, the number of welded portions of the car floor is small, and the work time related to welding is extremely small, so that the manufacturing cost can be greatly reduced. In addition, because it is composed of small and lightweight members, it does not require equipment and equipment for large-scale processing and conveyance, and the material yield can be improved by reducing the size of the members, and manufacturing costs can be reduced. There is also an effect of becoming.

この発明による実施の形態2によれば、互いに並行して配設され相対向する第1および第2の側梁部材1,1、互いに並行して前記第1および第2の梁部材1,1と直角方向に配設され相対向する前梁部材4および後梁部材5を備え、前記第1および第2の梁部材1,1に溶接された前記前梁部材4と前記後梁部材5との間に複数のスリット係合部2aが設けられた床梁部材2を複数溶接するとともに、前記床梁部材2のスリット係合部2aとそれぞれ係合する複数のスリット係合部3cを設けた断面略コの字形状の床板部材3が複数のスリット係合部3cを前記床梁部材2のスリット係合部2aとそれぞれ係合して嵌め込み接続されることにより床面部分を構成するようにしたので、溶接部を極力少なくでき、小型化できて、製造コストを適切な構成により削減できるエレベータのかご床を提供することができる。   According to the second embodiment of the present invention, the first and second side beam members 1 and 1 arranged in parallel with each other and facing each other, and the first and second beam members 1 and 1 in parallel with each other. A front beam member 4 and a rear beam member 5 arranged in a direction perpendicular to each other and opposed to each other, and welded to the first and second beam members 1, 1, A plurality of floor beam members 2 provided with a plurality of slit engaging portions 2a therebetween are welded, and a plurality of slit engaging portions 3c that respectively engage with the slit engaging portions 2a of the floor beam member 2 are provided. The floor plate member 3 having a substantially U-shaped cross section is configured to engage and connect the plurality of slit engaging portions 3c with the slit engaging portions 2a of the floor beam member 2 so as to form a floor surface portion. As a result, the number of welds can be reduced as much as possible, the size can be reduced, and the manufacturing cost can be reduced. It is possible to provide a car floor of elevator can be reduced by a switching arrangement.

実施の形態3.
この発明による実施の形態3を図4について説明する。図4は実施の形態3におけるエレベータのかご床を示す図であり、具体的には、分解可能な部材ごとに示した部品分解図である。
この実施の形態3において、ここで説明する特有の構成以外の構成については、先に説明した実施の形態1および実施の形態2における構成と同一の構成内容を具備し、同様の作用を奏するものである。図中、同一符号は同一または相当部分を示す。
Embodiment 3 FIG.
A third embodiment of the present invention will be described with reference to FIG. FIG. 4 is a diagram showing an elevator car floor according to the third embodiment. Specifically, FIG. 4 is an exploded view of each part that can be disassembled.
In the third embodiment, the configuration other than the specific configuration described here has the same configuration contents as the configurations in the first and second embodiments described above and exhibits the same operation. It is. In the drawings, the same reference numerals indicate the same or corresponding parts.

