CN217635570U - Auxiliary steel structure connecting platform for boiler - Google Patents

Auxiliary steel structure connecting platform for boiler Download PDF

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Publication number
CN217635570U
CN217635570U CN202221653533.6U CN202221653533U CN217635570U CN 217635570 U CN217635570 U CN 217635570U CN 202221653533 U CN202221653533 U CN 202221653533U CN 217635570 U CN217635570 U CN 217635570U
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CN
China
Prior art keywords
telescopic mechanism
supporting
connecting block
threaded rod
boiler
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CN202221653533.6U
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Chinese (zh)
Inventor
杨令之
陈晓鹏
陈腾飞
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Linyi Guanxiang Energy Equipment Co ltd
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Linyi Guanxiang Energy Equipment Co ltd
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Abstract

An auxiliary steel structure connecting platform for a boiler comprises a supporting mechanism, a telescopic mechanism I, a telescopic mechanism II, a supporting platform, stairs and a railing; the supporting mechanism supports the boiler in a surrounding mode; two ends of the telescopic mechanism I and the telescopic mechanism II are connected with the supporting mechanism; the supporting platform is laid between the telescopic mechanism I and the telescopic mechanism II; the handrail is fixedly connected with the supporting mechanism; the stairs are arranged on the outer side of the supporting mechanism; the telescopic mechanism I comprises a connecting block I, a connecting cylinder I, a threaded rod I, a connecting block II, a guide shaft I and a threaded rod II; the supporting mechanism comprises a beam I, a stand column I, a beam II, a stand column II and a supporting groove. The utility model discloses can carry out slight adjustment when the error appears in the installation, avoid the appearance of unstable or because of the unable installation scheduling problem of error to appear in follow-up installation.

