Standard precision cutting machine and sample cutting machine 'SERVOCUT-302'
This is the most commonly used grade for cutting metal samples. It is a bestselling precision cutting machine used worldwide. [Demo unit available]
This is a versatile metal cutting machine capable of cutting materials from metals, non-ferrous metals, and steel to ceramics and electronic materials. It can accommodate cutting wheels up to φ305 mm. Online demonstrations and on-site demonstrations are available, so please feel free to contact us if you are interested. 【Features】 ● Capable of meeting a wide range of customer needs from manual cutting to fully automatic cutting. ● Rapid pulse operation suppresses clogging and heat generation. ● Supports continuous cutting of slices. ● Automatic control of feed speed through overload detection function. ● Highly customizable to create a cutting machine tailored to your preferences. ● Many options available, including laser units and mist collectors. *For more details, please refer to the catalog.
basic information
◆Adoption of a highly secure slide cover ◆Intuitive operation of each axis with a joystick ◆Standard equipped with an inverter, allowing grinding wheel rotation speed to be changed from 600 to 4000 rpm ◆One-touch clamp requires just a lever pull ◆Dedicated cabinet can store the tank, enhancing space efficiency and design *For details, please request materials.
Price information
-
Price range
P5
Delivery Time
OTHER
Please contact us.
Model number/Brand name
SERVOCUT302
Applications/Examples of results
This is an automatic precision cutting machine that covers the most commonly used sizes for sample preparation cutting. It boasts the highest sales record among the lineup of precision cutting machines. *For more details, please refer to "Request for Materials / Catalog Download."
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Hartzok Japan has been a specialized company in preprocessing equipment for about 30 years. The preprocessing equipment we handle refers to devices that create samples in optimal conditions for analytical instruments. In recent years, the performance of analytical instruments has improved, allowing for more precise analyses. However, as the accuracy of analysis increases, the results can vary significantly based on the preprocessing steps. For example, even if there is a high-spec microscope, poor preprocessing due to contamination, loss, or uneven polishing can lead to low analytical accuracy. Conversely, even a low-spec microscope can yield high-accuracy results if the polishing is done well. Preprocessing equipment is often postponed in capital investments, but the results of the preprocessing steps become more critical as higher analytical accuracy is sought. Furthermore, this preprocessing process is largely analog and relies heavily on empirical knowledge. Hartzok Japan will contribute to improving our customers' quality with the know-how we have cultivated over many years in the preprocessing field.