CN218063676U - Supporting structure of stainless steel pressure pipeline - Google Patents

Supporting structure of stainless steel pressure pipeline Download PDF

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Publication number
CN218063676U
CN218063676U CN202221219695.9U CN202221219695U CN218063676U CN 218063676 U CN218063676 U CN 218063676U CN 202221219695 U CN202221219695 U CN 202221219695U CN 218063676 U CN218063676 U CN 218063676U
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China
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stainless steel
pipeline
lifting
plate
positioning
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CN202221219695.9U
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Chinese (zh)
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王鑫
蔡旺
陈广斌
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Jiangsu Fengen Metal Products Co ltd
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Jiangsu Fengen Metal Products Co ltd
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Abstract

The utility model discloses a stainless steel pipeline under pressure's bearing structure, including bottom plate, lift backup pad, fixed clamp, activity clamp, the terminal surface of bottom plate is equipped with the supporting seat, the terminal surface of supporting seat is equipped with the fretwork cavity, when electric lift rod is adjusting stainless steel pipeline under pressure, accessible electric lift rod drives square stabilizer plate and reciprocates through the inside location of the location spout that the positioning link block set up about fretwork intracavity wall to the function that realizes altitude mixture control is carried out automatic jack-up to the lift backup pad to the one end that makes electric lift rod, and square stabilizer plate can guarantee that the lift backup pad pounces more stability in the lift adjustment process, and then the phenomenon that appears rocking when can not appearing the pipeline altitude mixture control, only need the staff to realize the function of automatic rising altitude mixture control through operation regulation control panel simultaneously, avoided the staff to lead to the problem that manual machine adjusts the comparison difficulty because the gravity of pipeline inside transport resource is too big.