Description

Auxiliary steel structure connecting platform for boiler
Technical Field
The utility model belongs to the technical field of steel construction connection platform, in particular to boiler is with supplementary steel construction connection platform.
Background
Need carry out the precision measurement and cut according to specific boiler specification before the installation of boiler steel construction connection platform mounting material, then correspond the installation again, but in actual installation, very easily various errors appear and make the unable accurate installation of steel construction material, the great person of error even need cut the mounting material again, so need an auxiliary steel construction connection platform for the boiler, the problem of error can be solved in the fine setting in the installation of its required mounting material back stage.
Disclosure of Invention
The utility model aims at overcoming not enough among the prior art, providing a boiler with supplementary steel construction connection platform, the utility model discloses can carry out slight adjustment when the error appears in the installation, avoid follow-up installation to appear unstablely or because of the unable appearance of installing the scheduling problem of error.
In order to realize the purpose, the utility model discloses a technical scheme be:
an auxiliary steel structure connecting platform for a boiler comprises a supporting mechanism, a telescopic mechanism I, a telescopic mechanism II, a supporting platform, a stair and a railing; the supporting mechanism surrounds and supports the boiler; two ends of the telescopic mechanism I and the telescopic mechanism II are connected with the supporting mechanism; the supporting platform is laid between the telescopic mechanism I and the telescopic mechanism II; the handrail is fixedly connected with the supporting mechanism; the stairs are arranged on the outer side of the supporting mechanism; the supporting mechanism comprises a cross beam I, an upright post I, a cross beam II, an upright post II and a supporting groove; two ends of the cross beam I are fixedly connected with the stand column I; a through hole is formed above the cross beam I; the support groove is fixed on the stand column II through the matching of the support groove and the bolt; the two ends of the cross beam II are inserted into the supporting grooves in a plugging mode, the supporting grooves are provided with through grooves, and the cross beam II is provided with a threaded hole.
The telescopic mechanism I comprises a connecting block I, a connecting cylinder I, a threaded rod I, a connecting block II, a guide shaft I and a threaded rod II; the connecting block I is fixed on the stand column II in a matched manner with a bolt, and one side of the connecting block I is provided with a plurality of fixedly connected threaded rods II and a guide shaft I; the connecting block II is fixed in the middle of the cross beam I through a bolt, and a plurality of threaded rods I and through holes are formed in one side of the connecting block II; the fixed positions of the threaded rod II and the threaded rod I correspond to each other, and the screw threads on the threaded rod II and the threaded rod I are opposite in rotation direction; a threaded hole is formed in the connecting cylinder I, and one end of the threaded rod II and one end of the threaded rod I are arranged in the threaded hole of the connecting cylinder I; one end of the guide shaft I is fixed on the connecting block I, and the other end of the guide shaft I penetrates through a through hole in the connecting block II.
The telescopic mechanism II comprises a connecting block III, a threaded rod III, a connecting cylinder II, a guide shaft II, a connecting block IV and a threaded rod IV; the telescopic mechanism II is identical to the telescopic mechanism I in structure, the telescopic mechanism I is different from the telescopic mechanism I in that one end of the telescopic mechanism II is fixed on the cross beam II through the matching of the connecting block III and the bolt, the connecting block IV at the other end of the telescopic mechanism II is provided with a V-shaped plate, and the telescopic mechanism II is connected with the cross beam I fixed on two adjacent sides of the stand column I through the V-shaped plate
The supporting platform comprises a pedal, a pin shaft, a guide plate and a cushion block; the pedal is laid between the telescopic mechanism I and the telescopic mechanism II, and a plurality of leakage holes are formed in the pedal; the guide plate is laid below the pedal; the cushion block is fixedly arranged on the bottom surface of the pedal; through holes are arranged on the pedal and the guide plate; the pin shaft is arranged in the through holes in the pedal and the guide plate and is connected with the through hole in the cross beam I.
The stair is fixed on the outer sides of the cross beam I and the upright post I, and a guardrail is arranged on the stair; railing both ends are fixed on stand I, and the railing bottom is connected with crossbeam I.
Preferably, the pedal is provided with a plurality of protrusions.
Compared with the prior art, the utility model beneficial effect shows:
1) A through groove is formed in the supporting groove, a threaded hole is formed in the cross beam II, and the supporting groove and the cross beam II are locked and fixed through a matching bolt; if II length errors of crossbeam in the installation, only need use bolt cooperation to support logical groove on the groove and the screw hole on the crossbeam II with crossbeam II fixed to suitable position can.
