CN214422052U - Elevator car's balanced gimbal mechanism - Google Patents

Elevator car's balanced gimbal mechanism Download PDF

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Publication number
CN214422052U
CN214422052U CN202022823045.2U CN202022823045U CN214422052U CN 214422052 U CN214422052 U CN 214422052U CN 202022823045 U CN202022823045 U CN 202022823045U CN 214422052 U CN214422052 U CN 214422052U
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China
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bottom plate
fixed
sleeve body
side wall
plate
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CN202022823045.2U
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Chinese (zh)
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朱文博
方林华
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Suzhou Schneider Elevator Co ltd
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Suzhou Schneider Elevator Co ltd
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Abstract

The utility model discloses a balanced support mechanism of elevator car, including the bottom plate, the bottom surface middle part of bottom plate is fixed with the bottom beam, and the both ends of bottom beam stretch out the front wall and the back wall of bottom plate, and two vertical girders are fixed at the both ends of bottom beam, and the top of two vertical girders is fixed on the top transverse beam, and the top transverse beam is in directly over the bottom plate; the left side wall and the right side wall of the upper part of the vertical main beam are both fixed with a bending block, and the outer side wall of the vertical plate body part of the bending block is fixed with an inclined sleeve body; it adopts the diagonal bracing pole of cylinder barred body to connect vertical girder and bottom plate as the diagonal rib, and its intensity is big, and firm degree is high, and it is connected with vertical girder and bottom plate through bending the piece and side connection board in addition, and the tip of diagonal bracing pole need not to handle such as punch, its firm in connection, long service life.