Description

Supporting structure of stainless steel pressure pipeline
Technical Field
The utility model belongs to the technical field of the pipeline erection equipment, concretely relates to stainless steel pipeline under pressure's bearing structure.
Background
At present, most of pipeline supporting structures comprise an underframe, a supporting column and a connecting block, the underframe is connected with one end of the supporting column, the other end of the supporting column is connected with the connecting block, and a pipe groove used for placing a pressure pipeline is formed in the connecting block. When the pressure pipeline is installed, the pressure pipeline is often required to be supported at a certain height through a supporting structure according to the requirements of geographical environments and then installed, and the inventor thinks that the supporting structure cannot be reused and has the defect of low applicability.
For this purpose, a pressure pipeline supporting structure with publication number "CN 214404937U". The lifting device comprises a lifting plate, a lifting piece and a driving piece, wherein the lifting plate is arranged above the base, and the mounting frame is arranged on the side wall of the lifting plate, which is far away from one side of the base; the lifting part is provided with a pair of lifting parts and is respectively arranged in the two hollow cavities, each lifting part comprises a worm and at least one group of worm wheels and a screw rod, the worms are horizontally arranged and rotatably connected to the inner wall of the hollow cavity, the worm wheels are axially distributed along the worms and rotatably connected to the inner wall of the hollow cavities, the worm wheels and the worms are meshed, the screw rods are coaxially and threadedly connected to the worm wheels along the vertical direction, and the other ends of the screw rods are fixedly arranged on the bottom wall of the lifting plate; the driving piece is arranged on the worm and can enable the two worms to synchronously rotate.
To this kind of pipeline under pressure bearing structure of the aforesaid, although driven gear and the transmission toothed chain that set up drive arbitrary screw rod and drive and correspond driven gear and rotate, and then make the toothed chain drive another driven gear and rotate, and then realize the synchronous rotation of two screws, the screw rod of being convenient for drives the lifter plate in step and steadily goes up and down, improves bearing structure's stability, but its still has following comparatively obvious defect in the use: when the pipeline uses the in-process of transportation resource to carry out altitude mixture control, can lead to manual mechanical adjustment to be more difficult because the gravity of the inside transportation resource of pipeline is too big, do not set up relative buffering protection structure in the clamp in the above-mentioned pipeline bearing structure simultaneously, can make the pipeline under the process of fixed stay the excessive problem that leads to the pipeline to appear warping of pressure degree.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a stainless steel pipeline under pressure's bearing structure to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above purpose, the utility model provides a following technical scheme: the utility model provides a stainless steel pipeline under pressure's bearing structure, includes bottom plate, lift backup pad, fixed clamp, activity clamp, the terminal surface of bottom plate is equipped with the supporting seat, the terminal surface of supporting seat is equipped with the fretwork chamber, equal symmetry is equipped with the location spout on the lateral wall about the inside of fretwork chamber, and the inside of location spout all slides and is equipped with the location link block, the inside activity chamber that is equipped with in the terminal surface four corners of supporting seat, the inside in activity chamber all is equipped with the locating lever, the top activity of locating lever is run through to the outside setting in upper end of supporting seat and has been cup jointed expanding spring, the bottom equidistance of lift backup pad is equipped with electric lift rod, it is fixed with square stabilizer plate to run through on the electric lift rod, between the electric lift rod and the bottom surface symmetry that is located the lift backup pad is equipped with the blade battery, the preceding terminal surface of lift backup pad is equipped with the regulation control panel, the terminal surface middle part of lift backup pad is equipped with the arc supporting shoe, the both sides of arc supporting shoe all is equipped with the support cushion column, the inboard equidistance of fixed clamp and activity clamp is equipped with damping spring, damping spring's inboard all is equipped with arc semicircle protection piece.
One end of a positioning connecting sliding block arranged in the positioning sliding groove is fixedly connected with the left side surface and the right side surface of the square stabilizing plate, when the electric lifting rod adjusts a stainless steel pressure pipeline, the electric lifting rod can drive the square stabilizing plate to move up and down through positioning inside the positioning sliding groove arranged on the left side and the right side of the inner wall of the hollow cavity through the positioning connecting sliding block, so that the function of automatically jacking the lifting supporting plate to realize height adjustment is realized by one end of the electric lifting rod, the square stabilizing plate can ensure that the lifting supporting plate is more stable in the lifting adjusting process, the phenomenon of shaking during pipeline height adjustment can be avoided, meanwhile, the function of automatically lifting height adjustment can be realized by only operating an adjusting control panel by a worker, and the problem that manual mechanical adjustment is difficult due to the overlarge gravity of conveying resources inside the pipeline by the worker is solved.
The lifting support plate lifting device is characterized in that six groups of electric lifting rods are arranged, the bottom ends of the six groups of electric lifting rods are fixedly connected with the bottom end inside the hollow cavity, and the lifting support plate lifting device can be automatically lifted and adjusted, so that the horizontal stability of the lifting support plate during lifting and adjusting is guaranteed.
