CN217201535U - Mounting structure of built-in switch board in well - Google Patents

Mounting structure of built-in switch board in well Download PDF

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Publication number
CN217201535U
CN217201535U CN202220796254.9U CN202220796254U CN217201535U CN 217201535 U CN217201535 U CN 217201535U CN 202220796254 U CN202220796254 U CN 202220796254U CN 217201535 U CN217201535 U CN 217201535U
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China
Prior art keywords
cross beam
control cabinet
plate
arm
hoistway
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CN202220796254.9U
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Chinese (zh)
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王健
施海锋
洪天鹏
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Suzhou Damingfu Elevator Co ltd
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Suzhou Damingfu Elevator Co ltd
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Abstract

The utility model discloses a mounting structure of concealed switch board in well, include: the well frame is connected with link plate, link plate down on being located the lateral wall of well frame, and the link plate links to each other with the entablature, and link plate and bottom end rail link to each other down, are connected with two stands at last link plate between the link plate down, and the bottom of switch board is arranged in down on the link plate and is linked to each other with link plate down, and the top of switch board links to each other with last link plate, and the apron has been closed to the lid between two stands, and the apron flushes with entablature and bottom end rail mutually, is provided with well glass in lieing in the left well frame of switch board. The utility model has the advantages that: the control cabinet can be embedded in the hoistway frame, so that the control cabinet and the hoistway frame are integrated, the integral attractiveness is improved, and the space of a private house cannot be additionally occupied; the control cabinet can be operated outside the shaft frame after the cover plate is opened, and manual operation is facilitated.