図1と異なる点は、床梁部材2および床板部材3の床板面3aと垂直な2つのリブ3bの鉛直方向寸法が両端部から中央部へ向かって大きくなっている点である。
床梁部材2および床板部材3のリブ3bに生じる最大応力は、鉛直方向寸法が大きくなるほど小さく、鉛直方向寸法が小さくなるほど大きくなる。
ところで、かご床への積載荷重が一様に分布した場合、床梁部材2および床板部材3のリブ3bにおいて最も大きな応力が発生するのは中央部である。このことは、ある部分荷重がかご床に負荷された場合に床梁部材2および床板部材3のリブ3bに生じる応力の最大値は、同じ部分荷重がかご床中央部に負荷された場合に最も大きくなり、負荷部分が周辺に向かうにしたがって小さくなることを意味する。
したがって、負荷される最大の部分荷重によって床梁部材2および床板部材3のリブ3bに生じる最大応力が許容応力を超えないように、床梁部材2および床板部材3のリブ3bの鉛直方向寸法を両端部から中央部へ向かって大きくさせることができる。
これによって、強度過大となる部分を削減することができ、軽量化と材料費の削減が可能となる。
The difference from FIG. 1 is that the vertical dimension of the two ribs 3b perpendicular to the floor plate surface 3a of the floor beam member 2 and the floor plate member 3 increases from both ends toward the center.
The maximum stress generated in the ribs 3b of the floor beam member 2 and the floor board member 3 decreases as the vertical dimension increases, and increases as the vertical dimension decreases.
By the way, when the load on the car floor is uniformly distributed, the largest stress is generated in the ribs 3b of the floor beam member 2 and the floor board member 3 in the central portion. This is because the maximum value of the stress generated in the ribs 3b of the floor beam member 2 and the floor board member 3 when a certain partial load is applied to the car floor is the highest when the same partial load is applied to the center of the car floor. It means that it becomes larger and the load part becomes smaller as it goes to the periphery.
Therefore, the vertical dimension of the rib 3b of the floor beam member 2 and the floor board member 3 is set so that the maximum stress generated in the rib 3b of the floor beam member 2 and the floor board member 3 by the maximum partial load to be applied does not exceed the allowable stress. The size can be increased from both ends toward the center.
As a result, the excessively strong portion can be reduced, and the weight can be reduced and the material cost can be reduced.

なお、この実施の形態では図1に対応して記述したが、図2においても適用可能であり、同様の効果を得ることが出来る。   Although this embodiment has been described with reference to FIG. 1, it can also be applied to FIG. 2, and the same effect can be obtained.

この実施の形態3では、実施の形態1または実施の形態2における構成において、床梁部材2および床板部材3の垂直な2つのリブ3bの鉛直方向寸法が両端部から中央部へ向かって大きくなっていることを特徴とするエレベータのかご床が提案されている。
この構成によれば、強度過大となる部分を削減することができ、軽量化と材料費の削減が可能となる。
In the third embodiment, in the configuration in the first or second embodiment, the vertical dimension of the two vertical ribs 3b of the floor beam member 2 and the floor plate member 3 increases from both ends toward the center. Elevator car floors have been proposed which are characterized by
According to this configuration, it is possible to reduce the portion where the strength is excessive, and it is possible to reduce the weight and the material cost.

この発明による実施の形態3によれば、平面部3aと、前記平面部3aの両側縁からそれぞれ垂下する対をなすリブ3bからなる垂直部を有する断面コの字形状の床板部材を備え、前記床梁部材2の鉛直方向寸法および前記床板部材3の対をなすリブ3bからなる垂垂直部の鉛直方向寸法が両端部から中央部へ向かって大きくなっているようにしたので、溶接部を極力少なくでき、小型化できて、製造コストを適切な構成により削減できるとともに、強度過大となる部分を削減でき、軽量化と材料費の低減が可能となるエレベータのかご床を提供することができる。   According to the third embodiment of the present invention, the floor plate member having a U-shaped cross section having a vertical portion comprising a flat portion 3a and a pair of ribs 3b hanging from both side edges of the flat portion 3a is provided. The vertical dimension of the floor beam member 2 and the vertical dimension of the vertical vertical portion formed by the rib 3b forming the pair of the floor plate members 3 are increased from both ends toward the center portion. It is possible to provide an elevator car floor that can be reduced in size, reduced in size, reduced in manufacturing cost by an appropriate configuration, reduced in excessive strength, reduced in weight, and reduced in material cost.

