CN218115553U - Hot galvanizing system - Google Patents

Hot galvanizing system Download PDF

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Publication number
CN218115553U
CN218115553U CN202221926736.8U CN202221926736U CN218115553U CN 218115553 U CN218115553 U CN 218115553U CN 202221926736 U CN202221926736 U CN 202221926736U CN 218115553 U CN218115553 U CN 218115553U
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case
pickling
box
galvanizing
hoisting
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CN202221926736.8U
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Chinese (zh)
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蒋勇
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Sichuan Jianda Metal Components Co ltd
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Sichuan Jianda Metal Components Co ltd
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Abstract

The utility model discloses a hot galvanizing system relates to metal coating technical field. The utility model discloses a pickling case, wetting case, zinc-plated case, hoist and mount frame and hoist and mount subassembly, the side of pickling case is provided with wetting case, the side of wetting case is provided with zinc-plated case, connect through the anticreep board between pickling case, wetting case and the zinc-plated case, the welding has the fixed plate on the bottom lateral wall of pickling case and zinc-plated case, install hoist and mount frame on the fixed plate, the last side wall of hoist and mount frame is equipped with the case that slides, slides the case and passes through the hydraulic stem and be connected with hoist and mount subassembly. The utility model discloses an utilize hoist and mount frame to carry on the hoist and mount subassembly to articulate the iron base body through the hoist and mount subassembly, and then make its can be automatic at the pickling case, wet case and the zinc-plated case between round trip movement, avoid manual intervention, pickling case, wet case and zinc-plated case are connected through the anticreep board each other simultaneously, very big reduction the pickling case, the interval between wet case and the zinc-plated case, reduced the action distance of iron base body.