The utility model discloses a solar energy storage device, including the bottom surface of lift backup pad, the bottom surface of lift backup pad is equipped with movable cavity inside and is equipped with bar photovoltaic solar panel, this can make whole pipeline bearing structure holding stability to through ware both sides bar photovoltaic solar panel's setting, can realize the function that light energy turned into electric energy, and the electric energy of conversion is carried to the inside effect of carrying out the storage and collecting of blade battery, thereby can guarantee to continuously provide the electric energy effect to the component in this pipeline bearing structure.
Electric connection between regulation control panel and the blade battery, and electric connection between blade battery and the bar photovoltaic solar panel, this when needs are adjusted this supporting mechanism, the blade battery provides the electric energy for adjusting control panel, makes and adjusts control panel and controls the function that electric lift pole realized automatic rising and regulating to can realize the function to the altitude mixture control of high pipeline bearing structure to the stainless steel pressure pipe.
The support buffering post is fixedly connected with the bottoms of the left side and the right side of the fixed hoop, the fixed hoop and the movable hoop are locked and fixed through bolts, when the stainless steel pressure pipeline is subjected to external impact force, the buffer buffering post supports the stainless steel pressure pipeline through the support buffering post, the impact force of the external force on the stainless steel pressure pipeline can be relieved, the fit between the fixed hoop and the damping spring on the inner side of the movable hoop and the arc-shaped semicircular protecting piece and the veneering design of the stainless steel pressure pipeline are passed, when the stainless steel pressure pipeline shakes, the problem that the fixed hoop and the movable hoop rub and damage the surface of the stainless steel pressure pipeline is avoided, the buffer protection effect on the surface of the stainless steel pressure pipeline is achieved, meanwhile, the problem that the pipeline deforms due to the fact that the pressure degree is too large in the pipeline fixing process is solved, and the problem that the pipeline shakes and friction damage occurs between the pipeline and the hoop due to the fact that external objects can be generated under the effect of the external objects is solved.
The utility model discloses a technological effect and advantage: this stainless steel pipeline under pressure's bearing structure, through when stainless steel pipeline under pressure receives outside impact, support the buffering of stainless steel pipeline under pressure through supporting the buffering post, can alleviate the impact dynamics of external force to stainless steel pipeline under pressure, and cross the cooperation of fixed clamp and the inboard damping spring of activity clamp and arc semicircle protection piece and the wainscot design of stainless steel pipeline under pressure, can be when stainless steel pipeline under pressure appears rocking, avoid fixed clamp and activity clamp to appear the damaged problem of friction to stainless steel pipeline under pressure surface, and then realize playing the cushioning protection effect to stainless steel pipeline under pressure's surface, solved easily at the fixed process of pipeline the too big problem that leads to the pipeline to appear warping of exerting pressure degree simultaneously, can also produce the effect of external object and cause the pipeline to rock and lead to taking place the problem of friction damage between pipeline and the clamp.
When the electric lifting rod is used for adjusting the stainless steel pressure pipeline, the square stabilizing plate is driven by the electric lifting rod to move up and down through the positioning chute inside positioning of the positioning connecting slide block arranged on the left and right sides of the inner wall of the hollow cavity, so that the one end of the electric lifting rod can automatically jack up the lifting support plate to realize the height adjustment function, the square stabilizing plate can ensure that the lifting support plate can be used for smashing more stability in the lifting adjustment process, further, the phenomenon of shaking during the height adjustment of the pipeline can not occur, meanwhile, only a worker is required to realize the automatic lifting height adjustment function through operating the adjusting and controlling panel, and the problem that the worker is difficult to adjust manually and mechanically due to the fact that the gravity of the internal pipeline conveying resources is too large is avoided.
Through ware both sides bar photovoltaic solar panel's setting, can realize the function of light energy conversion for the electric energy, and the electric energy of conversion is carried to the inside effect of carrying out the storage and collecting of blade battery, thereby can guarantee to continuously provide the electric energy effect to the component in this pipeline bearing structure, when needs are adjusted this supporting mechanism, the blade battery provides the electric energy for adjusting control panel, make adjusting control panel control electric lift rod realize the function of automatic rising regulation, thereby can realize the function to the altitude mixture control of high pipeline bearing structure to the stainless steel pressure pipe.
Drawings
FIG. 1 is a schematic view of the present invention;
FIG. 2 is a schematic view of the present invention;
fig. 3 is a schematic structural diagram of the present invention.