実施の形態4.
この発明による実施の形態4を図5および図について説明する。図5は実施の形態4によるエレベータのかご床の部材の溶接部であり、より具体的には、側梁部材1と床梁部材2の1つの溶接部を拡大表示した部品分解図である。図6は実施の形態4によるエレベータのかご床の部材の溶接部の別の形態であり、より具体的には、側梁部材1と床梁部材2の1つの溶接部を拡大表示した部品分解図である。
この実施の形態4において、ここで説明する特有の構成以外の構成については、先に説明した実施の形態1から実施の形態3までにおける構成と同一の構成内容を具備し、同様の作用を奏するものである。図中、同一符号は同一または相当部分を示す。
Embodiment 4 FIG.
A fourth embodiment of the present invention will be described with reference to FIGS. FIG. 5 is a welded portion of the elevator car floor member according to the fourth embodiment. More specifically, FIG. 5 is an exploded view of an enlarged part of one welded portion of the side beam member 1 and the floor beam member 2. FIG. 6 shows another embodiment of the welded portion of the elevator car floor member according to the fourth embodiment, and more specifically, the parts disassembled in which one welded portion of the side beam member 1 and the floor beam member 2 is enlarged and displayed. FIG.
In the fourth embodiment, the configuration other than the specific configuration described here has the same configuration contents as those in the first to third embodiments described above, and has the same operation. Is. In the drawings, the same reference numerals indicate the same or corresponding parts.

図5では、側梁部材1と床梁部材2の溶接箇所において、床梁部材2の端部には鉛直方向寸法よりも若干小さく、且つ側梁部材1の厚さよりも若干大きい寸法で突き出した凸部2bが設けられ、側梁部材1には前述の凸部2bを挿入することが可能なスリット1cが設けられている。
これらのスリット1cと凸部2bは、左右一対の側梁部材1と複数の床梁部材2との溶接箇所ごとにそれぞれ設けられている。
In FIG. 5, at the welded portion of the side beam member 1 and the floor beam member 2, the end of the floor beam member 2 protrudes with a size slightly smaller than the vertical dimension and slightly larger than the thickness of the side beam member 1. A convex portion 2b is provided, and the side beam member 1 is provided with a slit 1c into which the aforementioned convex portion 2b can be inserted.
The slits 1c and the convex portions 2b are provided for each welded portion of the pair of left and right side beam members 1 and the plurality of floor beam members 2.

変形例を示す図6では、側梁部材1と床梁部材2の溶接箇所において、床梁部材2の端部には板厚よりも若干小さく、且つ側梁部材1の厚さよりも若干大きい寸法で突き出した凸部2bが設けられ、側梁部材1には前述の凸部2bを挿入することが可能なスリット1cが設けられている。
これらのスリット1cと凸部2bは、左右一対の側梁部材1と複数の床梁部材2との溶接箇所ごとにそれぞれ設けられている。
In FIG. 6 which shows a modification, in the welding location of the side beam member 1 and the floor beam member 2, the dimension at the end of the floor beam member 2 is slightly smaller than the plate thickness and slightly larger than the thickness of the side beam member 1. The side beam member 1 is provided with a slit 1c into which the above-described convex portion 2b can be inserted.
The slits 1c and the convex portions 2b are provided for each welded portion of the pair of left and right side beam members 1 and the plurality of floor beam members 2.