Description

Hot galvanizing system
Technical Field
The utility model belongs to the technical field of the metallic coating, especially, relate to a hot-galvanize system.
Background
The technological equipment is widely applied in the metal smelting and metal manufacturing industry, particularly in the metal coating industry at the present stage, the technological equipment is utilized to greatly reduce the difficulty of process operation and improve the production efficiency, and the technological equipment is utilized to carry out auxiliary production work in high-risk operation, so that the personal safety threat of high-risk operators can be reduced, wherein in the metal coating industry, the most common technological equipment is a hot galvanizing system, hot galvanizing is to react molten metal and an iron matrix to generate an alloy layer, so that the matrix and the coating are combined, but the method still has the following defects in practical use:
1. when the existing hot galvanizing system used in the metal coating industry is used, the hot tinning system mainly comprises a pickling tank, a wetting tank and a zinc bath tank, and the three tanks have larger intervals, so that the problem that the hot galvanizing fails due to the fact that the outer wall of an iron matrix is excessively oxidized in the process of conveying and moving the iron matrix to enter the next tank is caused;
2. the existing hot galvanizing system used in the metal coating industry mainly comprises a pickling tank, a wetting tank and a zinc bath tank when in use, and the distance between the three tanks is large, so that the time and the labor are consumed when an iron matrix is carried back and forth, the efficiency is low, and the hot galvanizing work of the iron matrix is not facilitated.
Therefore, the existing hot galvanizing system can not meet the requirements in practical use, so that the improved technology is urgently needed in the market to solve the problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a hot-galvanize system, carry on the hoist and mount subassembly through utilizing hoist and mount frame, and articulate the iron base member through hoist and mount subassembly, and then make its can be automatic at the pickling case, round trip movement between wetting box and the galvanizing tank, avoid manual intervention, the pickling case simultaneously, wetting box and galvanizing tank are connected through the anticreep board each other, very big pickling case that has dwindled, interval between wetting box and the galvanizing tank, the action distance of iron base member has been reduced, the current hot-galvanize system that is arranged in the metal coating industry problem that appears has been solved.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to a hot galvanizing system, which comprises a pickling tank, a wetting tank, a galvanizing tank, a hoisting frame and a hoisting assembly, wherein the wetting tank is arranged beside the pickling tank, the galvanizing tank is arranged beside the wetting tank, the pickling tank, the wetting tank and the galvanizing tank are connected through an anti-dropping plate, a fixed plate is welded on the bottom side walls of the pickling tank and the galvanizing tank, the hoisting frame is installed on the fixed plate, a sliding box is assembled on the upper side wall of the hoisting frame, and the sliding box is connected with the hoisting assembly through a hydraulic rod;
wherein, threaded sleeves are embedded in the outer walls of the two sides of a hoisting plate in the hoisting assembly, an electric telescopic rod is embedded in the hoisting plate, the bottom side wall of the electric telescopic rod is connected with a connecting sleeve through a connecting block, and a connecting column is assembled in the connecting sleeve.
Furthermore, a pickling cavity is formed in the pickling box, atomizing nozzles are assembled on the front side wall and the rear side wall of the top of the wetting box, a galvanizing cavity is formed in the galvanizing box, and the two side walls of the top of the pickling box, the wetting box and the galvanizing box are arranged in a hollow manner; specifically, the atomizer is connected with the solution in the wetting tank through a water pipe, and the atomizer faces to the central axis of the wetting tank.
Furthermore, a supporting column is welded on the side wall of the bottom of the hoisting frame, the hoisting frame is connected with the fixed plate through the supporting column, and the upper side wall of the hoisting frame is connected with the sliding box through a bolt; specifically, the sliding boxes are arranged in two, and the sliding boxes are respectively arranged on the front side wall and the rear side wall of the hoisting frame.
Furthermore, the hoisting frame is arranged in a square frame structure and is arranged right above the pickling tank, the wetting tank and the galvanizing tank, and a sliding groove is formed in the sliding tank and is arranged in a T-shaped structure; specifically, the top side wall of the sliding groove penetrates through the top side wall of the sliding box.
Further, the sliding box is in sliding connection with the side walls of two ends of a hoisting plate in the hoisting assembly through the sliding groove, the hoisting plate is connected with the side wall of one end of the hydraulic rod through the threaded sleeve, the hydraulic rod is arranged in the sliding groove, specifically, the peripheral side wall of the hydraulic rod is arranged in a gap with the inside of the sliding groove, and the hoisting plate can be driven to move back and forth in the sliding groove through the hydraulic rod.
Furthermore, the number of the electric telescopic rods in the hoisting plate is two, the connecting columns at the bottoms of the electric telescopic rods are arranged in a bending structure, and the connecting columns at the tail ends of the two electric telescopic rods are oppositely arranged; specifically, the connecting column at the tail end of the electric telescopic rod can sink to the inside of the pickling cavity, the wetting box and the galvanizing cavity along with the iron substrate.
The utility model discloses following beneficial effect has:
