Zinc dross pretreatment converter device
By introducing vibrating components and an inclined feeding trough structure into the zinc dross pretreatment converter, the problem of zinc dross agglomeration was solved, achieving uniform distribution and smooth feeding of zinc dross, and improving recovery efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGDU YANGZHOU XINDA ZINC IND CO LTD
- Filing Date
- 2025-04-18
- Publication Date
- 2026-05-15
AI Technical Summary
In existing technologies, the pretreatment position of zinc dross is not properly adjusted, resulting in the agglomeration of zinc ingot waste residue that is difficult to separate, thus affecting the recycling efficiency.
A converter device for zinc dross pretreatment was designed, which adopts a vibrating component at the bottom of the dross treatment platform and an inclined feeding chute structure, combined with a receiving trolley and moving wheels, to achieve uniform distribution and smooth loading and unloading of zinc dross.
It improves the processing efficiency of zinc dross, reduces operational difficulty, facilitates the collection and transportation of zinc dross, and enhances recycling efficiency.
Smart Images

Figure CN224243124U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a waste treatment component, specifically to a converter device for pretreatment of zinc slag. Background Technology
[0002] In the process of zinc ingot smelting, zinc-containing ore needs to undergo pretreatment such as beneficiation, crushing, and grinding before being put into a smelting furnace along with auxiliary raw materials such as coke and limestone. A reduction reaction is carried out at high temperatures, reducing zinc from the ore to form zinc vapor. The zinc vapor then enters a condenser to cool and condense into liquid zinc, which is then cast to obtain zinc ingots. During the production of zinc ingots, some waste residue is generated. This waste residue needs to be collected promptly. Many zinc ingot waste residues tend to clump together, requiring external force to break them up and recycle them.
[0003] In the prior art, 201520994813.7 discloses an online zinc slag recycling device. This utility model discloses an online zinc slag recycling device, comprising: a heating furnace for heating and liquefying zinc slag, a guide trough for guiding the recovered zinc liquid into a zinc pot, and a recycling device for recovering the remaining substances after zinc slag liquefaction. The heating furnace liquefies the zinc slag placed inside by heating, forming zinc liquid. The zinc liquid flows into the zinc pot through the guide trough, and the recycling device recovers the remaining substances after zinc slag liquefaction, thus realizing the recycling and reuse of zinc slag and achieving online zinc slag recycling.
[0004] Although existing technologies avoid the offline recovery of zinc dross and reduce labor and energy consumption, they also have the drawback of not being able to effectively adjust the location of zinc dross pretreatment. Utility Model Content
[0005] To overcome the shortcomings of existing technologies where the position of zinc dross pretreatment is difficult to adjust, this utility model provides a converter device for zinc dross pretreatment.
[0006] This utility model is achieved using the following technical solution: a zinc slag pretreatment converter device, comprising a converter body, a slag treatment platform on the converter body, a treatment space on the slag treatment platform, a bottom frame at the bottom of the slag treatment platform, a vibrating component (a vibrating rod) on the bottom frame, the vibrating rod transmitting vibration to the slag treatment platform, a resting station on the slag treatment platform, a chute on the resting station, a slider in the chute, a side baffle on the slider, and the side baffle moving under the action of the slider.
[0007] A side platform is provided next to the converter body, a vertical plate is provided on the side platform, an inclined plate is provided on the vertical plate, and an inclined feeding chute is provided on the inclined plate.
[0008] The processing space is equipped with a bottom receiving component, which is a receiving trolley, and the receiving trolley is equipped with a receiving box.
[0009] The receiving trolley is equipped with a bottom support, and the bottom support is equipped with a movable component, which is a small caster wheel.
[0010] The receiving box has an open structure, and an intermediate transmission channel is provided between the receiving box and the scum treatment platform. The intermediate transmission channel is a hollow vertical channel.
[0011] Compared to existing technologies, this invention, by installing a vibrating component at the bottom of the slag treatment platform, can effectively transmit vibration to the platform, enabling the slag to be distributed more evenly and helping to break up slag agglomerations, thus improving processing efficiency. The vibrating rod can effectively separate clumps of zinc slag, facilitating subsequent processing of smaller granular zinc slag. A side platform is provided next to the converter body, with vertical and inclined plates further installed on the side platform. An inclined feeding chute is provided on the inclined plate, making the loading and unloading process of zinc slag smoother, reducing operational difficulty, and improving work efficiency.