以上のような構成をとることによって、側梁部材1と床梁部材2を溶接する際には、スリット1cに凸部2bを挿入し、その後、溶接することになる。
したがって、側梁部材1と床梁部材2を溶接する際に特別な治具なしに仮組みが容易に出来るので、作業効率が向上し、溶接に関わる作業時間の短縮が可能となる。
また、予め、加工されたスリット1cに凸部2bを挿入するので、組み立て精度が安定して、結果的に歩留が向上し、製造コストが低く抑制されるという効果もある。
なお、スリット1cの両端は、荷重不可によって生じる応力集中を避けるために、少なくとも角部をフィレット形状や半円形状にすることが望ましい。
また、図5では図1における側梁部材1と床梁部材2の溶接箇所に対応して記述したが、図3における左右一対の側梁部材1と前梁部材4および後梁部材5、前梁部材4および後梁部材5と複数の床梁部材2との溶接箇所にも適用でき、同様の効果が得られることは言うまでもない。
By adopting the configuration as described above, when the side beam member 1 and the floor beam member 2 are welded, the convex portion 2b is inserted into the slit 1c and then welded.
Therefore, when the side beam member 1 and the floor beam member 2 are welded, temporary assembly can be easily performed without a special jig, so that work efficiency can be improved and work time related to welding can be shortened.
In addition, since the convex portion 2b is inserted into the slit 1c that has been processed in advance, there is also an effect that the assembly accuracy is stabilized, the yield is improved, and the manufacturing cost is reduced.
It should be noted that at both ends of the slit 1c, it is desirable that at least the corners have a fillet shape or a semicircular shape in order to avoid stress concentration caused by improper load.
5 is described corresponding to the welded portion of the side beam member 1 and the floor beam member 2 in FIG. 1, but the pair of left and right side beam members 1, the front beam member 4 and the rear beam member 5 in FIG. Needless to say, the beam member 4 and the rear beam member 5 can be applied to the welded portions of the plurality of floor beam members 2 and the same effect can be obtained.

この実施の形態4では、実施の形態1から実施の形態3までにおけるいずれかの構成で、部材同士の溶接箇所において、一方の部材1にはスリット1cと他方の部材2にはそのスリット1cに挿入できる凸部2bが設けられていることが特徴である。
この構成によれば、溶接作業時の仮組み立てが容易となり、また、組み立て精度が安定するという効果もある。
In the fourth embodiment, any one of the configurations from the first to third embodiments is used. In the welding portion between the members, one member 1 has a slit 1c and the other member 2 has a slit 1c. It is characterized in that a protrusion 2b that can be inserted is provided.
According to this structure, the temporary assembly at the time of a welding operation becomes easy, and there exists an effect that an assembly precision is stabilized.

この発明による実施の形態4によれば、実施の形態1から実施の形態3までのいずれかの構成で、部材同士の溶接箇所において、側梁部材1等からなる一方の部材にはスリット1cからなるスリット係合部が設けられ、床梁部材2等からなる他方の部材2には前記スリット1cからなるスリット係合部に挿入できる凸部2bからなる挿入係合部が設けられているようにしたので、溶接部を極力少なくでき、小型化できて、製造コストを適切な構成により削減できるとともに、溶接作業時の仮組み立てが容易となり、組み立て精度を向上できるエレベータのかご床を提供することができる。   According to the fourth embodiment of the present invention, in any configuration from the first to third embodiments, one member made of the side beam member 1 or the like is formed from the slit 1c in the welded portion between the members. The other member 2 including the floor beam member 2 and the like is provided with the insertion engaging portion including the convex portion 2b that can be inserted into the slit engaging portion including the slit 1c. As a result, it is possible to provide an elevator car floor that can reduce the number of welds as much as possible, reduce the size, reduce manufacturing costs with an appropriate configuration, facilitate temporary assembly during welding, and improve assembly accuracy. it can.