In the figure: 1. a base plate; 2. a supporting seat; 3. hollowing out the cavity; 4. positioning the chute; 5. positioning the connecting slide block; 6. a movable cavity; 7. positioning a rod; 8. a tension spring; 9. lifting the supporting plate; 10. an electric lifting rod; 11. a square stabilizer plate; 12. adjusting the control panel; 13. an arc-shaped supporting block; 14. supporting the buffer column; 15. fixing a clamp; 16. a movable clamp; 17. a damping spring; 18. an arc-shaped semicircular protection piece; 19. A strip-shaped photovoltaic solar panel; 20. and a blade storage battery.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: the utility model provides a stainless steel pipeline under pressure's bearing structure, comprising a base plate 1, lift backup pad 9, fixed clamp 15, activity clamp 16, the terminal surface of bottom plate 1 is equipped with supporting seat 2, 1 four sides equidistance of bottom plate is equipped with the screw hole simultaneously, conveniently fix through the bolt, the terminal surface of supporting seat 2 is equipped with fretwork chamber 3, can make square steadying plate 11 realize stabilizing the lift and remove, equal symmetry is equipped with location spout 4 on the inside left and right sides lateral wall of fretwork chamber 3, and the inside of location spout 4 all slides and is equipped with location link block 5, and location link block 5 can promote the direction stability to square steadying plate 11, the one end of locating link block 5 and the left and right sides face fixed connection of square steadying plate 11 of establishing in the location spout 4.
Inside activity chamber 6 that is equipped with in the four corners of terminal surface of supporting seat 2, can make the locating lever 7 that sets up realize the function that the location goes up and down, the inside in activity chamber 6 all is equipped with locating lever 7, can make 9 lift of lift backup pad fix with the level stability, the top activity of locating lever 7 runs through to the outside setting in upper end of supporting seat 2 and has cup jointed expanding spring 8, produce the collision problem with 2 terminal surfaces of supporting seat when avoiding 9 lift backup pad to go up and down, the top fixed connection of locating lever 7 is set for to the four corners in bottom surface of lift backup pad 9 and activity chamber 6 inside, the left and right sides of lift backup pad 9 is equipped with bar photovoltaic solar panel 19, realize the effect of light energy conversion electric energy.
The bottom equidistance of lift backup pad 9 is equipped with electric lift pole 10, and electric lift pole 10 is provided with six groups, can make more firm when lift backup pad 9 goes up and down, the bottom of six groups electric lift pole 10 and the inside bottom fixed connection of fretwork chamber 3, it is fixed with square stabilising plate 11 to run through on the electric lift pole 10, can make lift backup pad 9 make and keep the direction stability in going up and down, be located between the electric lift pole 10 and the bottom surface symmetry of lift backup pad 9 is equipped with blade battery 20, can collect the electric energy of conversion and deposit and reserve, electric connection between regulation control panel 12 and the blade battery 20, and electric connection between blade battery 20 and the bar photovoltaic solar panel 19, the preceding terminal surface of lift backup pad 9 is equipped with regulation control panel 12, the realization is to the control of this pipeline bearing structure automatic rising and falling regulation.
The terminal surface middle part of lift backup pad 9 is equipped with arc supporting shoe 13, it is fixed to play the elastic support to the pipeline, the both sides of arc supporting shoe 13 all are equipped with support buffering post 14, play the buffering support to the pipeline, fixed clamp 15 is equipped with damping spring 17 with the equal equidistance of the inboard of activity clamp 16, and damping spring 17's inboard all is equipped with arc semicircle protection piece 18, play the guard action to the pipeline surface, guarantee that the pipeline surface does not receive the damage, the bottom fixed connection of the top of support buffering post 14 and the left and right sides of fixed clamp 15, and fix through bolt locking between fixed clamp 15 and the activity clamp 16.
It is concrete, when using through receiving outside impact at stainless steel pipeline under pressure, support the buffering of buffer column 14 to stainless steel pipeline under pressure, can alleviate the impact dynamics of external force to stainless steel pipeline under pressure, and cross the cooperation of fixed clamp 15 and the inboard damping spring 17 of activity clamp 16 and arc semicircle protection piece 18 and the wainscot design of stainless steel pipeline under pressure, can be when stainless steel pipeline under pressure rocks, avoid fixed clamp 15 and activity clamp 16 to appear the damaged problem of friction to stainless steel pipeline under pressure surface, and then realize playing the buffering guard action to stainless steel pipeline under pressure's surface, solved easily at the fixed process of pipeline the too big problem that leads to the pipeline to appear warping of pressure degree, still can produce the effect of foreign object and cause the pipeline to rock and lead to the problem that takes place the friction between pipeline and the clamp to damage simultaneously.
When the electric lifting rod 10 is used for adjusting the stainless steel pressure pipeline, the electric lifting rod 10 can drive the square stabilizing plate 11 to move up and down through the positioning sliding groove 4 arranged on the left and right sides of the inner wall of the hollow cavity 3 by positioning the connecting slide block 5, so that one end of the electric lifting rod 10 can automatically jack up the lifting support plate 9 to realize the height adjusting function, the square stabilizing plate 11 can ensure that the lifting support plate 9 can be more stable in the lifting adjusting process, further, the shaking phenomenon can not occur during the height adjusting of the pipeline, meanwhile, only the worker is required to realize the automatic lifting height adjusting function through operating the adjusting control panel 12, and the problem that the manual mechanical adjustment is more difficult due to the overlarge gravity of the conveying resources inside the pipeline is avoided.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications and variations can be made in the embodiments or in part of the technical features of the embodiments without departing from the spirit and the scope of the invention.