Description

Elevator car's balanced gimbal mechanism
The technical field is as follows:
the utility model relates to an elevator equipment processing technology field, more specifically the balanced gimbal mechanism that relates to an elevator car that says so.
Background art:
among the current elevator car, it is equipped with balanced support generally to support whole car, in order to increase its rigidity, can set up oblique pull rib between two vertical posts and bottom plate, realize supporting, and current oblique pull rib is the band iron form generally, and its intensity is not ideal, and it is welded fastening generally, or direct tip shaping spiro union hole passes through bolt fastening, and its welding department produces the fracture problem easily, and the effect is not ideal, and the oblique pull rib of direct shaping spiro union hole, the firm degree of its link is also limited.
The utility model has the following contents:
the utility model aims at being not enough to prior art, and provide an elevator car's balanced gimbal mechanism, its diagonal bracing piece that adopts the cylinder barred body is connected vertical girder and bottom plate as the diagonal rib, and its intensity is big, and firm degree is high, and it is connected with vertical girder and bottom plate through bending piece and side connecting plate in addition, and diagonal bracing piece's tip need not to punch etc. and handles, its firm in connection, long service life.
The technical solution of the utility model is as follows:
a balance support mechanism of an elevator car comprises a bottom plate, wherein a bottom beam is fixed in the middle of the bottom surface of the bottom plate, two ends of the bottom beam extend out of the front wall surface and the rear wall surface of the bottom plate, two vertical main beams are fixed at two ends of the bottom beam, the top ends of the two vertical main beams are fixed on a top transverse beam, and the top transverse beam is positioned right above the bottom plate;
the left side wall and the right side wall of the upper part of the vertical main beam are respectively fixed with a bending block, the outer side wall of the vertical plate body part of each bending block is fixed with an inclined sleeve body, the outer side walls of the left part and the right part of the bottom plate are respectively fixed with a side connecting plate, the outer side wall of each side connecting plate is fixed with a lower inclined sleeve body, the upper end of each inclined supporting rod is inserted and sleeved in the inclined sleeve body, the upper end of each inclined supporting rod is formed with an upper screwed part, the upper screwed part is inserted and sleeved in the inclined sleeve body, the lower part of the upper limiting head is inserted and sleeved in the inclined sleeve body and screwed in the upper screwed part, and the bottom surface of the top plate of the upper limiting head is pressed on the top surface of the inclined sleeve body;
the bottom of the inclined supporting rod is pressed against the top surface of the lower inclined sleeve body, a lower screwing part formed in the middle of the bottom of the inclined supporting rod is inserted in the lower inclined sleeve body, and the bottom of the lower screwing part extends out of the bottom surface of the lower inclined sleeve body and is screwed with a lower fixing nut.
The lower screwed part is inserted and sleeved with an elastic washer which is clamped between the lower fixing nut and the bottom surface of the lower inclined sleeve body.
Be fixed with a plurality of elastic blocks down on the top surface of bottom plate, go up the buffer board and be in the bottom plate directly over, the bottom surface of going up the buffer board is fixed with a plurality of elastic blocks of going up, goes up the elastic block and aligns from top to bottom with lower elastic block, and the buffer spring plug bush is on the last elastic block that corresponds and elastic block down, and buffer spring's bottom mounting is on the top surface of bottom plate, and buffer spring's top is exerting oneself on the bottom surface of last buffer board.
Side baffles are fixed on the left side wall and the right side wall of the bottom plate, the top end of each side baffle extends out of the top surface of the bottom plate and is formed with a bending edge, and the bending edge is inserted in an edge groove formed in the left side or the right side top surface of the upper buffer plate.
The bottom surfaces of the bent edges are pressed against the bottom surfaces of the corresponding edge grooves.
And an anti-skid layer is fixed on the top surface of the upper buffer plate.
The bending block is fixedly connected to the side wall of the vertical main beam through a bolt, and the lower portion of the side connecting plate is fixedly connected to the side wall of the bottom plate through a bolt.
The oblique supporting rod is a cylindrical rod body.
The beneficial effects of the utility model reside in that:
it adopts the diagonal bracing pole of cylinder barred body to connect vertical girder and bottom plate as the diagonal rib, and its intensity is big, and firm degree is high, and it is connected with vertical girder and bottom plate through bending the piece and side connection board in addition, and the tip of diagonal bracing pole need not to handle such as punch, its firm in connection, long service life.
Description of the drawings:
fig. 1 is a schematic view of a partial structure of the present invention;
FIG. 2 is a partial enlarged view of the present invention
