You can even equip Tensíío with an ionizer to automatically dispose of electric charges that otherwise often interfere with analyses of solid samples. Or the removable side doors for comfortable access to the sample chamber. Or the electronic levelling assistant, which helps you set up the instrument properly. Take the bottom plate of the sample chamber, which can be easily removed for cleaning, for example. Tensíío has all the small details that add up to maximum convenience. When a product makes you say: “They thought of everything!”, then users have been closely listened to, or, as with Tensíío, were even involved in the development. And it is always possible to upgrade Tensíío subsequently if your tasks grow. To make Tensíío the right solution for you - and the one adapted to your budget - there are countless options to customize the instrument. Or you may not want to analyze wettability, so there is no use of a height sensor. But maybe you only have one specific task that just requires moderate force precision within certain specifications. And there is the most accurate height detection for the sample stage and a large selection of methods. Yes, there is this top-class, high-resolution force sensor. The tensiometer that grows with your tasks This is just one of the many ways to incorporate tri-color illumination into your automated measurement sequence. What is surely new is a tensiometer signaling whether the measuring result lies within a certain limit using green or red light. Sample chamber illumination for easier preparation may be familiar to you. Measure the adhesion between a drop and a solid surface while analyzing the drop optically - or even create your very own method using the flexible and intuitive automation programming in ADVANCE as a toolbox. Further methods, which can be added anytime later, are being developed as you read this.Įven more is possible when the optional high-resolution camera records what happens at the contact area at the liquid surface. Each one is carried out automatically using prepared and adaptable programs in the ADVANCE software. Tensíío comes with 15 different approaches of analyzing surface and interfacial tension, wettability, and many other properties of your liquid samples or your solid bodies, powders, or fibers. Use the versatility of 15 methods (and growing) Speaking of which, no external thermostat or controller is required when we equip your Tensíío with integrated temperature control up to 300 ☌. The large, integrated touch display simplifies operation and obviates any external control pad, thus sparing lab space. Measurement preparation is easy thanks to the spacious, perfectly accessible sample chamber and the built-in stirrer and temperature control. Or it moves extremely slow with hardly any vibration if you need it to, for example when analyzing high-viscosity liquids. To save time before and during each measurement, the sample stage of Tensíío moves particularly fast while preventing premature sample contact using pre-programmed standard positions. Using force measurement and image analysis to determine the adhesion behavior of a drop brought in contact with and then pulled off a solid surfaceĪs fast or as slow as you need it - but always convenient Using a force sensor and a software-controlled sample stage for freely defined proceduresĬarrying out a measurement up to 20 consecutive times and displaying the results togetherĬalculating the polar and disperse part of the surface tension from contact angle and surface tension data Penetration resistance of a sediment against a probe Surface free energy of a solid using contact angle dataĬalculating adhesion-related scientific parameters for the interfacial contactĭensity determination of a liquid using the buoyancy of a probe immersed in the sampleĭensity determination of a solid using the buoyancy of the sample immersed in a liquid Interfacial tension using the wetting force of a liquid at a platinum plate or rodĬontact angle using the wetting force of a liquid at a solid sampleĬontact angle between a liquid and porous material using the capillary force Surface tension using the wetting force of a liquid at a platinum plate or rod Interfacial tension using the tensile force of a lamella which is stretched until it disruptsĪutomated determination of the critical micelle concentration by measuring the SFT at different concentrations Surface tension using the tensile force of a lamella which is stretched until it disrupts Interfacial tension using the tensile force of a lamella underneath a ring Surface tension using the tensile force of a lamella underneath a ring
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