Vacuum Planetary Mixing Defoamer

TEL:18925129293

SIENOX Planetary Vacuum Mixer‑Defoamer SIE‑MIX1000plus


Paddle‑Free Non‑Contact Mixing · For Deep Micro‑Bubble Treatment in Pilot & Small‑Batch Production

1000 mL Lab / Pilot Scale, Standard ‑98 kPa Vacuum, 100‑2000 rpm Stepless Adjustable Speed

SIE‑MIX1000plus planetary vacuum mixer‑defoamer covers 0‑1000 mL mixing and defoaming requirements. Dual‑drive revolution‑rotation mixing combined with ‑98 kPa vacuum environment delivers consistent density, homogeneous dispersion and deep‑layer defoaming for multi‑component materials. Ideal for pilot‑scale vacuum defoaming of new‑energy lithium‑battery slurries, photovoltaic conductive silver pastes, medical polymer gels and more. Customization is available.

✓ CE Certified  ✓ FCC Certified ✓ ISO9001 Quality System ✓ RoHS Compliant ✓ Custom Voltage Support (110V/220V)

Online Message Free Sample Testing Engineer Hotline: 189-2512-9293

Why Must Microbubbles in Materials Be Eliminated?

Nanoscale micro‑bubbles remaining inside materials directly affect product yield and performance stability.

New‑Energy Lithium‑Battery Industry

Tiny invisible micro‑bubbles exist inside battery anode and cathode slurries. When heated during coating, bubbles expand and rupture, resulting in pinholes, depressions and powder shedding on electrode sheets. Density variations in slurry lead to inconsistent internal resistance of battery cells, impairing the stability of cycling capacity. Stress concentration tends to occur at bubble areas during charge‑discharge cycles, causing excessive local temperature rise, increasing cell failure risks and raising production costs.

Photovoltaic Conductive Silver Paste Industry

Internal bubbles in silver paste block conductive paths and undermine the stability of power‑generation efficiency for PV modules. After coating, bubbles produce pits and color differences, which easily cause appearance inspection failures. Bubbles reduce bonding strength between silver paste and silicon‑wafer substrates. Silver layer peeling may occur under long‑term outdoor exposure and shorten the service life of photovoltaic panels.

Medical Polymer Gel Industry

Bubbles trapped in raw materials for medical gels and biological dressings form cavities after curing and impair the uniformity of drug sustained release. Surface pinholes on gels weaken sealing and protection performance and bring risks of microbial growth. Bubbles inside high‑transparency medical consumables trigger light scattering, making it difficult for light‑transmission parameters to meet medical‑device testing standards.

✨ Challenges of conventional defoaming: Ordinary planetary mixer‑defoamers rely on centrifugal force to remove bubbles, with limited performance on nanoscale micro‑bubbles trapped in high‑viscosity materials. Static defoaming is time‑consuming and incomplete. Vacuum mixing‑defoaming applies ‑98 kPa negative‑pressure vacuum during planetary agitation, lowering the pressure difference inside and outside bubbles to enable micro‑bubbles to expand and escape. It delivers deep‑layer defoaming results unachievable by conventional mixing methods.

Why Choose SIE‑MIX1000plus

Engineered for vacuum defoaming in small‑batch production scenarios

Large‑Capacity Dual‑Station Design

Standard 1000 mL dual‑station simultaneous processing among comparable models, supporting up to 1000 mL material per batch. Wide adjustable speed range from 100‑2000 rpm, compatible with various materials ranging from low‑viscosity inks to high‑viscosity metal slurries. Optional heating and cooling assemblies are available for heat‑sensitive and easily‑cured experimental materials. Multiple material tests can be completed without switching different devices.

Combined Vacuum‑Planetary Defoaming

Fully sealed chamber equipped with vacuum pressure gauge maintains stable ‑98 kPa negative pressure. Planetary revolution together with container counter‑rotation generates composite centrifugal force for full‑range material tumbling, accelerating precipitation and floating‑up of deep‑layer micro‑bubbles. Compared with centrifugal‑only defoaming equipment, the combined vacuum‑planetary effect reduces residual micro‑bubbles and minimizes finished‑product defects such as voids and pinholes.

Intelligent Programmable Control System

Touch‑screen operation panel supports saving 100 groups of custom mixing programs. Optional MES industrial data interface fully records process parameters including rotation speed, vacuum level and running duration for batch‑to‑batch data traceability. Equipped with mechanical safety lock, emergency‑stop button and overload power‑off protection, the machine meets daily‑use requirements for university laboratories and factory pilot workshops.


✨ When vacuum defoaming is required and production volume reaches the 1000 mL level, SIE‑MIX1000plus serves as the preferred pilot‑scale option within the planetary vacuum mixer‑defoamer series for small‑batch applications.

