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Information
Item number: IKA_10080
EAN: 4064343020213
Manufacturer: IKA
Manufacturers suggested retail price: 4.179,00 €
Excluding 19% VAT. , plus shipping (Standard)
Standard stirring element Propeller stirrer, 4-bladed R 1342. For drawing the material to be mixed from the top to the bottom. Local shearing forces. Generates axial flow in the vessel. Used at medium to high speeds.
Standard stirring element Propeller stirrer, 4-bladed R 1345. For drawing the material to be mixed from the top to the bottom. Local shearing forces. Generates axial flow in the vessel. Used at medium to high speeds.
Standard stirring element Propeller stirrer, 3-bladed R 1381. For drawing the material to be mixed from the top to the bottom. Local shearing forces. Generates axial flow in the vessel. Used at medium to high speeds.
Standard stirring element Propeller stirrer, 3-bladed R 1382. For drawing the material to be mixed from the top to the bottom. Local shearing forces. Generates axial flow in the vessel. Used at medium to high speeds.
Standard stirring element Propeller stirrer, 3-bladed R 1385. For drawing the material to be mixed from the top to the bottom. Local shearing forces. Generates axial flow in the vessel. Used at medium to high speeds.
Standard stirring element Propeller stirrer, 3-bladed R 1388. For drawing the material to be mixed from the top to the bottom. Local shearing forces. Generates axial flow in the vessel. Used at medium to high speeds.
Propeller stirrer, PTFE-coated, 3-bladed R 1389. For drawing the material to be mixed from the top to the bottom. Local shearing forces. Generates axial flow in the vessel. Used at medium to high speeds.
Turbine stirrer R 1311. For drawing the material to be mixed from above. Generates axial flow in the vessel. Minimum danger of injury when contact is made with vessel. Minimum shearing forces. Used at medium to high speeds.
Dissolver stirrer R 1300. Radial flow, for drawing the material to be mixed from the top and the bottom. High turbulence, high shearing forces. Particle reduction. Used at medium to high speeds.
Dissolver stirrer R 1302. Radial flow, for drawing the material to be mixed from the top and the bottom. High turbulence, high shearing forces. Particle reduction. Used at medium to high speeds.
Turbine stirrer R 1312. For drawing the material to be mixed from above. Generates axial flow in the vessel. Minimum danger of injury when contact is made with vessel. Minimum shearing forces. Used at medium to high speeds.
Turbine stirrer R 1313. For drawing the material to be mixed from above. Generates axial flow in the vessel. Minimum danger of injury when contact is made with vessel. Minimum shearing forces. Used at medium to high speeds.
Dissolver stirrer R 1303. Radial flow, for drawing the material to be mixed from the top and the bottom. High turbulence, high shearing forces. Particle reduction. Used at medium to high speeds.
Centrifugal stirrer R 1352. Radial flow, for drawing the material to be mixed from the top and the bottom. High turbulence, high shearing forces. Particle reduction. Used at medium to high speeds.
Centrifugal stirrer R 1355. Radial flow, for drawing the material to be mixed from the top and the bottom. High turbulence, high shearing forces. Particle reduction. Used at medium to high speeds.
Paddle stirrer R 1375. Tangential flow, minimum turbulence, good heat exchange, gentle treatment of product. Used at low to medium speeds.
Paddle stirrer R 1376. Tangential flow, minimum turbulence, good heat exchange, gentle treatment of product. Used at low to medium speeds.
Anchor stirrer R 1330. Tangential flow, high shearing rate at edges, minimum deposits on the vessel wall. Used at low speeds. Polymer reactions, even distribution of high mineral contents in liquids. The ideal stirrer for medium to highly viscous fluids.
Anchor stirrer R 1331. Tangential flow, high shearing rate at edges, minimum deposits on the vessel wall. Used at low speeds. Polymer reactions, even distribution of high mineral contents in liquids. The ideal stirrer for medium to highly viscous fluids.
Anchor stirrer R 1333. Tangential flow, high shearing rate at edges, minimum deposits on the vessel wall. Used at low speeds. Polymer reactions, even distribution of high mineral contents in liquids. The ideal stirrer for medium to highly viscous fluids.
Standard stirring element Propeller stirrer, 4-bladed R 2302. For drawing the material to be mixed from the top to the bottom. Local shearing forces. Generates axial flow in the vessel. Used at medium to high speeds.
Paddle stirrer R 2311. Tangential flow, minimum turbulence, good heat exchange, gentle treatment of product. Used at low to medium speeds.
Flexible coupling FK 1, required for stirring tasks using glass stirring rods. The flexible coupling compensates for any structural variances.
Stirring shaft protection R 301, prevents potential injuries at the rotating shafts and stirring elements.
Can be directly attached to the EUROSTARs, RW 16 basic, RW 28 basic and the RW 20 stirring motors.
Boss head clamp R 270
Specialized boss head clamp R 271 with openings for the stands R 2722 and R 2723 as well as extensions with Ø 16 mm.
Strap clamp RH 5 for securing vessels against walls or for synchronized rotation during stirring or dispersing, incl. boss head clamp R 270.
Particularly stable H-Stand R 2722 with H-shape base which prevents the stand from tipping backwards. Provides optimum stability required for larger, heavier instruments and attachments, for example with rheological measurements using overhead stirrers. The stand has an adjustment screw which can be used to compensate for an uneven laboratory table surface.
Particularly stable Telescopic stand R 2723 with H-shape base which prevents the stand from tipping backwards. Additionally equipped with a pneumatic spring stand rod, which enables heavy instruments / attachments to be raised and lowered smoothly without difficulty, e.g. with rheological measurements using overhead stirrers. The stand has an adjustment screw which can be used to compensate for an uneven laboratory table surface.
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