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Impact and Scratch Prevention Device for Precision Instruments 'Dacon Anshin'

Prevent dents and scratches on processed products, achieving quality improvement and automation!

In the manufacturing field of precision machinery, the occurrence of defects due to dents and scratches on processed products has become a significant challenge. Quality control, which relied on human labor, was time-consuming and costly, and there were limits to automation. In response, Ito Precision Manufacturing has developed a product accumulation device called "Dacon Anshin" to prevent dents and scratches on processed products, thereby achieving quality improvement and automation. 【Usage Scenarios】 - Transportation and accumulation of products in various processing stages such as NC automatic lathes, forging, pressing, polishing, and rolling. - Alleviation of labor shortages through automation and reduction of personnel. - Reduction of defect occurrence rates through automated quality control. - Cost reduction through energy savings. 【Effects of Implementation】 By introducing "Dacon Anshin," it is possible to prevent dents and scratches on processed products and achieve improved product quality. Additionally, various benefits can be expected, such as alleviating labor shortages through automation, reducing defect occurrence rates through automated quality control, and cutting costs through energy savings.

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"Daikon Anshin," a device that protects processed products for precision machinery manufacturing from scratches.

Prevent scratches and abrasions! Improve productivity with unmanned operation! Free demos and tests available now!

In precision machinery manufacturing, quality control of processed products is extremely important. In particular, there are many cases where products come into contact with each other when discharged from machines such as NC automatic lathes and hot forging, leading to dents and scratches. These defects not only degrade product quality but also result in the occurrence of defective products and increased costs due to reprocessing. "Dacon Anshin" is a product accumulation device that addresses these challenges. 【Usage Scenarios】 - During processes such as NC automatic lathes, hot forging, and press processing, dents and scratches occur when transporting and accumulating products. - Quality control took time because it relied on manual labor. - Production efficiency decreased due to a shortage of personnel. 【Benefits of Implementation】 By introducing "Dacon Anshin," the following effects can be expected: - Improved product quality: By preventing dents and scratches, product quality can be enhanced, and the rate of defective products can be reduced. - Increased productivity: By enabling unmanned operation, tasks that relied on manual labor can be automated, significantly improving production efficiency. - Cost reduction: It can contribute to cost savings, such as reductions in labor costs and reprocessing expenses.

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"Dacon Anshin" - Dent and Scratch Prevention Device for Automotive Parts

Depreciation in 13 months! With unmanned driving, it's 4.7 months! Prevents dents and scratches, achieving increased productivity!

In the automotive parts manufacturing field, a challenge arises when products processed by NC automatic lathes and hot forging are discharged from machines, leading to contact between products that causes dents and scratches. Traditionally, quality control relied on manual labor, resulting in high labor costs and time expenses. "Dacon Anshin" is a product accumulation device that addresses these issues. 【Usage Scenarios】 - Automotive parts manufacturing sites - Processing stages such as NC automatic lathes and hot forging - Occurrence of dents and scratches due to contact between products - Increased time and costs due to reliance on manual quality control 【Benefits of Implementation】 - Improved product quality leading to increased customer satisfaction - Cost reduction through decreased labor expenses - Shortened delivery times due to increased productivity - 24-hour operation capability through unmanned operation

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