Planetary Ball Mill Manufacturer Lab Grinding Machine Intelligent Touch Screen High Efficiency for Nano Powder Milling
Intelligent Touch Screen Planetary Ball Mill For Nano Powder Milling & High Efficiency
Overview
Touch Screen Planetary Ball Mill is comprised of a standard planetary ball mill, along with a touch-based operation control system, enhancing the equipment's operational performance.This machine mainly satisfies the customers with the better quality and operation performance. It is widely used in geology, mining, metallurgy, electronics, building materials, ceramics, chemicals, light industry, medicine, environmental protection and other departments.
Working Principle
Touch Screen Planetary Ball Mill owns four working positions which can be installed with two or four mill jars on one turntable. When the turntable rotates, the jar axis makes planetary movements at high speed, the balls and materials inside the jars are impacted strongly in high speed movement, and materials are eventually ground into fine powder. A wide range of materials can be ground using either dry or wet grinding methods, achieving an output powder with a minimum granularity of 0.1μm, or even down to nano-scale powder.
Applications
Touch screen planetary ball mill is widely applied in industries such as geology, mineral, metallurgy, electronics, building materials, ceramics, chemical industry, light industry, medicine, environmental protection and so on. It is especially suitable for production fields like electronic ceramics, structural ceramics, magnetic materials, lithium cobalt acid, lithium manganese, catalyst, phosphor, long afterglow phosphor, rare earth polishing powder and electronic glass. Powder, fuel cell, Zinc Oxide varistor, piezoelectric ceramic, nano material, wafer ceramic capacitor, MLCC, thermistor (PTC, NTC), ZnO varistor, dielectric ceramics, alumina ceramics, zirconia ceramics, phosphor, zinc oxide powder, cobalt oxide powder, Ni-Zn ferrite, Mn-Zn ferrite and etc.
Features
1. The control system possesses strong functionality.
2. Provided with many functions such as the setting of password, freely programming, multi-programming storage and transfer, process monitoring and failure warning.
3. Visualized touching operation, simple and humanized design.
Technical Parameters
| Main Parameters of Computerized Touch Screen Planetary Ball Mill | |||||
| Model No. | Power (kw) |
Voltage (V) |
Dimension (mm) |
Revolution Speed (rpm) |
Rotation Speed (rpm) |
| XQM-2(T) | 0.75 | 220V-50Hz | 750*470*564 | 35-335 | 70-670 |
| XQM-4(T) | 0.75 | 220V-50Hz | 750*470*564 | 35-335 | 70-670 |
| XQM-6(T) | 0.75 | 220V-50Hz | 750*470*564 | 35-335 | 70-670 |
| XQM-8(T) | 1.5 | 220V-50Hz | 900*600*640 | 35-290 | 70-580 |
| XQM-10(T) | 1.5 | 220V-50Hz | 900*600*640 | 35-290 | 70-580 |
| XQM-12(T) | 1.5 | 220V-50Hz | 900*600*640 | 35-290 | 70-580 |
| XQM-20(T) | 4 | 380V-50Hz | 1200*750*920 | 25-215 | 50-430 |
| XQM-40(T) | 5.5 | 380V-51Hz | 1400*850*1160 | 20-195 | 40-390 |
| XQM-60(T) | 7.5 | 380V-52Hz | 1600*990*1250 | 27-174 | 40-260 |
| XQM-100(T) | 11 | 380V-53Hz | 1750*1140*1330 | 27-160 | 40-240 |
Accessories of Mill Jars & Balls
Matching Mill Jars Available:
304 stainless steel mill jar, 316 stainless steel mill jar, tungsten carbide mill jar, agate mill jar, alumina ceramic mill jar(also called corundum mill jar), zirconia mill jar, nylon mill jar, polyurethane mill jar, mill jar (PTFE), and etc.
Available Mill Balls:
304 stainless steel mill balls, 316 stainless steel mill balls, tungsten carbide mill balls, agate mill balls, alumina balls, zirconia mill balls, and etc.
PLANETARY BALL MILL FOR POWDER GRINDING, LABORATORY USE
Managing Access and Programs on a Shared Touch-Screen Mill
A touch-screen mill carries more than a speed dial. On the XQM-6(T) the control system includes password setting, free programming, storage and transfer of several programs, and process monitoring with failure warnings. In a shared laboratory the password matters: it keeps a saved method from being changed by accident and reserves certain settings for whoever runs a given process. The program storage matters just as much - once a method gives the particle size you need, storing it means the next user starts from the same numbers rather than from memory. The transfer function lets a proven program move to another machine of the same type, so a method does not have to be rebuilt. Used together, these features turn the mill into a place where methods live, not just where powder is made.
Process Monitoring and Failure Warnings: Reading the Screen
The value of monitoring is that problems show up on the screen before they become scrap. As the mill runs, the control system tracks the process and raises a warning if something falls outside the expected range - for example an over-current or under-voltage condition, which the converter guards against. For the operator, the practical habit is simple: check the screen at the start of a run, glance at it during longer runs, and treat any warning as a reason to stop and look rather than to ignore. Because a warning usually points to a cause - too heavy a load, a jammed jar, a supply problem - noting what the screen said, and what the run was set to, makes the next run easier to diagnose and keeps a small warning from turning into a damaged drive.
Choosing the XQM-6(T): Where 6 L Fits Between 4 L and 8 L
The touch-screen line steps through 2, 4, 6, 8, 10, 12, 20, 40, 60 and 100 L, and the XQM-6(T) sits in the middle of the small benchtop group. It holds 6 L across its jars and takes a working load of about 1.98 L, between the 4 L and 8 L models while sharing the same 0.75 kW drive, the 70-670 rpm working speed and the compact 750 x 470 x 564 mm body used by the smaller units. That makes it a sensible step up if 4 L has become a little tight but a larger machine would be more bench than the work needs. The choice is mostly about how much powder a run must deliver; the control system and the range of jars are common across the line.
Nano Powder Milling on a 6 L Benchtop Mill
The XQM-6(T) is aimed at nano powder work as much as at routine grinding, and the way to reach the fine end of the scale is mostly a matter of patience and control. A planetary mill reaches sub-micron sizes through sustained high-energy impact, so a nano run usually needs a longer time, a suitable media size and a jar and media set that will not contaminate the powder as it gets finer. Wet grinding often helps here, because a liquid carrier keeps the fine particles from re-agglomerating as they form. Because the machine stores and repeats a program, a nano method that works once can be run again the same way, which matters when the difference between success and a re-agglomerated powder can be a small change in time or speed.
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