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This is an announcement from C-Tech regarding the "STV-180."
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Free membership registrationThis is an announcement from C-Tech regarding "POK-6."
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Free membership registration- The stirring blades are fixed very close to the inner wall of the container, allowing for uniform and clean mixing even with high-viscosity materials. - The vacuum chamber is made of transparent acrylic, making it easy to visually inspect the interior. - The vacuum level inside the vacuum chamber is a high vacuum type, reaching below 100Pa, allowing for the degassing of materials that cannot be degassed with a rotary degassing stirring device. - The material container has a maximum capacity of 4L and can be attached with a single touch. - Since mixing occurs in a vacuum state, the materials inside the container are less likely to overflow. - By providing a dedicated container holder and stirring blades as options, it can also be used with smaller containers (approximately 200cc) or disposable containers (such as paper cups, poly cups, etc.), as well as user-specific containers. - The vacuum pump is built-in, making it compact and lightweight. - The stirring blades can be removed while maintaining a vacuum state inside the container, preventing the formation of bubbles after the mixing and degassing process is complete.
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Free membership registration- It can accommodate all types of materials, from small to large quantities, including those with fillers. - The built-in auto cycle discharge (automatic intermittent discharge) prevents the mixing head from gelling (hardening), making it effective during lunch breaks and waiting times. - Equipped with a thermal control mechanism from the material tank to the mixing head, it allows for discharge operations with stable material viscosity. - The weighing system achieves stable mixing ratios through a 1 motor 2 gear pump method. Additionally, the discharge flow rate can be changed continuously by adjusting the rotation of the gear pump drive motor, without altering the mixing ratio. - The setting of the mixing ratio is done by combining the pump capacity (cc/revolution) and the number of teeth on the shaft gear. Furthermore, viscosity changes due to temperature do not cause any deviation in the mixing ratio due to variations in resistance within the piping.
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