以上のように、この発明にかかるエレベータのかご床は、床板部材、側梁部材、床梁部材、前梁部材、後梁部材からなるエレベータのかご床であって、一対の側梁部材に複数のスリットを設けた床梁部材が複数溶接され、床梁部材のスリットと噛み合うスリットを設けた断面略コの字形状の床板部材が複数嵌め込み接続され、前梁部材および後梁部材が側梁部材および床板部材の前端および後端に設けたスリットに嵌め込み接続されていることが特徴である。
この発明によって、従来のかご床と同等の剛性を維持しつつ、溶接作業を大幅に削減することが可能となる。
なんとなれば、この発明によるかご床は床面に対して格子状に構成されたリブ構造を有する一方で、溶接箇所が大幅に削減されるからである。
また、溶接ひずみの修正、溶接バリの除去・清掃の時間が大幅に削減され、製造コストが大幅に削減できる。
また、小型で軽量な部材で構成されるので、大型搬送装置・設備を必要としない。
さらに、部材が小型化されるので、材料歩留が向上し、製造コストの抑制が可能となる。
加えて、部材が全て表面にあるため、全体を浸漬塗装する場合であっても構造上の制約を殆ど受けない。
As described above, the elevator car floor according to the present invention is an elevator car floor composed of a floor plate member, a side beam member, a floor beam member, a front beam member, and a rear beam member. A plurality of floor beam members having slits are welded, and a plurality of substantially U-shaped floor plate members having slits that mesh with the slits of the floor beam members are fitted and connected, and the front beam member and the rear beam member are side beam members. It is characterized by being fitted and connected to slits provided at the front and rear ends of the floor board member.
According to the present invention, it is possible to greatly reduce welding work while maintaining the same rigidity as that of a conventional car floor.
This is because the car floor according to the present invention has a rib structure configured in a grid pattern with respect to the floor surface, while the number of welding points is greatly reduced.
In addition, the time required for welding distortion correction and welding burr removal / cleaning is greatly reduced, and the manufacturing cost can be greatly reduced.
Moreover, since it is comprised with a small and lightweight member, a large sized conveyance apparatus and installation are not required.
Furthermore, since the member is downsized, the material yield is improved and the manufacturing cost can be suppressed.
In addition, since all the members are on the surface, there are almost no structural restrictions even when the whole is dip coated.

この発明による実施の形態1における構成を示す部品分解図である。BRIEF DESCRIPTION OF THE DRAWINGS FIG. この発明による実施の形態1における床板部材の構成および圧接状況を示す説明図である。It is explanatory drawing which shows the structure of the floor board member in Embodiment 1 by this invention, and a press-contacting condition. この発明による実施の形態2における構成を示す部品分解図である。It is a component exploded view which shows the structure in Embodiment 2 by this invention. この発明による実施の形態3における構成を示す部品分解図である。It is a component exploded view which shows the structure in Embodiment 3 by this invention. この発明による実施の形態4における溶接部の構成を示す部品分解図である。It is components exploded drawing which shows the structure of the welding part in Embodiment 4 by this invention. この発明による実施の形態4における溶接部の他の構成を示す部品分解図である。It is components exploded drawing which shows the other structure of the welding part in Embodiment 4 by this invention.

符号の説明Explanation of symbols

1 側梁部材、1a,1b,1c スリット、2 床梁部材、2a スリット、2b 凸部、3 床板部材、3a 床面部分を形成する平面部、3b リブ、3c,3d,3e スリット、4 前梁部材、5 後梁部材。
1 side beam member, 1a, 1b, 1c slit, 2 floor beam member, 2a slit, 2b convex part, 3 floor plate member, 3a plane part forming floor surface part, 3b rib, 3c, 3d, 3e slit, 4 front Beam member, 5 Rear beam member.

Claims (6)