Description

Mounting structure of concealed control cabinet in well
Technical Field
The utility model relates to an elevator field especially relates to the mounting structure of hidden switch board in the well.
Background
Many people choose to install the household elevator in their private residences, and most of the matched hoistway structures also adopt aluminum alloy glass structures. Its advantages are high light transmission, and no influence to decoration. However, most of the control cabinets of the household elevators are installed outside the hoistway, which requires an additional installation space in the private home, which not only occupies additional space in the private home, but also is not beautiful.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a can be with the built-in mounting structure of hidden switch board in the well of switch board in the well.
In order to achieve the above purpose, the utility model adopts the technical scheme that: mounting structure of concealed switch board in well includes: the elevator hoistway structure comprises a hoistway frame, an upper hanging plate and a lower hanging plate are connected to one side wall of the hoistway frame, the upper hanging plate is connected with an upper cross beam, the lower hanging plate is connected with a lower cross beam, a vertical column is vertically arranged on the left side and the right side of the upper hanging plate respectively, the two vertical columns are connected with the lower hanging plate downwards respectively, clamping grooves with outward notches are arranged on the vertical columns, a connecting step is arranged on the front side wall of each vertical column, a control cabinet is arranged between the two vertical columns, the bottom of the control cabinet is arranged on the lower hanging plate and connected with the lower hanging plate, the top of the control cabinet is connected with the upper hanging plate, a cover plate covers the two vertical columns, clamping blocks are arranged inwards on the left side and the right side of the cover plate respectively, the clamping blocks on the cover plate are inserted into the clamping grooves on the vertical columns, hoistway glass is arranged in the hoistway frame on the left side of the control cabinet, the glass clamping grooves are aligned with the connecting steps on the vertical columns on the left side and the right side, and the clamping grooves on the left side and the right side of the connecting step on the vertical columns are aligned, And the width between the glass clamp and the connecting step is larger than that of the hoistway glass, the hoistway glass is clamped between the glass clamp groove and the connecting step, the upper end and the lower end of the hoistway glass are respectively clamped on the upper cross beam and the lower cross beam, the cover plate covers the two upright posts, the left end of the cover plate is arranged on the hoistway glass in a blocking mode, and the cover plate is flush with the upper cross beam and the lower cross beam.
Further, in the aforementioned installation structure of a hoistway-embedded control cabinet, the upper hanging plate includes: the top end of the first vertical arm is connected with the inner end of the first cross arm, the outer end of the first cross arm is connected with the top end of the second vertical arm, the inner side wall of the first vertical arm is connected with the control cabinet, and the outer side wall of the second vertical arm is connected with the upper cross beam; the link plate includes down: the bottom end of the third vertical arm is connected with the inner end of the second transverse arm, the outer end of the second transverse arm is connected with the top end of the fourth vertical arm, the bottom of the control cabinet is arranged on the second transverse arm, and the third vertical arm is arranged on the inner side wall of the control cabinet and connected with the control cabinet.
Further, the mounting structure of concealed switch board in aforementioned well, wherein, be provided with the connecting plate between entablature and last link plate, the connecting plate includes: the bottom end of the fifth vertical arm is connected with the inner end of the third transverse arm, the outer end of the third transverse arm is connected with the top end of the sixth vertical arm, the bottom end of the sixth vertical arm is connected with the outer end of the fourth transverse arm, the inner end of the fourth transverse arm is connected with the bottom end of the seventh vertical arm, the fifth vertical arm on the connecting plate is connected with the inner side wall of the upper cross beam, the third transverse arm is attached to the bottom wall of the upper cross beam, the sixth vertical arm is level with the outer side wall of the upper cross beam from top to bottom, and the second vertical arm on the upper hanging plate is connected with the seventh vertical arm on the connecting plate.
