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  • PTFE Rod-type Stirrer
    PTFE Rod-type Stirrer
    Ultra-High Purity Path: Encapsulated in 100% pure PTFE to ensure a metal-free stirring environment, preventing trace element leaching. Chemical Resistance: Fully inert to concentrated HF, HNO3, and aggressive organic solvents. Superior Thermal Stability: Operates reliably in reaction temperatures ranging from -200°C to +260°C. High-Strength Core: Reinforced with a stainless steel inner shaft to provide high torque and mechanical rigidity while remaining fully shielded from corrosion. Full Customization: Shaft lengths, diameters, and blade dimensions can be precision-tailored to fit any reactor or flask geometry.
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  • PTFE toothed Disc Turbine
    PTFE toothed Disc Turbine
    Ultra-High Purity Path: Encapsulated in 100% pure PTFE to ensure a metal-free stirring environment, preventing trace element leaching. Chemical Resistance: Fully inert to concentrated HF, HNO3, and aggressive organic solvents. Superior Thermal Stability: Operates reliably in reaction temperatures ranging from -200°C to +260°C. High-Strength Core: Reinforced with a stainless steel inner shaft to provide high torque and mechanical rigidity while remaining fully shielded from corrosion. Full Customization: Shaft lengths, diameters, and blade dimensions can be precision-tailored to fit any reactor or flask geometry.
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  • PTFE Frame Stirrer
    PTFE Frame Stirrer
    Ultra-High Purity Path: Encapsulated in 100% pure PTFE to ensure a metal-free stirring environment, preventing trace element leaching. Chemical Resistance: Fully inert to concentrated HF, HNO3, and aggressive organic solvents. Superior Thermal Stability: Operates reliably in reaction temperatures ranging from -200°C to +260°C. High-Strength Core: Reinforced with a stainless steel inner shaft to provide high torque and mechanical rigidity while remaining fully shielded from corrosion. Full Customization: Shaft lengths, diameters, and blade dimensions can be precision-tailored to fit any reactor or flask geometry.
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  • PTFE Paddle-type Stirrer
    PTFE Paddle-type Stirrer
    Ultra-High Purity Path: Encapsulated in 100% pure PTFE to ensure a metal-free stirring environment, preventing trace element leaching. Chemical Resistance: Fully inert to concentrated HF, HNO3, and aggressive organic solvents. Superior Thermal Stability: Operates reliably in reaction temperatures ranging from -200°C to +260°C. High-Strength Core: Reinforced with a stainless steel inner shaft to provide high torque and mechanical rigidity while remaining fully shielded from corrosion. Full Customization: Shaft lengths, diameters, and blade dimensions can be precision-tailored to fit any reactor or flask geometry.
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  • PTFE Cross-shaped Stirring Blade
    PTFE Cross-shaped Stirring Blade
    Ultra-High Purity Path: Encapsulated in 100% pure PTFE to ensure a metal-free stirring environment, preventing trace element leaching. Chemical Resistance: Fully inert to concentrated HF, HNO3, and aggressive organic solvents. Superior Thermal Stability: Operates reliably in reaction temperatures ranging from -200°C to +260°C. High-Strength Core: Reinforced with a stainless steel inner shaft to provide high torque and mechanical rigidity while remaining fully shielded from corrosion. Full Customization: Shaft lengths, diameters, and blade dimensions can be precision-tailored to fit any reactor or flask geometry.
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  • PTFE Crescent-shaped Stirring Blade
    PTFE Crescent-shaped Stirring Blade
    Ultra-High Purity Path: Encapsulated in 100% pure PTFE to ensure a metal-free stirring environment, preventing trace element leaching. Chemical Resistance: Fully inert to concentrated HF, HNO3, and aggressive organic solvents. Superior Thermal Stability: Operates reliably in reaction temperatures ranging from -200°C to +260°C. High-Strength Core: Reinforced with a stainless steel inner shaft to provide high torque and mechanical rigidity while remaining fully shielded from corrosion. Full Customization: Shaft lengths, diameters, and blade dimensions can be precision-tailored to fit any reactor or flask geometry.
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