Working Principle

Adopt synergistic process of planetary revolution + container rotation + sealed high‑vacuum environment

Planetary rotation: 

The material-carrying cup disk revolves at high speed around the main axis, generating centrifugal force that evenly spreads the material toward the outer wall of the container, dispersing powder agglomerates and improving colloidal stratification issues

Container Rotation: 

The material cup rotates synchronously in the opposite direction, creating a 360 ° fluid turbulence inside the container to achieve homogeneous mixing throughout the entire area; No built-in stirring blade in contact with the material, reducing the probability of metal debris contaminating the material;

Sealed vacuum defoaming: 

The sealed chamber extracts negative pressure to -98kPa, and the pressure difference between the inside and outside of the material expands. Micro - and nano sized small bubbles gradually expand, float up, and are discharged from the chamber. The single-stage process synchronously completes mixing and defoaming, and the material mixing uniformity and bubble treatment effect are better than those of conventional open mixing equipment.

真空脱泡搅拌机工作原理.jpg


Technical Specifications

Rigorous Equipment Performance Specification Alignment

ModelSIE-MIX1000Plus
Mixing Capacity0-1000 mL (standard container) * customizable
Container typeTest tube/can/cup; Support syringe and cartridge adapter
Number of containers1 or 2 cans (user selectable)
Maximum speed100-2000 RPM (infinitely adjustable)
Revolution/Rotation RatioFixed planetary ratio
Degree of vacuumStandard: -98 kPa/Optional: -100 kPa
Control SystemTouch screen, capable of storing 100 sets of recipe parameters
Power supply220V, 50/60Hz (customizable 110V according to US and Japanese standards)
Dimensions (W × D × H)820 × 610 × 760 mm
Net weight165 kg
Certification CE, FC, ISO9001, RoHS compliance


Our Partners

Trusted by leading industrial manufacturing clusters and advanced university laboratories worldwide

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FAQ - Frequently Asked Questions

Answers to common questions about product performance and everyday process selection

  • 脱泡机的作用是什么?

    脱泡机是一种用于去除液体中的气泡的设备。它的作用在于帮助生产过程中的液体混合、反应、涂布、印刷、灌注等工艺环节,避免气泡的产生和对最终产品的影响。在许多工业和实验室环境中,去除气泡是非常必要的,因为气泡可能会对产品质量产生负面影响,如影响表面张力和稳定性等问题。脱泡机通常采用各种不同的技术,如振动、超声波、离心等,以实现有效的气泡去除。它的应用领域广泛,包括但不限于半导体、太阳能、光学、生物技术、材料科学等。

  • 售后服务怎么样?

    公司拥有专业的售后服务人员,24小时专人服务,一对一提供技术支持,解决您的后顾之忧。

  • 为什么要选择施诺斯?

    选择施诺斯的原因有很多,以下是一些主要的原因:

     1. 专业性:我们的团队由一群专业的人士组成,他们在各自的领域拥有丰富的经验和知识。我们不仅了解行业趋势和最佳实践,而且还能提供切实可行的解决方案。

     2. 服务质量:我们注重客户的需求和满意度,始终致力于提供高质量的服务。我们不仅快速响应客户需求,而且还能根据客户的要求进行定制化服务。 

    3. 可靠性:我们以诚信和专业精神为宗旨,始终遵守承诺和协议。我们的工作方法和交付成果均符合行业标准和最佳实践,使得我们的客户能够信任我们。 

    4. 创新性:我们不断探索新的方法和工具,以提供更好的服务并满足客户的需求。我们鼓励创新和实验,并愿意接受挑战和改变。 

    5. 成本效益:我们提供高性价比的服务,不仅能够帮助客户节省成本,而且还能提高效率和生产力。我们始终以客户的利益为出发点,为客户提供最优的解决方案。

     6. 团队合作:我们相信团队的力量和合作的价值,我们的团队成员之间互相支持、协作和尊重。我们与客户、合作伙伴和其他利益相关者建立紧密的合作关系,以实现共同的目标。 

    以上只是选择我们的部分原因,我们相信还有很多其他的优点和价值可以为客户提供。如果您正在寻找一家专业、可靠、高质量的服务提供商,我们非常期待与您的合作。

  • 搅拌脱泡机的工作原理?

    施诺斯搅拌脱泡机通过公转的离心力进行脱泡,通过公转与自转形成的剪切力进行搅拌,

    再辅助以真空泵抽取气体以达到真空状态,去除纳米级微小气泡。 不接触物料,无二次污染,无二次浪费。


  • 施诺斯能提供工程咨询技术服务吗?

    施诺斯能为广大客户提供全面的工程和现代化的咨询服务。施诺斯近二十年的搅拌经验,可以为你提供高效的咨询服务。

    想要让搅拌机性能更上一层楼,提升系统的整体效能?我们有全面的咨询、工程以及现代化改造服务,为您量身打造解决方案。 在如今竞争激烈的全球化浪潮中,唯有不断创新、持续优化,才能始终跑在对手前面。您的生产工艺和产品日新月异,我们就为您提供最适配的混合技术。不管是新的产品参数,还是既有的工艺条件,我们都能对现有系统和搅拌设备进行全方位的检查与评估,挖掘其中潜藏的流程优化空间和机械性能提升潜力,并且帮您把这些改进切实落地。 要是您的搅拌设备已经跟不上时代步伐,能耗居高不下,或是维护成本让您头疼不已,那就别犹豫,我们的咨询、工程设计和现代化改造服务,就是为您排忧解难的良方。欢迎随时联系我们,携手开启高效生产新征程!

