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Biology Tweezers
Thanks to the ultra-fine tips, ideal for handling miniature material and grids, and to the resistance to extreme temperatures, chemicals and other harsh conditions, Ideal-tek biology tweezers in superalloy (CX) or high-alloy stainless steel (DX) are perfect to work with microscopic components in medical device sector.
ANTI-ACID/ANTI-MAGNETIC SUPERALLOY (CX) BIOLOGY TWEEZERS
The tweezers made from the Nickel-Chromium-Molybdenum superalloy are six times harder than antimagnetic stainless steel: their excellent strength and heat resistance (tested to operate up to 800°C) makes them suitable for work at harsh conditions. Non-magnetic, shape retentive, extremely resistant to fatigue, corrosion, chemicals, salts and acids.
HIGH ALLOY STAINLESS STEEL - (DX) BIOLOGY TWEEZERS
Low carbon alloy resistant to corrosion, acidic environments (e.g. sulphur, phosphoric and acetic acid), stress corrosion cracking. Non-magnetic in all conditions, Ideal-tek stainless steel biology tweezers feature excellent formability and weldability, flawless toughness at cryogenic temperatures and heat resistance (tested to operate up to 450°C).
ANTI-ACID/ANTI-MAGNETIC SUPERALLOY (CX) BIOLOGY TWEEZERS
The tweezers made from the Nickel-Chromium-Molybdenum superalloy are six times harder than antimagnetic stainless steel: their excellent strength and heat resistance (tested to operate up to 800°C) makes them suitable for work at harsh conditions. Non-magnetic, shape retentive, extremely resistant to fatigue, corrosion, chemicals, salts and acids.
HIGH ALLOY STAINLESS STEEL - (DX) BIOLOGY TWEEZERS
Low carbon alloy resistant to corrosion, acidic environments (e.g. sulphur, phosphoric and acetic acid), stress corrosion cracking. Non-magnetic in all conditions, Ideal-tek stainless steel biology tweezers feature excellent formability and weldability, flawless toughness at cryogenic temperatures and heat resistance (tested to operate up to 450°C).
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Anti-acid/anti-magnetic superalloy (CX) biology tweezers
Ideal-tek's CX Biology Tweezers are made from a Nickel-Chromium-Molybdenum superalloy, six times harder than antimagnetic stainless steel. This superior material provides excellent sturdiness and heat resistance, allowing the tweezers to operate effectively at temperatures up to 800°C/1472°F.Fully non-magnetic and resistant to shape deformation, these tweezers excel in harsh conditions, including aggressive chemical environments. They are ideal for laboratory and biological applications, offering high precision and reliability in Life Science and Microscopy work.
High alloy stainless steel (DX) biology tweezers
Constructed from a high-alloy austenitic stainless steel, the DX Biology Tweezers by Ideal-tek offer outstanding resistance to corrosion and acidic environments, including exposure to sulfuric, phosphoric, and acetic acids. This low-carbon alloy maintains its non-magnetic properties under all conditions, providing excellent formability and weldability.Tested to withstand temperatures up to 450°C/842°F, these tweezers are ideal for use in chemical and pharmaceutical industries, cryogenic laboratories, and various Life Science and Microscopy applications.
Choose Ideal-tek tweezers for unmatched performance and durability
Ideal-tek biology tweezers are engineered for precision and durability. Whether working with delicate materials under a microscope or handling corrosive substances, our tweezers deliver exceptional performance.Trust Ideal-tek for all your high-precision, non-magnetic tool needs in Life Science and Microscopy, ensuring your work is conducted with the highest standards of accuracy and reliability.
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