Product Material:PTFE ,Magnetic
Mode :Double Crosshead Shape
Product name |
PTFE Magnetic Stir Bar-Double crossheard |
Application |
Laboratory, chemical |
Main purpose |
Experimental solvent stirring |
Material |
Magnet, PTFE |
Color |
White |
Specification |
18*10mm ~ 34*12mm |
Shape |
Double crosshead shape |
Composite |
NdFeB Magnet |
Processing Service |
Moulding |
Place of Origin |
Zhejiang, China |
Design |
OEM Acceptable |
Packing |
Carton |
Feature |
High Temperature Resistance |
Characteristic |
Strong Acid and Alkali Resistance |
Packaging Details |
1. Standard carton package 2. Support customization |
Port |
Ningbo/ Shanghai |
Quantity(Pieces) |
Lead time(days) |
1-500 |
5-10 days |
>500 |
Confirmed by email |
Maximum order quantity: |
5 piece |
Sample price: |
USD 8.00 per piece |
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18*10mm |
34*12mm |
Min order qty |
10000pcs |
1. Chiling Lab Strong Stir Bar Magnet With PTFE Coating Magnetic Stirrer A/B/C Laboratory
2. When using the PTFE Magnetic Stir Bar Double Crosshead Shape in a laboratory environment, there are several important precautions that should be followed to ensure safety and optimal performance. First, make sure the stir stick is compatible with the chemicals being used. Although it is designed to be resistant to acids and alkalis, certain corrosive solvents may still pose risks.
3. Before starting the blending process, make sure the stirring rod is clean and free of contaminants to prevent unwanted reactions. Choosing the right stirring speed is important; too fast a speed may cause splashing or vortex formation, which may compromise the integrity of the sample. Also, avoid using the blender in a container that is too large or too small, as this will affect its blending efficiency.
4. Monitor the temperature of the solution as overheating can damage the stir rod and sample. Always use the stirrer in a suitable container to prevent breakage or damage. After use, clean the stir bar thoroughly to preserve its longevity and performance, ensuring it is ready for future applications. Following these guidelines will improve the safety and efficiency of laboratory work, resulting in reliable and accurate compounding results.