Technical Specification List

Full‑range standardized specifications support accurate process evaluation and equipment selection

ModelSIE-MIXF301SIE-MIX90SIE-MIX1000Plus
Mixed capacity0-300 mL (standard container) * customizable0-1000 mL (standard container) * customizable0-1000 mL (standard container) * customizable
Container typeTest tube/can/cup; Support syringe and cartridge adapterTest tube/can/cup; Support syringe and cartridge adapterTest tube/can/cup; Support syringe and cartridge adapter
Number of containers1 or 2 cans (user selectable)1 or 2 cans (user selectable)1 or 2 cans (user selectable)
maximum speed0-2000 RPM (infinitely adjustable)0-2000 RPM (infinitely adjustable)100-2000 RPM (infinitely adjustable)
Revolution/Rotation RatioFree adjustableFixed planetary ratioFixed planetary ratio
degree of vacuumStandard: -98 kPa/Optional: -100 kPaStandard: -98 kPa/Optional: -100 kPaStandard: -98 kPa/Optional: -100 kPa
Control SystemTouch screen, capable of storing 100 sets of recipe parametersTouch screen, capable of storing 100 sets of recipe parametersTouch screen, capable of storing 100 sets of recipe parameters
power supply220V, 50/60Hz (customizable 110V according to US and Japanese standards)220V, 50/60Hz (customizable 110V according to US and Japanese standards)220V, 50/60Hz (customizable 110V according to US and Japanese standards)
Dimensions (W × D × H)510 × 430 × 500 mm610 × 560 × 780 mm820 × 610 × 760 mm
Net weight115kg153 kg165 kg
CertificationCE, FCCE, FCCE, FC

***The above are only typical models, and we can provide personalized solutions according to customer needs.


Multi‑Industry Solutions

Customized solutions are available to meet comprehensive requirements ranging from cutting‑edge R&D to mass‑scale production.

Battery.jpg

New Energy Lithium‑battery Industry

Lithium‑ion battery cathode & anode slurries, conductive agents, insulating potting adhesives, thermal‑conductive greases, auxiliary electrolyte materials

Semiconductor‑Packaging.jpg

Photovoltaic & Optoelectronic Industry

PV silver paste, aluminum paste, encapsulating adhesive films, optical coatings, phosphor powders, conductive nano‑slurries

Electronic‑Materials.jpg

Electronics & Semiconductor Industry

Epoxy conductive adhesives, UV encapsulation adhesives, insulating black adhesives, silver nanowires, thermal‑conductive gels, chip underfill adhesives

Metal‑Powder‑Metallurgy.jpg

Advanced‑Material R&D Industry

Nano‑powder dispersions, polymer composite materials, ceramic slurries, high‑filler pastes, fluorescent color pastes

Medical‑Devices‑02.jpg

Medical & Biological Industry

Medical transparent gels, biological dressing raw materials, dental resins, sterile bonding adhesives, pharmaceutical ointments

Ink‑Coatings.jpg

Ink, Coating & Chemical Industry

Conductive inks, anti‑corrosion coatings, color pastes, lubricating greases, high‑viscosity resins, various industrial adhesives

Comprehensive Equipment Operation Demo Videos

Gain intuitive, clear, dynamic insight into synchronous defoaming with planetary centrifugal force and high negative pressure.

Actual Test Results of Defoaming Process

Eliminate Material Bubbles, Voids and Delamination Completely

Potting Adhesive Defoaming.jpg

Potting Adhesive

Photoresist Mixing & Defoaming.jpg

Photoresist

Structural Adhesive Defoaming Comparison.jpg

Structural Adhesive

Cosmetic Serum Defoaming.jpg

Cosmetic Serum

Lubricant Oil Mixing & Defoaming.jpg

Lubricant Oil

Tricolor Ink Mixing & Defoaming.jpg

Ink


Measured Data Comparison

Data‑Driven Validation · Quantifiable Performance

Material TypePre processing statusMIX1000PLUS processed
Photovoltaic conductive silver pasteFine and tiny bubbles in the slurry, uneven surface of the paste, weak flowability, and easy occurrence of pinhole defects during coatingThe paste is uniformly transparent, with no obvious bubbles observed by the naked eye, and flows smoothly without powder agglomeration. The coating film layer is smooth and continuous
Lithium battery positive and negative electrode pastePowder is prone to agglomeration, with a large number of microbubbles wrapped inside the raw materials, uneven thickness of the slurry, and easy layering after standingThe active substance is evenly dispersed, the layering phenomenon is alleviated, the bubble content is significantly reduced, and the pinholes and powder falling defects in the coated and formed electrode pieces are reduced
Epoxy encapsulation resinColloids are wrapped in air, and solidification molding is prone to cavities and fine cracks, which can easily affect the bonding strengthThe resin molding texture is dense, the probability of cavities is reduced, the cured surface is flat and smooth, and the insulation, sealing, and bonding properties are more stable

*Internal laboratory testing data shows that the specific increase varies depending on the material formula. Real customer cases can be obtained by contacting sales.

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