Further, in the aforementioned installation structure of the hoistway built-in control cabinet, a reinforcing plate is disposed between the connecting plate and the upper hanging plate, the reinforcing plate is connected to the inner side wall of the seventh vertical arm of the connecting plate, the lower end of the reinforcing plate extends downward out of the connecting plate, and the second vertical arm of the upper hanging plate is connected to the lower end of the reinforcing plate.
Furthermore, in the aforementioned installation structure of a hoistway-embedded control cabinet, a guide inclined wall is provided to extend outward from the slot of the column.
Further, in the aforementioned installation structure of the hoistway built-in control cabinet, the upper beam and the lower beam have the same structure, and in the example of the upper beam, a T-shaped groove is provided on the inner side wall of the upper beam, and a top groove and a bottom groove are provided on the upper beam, respectively.
Further, in the aforementioned mounting structure of the hoistway-embedded control cabinet, the top groove is shallower than the bottom groove, and the distance between the top wall of the bottom groove of the upper beam and the bottom wall of the top groove of the lower beam is greater than the height of the hoistway glass.
The utility model has the advantages that: the control cabinet can be embedded in the hoistway frame, so that the control cabinet and the hoistway frame are integrated, the integral attractiveness is improved, and the space of a private house cannot be additionally occupied; the control cabinet can be operated outside the shaft frame after the cover plate is opened, and manual operation is facilitated.
Drawings
Fig. 1 is a schematic structural diagram of a mounting structure of a hidden control cabinet in a hoistway.
Fig. 2 is a schematic sectional view in the direction of a-a in fig. 1.
Fig. 3 is a schematic view of the structure in the bottom view of fig. 1.
Fig. 4 is an exploded schematic view of the connection structure between the upper and lower hanging plates, the connection plate, the lower hanging plate, the control cabinet, and the upper and lower cross members in fig. 2.
Detailed Description
The technical solution of the present invention will be further explained with reference to the accompanying drawings and preferred embodiments.
As shown in fig. 1, 2 and 3, the installation structure of the hoistway built-in control cabinet of the present invention includes: the elevator hoistway frame is characterized in that an upper hanging plate 1 and a lower hanging plate 2 are connected to one side wall of the hoistway frame, the upper hanging plate 1 is connected with an upper cross beam 3 through a connecting plate 9, a reinforcing plate 10 capable of reinforcing a connecting structure is further arranged between the connecting plate 9 and the upper hanging plate 1, the left side and the right side of the upper hanging plate 1 are respectively vertically provided with a stand column 5, the two stand columns 5 are respectively connected with the lower hanging plate 2 downwards, the stand columns 5 are respectively provided with a clamping groove 51 with an outward notch, a guide inclined wall 511 extends outwards from the clamping groove 51, the front side wall of each stand column 5 is provided with a connecting step 52, a control cabinet 6 is arranged between the two stand columns 5, the bottom of the control cabinet 6 is arranged on the lower hanging plate 2 and is connected with the lower hanging plate 2, the top of the control cabinet 6 is connected with the upper hanging plate 1, a cover plate 7 is covered between the two stand columns 5, the left side and the right side of the cover plate 7 are respectively provided with a clamping block 71 inwards, the fixture block 71 on the cover plate 7 can be quickly inserted into the fixture groove 51 on the upright post 5 under the guiding action of the guiding inclined wall 511, the hoistway glass 8 is arranged in the hoistway frame on the left side of the control cabinet 6, the glass fixture groove 811 is arranged on the hoistway frame upright post 81 on the left side of the hoistway frame, the glass fixture groove 811 is aligned with the connecting step 511 on the upright post 5 left and right, the width between the glass fixture groove 811 and the connecting step 511 is larger than that of the hoistway glass 8, the hoistway glass 8 is clamped between the glass fixture groove 811 and the connecting step 511, the upper end and the lower end of the hoistway glass 8 are respectively clamped on the upper cross beam 3 and the lower cross beam 4, after the cover plate 7 is covered on the two upright posts 5, the left end of the cover plate 7 is blocked on the hoistway glass 8, and the cover plate 7 is flush with the upper cross beam 3 and the lower cross beam 4.
