浮选机

议价
加入意向我们的浮选机是最新的设计,它使用圆形槽概念和结合圆形细胞的益处与矿物机制的独特功能创造理想的条件,并为所有粗加工,清洁和清理职责最大化浮选性能,它可以用来 分离有色金属,黑色金属,贵金属,非金属矿,化工原料和回收矿。 其特点:高inhalationand低功耗。 每个滑槽可吸入气体,水槽岩浆,独立。 没有必要的辅助设备水平的设备。 这是很容易改变的流程图。 岩浆的循环方式是非常合理的。 它可以减少杂质在很大的程度。 上有岩浆表面上的自动化设备。 这是很容易调节。 向上的人让岩浆周期向上升,这使得岩浆周期向下。
1)后充分混合,在纸浆和药物被输送到第一罐的槽底。
2)当浮选机的叶轮开始旋转,形成负压,使空气和纸浆在罐的底部,中间部分进入混合区。 纸浆,空气和药物,然后混合在混合区。
3)其结果是,离心力和混合纸浆导致矿化面积。 的空气是在与煤颗粒充分接触,并形成其然后均匀地分布到槽壁并去除向上分离区矿化气泡。 这些气泡然后收集作为一个泡沫层和刮工具被排出。 最后,清洁煤的泡沫是由该浮选机生产。
矿石浮选设备 适用于有色金属和黑色金属和非金属,如萤石和滑石的分离。 叶轮由V型皮带,它可以带来的离心力作用,以形成负压驱动。 一方面,吸入足够的空气混合以矿浆; 另一方面搅拌矿浆和与药物混合,以形成矿化泡沫。 要调节闸板高度,控制液面,使由壤土板刮有用的泡沫。
要在启动前检查螺栓。
使用手代替叶轮,以防止沉积物从加入电动机的负担。
要调整闸门高度谨慎,以保持液面稳定和刮矿化泡沫的槽。 叶轮和定子应该有一个距离,它们被磨损时应该被改变。 在泵的轴承应该维持每三个月。
1,合理的设计;
2.高效率;
3.低功耗,节能;
4.易于维护;
5.操作简单;
| 模型 | SF0.37 | SF0.7 | SF1.2 | SF2.8 | SF4 | SF8 | |
| 槽容量(M3) | 0.37 | 0.7 | 1.2 | 2.8 | 4 | 8 | |
| 刀片直径(mm) | 300 | 350 | 450 | 550 | 650 | T60 | |
| 生产能力(M3 /分钟) | 0.2-0.4 | 0.3-0.9 | 0.6-1.2 | 1.5-3.5 | 0.5-4 | 4-8 | |
| 叶轮旋转速度(米3 /分钟) | 352 | 400 | 312 | 268 | 238 | 191 | |
| 马达 | 模型 | ①Y90L-4 | ①Y100L2-4 | ①Y132M2-6 | ①Y160L-6 | ①Y180L-6 | ①Y250M-8 |
| ②Y90S-4 | ②Y90S-4 | ②Y90S-4 | ②Y90S-4 | ②Y90L-4 | ②Y100L-6 | ||
| 功率(kw) | ①1.5 | ①3 | ①5.5 | ①11 | ①15 | ①30 | |
| ②1.1 | ②1.1 | ②1.1 | ②1.1 | ②1.5 | ②1.5 | ||
| 外形尺寸(mm) | 700*700*750 | 900*820*950 | 1100*1100*1100 | 1700*1600*1150 | 1850*2050*1200 | 2200*2900*1400 | |
| 单槽重量(公斤) | 468 | 600 | 1373 | 2338 | 2660 | 4486 | |
Our Flotation machine is the latest design which uses the circular tank concept and combines the benefits of circular cells with the unique features of the minerals mechanism to create the ideal conditions and maximize floatation performance for all roughing, cleaning and scavenging duties, which can be used to separate nonferrous metal, ferrous metal, noble metal, nonmetallic mine, chemical material and recycle mine. Its features: high inhalationand low power. Each chute can inhale gas, sink magma, separate. There is no need of accessory equipment horizontal equipment. It is easy to change the flow chart. The cycling way of magma is very reasonable. It can reduce the impurities to a great extent. There is automatic equipment on the magma surface. It is easy to adjust. The upward one makes the magma cycle toward upward, which makes the magma cycle downward.
1) After intensively mixed, the pulp and medicaments are fed to the groove bottom of the first tank.
2) When the impeller of the flotation machine begins to rotate, negative pressure is formed, making the air and pulps at the bottom and middle part of the tank enter the mixing zone. The pulp, air and medicaments are then mixed in the mixing zone.
3) As a result, the centrifugal force and the blended pulps are lead to the mineralization area. The air is in full contact with the coal particle and forms mineralized bubbles which are then equally distributed to groove wall and removed upward to the separation region. These bubbles then gather as a foam layer and are discharged by the scraping tool. Finally, clean coal foam is produced by this flotation machine.
Ore flotation equipment is applicable for the separation of nonferrous metal and ferrous metal and nonmetal, such as fluorite and talc. The impeller is driven by V-belts, which can bring the centrifugal effect to form the negative pressure. On the one hand, to inhale sufficient air to mix with ore pulp; on the other hand to stir ore pulp and mix with medication to form the mineralized froth. To adjust the height of flashboard to control the liquid level and make the useful froth scraped by loam board.
To check the bolts before starting.
To use hand instead of impellers in order to prevent the sediment from adding the burden of electromotor.
To adjust the height of strobe carefully to keep the stabilization of liquid level and scrape the mineralized froth to the launder. The impellers and stators should have a distance and should be changed when they are worn. The bearing in the pump should be maintained every three months.
1. Reasonable design;
2. High-efficiency;
3. Low consumption and energy saving;
4. Easy to maintain;
5. Easy to operate;
| Model | SF0.37 | SF0.7 | SF1.2 | SF2.8 | SF4 | SF8 | |
| Trough capacity (m3) | 0.37 | 0.7 | 1.2 | 2.8 | 4 | 8 | |
| Blade diameter (mm) | 300 | 350 | 450 | 550 | 650 | T60 | |
| Production capacity (m3/min) | 0.2-0.4 | 0.3-0.9 | 0.6-1.2 | 1.5-3.5 | 0.5-4 | 4-8 | |
| Impeller rotation speed (m3/ min) | 352 | 400 | 312 | 268 | 238 | 191 | |
| Motor | Model | ①Y90L-4 | ①Y100L2-4 | ①Y132M2-6 | ①Y160L-6 | ①Y180L-6 | ①Y250M-8 |
| ②Y90S-4 | ②Y90S-4 | ②Y90S-4 | ②Y90S-4 | ②Y90L-4 | ②Y100L-6 | ||
| Power (kw) | ①1.5 | ①3 | ①5.5 | ①11 | ①15 | ①30 | |
| ②1.1 | ②1.1 | ②1.1 | ②1.1 | ②1.5 | ②1.5 | ||
| Dimensions (mm) | 700*700*750 | 900*820*950 | 1100*1100*1100 | 1700*1600*1150 | 1850*2050*1200 | 2200*2900*1400 | |
| Single trough weight (kg) | 468 | 600 | 1373 | 2338 | 2660 | 4486 | |