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  • How NEVIEW GRINDING ROBOT Redefines Foundry Deburring Automation
    How NEVIEW GRINDING ROBOT Redefines Foundry Deburring Automation
    Sep 18, 2025
              How NEVIEW GRINDING ROBOT Redefines Foundry Deburring Automation The Challenge of Manual Grinding in Foundries Traditional foundry grinding heavily relies on manual labor. Operators face: High labor costs and recruitment difficulties Inconsistent quality due to human error Occupational hazards from dust and noise NEVIEW’s Automated Grinding Solution The NEVIEW GRINDING ROBOT integrates CNC grinding machine technology with multi-axis robotic arms to achieve: Precision grinding on complex castings Deburring automation for consistent surface finish 24/7 continuous operation without fatigue Key Advantages Flexibility – Adapts to various casting shapes and sizes Efficiency – Improves throughput by 2–3 times Reliability – Ensures stable quality and reduces scrap rate  With NEVIEW GRINDING ROBOT, foundries gain a competitive edge in automated finishing solutions.      
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  • Real-World Applications of NEVIEW GRINDING ROBOT in Foundries
    Real-World Applications of NEVIEW GRINDING ROBOT in Foundries
    Sep 09, 2025
    Real-World Applications of NEVIEW GRINDING ROBOT in Foundries Foundries handle a wide range of castings, from small automotive components to large machinery parts. Each type of casting has different challenges: uneven surfaces, burrs, sharp edges, or dimensional inaccuracies. Traditional manual grinding often struggles to meet the demands of both speed and quality. The NEVIEW GRINDING ROBOT provides flexible solutions across industries: Automotive Industry: Ensures consistent surface finishing for engine blocks, gear housings, and brake components. Heavy Machinery: Handles large, heavy castings where manual grinding is inefficient and unsafe. Aerospace & Energy: Achieves high precision and repeatability required for critical components.   XJJ-DR750B XJJ-MR950C XJJ-GR950B   BBy adapting to diverse applications, the NEVIEW GRINDING ROBOT proves to be more than just a machine—it is a universal solution for foundries seeking to modernize production.  
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  • Core Technologies of NEVIEW GRINDING ROBOT
    Core Technologies of NEVIEW GRINDING ROBOT
    Aug 18, 2025
    Core Technologies of NEVIEW GRINDING ROBOT   Automation does not mean “rigid.” Especially in casting finishing, where surfaces are complex and precision is critical, a grinding robot must be “smart” enough to adapt. The NEVIEW GRINDING ROBOT is equipped with an advanced laser inspection system that scans the surface of castings, identifying burrs, misalignment defects, and other irregularities. Combined with flexible grinding technology, it can automatically adjust grinding pressure to ensure precision without damaging the workpiece. Key technical highlights include: Laser Inspection: Millimeter-level detection accuracy with real-time path correction. Flexible Contact: Adaptive pressure adjustment based on surface variations. Multi-process Integration: Grinding, chamfering, and polishing in a single setup. Thanks to these innovations, the NEVIEW GRINDING ROBOT can handle a wide range of applications—from automotive components to construction machinery parts—helping manufacturers tackle even the most challenging grinding tasks.
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  • Why Foundries Need Automated Grinding Robots?
    Why Foundries Need Automated Grinding Robots?
    Aug 12, 2025
     Why Foundries Need Automated Grinding Robots? In every foundry workshop, grinding and deburring are often considered the most demanding yet least rewarding tasks. Manual grinding not only has low efficiency but also poses health risks such as dust exposure, high noise levels, and heavy physical workload. With labor costs increasing, more and more foundries are turning to automated grinding solutions. The NEVIEW GRINDING ROBOT, equipped with flexible grinding technology and an intelligent inspection system, can handle complex surfaces and irregular castings while ensuring consistent quality. Compared to manual operations, it offers: Higher Efficiency: Continuous operation, 24/7 production with no breaks. Stable Quality: Eliminates variations caused by worker fatigue, ensuring uniform results. Safety & Sustainability: Reduces workers’ exposure to dust and noise, meeting modern safety standards.   For foundries, adopting the NEVIEW GRINDING ROBOT is not just about reducing labor costs—it is a key step toward intelligent manufacturing.  