In this embodiment, as shown in fig. 2 and 4, the upper hanging plate 1 includes: the device comprises a first vertical arm 11, a first cross arm 12 and a second vertical arm 13, wherein the top end part of the first vertical arm 11 is connected with the inner end part of the first cross arm 12, and the outer end part of the first cross arm 12 is connected with the top end part of the second vertical arm 13; the lower hanging plate 2 comprises: a third vertical arm 21, a second cross arm 22 and a fourth vertical arm 23, wherein the bottom end part of the third vertical arm 21 is connected with the inner end part of the second cross arm 22, and the outer end part of the second cross arm 22 is connected with the top end part of the fourth vertical arm 23; the connection plate 9 includes: a fifth vertical arm 91, a third horizontal arm 92, a sixth vertical arm 93, a fourth horizontal arm 94 and a seventh vertical arm 95, wherein the bottom end of the fifth vertical arm 91 is connected to the inner end of the third horizontal arm 92, the outer end of the third horizontal arm 92 is connected to the top end of the sixth vertical arm 93, the bottom end of the sixth vertical arm 93 is connected to the outer end of the fourth horizontal arm 94, and the inner end of the fourth horizontal arm 94 is connected to the bottom end of the seventh vertical arm 95. Fifth vertical arm 91 on connecting plate 9 links to each other with the inside wall of entablature 3, third xarm 92 pastes and leans on the diapire of entablature 3, sixth vertical arm 93 flushes from top to bottom with the lateral wall of entablature 3, be connected with reinforcing plate 10 on the inside wall of seventh vertical arm 95, the lower extreme of reinforcing plate 10 stretches out downwards in connecting plate 9, second vertical arm 13 on the board 1 that hangs up links to each other with the lower extreme of reinforcing plate 10, the inside wall of first vertical arm 11 on the board 1 that hangs up links to each other with the top of switch board 6, the bottom of switch board 6 is arranged in down on the second xarm 22 on the board 2, third vertical arm 21 keeps off and establishes on the inside wall of switch board 6, and link to each other with switch board 6. The effect of setting the upper hanging plate 1, the lower hanging plate 2 and the connecting plate 9 into a multi-bending structure is as follows: the weight of the connector is reduced, and the connecting strength of the connector is guaranteed. Wherein the function of connecting plate 9 is: when the interval is greater than the height of switch board 6 about between the entablature 3 of installation switch board 6 and the bottom end rail 4 in the well frame, need connecting plate 9 to be connected with last link plate 1 as the downwardly extending piece of entablature 3, make and go up link plate 1 and link to each other with the top of switch board 6, connecting plate 9 can also play the effect that shelters from entablature 3 in addition, improves the aesthetic property.
In the present embodiment, as shown in fig. 2, 3, and 4, the upper beam 3 and the lower beam 4 have the same structure, and in the example of the upper beam 3, a T-shaped groove 31 is provided on the inner side wall of the upper beam 3, a top groove 32 and a bottom groove 33 are provided on the upper beam 3, respectively, the top groove 32 is shallower than the bottom groove 33, and the distance between the top wall of the bottom groove 33 of the upper beam 3 and the bottom wall of the top groove of the lower beam 4 is greater than the height of the hoistway glass 8. When the upper cross beam 3 is connected with the connecting plate 9 and the lower cross beam 4 is connected with the lower hanging plate 2, only the T-shaped bolt is required to be clamped in the T-shaped groove 31 and then penetrates through the connecting plate 9 or the lower hanging plate 2 by the T-shaped bolt and then is locked by the nut, so that the connection between the upper cross beam 3 and the connecting plate 9 and the connection between the lower cross beam 4 and the lower hanging plate 2 are facilitated. When installing the hoistway glass 8, firstly clamping the top of the hoistway glass 8 into the bottom groove 33 of the upper cross beam 3, and abutting the top of the hoistway glass 8 against the top wall of the bottom groove 33, at this time, the bottom of the hoistway glass 8 upwards crosses the lower cross beam 4, then moving the bottom of the hoistway glass 8 to be right above the lower cross beam 4, slowly moving the hoistway glass 8 downwards until the bottom of the hoistway glass 8 abuts against the top groove of the lower cross beam 4, because the groove depth of the bottom groove 33 of the upper cross beam 3 is deeper than that of the top groove of the lower cross beam 4, when the bottom of the hoistway glass 8 is positioned in the top groove of the lower cross beam 4, the top of the hoistway glass 8 cannot slide out of the bottom groove 33 of the upper cross beam 3, so that the hoistway glass 8 can be quickly installed between the upper cross beam 3 and the lower cross beam 4, then moving the hoistway glass 8 to the left until the hoistway glass 8 is clamped into the glass clamping groove 811 of the hoistway frame upright column 81, the installation of the hoistway glass 8 is facilitated.
The utility model has the advantages that: the control cabinet can be embedded in the hoistway frame, so that the control cabinet and the hoistway frame are integrated, the integral attractiveness is improved, and the space of a private house cannot be additionally occupied; the control cabinet can be operated outside the shaft frame after the cover plate is opened, and manual operation is facilitated.