1. the utility model discloses a set up the pickling case, moist case and zinc-plating case, when using, the pickling case, moist case and zinc-plating case are connected through the anticreep board each other, very big pickling case that has dwindled, interval between moist case and the zinc-plating case, the action distance of the iron base body has been reduced, the current hot-galvanize system that is arranged in the metallic coating industry has been solved, when using, mainly included the pickling bath in the hot-dip tin plating system, moist pond and zinc bath, and interval is great between the three pond, consequently, carry the removal iron base body each other and make its in-process that enters into between the next pond can cause the too oxidation of iron base body outer wall to cause the problem that the hot-dip galvanizing inefficacy.
2. The utility model discloses a set up hoist and mount frame and hoist and mount subassembly, when using, carry on the hoist and mount subassembly through utilizing hoist and mount frame, and articulate the iron base body through hoist and mount subassembly, and then make its can be automatic at the pickling case, round trip movement between wetting box and the galvanizing case, avoid manual intervention, the current hot-galvanize system that is arranged in the metal coating industry has been solved, it is when using, mainly included the pickling bath in the hot-dip tinning system, wetting bath and zinc bath, and interval is great between the three pond, consequently, not only consuming time power when making a round trip to carry the iron base body, simultaneously efficiency is also low, be unfavorable for the problem that iron base body hot-galvanize work goes on.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic view of a hot dip galvanizing system;
FIG. 2 is a schematic structural view of a hoisting frame, a sliding box and a hoisting assembly;
FIG. 3 is a schematic structural diagram of a pickling tank, a wetting tank and a galvanizing tank;
fig. 4 is a schematic structural view of the hoisting assembly.
In the drawings, the reference numbers indicate the following list of parts:
1. a pickling tank; 101. a pickling chamber; 102. an anti-falling plate; 2. a wetting tank; 201. an atomizing spray head; 3. a galvanizing box; 301. a galvanizing cavity; 4. a fixing plate; 5. a hoisting frame; 501. a support column; 6. a slide box; 601. a sliding slot; 7. a hydraulic rod; 8. hoisting the assembly; 801. hoisting the plate; 802. a threaded sleeve; 803. an electric telescopic rod; 804. a joining block; 805. a connecting sleeve; 806. connecting the column.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention.
Please refer to fig. 1-4, the utility model relates to a hot dip galvanizing system, including pickling tank 1, wetting tank 2, galvanizing tank 3, hoisting frame 5 and hoisting assembly 8, the side of pickling tank 1 is provided with wetting tank 2, and the side of wetting tank 2 is provided with galvanizing tank 3, pickling tank 1, wetting tank 2 and galvanizing tank 3 are connected through anticreep board 102, the bottom side wall of pickling tank 1 and galvanizing tank 3 is welded with fixed plate 4, the hoisting frame 5 is installed on fixed plate 4, the upper side wall of hoisting frame 5 is equipped with slide box 6, slide box 6 is connected with hoisting assembly 8 through hydraulic stem 7;
the outer walls of two sides of a hoisting plate 801 in the hoisting assembly 8 are embedded with threaded sleeves 802, an electric telescopic rod 803 is embedded in the hoisting plate 801, the side wall of the bottom of the electric telescopic rod 803 is connected with an engagement sleeve 805 through an engagement block 804, and an engagement column 806 is assembled in the engagement sleeve 805.
As shown in fig. 1-2, a supporting column 501 is welded on the bottom side wall of the hoisting frame 5, the hoisting frame 5 is connected with the fixed plate 4 through the supporting column 501, and the upper side wall of the hoisting frame 5 is connected with the sliding box 6 through a bolt; specifically, two sliding boxes 6 are arranged, and the sliding boxes 6 are respectively arranged on the front side wall and the rear side wall of the hoisting frame 5; the hoisting frame 5 is arranged in a square frame structure, the hoisting frame 5 is erected right above the pickling tank 1, the wetting tank 2 and the galvanizing tank 3, the sliding tank 601 is arranged in the sliding tank 6, and the sliding tank 601 is arranged in a T-shaped structure; the sliding box 6 is connected with the side walls of two ends of a hoisting plate 801 in the hoisting assembly 8 in a sliding way through a sliding groove 601, the hoisting plate 801 is connected with the side wall of one end of a hydraulic rod 7 through a threaded sleeve 802, and the hydraulic rod 7 is arranged in the sliding groove 601; specifically, the peripheral side wall of the hydraulic rod 7 is arranged with an internal clearance from the sliding groove 601, and the lifting plate 801 can be driven by the hydraulic rod 7 to move back and forth in the sliding groove 601.
As shown in fig. 1 and 3, a pickling chamber 101 is formed inside the pickling tank 1, atomizing nozzles 201 are mounted on the front side wall and the rear side wall of the top of the wetting tank 2, a galvanizing chamber 301 is formed in the galvanizing tank 3, and the two top side walls of the pickling tank 1, the wetting tank 2 and the galvanizing tank 3 are hollowed out; specifically, the atomizer 201 is connected to the solution in the wetting tank 2 through a water pipe, and the atomizer 201 faces the central axis of the wetting tank 2.
As shown in fig. 2 and 4, two electric telescopic rods 803 in the hoisting plate 801 are provided, and the connecting columns 806 at the bottom of the electric telescopic rods 803 are arranged in a bending structure, and the connecting columns 806 at the ends of the two electric telescopic rods 803 are arranged oppositely; specifically, the engaging rod 806 at the end of the telescopic rod 803 can be lowered to the inside of the pickling chamber 101, the wetting tank 2 and the galvanizing chamber 301 with the iron substrate.
The above is only the preferred embodiment of the present invention, and the present invention is not limited thereto, any technical solutions recorded in the foregoing embodiments are modified, and some technical features thereof are replaced with equivalent ones, and any modification, equivalent replacement, and improvement made thereby all belong to the protection scope of the present invention.