Fig. 3 is a schematic view of a connection structure of the diagonal support bar, the bending block and the side connection plate.
The specific implementation mode is as follows:
example (b): as shown in fig. 1 to 3, a balance support mechanism of an elevator car comprises a bottom plate 10, wherein a bottom beam 20 is fixed in the middle of the bottom surface of the bottom plate 10, two ends of the bottom beam 20 extend out of the front wall surface and the rear wall surface of the bottom plate 10, two vertical main beams 30 are fixed at two ends of the bottom beam 20, the top ends of the two vertical main beams 30 are fixed on a top transverse beam 40, and the top transverse beam 40 is positioned right above the bottom plate 10;
the left side wall and the right side wall of the upper part of the vertical main beam 30 are both fixed with a bending block 31, the outer side wall of a vertical plate body part 32 of the bending block 31 is fixed with an inclined sleeve body 33, the outer side walls of the left part and the right part of the bottom plate 10 are both fixed with a side connecting plate 50, the outer side wall of the side connecting plate 50 is fixed with a lower inclined sleeve body 51, the upper end of an inclined supporting rod 60 is inserted and sleeved in the inclined sleeve body 33, the upper end of the inclined supporting rod 60 is formed with an upper screwed part 61, the upper screwed part 61 is inserted and sleeved in the inclined sleeve body 33, the lower part of an upper limiting head 62 is inserted and sleeved in the upper screwed part 61, and the bottom surface of a top plate of the upper limiting head 62 is pressed on the top surface of the inclined sleeve body 33;
the bottom end of the inclined supporting rod 60 is pressed against the top surface of the lower inclined sleeve body 51, a lower screwing part 63 formed in the middle of the bottom end of the inclined supporting rod 60 is inserted into the lower inclined sleeve body 51, and the bottom end of the lower screwing part 63 extends out of the bottom surface of the lower inclined sleeve body 51 and is screwed with a lower fixing nut 64.
Further, an elastic washer 65 is inserted and sleeved on the lower screwing part 63, and the elastic washer 65 is clamped between the lower fixing nut 64 and the bottom surface of the lower inclined sleeve body 51.
Furthermore, a plurality of lower elastic blocks 1 are fixed on the top surface of the bottom plate 10, the upper buffer plate 70 is located right above the bottom plate 10, a plurality of upper elastic blocks 71 are fixed on the bottom surface of the upper buffer plate 70, the upper elastic blocks 71 and the lower elastic blocks 1 are aligned up and down, the buffer springs 2 are inserted in the corresponding upper elastic blocks 71 and the corresponding lower elastic blocks 1, the bottom ends of the buffer springs 2 are fixed on the top surface of the bottom plate 10, and the top ends of the buffer springs 2 are forced on the bottom surface of the upper buffer plate 70.
Further, the side baffle 11 is fixed on both the left side wall and the right side wall of the bottom plate 10, the top end of the side baffle 11 extends out of the top surface of the bottom plate 10 and is formed with a bent edge 12, and the bent edge 12 is inserted and sleeved in an edge groove 72 formed on the left side or the right side top surface of the upper buffer plate 70.
Further, the bottom surface of the bent edge 12 is pressed against the bottom surface of the corresponding edge groove 72.
Further, an anti-slip layer 73 is fixed on the top surface of the upper buffer plate 70.
Further, the bending block 31 is fixedly connected to the side wall of the vertical main beam 30 by a bolt, and the lower portion of the side connecting plate 50 is fixedly connected to the side wall of the bottom plate 10 by a bolt.
Further, the diagonal support bar 60 is a cylindrical bar.
In this embodiment, the diagonal support rod 60 is a cylindrical rod, so that the strength thereof is high, and the two ends of the diagonal support rod 60 are installed on the bending block 31 and the side connecting plate 50, and the bending block 31 and the side connecting plate 50 are installed on the corresponding vertical main beam 30 and the bottom plate 10, which do not need direct connection, so that the two ends of the diagonal support rod 60 do not need to be processed with a connecting hole and other structures, so that the strength of the end portion thereof is high, and the service life thereof is long.
And the upper screw joint part 61 and the lower screw joint part 63 of the inclined supporting rod 60 are fixed with the inclined sleeve body 33 and the lower inclined sleeve body 51 by the upper limiting head 62 and the lower fixing nut 64 in a screw joint mode, so that the installation and the disassembly are convenient, and the maintenance is convenient.
Meanwhile, the upper buffer plate 70 is arranged on the bottom plate 10, and a large number of buffer springs 2 are arranged between the upper buffer plate 70 and the bottom plate 10, so that the impact force of articles placed on the upper buffer plate 70 can be reduced, the normal lifting use of the car is ensured, the vibration generated when the articles are just placed is reduced, and the stability is good.
The above embodiments are only used for illustrating the present invention, and those skilled in the relevant technical field can make various changes and modifications without departing from the spirit and scope of the present invention, so that all equivalent technical solutions also belong to the scope of the present invention, and the protection scope of the present invention should be defined by the claims.

