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Turning Machine - List of Manufacturers, Suppliers, Companies and Products

Turning Machine Product List

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Yokota Corporation "Company Profile"

Become a company that can contribute to the local community - fostering 'vibrant human beings'.

Yokota Corporation is located in Yoshinogawa City, Tokushima Prefecture, and engages in bearing race turning and automotive parts turning processing. Our roots trace back to the late Meiji period with the "sale of indigo fabric" in Hokkaido and the "manufacture and sale of herring residue" directed towards Tokushima. Subsequently, our predecessor quickly grasped the "changes of the times" and established the company as a bearing turning processing business. For over 50 years since then, in addition to our mainstay of bearing turning, we have recently also been involved in the processing of various automotive parts (including transmissions). Moving forward, we will continue to provide better products and services to our customers through the development of people, striving to ensure that the local community recognizes our significance. 【Business Activities】 ■ Bearing race turning processing, automotive parts turning processing ■ Design, manufacturing, and sales of automated machines, automatic inspection machines, hydraulic single-function machines, and NC lathes ■ Operation of a reuse store (franchise member) and a home center ■ Housing-related businesses such as new construction and renovations (related company: Yokota Home) *For more details, please refer to our catalog or feel free to contact us.

  • Metal bearings
  • Processing Contract

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About the turning process of shafts: Issues and key points.

While minimizing issues such as reduced accuracy, chatter, and vibration, we can perform shaft turning processing as intended.

The processing of workpieces with a long and slender shape, like shafts, is known to have low rigidity, which can lead to decreased dimensional accuracy and an increased likelihood of chatter and vibration. Additionally, it is common for chips generated during processing to wrap around the workpiece, which can cause damage to both the workpiece and the cutting tool, presenting further challenges. This column will discuss the challenges encountered during shaft turning and the key points to keep in mind for achieving high-precision processing while addressing these issues. [Contents] ■ Challenges arising from shaft turning processing ■ Countermeasures for challenges during shaft turning processing ■ Summary of what shaft turning processing entails *Detailed content of the column can be viewed through the related links. *For more information, please refer to the PDF materials or feel free to contact us.

  • Company:MAZIN
  • Price:Other
  • Other machine elements

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Alignment turning machine

Lens optical axis eccentricity measurement + alignment VCM optical axis coaxial processing machine

The lens optical axis is measured, and the optical axis is coaxially aligned with the rotation axis while performing core processing on the flange reference surface and outer diameter of the cell (housing). Since the cell lens is processed while aligning the optical axis, the optical axis of the lens and the axis of the cell become coaxial. In the ATS200, the lens cell arranged with a 4-axis alignment-capable collet chuck (XYθ) can achieve positioning within 0.1μm before and after energization, allowing for processing with minimal alignment time after measurement, resulting in a flatness of less than 0.2μm and a planarity of about 0.01μm after processing. Eccentricity measurement, outer diameter measurement, and lens height measurement are also included as standard functions, and selections can be made from the lineup based on the target diameter and other factors.

  • Other processing machines

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[Success Case] Automation of the Turning Machining Line Achieved in an Automotive Parts Factory

A case that achieved both labor reduction through automation and improved productivity, realizing a flexible production system.

We would like to introduce a case where a turning processing line, which achieved stable operation through labor-saving and automation, was implemented in a manufacturing plant for automotive piping components. In this plant, the serious labor shortage made it urgent to balance labor-saving and productivity improvement. By conducting process analysis and formulating a labor-saving plan, we were able to standardize tasks that had become reliant on specific individuals, achieving a stable production system. 【Case Overview】 ■ Background: Aiming to simultaneously resolve labor shortages and accommodate a variety of products ■ Effects: Achieved a balance between labor-saving through automation and productivity improvement, resulting in a flexible production system - Tasks that had become reliant on specific individuals were standardized, leading to a stable production system - Automation through robots achieved a balance between labor-saving and production efficiency - Transitioned to a system capable of flexibly handling complex processing and small-batch production of various types - Processing that was difficult with general-purpose machines became smoothly manageable with the introduction of suitable equipment - Utilizing subsidies for equipment investment helped reduce the burden at the time of implementation and supported early investment decisions *For more details, please download the PDF or feel free to contact us.

  • Company:BRICS
  • Price:Other
  • Other industrial robots

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