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Plastic Thermoforming Machine

Plastic Thermoforming Machine - Four Station

Model:RS-750-800-4
RS-750-800-4 Positive and Negative Pressure Multi-Station Plastic Thermoforming Machine This machine adopts internationally advanced plastic sheet forming technology, featuring a mechanical, pneumatic and electrical integrated design. It can automatically perform sheet loading, feeding, heating, forming, punching, cutting, stacking, finished product conveying and ...

Plastic Thermoforming Machine - three station

Model:RS-750-800-3
RS-750-800-3 Positive and Negative Pressure Multi-Station Plastic Thermoforming Machine adopts internationally advanced plastic sheet forming technology. It is a plastic sheet forming machine with an integrated mechanical, pneumatic and electrical design. It can automatically complete a full range of processes including loading, feeding, heating, forming, punching, cutting, sta...

Fully Automatic Plastic Thermoforming Machine

Model:RS-750-610-4
RS-750-610-4 Positive and Negative Pressure Multi-Station Plastic Thermoforming Machine The RS-750-610-4 positive and negative pressure multi-station plastic thermoforming machine adopts internationally advanced plastic sheet forming technology. It is a plastic sheet forming equipment designed with integration of machinery, pneumatics and electricity. It can automat...

Plastic Thermoforming Equipment

Model:RS-650-450-4
RS-650-450-4 Positive and Negative Pressure Multi-Station Plastic Thermoforming Machine The RS-650-450-4 positive and negative pressure multi-station plastic thermoforming machine adopts internationally advanced plastic sheet forming technology. It is a plastic sheet forming equipment with an integrated mechanical, pneumatic and electrical design. It can automatically complete all pro...

Bowl Making Machine with AI-Powered Plug Assist Optimization​

2026-01-30
The plug assist phase is critical for wall thickness distribution in deep-drawn bowls. New bowl making machines use AI to dynamically optimize the plug assist profile in real-time. A 3D thickness scanner measures the wall thickness of finished bowls. This data is fed to an AI model that correlates it with hundreds of plug process variables: plug temperature profile, approach speed, acceleration curve, and shape. The AI runs thousands of virtual simulations to find the optimal plug path and temperature that will correct any thickness deviations (e.g., a thin spot in the corner). It then automatically uploads a new motion profile to the servo-driven plug actuator for the next cycle. This creates a self-improving loop where bowl wall thickness consistency improves continuously, reaching uniformity levels of >95% and allowing for further lightweighting without compromising performance.
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