互いに並行して配設され相対向する第1および第2の梁部材、互いに並行して前記第1および第2の梁部材と直角方向に配設され相対向する第3および第4の梁部材、前記第1および第2の梁部材間に橋絡結合されそれぞれ複数のスリット係合部が設けられた複数の床梁部材、前記床梁部材のスリット係合部とそれぞれ係合する複数のスリット係合部が設けられた断面コの字形状の床板部材を備え、前記複数の床板部材が床板部材のスリット係合部を前記床梁部材のスリット係合部に係合して嵌め込み接続されることにより床面部分を構成するものであって、前記床梁部材および床板部材のスリット係合部に設けられたスリット先端の角部形状をフィレット形状もしくは半円形状とするとともに、前記床板部材の平面部側縁に設けられた対をなす垂直部は自由状態において前記床板部材の平面部側縁に位置する根元から先端に向って互いに間隔が広くなるように構成されていることを特徴とするエレベータのかご床。 First and second beam members arranged parallel to each other and facing each other, and third and fourth beam members arranged parallel to each other and perpendicular to the first and second beam members A plurality of floor beam members bridged between the first and second beam members and provided with a plurality of slit engaging portions, and a plurality of slits respectively engaged with the slit engaging portions of the floor beam members A floor plate member having a U-shaped cross section provided with an engagement portion is provided, and the plurality of floor plate members are fitted and connected by engaging the slit engagement portion of the floor plate member with the slit engagement portion of the floor beam member. The floor surface portion is thereby configured , and the corner portion shape of the slit tip provided in the slit engaging portion of the floor beam member and the floor plate member is a fillet shape or a semicircular shape, and the floor plate member The pair provided on the side edge of the flat part To the vertical section elevator car floor, characterized in that it is configured such that the distance from each other becomes wider toward the tip from the base located on the flat side edges of the floor plate member in a free state. 互いに並行して配設され相対向する第1および第2の側梁部材、互いに並行して前記第1および第2の梁部材と直角方向に配設され相対向する前梁部材および後梁部材、前記第1および第2の梁部材間に橋絡結合されそれぞれ複数のスリット係合部が設けられた複数の床梁部材、前記床梁部材のスリット係合部とそれぞれ係合する複数のスリット係合部が設けられた断面コの字形状の床板部材を備え、前記複数の床板部材が床板部材のスリット係合部を前記床梁部材のスリット係合部に係合して嵌め込み接続されることにより床面部分を構成するとともに、前記前梁部材および後梁部材が前記第1および第2の側梁部材および前記床板部材の前端および後端に設けたスリット係合部に嵌め込み接続されているものであって、前記床梁部材および床板部材のスリット係合部に設けられたスリット先端の角部形状をフィレット形状もしくは半円形状とするとともに、前記床板部材の平面部側縁に設けられた対をなす垂直部は自由状態において前記床板部材の平面部側縁に位置する根元から先端に向って互いに間隔が広くなるように構成されていることを特徴とするエレベータのかご床。 First and second side beam members arranged parallel to each other and facing each other, and front beam members and rear beam members arranged parallel to each other and perpendicular to the first and second beam members A plurality of floor beam members bridged between the first and second beam members and provided with a plurality of slit engaging portions, and a plurality of slits respectively engaged with the slit engaging portions of the floor beam members A floor plate member having a U-shaped cross section provided with an engagement portion is provided, and the plurality of floor plate members are fitted and connected by engaging the slit engagement portion of the floor plate member with the slit engagement portion of the floor beam member. Thus, the floor portion is configured, and the front beam member and the rear beam member are fitted and connected to slit engaging portions provided at the front and rear ends of the first and second side beam members and the floor plate member. be those who are, Oyo said floor beam member The corner shape of the slit tip provided in the slit engaging portion of the floor board member is a fillet shape or a semicircular shape, and the paired vertical portions provided on the side edge of the flat surface portion of the floor board member are in the free state in the free state. An elevator car floor characterized by being configured such that the distance from each other increases toward the tip from the base located on the side edge of the flat portion of the floor plate member . 