Claims (6)

1. The utility model provides a stainless steel pipeline under pressure's bearing structure, includes bottom plate (1), lift backup pad (9), fixed clamp (15), activity clamp (16), its characterized in that: the end face of the bottom plate (1) is provided with a supporting seat (2), the end face of the supporting seat (2) is provided with a hollow cavity (3), the left side wall and the right side wall inside the hollow cavity (3) are symmetrically provided with positioning chutes (4), the positioning chutes (4) are slidably provided with positioning connecting sliders (5), the four corners of the end face of the supporting seat (2) are internally provided with movable cavities (6), the movable cavities (6) are internally provided with positioning rods (7), the top ends of the positioning rods (7) movably penetrate through the outer part of the upper end of the supporting seat (2) and are sleeved with telescopic springs (8), the telescopic springs (8) are arranged, the bottom of the lifting supporting plate (9) are equidistantly provided with electric lifting rods (10), the electric lifting rods (10) are fixedly penetrated by square stabilizing plates (11), the bottom surfaces of the electric lifting supporting plates (9) and between the electric lifting rods (10) are symmetrically provided with blade storage batteries (20), the front end face of the lifting supporting plate (9) is provided with an adjusting control panel (12), the middle part of the end face of the lifting supporting plate (9) is provided with arc-shaped supporting blocks (13), the two sides of the movable clamping hoops (14) and the damping clamping hoop springs (17) are respectively arranged at the two sides of the movable clamping hoop (16), the inner sides of the damping springs (17) are respectively provided with an arc-shaped semicircular protecting piece (18).
2. The support structure of a stainless steel pressure pipe according to claim 1, wherein: one end of a positioning connecting sliding block (5) arranged in the positioning sliding groove (4) is fixedly connected with the left side surface and the right side surface of the square stabilizing plate (11).
3. The support structure of a stainless steel pressure pipe according to claim 1, characterized in that: the electric lifting rod (10) is provided with six groups, and the bottom ends of the six groups of electric lifting rods (10) are fixedly connected with the bottom end inside the hollow cavity (3).
4. The support structure of a stainless steel pressure pipe according to claim 1, characterized in that: four corners of the bottom surface of the lifting support plate (9) are fixedly connected with the top of a positioning rod (7) arranged in the movable cavity (6), and strip-shaped photovoltaic solar panels (19) are arranged on the left side and the right side of the lifting support plate (9).
5. The support structure of a stainless steel pressure pipe according to claim 4, wherein: the adjusting control panel (12) is electrically connected with the blade storage battery (20), and the blade storage battery (20) is electrically connected with the strip-shaped photovoltaic solar panel (19).
6. The support structure of a stainless steel pressure pipe according to claim 1, wherein: the top of the supporting buffer column (14) is fixedly connected with the bottoms of the left side and the right side of the fixed hoop (15), and the fixed hoop (15) and the movable hoop (16) are locked and fixed through bolts.
CN202221219695.9U 2022-05-20 2022-05-20 Supporting structure of stainless steel pressure pipeline Active CN218063676U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221219695.9U CN218063676U (en) 2022-05-20 2022-05-20 Supporting structure of stainless steel pressure pipeline

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221219695.9U CN218063676U (en) 2022-05-20 2022-05-20 Supporting structure of stainless steel pressure pipeline

Publications (1)

Publication Number Publication Date
CN218063676U true CN218063676U (en) 2022-12-16

Family

ID=84432315

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221219695.9U Active CN218063676U (en) 2022-05-20 2022-05-20 Supporting structure of stainless steel pressure pipeline

Country Status (1)

Country Link
CN (1) CN218063676U (en)

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