Temperature-Controlled Degasser

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Temperature‑controlled Vacuum Mixer‑Defoamer SIE‑MIX1000WK


Dual‑cup Large‑volume Temp‑controlled Production Platform · Combined Vacuum‑pressure & Temperature Defoaming

1000 mL Dual‑cup, Ambient‑Heating‑Cooling Control, ‑98 kPa Deep Vacuum Defoaming

SIENOX SIE‑MIX1000WK is a temperature‑controlled vacuum mixer‑defoamer for pilot‑scale production of heat‑sensitive materials with dual‑1000 mL cups. Dual‑mode thermal control, ‑98 kPa vacuum and synchronized revolution‑rotation drive deliver one‑step mixing, temperature regulation and defoaming.

✓ CE Certification  ✓ FC Certification ✓ ISO9001 Quality System ✓ RoHS Compliance ✓ Customizable Voltage (110V/220V)

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

Why Must Microbubbles in Materials Be Eliminated?

Residual nano‑scale microbubbles in materials directly affect product yield and performance stability.

Chemical Industry

Bubbles in chemical slurries, resin castings and intermediates cause curing voids, reduced mechanical strength and altered reaction rates. Temperature‑sensitive chemicals achieve synchronized mixing and defoaming within proper temperature window via thermal‑controlled mixing‑defoaming.

Silicone Industry

Bubbles in silicone rubber mixtures, thermal greases and silicone resins create voids after vulcanization, powder agglomeration and poor coating adhesion. Temperature‑sensitive silicone vulcanization allows bubble removal while regulating curing temperature.

3D Printing Industry

Bubbles in photosensitive resins, ceramic slurries and functional inks trigger layer defects, forming voids and discontinuous ink output. Viscosity governs printing accuracy; temperature‑controlled mixing‑defoaming maintains proper viscosity for effective bubble removal.

✨ Traditional defoaming bottlenecks: manual stirring entrains air; static degassing is time‑consuming; ordinary vacuum only removes surface bubbles, failing to eliminate internal microbubbles. Conventional devices lack temperature control; heating triggers thermal degradation of heat‑sensitive materials. The temperature‑controlled planetary mixing solution separates bubbles via centrifugal mixing, combined with vacuum and precise thermal regulation for one‑step mixing, temperature adjustment and defoaming.

Why Choose SIE‑MIX1000WK

Three core features cover full‑process temperature‑controlled vacuum mixing‑defoaming requirements.

Dual‑cup Large‑volume Temp‑controlled Production Platform

Dual‑1000 mL cups, 100‑2000 rpm wide‑range speed adjustment. Fixed speed ratio ensures batch consistency for pilot‑scale and small‑batch production. Dual‑mode temperature control tunes viscosity by heating to boost powder dispersion, while cooling suppresses thermal degradation and exothermic reactions. One unit covers dual‑process scenarios.

Combined Vacuum‑pressure & Temperature Defoaming

Standard‑98 kPa vacuum expands deep‑seated microbubbles for release via pressure difference. Vacuum cooperates with temperature control: heating lowers viscosity for easier bubble discharge; vacuum compensates defoaming efficiency under cooling, delivering stable performance across varied temperatures.

100‑Recipe Storage & Traceable Thermal Data

Touch screen stores 100 recipe sets, logging speed, vacuum level, temperature and runtime for batch traceability. Programmed operation reduces manual error. Optional MES connectivity supports industrial data integration. Robust 165 kg frame ensures long‑term stable operation.

✨ MIX1000WK enables pilot‑production temperature‑controlled vacuum defoaming for chemical, silicone and 3D‑printing heat‑sensitive materials.

Working Principle

Synchronized revolution‑rotation dual‑drive, combined with deep vacuum defoaming and precise temperature control, realizes one‑step mixing, temperature regulation and defoaming.

Step 1: Centrifugal Force from Revolution

High‑speed rotating revolution plate generates centrifugal force for full‑range macro‑mixing, pushing bubbles toward the axis for escape. The temperature‑control system runs simultaneously to maintain target material temperature.

Step 2: Shear Force from Rotation

Container rotation delivers shear force to break agglomerated particles for micro‑dispersion. Fixed speed ratio ensures thorough mixing. Shear thins bubble membranes for faster rupture. No impeller contact reduces contamination risk.

Step 3: Deep Defoaming via Vacuum Negative Pressure

Vacuum system creates negative pressure to expand and release deep‑seated microbubbles. ‑98 kPa vacuum adapts to varied viscosities, continuously extracting gas to improve material density.

Step 4: Precise Temperature Regulation for Material Status

Temperature control runs throughout the whole process. Select heating or cooling modes: heating reduces viscosity to speed bubble release; cooling suppresses thermal degradation and moderates exothermic reactions. Temperature control works alongside mixing‑defoaming without separate thermal‑processing steps.


Materials complete the full workflow of “mixing → dispersion → vacuum defoaming → temperature adjustment” inside sealed vessels for one‑step temperature‑controlled vacuum defoaming.