互いに並行して配設され相対向する第1および第2の側梁部材、互いに並行して前記第1および第2の梁部材と直角方向に配設され相対向する前梁部材および後梁部材を備え、前記第1および第2の梁部材に溶接された前記前梁部材と前記後梁部材との間に複数のスリット係合部が設けられた床梁部材を複数溶接するとともに、前記床梁部材のスリット係合部とそれぞれ係合する複数のスリット係合部を設けた断面略コの字形状の床板部材が複数のスリット係合部を前記床梁部材のスリット係合部とそれぞれ係合して嵌め込み接続されることにより床面部分を構成するものであって、前記床梁部材および床板部材のスリット係合部に設けられたスリット先端の角部形状をフィレット形状もしくは半円形状とするとともに、前記床板部材の平面部側縁に設けられた対をなす垂直部は自由状態において前記床板部材の平面部側縁に位置する根元から先端に向って互いに間隔が広くなるように構成されていることを特徴とするエレベータのかご床。 First and second side beam members arranged parallel to each other and facing each other, and front beam members and rear beam members arranged parallel to each other and perpendicular to the first and second beam members A plurality of floor beam members provided with a plurality of slit engaging portions between the front beam member and the rear beam member welded to the first and second beam members, and the floor A floor plate member having a substantially U-shaped cross-section provided with a plurality of slit engaging portions that respectively engage with the slit engaging portions of the beam member is engaged with the slit engaging portions of the floor beam member. The floor surface portion is configured by fitting and connecting together, and the corner shape of the slit tip provided in the slit engaging portion of the floor beam member and the floor plate member is a fillet shape or a semicircular shape And the plane of the floor board member Vertical portion forming a pair provided on the side edges of the elevator, characterized in that it is configured toward the tip from the base located on the flat side edges of the floor plate member in a free state such that the distance from each other becomes wider Basket floor. 平面部と、前記平面部の両側縁からそれぞれ垂下する垂直部を有する断面コの字形状の床板部材を備え、前記床梁部材の鉛直方向寸法および前記床板部材の対をなす垂直部の鉛直方向寸法が両端部から中央部へ向かって大きくなっていることを特徴とする請求項1から請求項3までのいずれかに記載のエレベータのかご床。   A floor plate member having a U-shaped cross section having a flat portion and a vertical portion depending from both side edges of the flat portion, the vertical dimension of the floor beam member and the vertical direction of the vertical portion forming a pair of the floor plate member The elevator car floor according to any one of claims 1 to 3, wherein the dimensions increase from both ends toward the center. 部材同士の溶接箇所において、一方の部材にはスリット係合部が設けられ、他方の部材には前記スリット係合部に挿入できる挿入係合部が設けられていることを特徴とする請求項1から請求項4までのいずれかに記載のエレベータのかご床。   2. A welding portion between members, wherein one member is provided with a slit engaging portion, and the other member is provided with an insertion engaging portion that can be inserted into the slit engaging portion. The elevator car floor according to any one of claims 1 to 4. 平面部と前記平面部の両側縁からそれぞれ垂下する垂直部とを有する断面コの字形状の床板部材を複数並設して床面部分を構成するものであって、前記床板部材を前記垂直部が互いに圧縮内力を加えられて圧接した状態で配設したことを特徴とする請求項1から請求項5までのいずれかに記載のエレベータのかご床。   A plurality of U-shaped floor plate members having a flat surface portion and vertical portions respectively hanging from both side edges of the flat surface portion are arranged side by side to form a floor surface portion, and the floor plate member is The elevator car floor according to any one of claims 1 to 5, characterized in that they are arranged in a state of being pressed against each other by applying a compression internal force to each other.
JP2004079329A 2004-03-19 2004-03-19 Elevator car floor Expired - Fee Related JP4293926B2 (en)

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ES2586278T3 (en) * 2011-04-06 2016-10-13 Inventio Ag Elevator
CN103906697B (en) 2011-08-25 2016-12-07 因温特奥股份公司 Base plate for lift car
JP5721271B2 (en) * 2012-10-02 2015-05-20 東芝エレベータ株式会社 Three-sided frame installation structure and three-sided frame installation method
CN109179163B (en) * 2018-11-01 2021-03-30 日立电梯(中国)有限公司 Large-tonnage elevator car frame
CN110615338B (en) * 2019-09-17 2020-11-20 浙江尼邦电梯有限公司 Three prevent type and tow car for elevator
WO2022224395A1 (en) * 2021-04-22 2022-10-27 株式会社日立製作所 Elevator car and elevator

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