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The microcomputer planetary ball mill is equipped with a touch screen operation control system based on the conventional planetary ball mill to further improve the equipment grade and control performance. The microcomputer planetary ball mill is mainly designed to meet users who have higher requirements for equipment quality and control performance.


Microcomputer planetary ball mill

Microcomputer planetary ball mill

Microcomputer planetary ball mill

Microcomputer planetary ball mill is widely used in geology, minerals, metallurgy, electronics, building materials, ceramics, chemical industry, light industry, medicine, environmental protection and other departments. It is suitable for electronic ceramics, structural ceramics, magnetic materials, lithium cobalt oxide, lithium manganate, catalysts, phosphors, long afterglow luminescent powder, rare earth polishing powder, electronic glass powder, fuel cells, zinc oxide Production field of varistors, piezoelectric ceramics, nanomaterials, disc ceramic capacitors, MLCC, thermistors (PTC, NTC), ZnO varistors, dielectric ceramics, alumina ceramics, zirconia ceramics, phosphors, zinc oxide powders, cobalt oxide powders, Ni-Zn ferrite, Mn-Zn ferrite and other products.

Technical parameters

serial number model shape Grinding tank rotation speed (mm) Inner diameter of grinding pot seat (mm) Motor power Grinding jar revolution diameter (mm) Overall dimensions (mm) Net weight(kg)
1 XQM-0.2 Miniature 0~1160 50 90W F111 420×260×310 25
2 XQM-0.2S Mini glove box 0~1160 50 90W F111 Equipment: 390×220×270
Control box: 200×180×240
29
3 XQM-0.4A semicircle style 0~870 80 250W Φ140 530×300×360 34
4 XQM-6   0~670 134 0.75KW F234 760×470×580 100
5 XQM-4A semicircle style 0~670 134 0.75KW F234 760×470×600 85
6 XQM-(8-12)   0~580 162 1.5KW Φ275 900×600×640 168
7 XQM-(8-12)A semicircle style 0~580 162 1.5KW Φ275 880×560×642 150
8 XQM-16A semicircle style 0~510 182 3KW Φ320 950×600×710 205
9 XQM-20   0~430 222 4KW F385 1200×790×930 392
10 XQM-40   0~390 250 5.5KW Φ430 1400×880×1070 656
11 XQM-60   0~260(1:1.5) 275 7.5KW Φ490 1600×1070×1250 950
12 XQM-100   0~240(1:1.5) 326 11KW F578 1750×1140×1330 1300
13 XQM-200   0~215 460 22KW Φ738 2670×1600×2804 2725

The control system hardware of the equipment adopts well-known brand products. The control system is powerful and has functions such as password setting, free programming, multiple sets of program storage and calling, process monitoring and fault alarm.; The touch operation is intuitive, simple and user-friendly, realizing a friendly human-machine interface.
Touch screen: easy to operate, simple and intuitive interface, can realize alternating control of forward and reverse, and has timing and power-off memory functions.
Touch screen PLC all-in-one machine: The pressure capacitive screen is flexible in control and easy to adjust. It can monitor the status of the equipment in real time and can customize functions according to customer requirements.

Microcomputer planetary ball mill

Microcomputer planetary ball mill

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Easy Process

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Stable manufacturing, strict inspection, and support for configuration requirements.

03

Expert Support

Application-oriented advice for planetary ball milling, sample preparation, and scale-up needs.

The trusted choice of industry leaders

The trusted choice of industry leaders

FAQ

  • Discover the 304 stainless steel planetary mill jar, a robust and corrosion-resistant grinding vessel designed for planetary ball mills. Ideal for pulverizing hard, brittle materials in labs, it ensures high purity with minimal contamination. Learn about its working principle, key features, selection tips, and applications in materials science, chemistry, and pharmaceuticals.

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  • A vacuum planetary mill jar is a specialized container for planetary ball mills, designed to maintain a vacuum or inert gas environment during grinding. This article explains its working principle, key features, selection criteria, and applications in fields like nanomaterials, pharmaceuticals, and battery materials, helping users understand how to achieve contamination-free, high-purity powder processing.

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  • Polyurethane coated iron core grinding balls combine a high-density metal core with a wear-resistant polyurethane shell, offering superior impact force and zero contamination for ultrafine milling. Ideal for planetary ball mills, they excel in processing pure materials where purity and efficiency are critical. This guide explains their design, working principle, selection criteria, and applications.

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  • A continuous planetary ball mill is a specialized grinding device that combines planetary motion with continuous material feeding and discharge, enabling high-throughput production of ultra-fine powders. This article explains its working principle, key features, application areas, and selection criteria for industrial users.

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  • A micro planetary ball mill is a specialized laboratory grinding device designed for ultra-fine grinding, mixing, and homogenization of small-volume samples down to the nanometer scale. Its compact size and ability to operate inside a glove box under inert atmospheres make it ideal for sensitive materials like battery materials, semiconductors, and advanced ceramics. This article explores the working principle, key features, selection criteria, and application fields of micro planetary ball mills.

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  • A vertical production planetary ball mill is an industrial-grade grinding machine designed for batch production of fine and ultra-fine powders. It operates on the planetary motion principle, where grinding jars rotate around their own axis while simultaneously revolving around a central axis, generating high-impact forces that efficiently reduce particle size. Ideal for materials science, ceramics, metallurgy, and battery material processing, this equipment offers robust construction, large capacity (up to 100L), and compatibility with various jar materials and atmospheres, bridging the gap between laboratory research and full-scale production.

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  • Discover the 304 stainless steel grinding ball, a versatile grinding media used in planetary ball mills, drum mills, and other milling equipment. Learn about its composition, working principle, key specifications, and how to choose the right ball for your powder processing applications.

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  • Discover the Fast Ball Mill, a high-speed grinding device designed for rapid sample preparation, nanomaterial synthesis, and mechanical alloying in laboratories. Learn about its working principle, key features, selection criteria, and applications in materials science, chemistry, and pharmaceuticals.

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  • Discover the tempered nylon planetary mill jar, a specialized grinding container designed for planetary ball mills. It offers excellent wear resistance, self-lubrication, and zero metal contamination, making it ideal for milling ceramics, polymers, battery materials, and other sensitive powders. Learn about its working principle, key performance indicators, selection tips, and typical applications in advanced materials research.

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  • Zirconia grinding balls are premium ceramic grinding media used in planetary ball mills, sand mills, and stirred mills for ultra-fine powder processing. With high hardness, fracture toughness, and wear resistance, they enable contamination-free milling of ceramics, pigments, battery materials, and more. This guide explains their working principle, types, key performance indicators, and selection tips.

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