2) One ends of the threaded rods II and I are arranged in threaded holes of the connecting cylinder I, and the telescopic mechanism I contracts and extends by rotating the connecting cylinder I to be matched with threads on the threaded rods II and I; i one end of guiding axle is fixed on connecting block I, and I other end of guiding axle passes the through-hole on connecting block II, makes guiding axle I slide in the through-hole on connecting block II, and guiding axle I plays the effect of auxiliary stay, if the distance between stand I and the stand II error appears, accessible adjustment telescopic machanism I and telescopic machanism II elimination error.
3) The pedal can support workers to walk on the pedal, and a plurality of leakage holes are formed in the pedal, so that water accumulation in rainy days is prevented; the pedal is provided with a plurality of bulges which play a role of skid resistance. The guide plate is arranged below the pedal and plays roles in keeping off rain and discharging accumulated water; the cushion block is fixedly arranged on the bottom surface of the pedal, the cushion block plays a role of separating a space between the pedal and the guide plate, and the guide plate can drain water more smoothly after the space is separated; the pin shaft is arranged in the through holes in the pedal and the guide plate and matched with the through holes in the cross beam I to prevent the pedal and the guide plate from displacing.
4) The stair is fixed on the outer sides of the cross beam I and the upright post I, and a guardrail is arranged on the stair, so that workers can conveniently go up and down the stair; the railing plays the effect of protection workman's safety.
Drawings
FIG. 1 is a schematic structural view of an auxiliary steel structure connecting platform for a boiler according to the present invention;
FIG. 2 is a schematic structural view of an auxiliary steel structure connecting platform for a boiler according to the present invention;
FIG. 3 is a schematic structural view of a support mechanism, a telescoping mechanism I and a telescoping mechanism II in FIG. 1;
FIG. 4 is a schematic structural view of the cross beam II and the supporting groove in FIG. 1;
FIG. 5 is a schematic structural diagram of the telescoping mechanism I in FIG. 1;
FIG. 6 is a schematic structural diagram of a telescoping mechanism II in FIG. 1;
FIG. 7 is a schematic structural view of the support platform of FIG. 2;
in the figure: 1. a support mechanism; 101. a cross beam I; 102. a stand column I; 103. a cross beam II; 104. a column II; 105. a support groove; 2. a telescoping mechanism I; 201. a connecting block I; 202. a connecting cylinder I; 203. a threaded rod I; 204. a connecting block II; 205. a guide shaft I; 206. a threaded rod II; 3. a telescoping mechanism II; 301. connecting block III; 302. a threaded rod III; 303. a connecting cylinder II; 304. a guide shaft II; 305. a connecting block IV; 3051. a V-shaped plate; 306. a threaded rod IV; 4. a boiler; 5. a support platform; 501. a pedal; 502. a pin shaft; 503. a baffle; 504. cushion blocks; 6. a staircase; 7. a railing.
Detailed Description
For the convenience of understanding of those skilled in the art, the technical solution of the present invention will be further specifically described with reference to fig. 1 to 7.
An auxiliary steel structure connecting platform for a boiler comprises a supporting mechanism 1, a telescopic mechanism I2, a telescopic mechanism II 3, a supporting platform 5, a stair 6 and a railing 7; the supporting mechanism 1 surrounds and supports the boiler 4; two ends of the telescopic mechanism I2 and the telescopic mechanism II 3 are connected with the supporting mechanism 1; the supporting platform 5 is laid between the telescopic mechanism I2 and the telescopic mechanism II 3; the railing 7 is fixedly connected with the supporting mechanism 1; the stairs 6 are arranged on the outer side of the supporting mechanism 1; the supporting mechanism 1 comprises a cross beam I101, a stand column I102, a cross beam II 103, a stand column II 104 and a supporting groove 105; two ends of the cross beam I101 are fixedly connected with the upright posts I102; a through hole is formed above the cross beam I101; the support groove 105 is fixed on the upright II 104 through matching with a bolt; two ends of the cross beam II 103 are inserted into the support grooves 105, through grooves are formed in the support grooves 105, threaded holes are formed in the cross beam II 103, and the support grooves 105 and the cross beam II 103 are locked and fixed through matching bolts; if the length of the II 103 cross beam in the installation process has errors, the II 103 cross beam can be adjusted to a proper position only by matching bolts with the through grooves in the supporting grooves 105 and the threaded holes in the II 103 cross beam.
