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The benefits of automating machine tools! How to improve the detachment from machines?

Introducing the benefits brought to the workplace, such as factories, and what kinds of tasks can actually be automated!

General-purpose lathes and milling machines, which require manual operation during processing, are used in many workplaces. However, it is difficult to achieve precise machining of the same item, making them unsuitable for mass production, and they also require skilled operators, which presents certain disadvantages. As a result, in recent years, there has been progress in the development of "automation" technologies for various tasks using machine tools. In this article, we will introduce the benefits that the automation of machine tools brings to factories and other workplaces, as well as what types of tasks can actually be automated. [Contents] ■ What is automation of machine tools ■ Background of the growing attention to automation ■ Advantages and disadvantages of automation ■ Examples of processes that can actually be automated ■ Automation of multi-tasking machines ■ Conclusion *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.

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What is the rigidity of machine tools? What makes a good machine?

Explanation of 'The rigidity of machine tools' and 'The balance between rigidity and usability'!

Rigidity generally refers to the difficulty of deformation in response to external forces. In the context of machine tools, it is often used to convey nuances such as the robustness of the machine and the stability of processing accuracy. It is not an exaggeration to say that a machine with high rigidity is one of the essential conditions for a good machine. 【Contents】 ■ What is the rigidity of machine tools? ■ What makes machines with high rigidity impressive? ■ The balance between rigidity and usability ■ Conclusion *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.

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Explanation of coordinate calculation in the tapered section.

A detailed explanation of coordinate calculations in the tapered section in column format!

A taper refers to a shape that narrows like a cone, and it is a common shape seen in machined parts. At first glance, it may seem that the shape is simply a straight line cut at an angle, without any complicated coordinate calculations. However, in actual drawings, it is not that simple. Often, one of the coordinates for the starting or ending position of the taper can be easily read from the drawing, but the other coordinate needs to be calculated based on the information provided in the drawing. [Contents] ■ What is a taper? ■ Trigonometric functions are essential for coordinate calculations ■ Let's calculate using the drawing! ■ More calculations are needed for actual machining ■ Summary *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.

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Introducing the types of machine tools and processing methods! What features do they have?

Introducing the main types of machine tools used on-site and the processing methods using them!

Products such as smartphones and automobiles, which have become indispensable in our lives, are all created from parts made using machines collectively referred to as "machine tools." There are various types of machine tools developed to match the shapes and materials that need to be processed, supporting the diverse manufacturing in the world. In this article, we will introduce the main types of machine tools used in the manufacturing industry and the processing methods that utilize them. [Contents] - Types of machine tools - Representative machine tools - Processing methods using machine tools - Summary *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.*

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[Information] Nakamura Toru in 5 Minutes

A machine tool manufacturer that reduces burdens in the field around the world and enriches the lives of those involved in manufacturing.

This document provides a brief introduction to Nakamura-Tome Precision Industry. It includes sections such as "What is Nakamura-Tome Precision Industry," "What is a multitasking machine," "Benefits of process integration," "Product lineup," and "Core values." The document is easy to understand and features numerous images. We encourage you to read it. 【Contents (partial)】 ■ What is Nakamura-Tome Precision Industry ■ The stage is the whole world ■ What is a multitasking machine ■ Features of multitasking machines ■ Benefits of process integration ■ Product lineup *For more details, please refer to the PDF document or feel free to contact us.

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Know-how for reducing cycle time in NC lathes!

An explanation of the key points for time reduction that manufacturer engineers actually implement!

NC lathes can automatically cut workpieces by setting the position information of the cutting edge and directing the movement path of the tool with an NC program. Once the program is created, it can repeatedly perform high-precision machining. At this time, the cycle time per product is determined by the created NC program, but it can be shortened by reviewing and optimizing this program once again. In this article, we will explain the key points for time reduction that manufacturer engineers actually implement. [Contents] ■ Introduction ■ Concept of Cycle Time ■ Points for Reducing Idle Time ■ Methods for Reducing Idle Time ■ Conclusion *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.

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What is intelligent technology? The amazing technology of machine tools!

We will introduce the types and benefits of intelligent technologies in a column format!

Intelligent technology refers to systems or software that allow machines to understand real-time situations, detect changes, and perform appropriate actions, making it seem as if the machines are thinking and acting on their own. In everyday examples, this includes air conditioning sensors that detect people and room temperature to automatically adjust airflow direction and volume, or smart speakers that interact with people and respond to various requests. [Contents] ■ What is the intelligence of machine tools? ■ What types of intelligent technologies are there? ■ Benefits of intelligent technology ■ Conclusion *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.

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What are the industry terms and technical jargon in the machinery industry?

Explanation of various industry terms and specialized terminology! I will also explain the reasons for their usage.

Have you ever experienced a situation where words you casually mentioned while talking about work with friends or family didn’t resonate, or when someone new asked you what a term meant while you were teaching them? These might be what are commonly referred to as industry jargon or technical terms. What kinds of terms exist in fields such as machine tools, metal manufacturing, and factories? Why are such words used? I have summarized these points. 【Contents】 ■ Introduction ■ Various industry terms and technical terms ■ Why are industry terms and technical terms used? ■ Conclusion *For detailed content of the column, you can view it through the related links. Please feel free to contact us for more information.

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How big is Nakamura's machine?

Things as large as a refrigerator or even factories can be completely buried! Here’s an example.

The size of machine tools varies depending on the type, processing method, and the size of the items to be processed. For simple general-purpose machines, there are ones as small as a refrigerator, while fully automated machines that utilize many peripheral devices can be large enough to fill an entire factory. Nakamura's machines are CNC lathes and multi-tasking machines designed for small to medium-sized parts, but just how big are they? I would like to introduce an example. [Contents] ■ Introduction ■ Overall Length ■ Height ■ Weight ■ Summary *Detailed content of the column can be viewed through the related links. For more information, please feel free to contact us.

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Why does poor processing occur? Explanation of causes and countermeasures!

We will introduce topics such as Bali, chipping, and edge chipping in a column format!

This column will provide a detailed explanation of the causes and countermeasures for processing defects. Processing defects refer to situations where the shape or accuracy does not conform to the specifications in the drawings, or where processing must be interrupted. When processing defects occur, various disadvantages arise, such as "the need for rework or corrections, which increases labor hours," and "deterioration of accuracy and fit." [Contents] ■ What are processing defects ■ Burrs ■ Edge chipping ■ Chipping ■ Chip entanglement ■ Summary *For more details on the column, you can view it through the related links. Please feel free to contact us for more information.

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