We will produce changes to the lead and other requests as per your requirements.
This is a machined unequal lead screw rotor used in SUS304 food machinery. On the left side, spoon-shaped teeth are arranged in the equal lead section, while trapezoidal teeth are arranged in the equal lead section on the right side. The central unequal lead section features a smoothly changing tooth profile. The spoon-shaped teeth are designed to feed while cutting through the material block with strong force, and the trapezoidal teeth apply significant pressure. The diameter of the central axis gradually increases towards the right side, allowing for stronger feed pressure. We can also accommodate requests regarding the tooth profile shape, shape changes, and variations in lead. 【Features】 ■ Used in SUS304 food machinery *For more details, please contact us or download the catalog.
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【Merits】 ■ The cross-sectional shape of the dental mold and changes in shape, as well as changes in leads, can be accommodated according to requests. *For more details, please contact us or download the catalog.
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Sakagami Manufacturing Co., Ltd. is a pioneer in the industry that creates three-dimensional freeform surfaces through function operations, including calculus, and performs machining using machining centers. We are well-known for processing difficult materials such as turbine blades, rotors, and parts that include three-dimensional freeform surfaces, as well as variable lead screw rotors with changing cross-sections and lead pitches, using materials like SUS304, SUS630, titanium alloys, and Inconel. We also accommodate special aluminum alloys that are essential in aerospace. We have a proven track record in creating NC data for special parts through variable parameter input and providing that system. Sakagami Manufacturing Co., Ltd. implements various proposals to enhance functionality and streamline production through discussions with clients. For example, we are committed to supporting clients who do not compromise on functionality, offering powerful solutions such as quadratic curves instead of arcs, quadratic lead curves instead of constant leads, and function surfaces with theoretical backgrounds instead of mere appearances. We welcome research and development as well as single-item prototypes.