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  • Trend analysis of automation in casting grinding: why grinding robots have become a necessity in the industry?
    Trend analysis of automation in casting grinding: why grinding robots have become a necessity in the industry?
    Aug 02, 2025
    With the continuous improvement of the level of intelligence in the manufacturing industry, automated grinding technology in the post-processing of castings has become a key direction for the technological upgrading of casting enterprises. Grinding robots have gradually become a "standard" in modern casting workshops due to their high stability, repeatability, and intelligence. 1、 Industrial upgrading drives rapid development of grinding automation Currently, the global foundry industry is facing three major trends: 1. Environmental protection requirements are becoming stricter: Traditional grinding dust pollution is severe, and enterprises need to upgrade their equipment to meet emission standards; 2. Changes in employment structure: Young labor force is decreasing, and skilled grinding workers are difficult to recruit and retain; 3. Customer quality requirements are increasing: the requirements for product appearance quality, consistency, and processing accuracy are constantly improving. In this context, industrial grinding robots have become an essential equipment for foundry enterprises due to their high degree of automation and intelligent perception capabilities. 2、 Brief description of grinding robot workflow Neview grinding robots typically complete casting grinding tasks through the following process: 1. Identification and positioning: equipped with a laser detection system to accurately identify the grinding area; 2. Path generation: Using self-developed grinding trajectory algorithm to generate the optimal path, supporting adaptive compensation; 3. Intelligent grinding: By using servo force control and flexible grinding head, the grinding force can be dynamically adjusted to achieve fine processing of complex contours; 4. Automatic dust collection and cleaning: Equipped with dust removal equipment to collect grinding residue and metal dust, protecting the health of workers and equipment. 3、 Neview grinding robot technology highlights • Ultra high rigidity robotic arm design, supporting loads of over 400kg; Fully enclosed grinding chamber structure with built-in dust removal and sound insulation modules; Modular tool quick change, suitable for grinding different types of workpieces; • Support offline programming and remote monitoring, easy deployment and maintenance. 4、 Summary: The 'inevitable path' for future casting grinding Industrial grinding robots can not only significantly improve processing efficiency, but also optimize the overall process flow, achieving digital and green production. As a promoter of casting grinding automation, Neview Automation will continue to be customer-oriented and provide efficient, safe, and sustainable intelligent grinding solutions for the casting industry.
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  • How important is the compatibility of grinding equipment in the era of multi variety production?
    How important is the compatibility of grinding equipment in the era of multi variety production?
    Jul 24, 2025
    When the workshop needs to switch product models, can your grind equipment "respond" quickly? Behind this is the competition between the equipment's "product compatibility" and "changeover cost" Judging from the data, the "flexibility" advantage of the Neview grinding robot is significant: it adopts the "workpiece positioning + arm grinding" mode, and can adapt to the processing of complex parts and multiple varieties of workpieces by replacing the fixture, with a high grinding completion rate. For companies that need to change models frequently, this "fixture replacement means model change" mode means short downtime and low labor costs. Robotic grinding equipment is caught in a dilemma: it uses the "robot gripping workpiece" method, and complex parts are either not grasped or the gripping position interferes with burrs, resulting in a grinding completion rate that is more than 30% lower than that of the fully automatic system. What's more troublesome is that when changing models, the gripper needs to be replaced and the robot needs to be re-debugged, which not only has high labor costs and long downtime, but may even require "restarting" because the gripper does not match the new product.   Although the five-axis four-link special machine only needs to replace the fixture to change the model, it is limited by the "five-axis four-link" structure and has extremely poor flexibility. It is simply unable to complete the processing of complex parts - for industries with fast product iterations and complex shapes (such as automotive castings and precision machinery), this is almost a "fatal shortcoming." Conclusion: The core of multi-variety production is "low-cost and rapid changeover". The advantages of the new state-of-the-art eight-axis seven-linkage grinding robot in compatibility and changeover efficiency can directly help companies reduce production costs and improve response speed.
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