The telescopic mechanism I2 comprises a connecting block I201, a connecting cylinder I202, a threaded rod I203, a connecting block II 204, a guide shaft I205 and a threaded rod II 206; the connecting block I201 is fixed on the upright post II 104 by matching with a bolt, and one side of the connecting block I201 is provided with a plurality of fixedly connected threaded rods II 206 and a guide shaft I205; the connecting block II 204 is fixed in the middle of the cross beam I101 through a bolt, and a plurality of threaded rods I203 and through holes are formed in one side of the connecting block II 204; the fixing positions of the second threaded rod 206 and the first threaded rod 203 correspond to each other, and the screw directions of the second threaded rod 206 and the first threaded rod 203 are opposite; a threaded hole is formed in the connecting cylinder I202, one end of the threaded rod II 206 and one end of the threaded rod I203 are arranged in the threaded hole of the connecting cylinder I202, and the connection cylinder I202 is rotated to be matched with threads on the threaded rod II 206 and the threaded rod I203 to realize the contraction and extension of the telescopic mechanism I2; one end of the guide shaft I205 is fixed on the connecting block I201, the other end of the guide shaft I205 penetrates through the through hole in the connecting block II 204, so that the guide shaft I205 can slide in the through hole in the connecting block II 204, and the guide shaft I205 plays a role in auxiliary support.
The telescopic mechanism II 3 comprises a connecting block III 301, a threaded rod III 302, a connecting cylinder II 303, a guide shaft II 304, a connecting block IV 305 and a threaded rod IV 306; the telescopic mechanism II 3 is the same as the telescopic mechanism I2 in structure, and is different from the telescopic mechanism I2 in that one end of the telescopic mechanism II 3 is fixed on the beam II 103 through the matching of a connecting block III 301 and a bolt, a V-shaped plate 3051 is arranged on a connecting block IV 305 at the other end of the telescopic mechanism II 3, and the telescopic mechanism II 3 is connected with the beams I101 fixed on two adjacent sides of the upright column I102 through the V-shaped plate 3051; if the distance between the upright post I102 and the upright post II 104 has errors, the errors can be eliminated by adjusting the telescopic mechanism I2 and the telescopic mechanism II 3.
The supporting platform 5 comprises a pedal 501, a pin shaft 502, a guide plate 503 and a cushion block 504; the pedal 501 is laid between the telescopic mechanism I2 and the telescopic mechanism II 3 and can support workers to walk on the pedal 501, a plurality of leakage holes are formed in the pedal 501 to prevent water from accumulating in rainy days, and a plurality of protrusions are formed in the pedal 501 to increase friction force to prevent the workers from slipping when walking; the guide plate 503 is laid below the pedal 501, and the guide plate 503 plays roles of keeping off rain and draining accumulated water; the cushion block 504 is fixedly arranged on the bottom surface of the pedal 501, the cushion block 504 plays a role of separating a space between the pedal 501 and the guide plate 503, and the guide plate 503 can drain water more smoothly after the space is separated; through holes are arranged on the pedal 501 and the guide plate 503; the pin shaft 502 is arranged in through holes in the pedal 501 and the guide plate 503 and matched with the through holes in the cross beam I101 to prevent the pedal 501 and the guide plate 503 from displacing.
The stair 6 is fixed on the outer sides of the cross beam I101 and the upright post I102, a guardrail is arranged on the stair 6, and the stair 6 is convenient for workers to go up and down; the both ends of railing 7 are fixed on stand I102, and railing 7 bottom is connected with I101 of crossbeam, and railing 7 plays the effect of protection workman's safety.
The utility model provides a boiler is with supplementary steel construction connection platform, the working process as follows:
erecting a stand II 104 according to the specific size of the boiler 4, adjusting the position of a cross beam II 103 to a proper height, then fixing the cross beam II on the stand II 104 in cooperation with a support groove 105, fixing one end of a telescopic mechanism I2 on the stand II 104, and fixing the other end of the telescopic mechanism I2 in the middle of a cross beam I101; one end of a telescopic mechanism II 3 is fixed on the cross beam II 103, a V-shaped plate 3051 is arranged on a connecting block IV 305 at the other end of the telescopic mechanism II 3, and the telescopic mechanism II 3 is connected with cross beams I101 fixed on two adjacent sides of the upright post I102 through the V-shaped plate 3051; a guide plate 503 is laid between the telescopic mechanism I2 and the telescopic mechanism II 3; the pedal 501 is laid on the guide plate 503, and then the pedal 501 and the guide plate 503 are fixed with the beam I101 through the pin shaft 502; the stair 6 is erected at a proper position, then the railing 7 is fixed between the upright posts I102, and the bottom of the railing 7 is connected with the cross beam I101. If error appears in II 103 lengths of crossbeam in the installation, only need use bolt cooperation support lead to groove on the groove 105 and the screw hole on II 103 of crossbeam with II 103 fixed suitable position in crossbeam can, if error appears in the distance between I102 of stand and II 104 of stand, accessible adjustment telescopic machanism I2 and telescopic machanism II 3 elimination error.
The foregoing is illustrative and explanatory only of the structure of the present invention, and it is intended that those skilled in the art who have the structure described herein be able to make various modifications, additions or substitutions in the same manner as the above-described embodiments without departing from the structure of the present invention or exceeding the scope defined by the claims.