Claims (7)

1. Mounting structure of concealed switch board in well, its characterized in that: the method comprises the following steps: the device comprises a hoistway frame, an upper hanging plate and a lower hanging plate are connected to one side wall of the hoistway frame, the upper hanging plate is connected with an upper cross beam, the lower hanging plate is connected with a lower cross beam, a vertical column is vertically arranged on each of the left side and the right side of the upper hanging plate, the two vertical columns are respectively connected with the lower hanging plate downwards, clamping grooves with outward notches are formed in the vertical columns, a connecting step is arranged on the front side wall of each vertical column, a control cabinet is arranged between the two vertical columns, the bottom of the control cabinet is arranged on the lower hanging plate and connected with the lower hanging plate, the top of the control cabinet is connected with the upper hanging plate, a cover plate covers between the two vertical columns, clamping blocks are arranged inwards on each of the left side and the right side of the cover plate, the clamping blocks on the cover plate are inserted into the clamping grooves on the vertical columns, hoistway glass is arranged in the hoistway frame on the left side of the control cabinet, glass clamping grooves are aligned with the connecting steps on the vertical columns on the left side and the right side, and the clamping grooves on the left side of the vertical columns, The width between the glass clamping groove and the connecting step is larger than that of the well glass, the well glass is clamped between the glass clamping groove and the connecting step, the upper end and the lower end of the well glass are respectively clamped on the upper cross beam and the lower cross beam, the cover plate covers the two upright posts, the left end of the cover plate is arranged on the well glass in a blocking mode, and the cover plate is flush with the upper cross beam and the lower cross beam.
2. The mounting structure of a hoistway built-in control cabinet according to claim 1, characterized in that: go up the link plate and include: the top end of the first vertical arm is connected with the inner end of the first cross arm, the outer end of the first cross arm is connected with the top end of the second vertical arm, the inner side wall of the first vertical arm is connected with the control cabinet, and the outer side wall of the second vertical arm is connected with the upper cross beam; the link plate includes down: the bottom end of the third vertical arm is connected with the inner end of the second transverse arm, the outer end of the second transverse arm is connected with the top end of the fourth vertical arm, the bottom of the control cabinet is arranged on the second transverse arm, and the third vertical arm is arranged on the inner side wall of the control cabinet and connected with the control cabinet.
3. The mounting structure of a hoistway built-in control cabinet according to claim 2, characterized in that: be provided with the connecting plate between entablature and last link plate, the connecting plate includes: the bottom end of the fifth vertical arm is connected with the inner end of the third transverse arm, the outer end of the third transverse arm is connected with the top end of the sixth vertical arm, the bottom end of the sixth vertical arm is connected with the outer end of the fourth transverse arm, the inner end of the fourth transverse arm is connected with the bottom end of the seventh vertical arm, the fifth vertical arm on the connecting plate is connected with the inner side wall of the upper cross beam, the third transverse arm is attached to the bottom wall of the upper cross beam, the sixth vertical arm is level with the outer side wall of the upper cross beam from top to bottom, and the second vertical arm on the upper hanging plate is connected with the seventh vertical arm on the connecting plate.
4. The mounting structure of a hoistway built-in control cabinet according to claim 3, characterized in that: the reinforcing plate is arranged between the connecting plate and the upper hanging plate, the reinforcing plate is connected to the inner side wall of the seventh vertical arm of the connecting plate, the lower end of the reinforcing plate extends downwards out of the connecting plate, and the second vertical arm on the upper hanging plate is connected with the lower end of the reinforcing plate.
5. The mounting structure of a hoistway built-in control cabinet according to claim 1, 2, 3 or 4, characterized in that: a guide inclined wall extends outwards from the clamping groove of the upright post.
6. The mounting structure of a hoistway built-in control cabinet according to claim 1, 2, 3 or 4, characterized in that: the upper cross beam and the lower cross beam are identical in structure, the upper cross beam is taken as an example, a T-shaped groove is formed in the inner side wall of the upper cross beam, and a top groove and a bottom groove are formed in the upper cross beam respectively.
7. The mounting structure of a hoistway built-in control cabinet according to claim 6, characterized in that: the top groove is shallower than the bottom groove, and the distance between the top wall of the bottom groove of the upper cross beam and the bottom wall of the top groove of the lower cross beam is larger than the height of the well glass.
CN202220796254.9U 2022-04-08 2022-04-08 Mounting structure of built-in switch board in well Active CN217201535U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220796254.9U CN217201535U (en) 2022-04-08 2022-04-08 Mounting structure of built-in switch board in well

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220796254.9U CN217201535U (en) 2022-04-08 2022-04-08 Mounting structure of built-in switch board in well

Publications (1)

Publication Number Publication Date
CN217201535U true CN217201535U (en) 2022-08-16

Family

ID=82759541

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220796254.9U Active CN217201535U (en) 2022-04-08 2022-04-08 Mounting structure of built-in switch board in well

Country Status (1)

Country Link
CN (1) CN217201535U (en)

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