Vacuum Mixer‑Defoamer Working Principle.jpg

Technical Specifications

Complete Technical Specifications Overview, Customizable on Demand

Equipment ModelSIE‑MIX1000WK
Mixing Capacity0–1000 mL (standard container) * Customizable
Container TypeTubes / Jars / Cups; adapters for syringes and cartridges supported
Container Quantity1 or 2 jars (user‑selectable)
Max Speed100 – 2000 RPM (stepless adjustable)
Temperature Control ModuleCooling / Heating
Vacuum LevelStandard: –98 kPa / Optional: –100 kPa
Control SystemTouch screen, stores 100 sets of recipe parameters
Power Supply220V, 50/60Hz (110V US/JP standard customizable)
Overall Dimensions(W×D×H)820 × 610 × 760 mm
Net Weight165 kg
Certifications 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‑line standardized specifications for accurate process evaluation and equipment selection

Equipment ModelSIE‑MIX60ZKSIE‑MIX90ZKSIE‑MIX1000ZK
Mixing Capacity0–300 mL (standard container) * Customizable0–1000 mL (standard container) * Customizable0–1000 mL (standard container) * Customizable
Container TypeTubes / Jars / Cups; adapters for syringes and cartridges supportedTubes / Jars / Cups; adapters for syringes and cartridges supportedTubes / Jars / Cups; adapters for syringes and cartridges supported
Container Quantity1 or 2 jars (user‑selectable)1 or 2 jars (user‑selectable)1 or 2 jars (user‑selectable)
Max Speed0 – 2000 RPM (stepless adjustable)0 – 2000 RPM (stepless adjustable)100 – 2000 RPM (stepless adjustable)
Temperature Control ModuleCooling / HeatingCooling / HeatingCooling / Heating
Vacuum LevelStandard: –98 kPa / Optional: –100 kPaStandard: –98 kPa / Optional: –100 kPaStandard: –98 kPa / Optional: –100 kPa
Control SystemTouch screen, stores 100 sets of recipe parametersTouch screen, stores 100 sets of recipe parametersTouch screen, stores 100 sets of recipe parameters
Power Supply220V, 50/60Hz (110V US/JP standard customizable)220V, 50/60Hz (110V US/JP standard customizable)220V, 50/60Hz (110V US/JP standard customizable)
Overall Dimensions(W×D×H)510 × 430 × 500 mm610 × 560 × 780 mm820 × 610 × 760 mm
Net Weight115 kg153 kg165 kg
CertificationsCE, FCCE, FCCE, FC

***The above are typical models only, customized solutions are available according to customer requirements.


Multi‑Industry Solutions

Provide customized solutions to meet comprehensive demands from cutting‑edge R&D to large‑scale mass production

Medical Devices.jpg

Pharmaceutical Industry

Medicinal gels, sustained‑release formulation slurries, pharmaceutical coating liquids, injectable colloids

Cosmetics.jpg

Cosmetic Industry

Lotions, cream bases, hair dyes, toothpaste, emulsified systems

Electronic Materials.jpg

Electronics Industry

Epoxy potting adhesives, conductive silver paste, UV encapsulant, thermal conductive gels

Adhesives.jpg

Polyurethane Industry

Polyurethane casting compounds, foaming slurries, elastomer prepolymers, adhesives

Inks & Coatings.jpg

Ink & Coating Industry

Industrial inks, anti‑corrosion coatings, color pastes, UV‑curable coatings

Aerospace.jpg

Aerospace & Defense Industry

Composite matrix resins, structural adhesives, radar‑absorbing coatings, functional coating liquids

Comprehensive Equipment Operation Demo Videos

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

Measured Defoaming‑Process Performance

Thoroughly eliminate material bubbles, voids and stratification

Potting Adhesive Defoaming.jpg

Potting Adhesive

Photoresist Mixing & Defoaming.jpg

Photoresist

Structural Adhesive Defoaming Comparison.jpg

Structural Adhesive

Cosmetic Essence Defoaming.jpg

Cosmetic Essence

Lubricant Mixing & Defoaming.jpg

Lubricant

Tricolor Ink Mixing & Defoaming.jpg

Ink


Measured Data Comparison

Quantifiable Effects Validated by Test Data

Material TypePre‑treatment StatusAfter MIX1000WK Treatment
Silicone Rubber MixtureDense internal bubbles; ~7% void rate after vulcanization, unstable elasticityBubbles eliminated, low void rate, uniform elasticity
Lithium‑ion Battery Anode SlurryAbundant internal bubbles; ~6% coating pinhole rate, large thickness deviationBubbles eliminated, low pinhole rate, uniform thickness
Medical Sensor EncapsulantNumerous internal bubbles; ~8% poor‑sealing rate, signal fluctuationBubbles eliminated, low sealing‑failure rate, stable signal output

* Internal lab test data. Actual improvement varies by material formula. Contact sales for real‑world customer cases.

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