Claims (8)

1. A balanced support mechanism of elevator car, includes bottom plate (10), its characterized in that: a bottom beam (20) is fixed in the middle of the bottom surface of the bottom plate (10), two ends of the bottom beam (20) extend out of the front wall surface and the rear wall surface of the bottom plate (10), two vertical main beams (30) are fixed at two ends of the bottom beam (20), the top ends of the two vertical main beams (30) are fixed on a top transverse beam (40), and the top transverse beam (40) is positioned right above the bottom plate (10);
the left side wall and the right side wall of the upper portion of the vertical main beam (30) are respectively fixed with a bending block (31), the outer side wall of a vertical plate body portion (32) of each bending block (31) is fixed with an inclined sleeve body (33), the outer side walls of the left portion and the right portion of the bottom plate (10) are respectively fixed with a side connecting plate (50), the outer side wall of each side connecting plate (50) is fixed with a lower inclined sleeve body (51), the upper end of an inclined supporting rod (60) is inserted and sleeved in the inclined sleeve body (33), the upper end of the inclined supporting rod (60) is formed with an upper threaded portion (61), the upper threaded portion (61) is inserted and sleeved in the inclined sleeve body (33), the lower portion of an upper limiting head (62) is inserted and sleeved in the inclined sleeve body (33) and is screwed in the upper threaded portion (61), and the bottom surface of a top plate of the upper limiting head (62) is pressed on the top surface of the inclined sleeve body (33);
the bottom end of the inclined supporting rod (60) is pressed against the top surface of the lower inclined sleeve body (51), a lower screwed part (63) formed in the middle of the bottom end of the inclined supporting rod (60) is inserted in the lower inclined sleeve body (51), and the bottom end of the lower screwed part (63) extends out of the bottom surface of the lower inclined sleeve body (51) and is screwed with a lower fixing nut (64).
2. The balance bracket mechanism of an elevator car according to claim 1, wherein: an elastic washer (65) is inserted and sleeved on the lower screwed part (63), and the elastic washer (65) is clamped between the lower fixing nut (64) and the bottom surface of the lower inclined sleeve body (51).
3. The balance bracket mechanism of an elevator car according to claim 1, wherein: be fixed with a plurality of elastic blocks (1) down on the top surface of bottom plate (10), go up buffer board (70) and be in directly over bottom plate (10), the bottom surface of going up buffer board (70) is fixed with a plurality of elastic blocks (71) of going up, go up elastic block (71) and align from top to bottom elastic block (1) down, buffer spring (2) plug bush is on last elastic block (71) and lower elastic block (1) that correspond, the bottom mounting of buffer spring (2) is on the top surface of bottom plate (10), the top of buffer spring (2) is exerting oneself on the bottom surface of last buffer board (70).
4. The balance bracket mechanism of an elevator car according to claim 1, wherein: side baffle (11) are all fixed on the left side wall and the right side wall of bottom plate (10), and the top of side baffle (11) stretches out the top surface of bottom plate (10) and the shaping has limit (12) of bending, and limit (12) of bending plug bush has in limit groove (72) of shaping on the left side of last buffer board (70) or the right side top surface.
5. The balance bracket mechanism of an elevator car according to claim 4, wherein: the bottom surface of the bent edge (12) is pressed against the bottom surface of the corresponding edge groove (72).
6. The balance bracket mechanism of an elevator car according to claim 3, wherein: an anti-slip layer (73) is fixed on the top surface of the upper buffer plate (70).
7. The balance bracket mechanism of an elevator car according to claim 1, wherein: the bending block (31) is fixedly connected to the side wall of the vertical main beam (30) through bolts, and the lower portion of the side connecting plate (50) is fixedly connected to the side wall of the bottom plate (10) through bolts.
8. The balance bracket mechanism of an elevator car according to claim 1, wherein: the inclined supporting rod (60) is a cylindrical rod body.
CN202022823045.2U 2020-11-30 2020-11-30 Elevator car's balanced gimbal mechanism Active CN214422052U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022823045.2U CN214422052U (en) 2020-11-30 2020-11-30 Elevator car's balanced gimbal mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022823045.2U CN214422052U (en) 2020-11-30 2020-11-30 Elevator car's balanced gimbal mechanism

Publications (1)

Publication Number Publication Date
CN214422052U true CN214422052U (en) 2021-10-19

Family

ID=78050362

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022823045.2U Active CN214422052U (en) 2020-11-30 2020-11-30 Elevator car's balanced gimbal mechanism

Country Status (1)

Country Link
CN (1) CN214422052U (en)

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