Claims (6)

1. An auxiliary steel structure connecting platform for a boiler comprises a supporting mechanism, a telescopic mechanism I, a telescopic mechanism II, a supporting platform, a stair and a railing; the boiler is characterized in that the supporting mechanism surrounds and supports the boiler; two ends of the telescopic mechanism I and the telescopic mechanism II are connected with the supporting mechanism; the supporting platform is laid between the telescopic mechanism I and the telescopic mechanism II; the handrail is fixedly connected with the supporting mechanism; the stairs are arranged on the outer side of the supporting mechanism;
the telescopic mechanism I comprises a connecting block I, a connecting cylinder I, a threaded rod I, a connecting block II, a guide shaft I and a threaded rod II; the connecting block I is fixed on the stand column II in a matched manner with a bolt, and one side of the connecting block I is provided with a plurality of fixedly connected threaded rods II and a guide shaft I; the connecting block II is fixed in the middle of the cross beam I through a bolt, and a plurality of threaded rods I and through holes are formed in one side of the connecting block II; the fixed positions of the threaded rod II and the threaded rod I correspond to each other, and the screw threads on the threaded rod II and the threaded rod I are opposite in rotation direction; a threaded hole is formed in the connecting cylinder I, and one end of the threaded rod II and one end of the threaded rod I are arranged in the threaded hole of the connecting cylinder I; one end of the guide shaft I is fixed on the connecting block I, and the other end of the guide shaft I penetrates through a through hole in the connecting block II.
2. The auxiliary steel structure connecting platform for the boiler as claimed in claim 1, wherein the supporting mechanism comprises a beam I, a column I, a beam II, a column II and a supporting groove; two ends of the cross beam I are fixedly connected with the stand column I; a through hole is formed above the cross beam I; the support groove is fixed on the stand column II through the matching of the support groove and the bolt; two ends of the cross beam II are inserted into the supporting grooves; and a through groove is arranged on the supporting groove, and a threaded hole is arranged on the cross beam II.
3. The auxiliary steel structure connecting platform for the boiler as claimed in claim 1, wherein the telescopic mechanism II comprises a connecting block III, a threaded rod III, a connecting cylinder II, a guide shaft II, a connecting block IV and a threaded rod IV; the telescopic mechanism II is identical to the telescopic mechanism I in structure, the telescopic mechanism I is different from the telescopic mechanism I in that one end of the telescopic mechanism II is fixed on the beam II through the matching of the connecting block III and the bolt, the connecting block IV at the other end of the telescopic mechanism II is provided with a V-shaped plate, and the telescopic mechanism II is connected with the beam I fixed on two adjacent sides of the stand I through the V-shaped plate.
4. The auxiliary steel structure connecting platform for the boiler of claim 1, wherein the supporting platform comprises a pedal, a pin shaft, a guide plate and a cushion block; the pedal is laid between the telescopic mechanism I and the telescopic mechanism II, and a plurality of leakage holes are formed in the pedal; the guide plate is laid below the pedal; the cushion block is fixedly arranged on the bottom surface of the pedal; through holes are arranged on the pedal and the guide plate; the pin shaft is arranged in the through holes in the pedal and the guide plate and is connected with the through hole in the cross beam I.
5. The auxiliary steel structure connecting platform for the boiler as claimed in claim 1, wherein the stairs are fixed on the outer sides of the beam I and the column I, and guardrails are arranged on the stairs; railing both ends are fixed on stand I, and the railing bottom is connected with crossbeam I.
6. The auxiliary steel structure connecting platform for the boiler as recited in claim 4, wherein a plurality of protrusions are provided on the step plate.
CN202221653533.6U 2022-06-29 2022-06-29 Auxiliary steel structure connecting platform for boiler Active CN217635570U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221653533.6U CN217635570U (en) 2022-06-29 2022-06-29 Auxiliary steel structure connecting platform for boiler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221653533.6U CN217635570U (en) 2022-06-29 2022-06-29 Auxiliary steel structure connecting platform for boiler

Publications (1)

Publication Number Publication Date
CN217635570U true CN217635570U (en) 2022-10-21

Family

ID=83630505

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221653533.6U Active CN217635570U (en) 2022-06-29 2022-06-29 Auxiliary steel structure connecting platform for boiler

Country Status (1)

Country Link
CN (1) CN217635570U (en)

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