Claims (6)

1. The utility model provides a hot dip galvanizing system, includes pickling case (1), wetting case (2), galvanizing tank (3), hoist and mount frame (5) and hoist and mount subassembly (8), its characterized in that: the pickling line is characterized in that a wetting box (2) is arranged beside the pickling box (1), a galvanizing box (3) is arranged beside the wetting box (2), the pickling box (1), the wetting box (2) and the galvanizing box (3) are connected through an anti-dropping plate (102), a fixing plate (4) is welded on the bottom side wall of the pickling box (1) and the galvanizing box (3), a hoisting frame (5) is installed on the fixing plate (4), a slide box (6) is assembled on the upper side wall of the hoisting frame (5), and the slide box (6) is connected with a hoisting component (8) through a hydraulic rod (7);
the outer walls of two sides of a hoisting plate (801) in the hoisting assembly (8) are inlaid with threaded sleeves (802), an electric telescopic rod (803) is inlaid in the hoisting plate (801), the bottom side wall of the electric telescopic rod (803) is connected with a joint sleeve (805) through a joint block (804), and a joint column (806) is assembled in the joint sleeve (805).
2. A hot galvanizing system according to claim 1, characterized in that: pickling chamber (101) have been seted up to the inside of pickling case (1), be equipped with atomizer (201) on the wall of both sides around the top of wetting case (2), be provided with galvanizing chamber (301) in galvanizing case (3), the top both sides wall fretwork setting of pickling case (1), wetting case (2) and galvanizing case (3).
3. A hot galvanizing system according to claim 1, characterized in that: the bottom side wall of the hoisting frame (5) is welded with a support column (501), the hoisting frame (5) is connected with the fixed plate (4) through the support column (501), and the upper side wall of the hoisting frame (5) is connected with the sliding box (6) through a bolt.
4. A hot galvanizing system according to claim 3, characterized in that: hoisting frame (5) are square frame type structure setting, just hoisting frame (5) erect directly over pickling tank (1), wet case (2) and galvanizing tank (3), sliding groove (601) has been seted up to the inside of sliding box (6), just sliding groove (601) are T type structure setting.
5. A hot galvanizing system according to claim 4, characterized in that: the sliding box (6) is in sliding connection with the side walls of two ends of a hoisting plate (801) in the hoisting assembly (8) through the sliding groove (601), the hoisting plate (801) is connected with the side wall of one end of a hydraulic rod (7) through a threaded sleeve (802), and the hydraulic rod (7) is arranged inside the sliding groove (601).
6. A hot galvanizing system according to claim 5, characterized in that: the lifting plate is characterized in that the number of the electric telescopic rods (803) in the lifting plate (801) is two, the connecting columns (806) at the bottoms of the electric telescopic rods (803) are arranged in a bending structure, and the connecting columns (806) at the tail ends of the electric telescopic rods (803) are oppositely arranged.
CN202221926736.8U 2022-07-25 2022-07-25 Hot galvanizing system Active CN218115553U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221926736.8U CN218115553U (en) 2022-07-25 2022-07-25 Hot galvanizing system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221926736.8U CN218115553U (en) 2022-07-25 2022-07-25 Hot galvanizing system

Publications (1)

Publication Number Publication Date
CN218115553U true CN218115553U (en) 2022-12-23

Family

ID=84520960

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221926736.8U Active CN218115553U (en) 2022-07-25 2022-07-25 Hot galvanizing system

Country Status (1)

Country Link
CN (1) CN218115553U (en)

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