[0012] The processing space is equipped with a receiving trolley, which carries a receiving box. This design effectively collects and stores the treated zinc dross, facilitating subsequent transportation and processing. Additionally, the bottom support is equipped with casters, allowing the receiving trolley to move freely within the processing space, further simplifying the receiving and transportation process. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model;
[0014] Figure 2 This is a schematic diagram of the structure of this utility model;
[0015] Figure 3 This is a sectional view of the present invention;
[0016] In the diagram: 1 is the converter body, 2 is the slag treatment platform, 3 is the treatment space, 4 is the bottom frame, 5 is the vibrator, 6 is the placement station, 7 is the chute, 8 is the side baffle, 9 is the inclined plate, 10 is the receiving trolley, 11 is the receiving box, and 12 is the intermediate transmission channel. Detailed Implementation
[0017] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0018] A zinc dross pretreatment converter device includes a converter body 1, a dross treatment platform 2 on the converter body 1, a treatment space 3 on the dross treatment platform 2, a bottom frame 4 at the bottom of the dross treatment platform 2, and a vibrating component 5 on the bottom frame 4. The vibrating component 5 is powered by a motor and transmits the vibration to the dross treatment platform 2. The dross treatment platform 2 has a placement station 6 with a chute 7. A slider is installed in the chute 7, and a side baffle 8 is installed on the slider. The side baffle 8 moves with the slider, and its position can be adjusted by adjusting the position of the zinc dross in the placement station 6. When a large amount of zinc dross is fed, the side baffle 8 can provide local buffering.
[0019] By installing a vibration component at the bottom of the scum treatment platform 2, vibration can be effectively transmitted to the scum treatment platform, enabling the scum to be distributed more evenly on the platform 2 and helping to break up the scum agglomeration, thereby improving processing efficiency. The vibrating rod 5 can be used to effectively vibrate the clumps of zinc scum, which facilitates the subsequent processing of small granular zinc scum.
[0020] A side platform is provided next to the converter body 1, and a vertical plate is provided on the side platform. An inclined plate 9 is provided on the vertical plate, and an inclined feeding chute is provided on the inclined plate 9. The side platform next to the converter body 1, and the vertical plate and inclined plate 9 are further provided on the side platform. The inclined feeding chute is provided on the inclined plate 9, which makes the loading and unloading process of zinc dross smoother, reduces the difficulty of operation, and improves work efficiency.
[0021] The processing space 3 is equipped with a bottom receiving component, which is a receiving trolley 10. The receiving trolley 10 is equipped with a receiving box 11 and a bottom support. The bottom support is equipped with a moving component, which is a small wheel. The receiving trolley 10 and the receiving box on the receiving trolley 10 can effectively collect and store the processed zinc dross, which is convenient for subsequent transportation and processing. The small wheel on the bottom support allows the receiving trolley 10 to move freely within the processing space, further facilitating the receiving and transportation process.
[0022] The receiving box 11 has an open structure, and an intermediate transmission channel 12 is provided between the receiving box 11 and the slag treatment platform 2. The intermediate transmission channel 12 is a hollow vertical channel. The open structure of the receiving box 11 and the hollow vertical channel between it and the slag treatment platform 2 can ensure that the treated zinc slag can be smoothly transferred from the treatment platform to the receiving box 11 on the receiving trolley 10, making the recovery of zinc slag and subsequent pretreatment more convenient.
[0023] The above embodiments are merely preferred embodiments of this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.
Claims
1. A converter apparatus for pretreating zinc dross, comprising a converter body, a dross treatment platform on the converter body, a treatment space on the dross treatment platform, a bottom frame at the bottom of the dross treatment platform, a vibrating component (a vibrating rod) on the bottom frame, the vibrating component transmitting vibration to the dross treatment platform, and a placement station on the dross treatment platform, characterized in that: The placement station is provided with a chute, a slider is provided in the chute, and a side baffle is provided on the slider. The side baffle moves in position under the action of the slider.
2. The zinc dross pretreatment converter device according to claim 1, characterized in that: A side platform is provided next to the converter body, a vertical plate is provided on the side platform, an inclined plate is provided on the vertical plate, and an inclined feeding chute is provided on the inclined plate.
3. The zinc dross pretreatment converter device according to claim 2, characterized in that: The processing space is equipped with a bottom receiving component, which is a receiving trolley, and the receiving trolley is equipped with a receiving box.
4. The zinc dross pretreatment converter device according to claim 3, characterized in that: The receiving trolley is equipped with a bottom support, and the bottom support is equipped with a movable component, which is a small caster wheel.
5. The zinc dross pretreatment converter device according to claim 4, characterized in that: The receiving box has an open structure, and an intermediate transmission channel is provided between the receiving box and the scum treatment platform. The intermediate transmission channel is a hollow vertical channel.