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Blister Forming Machine
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High Efficiency Dual Station Blister Sampling Machine for Energy Saving Vacuum Thermoforming

High Efficiency Dual Station Blister Sampling Machine for Energy Saving Vacuum Thermoforming

Brand Name: HengXing
Model Number: HX-61D
MOQ: 1
Price: USD 3000$ (deposit)
Payment Terms: D/A,L/C,D/P,Western Union,MoneyGram
Detail Information
Place of Origin:
China
Certification:
CE
Model:
HX-61D
Applicable Sheet Materials:
PVC、PP、PE、POF、PPT、PTGF、APET、ABS、OPP、PS、PET
Forming Length:
560 Mm
Forming Width:
610mm
Forming Height:
120mm
Working Speed:
1-200 Times/H
Machine Dimensions:
L2470×W1000×H1950MM
Heating Brick:
650W Ceramic Heating Brick
Machine Power:
Power Rate 15 KW
Total Weight:
Weight About 600 KG
Packaging Details:
wooden case
Highlight:

Double Station Blister Vacuum Forming Machine

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Double Station Plastic Thermoforming Machines

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15 KW Blister Vacuum Forming Machine

Product Description
High Efficiency Twin Station Blister Sampling Machine for Fast Food Container Prototyping

This machine vacuum forms various plastic sheets (PVC, PP, PE, POF, PPT, PTGF, APET, ABS, OPP, PS, PET, etc.) into plastic covers of different shapes through different molds. It is widely used in industries such as toys, hardware, electronics, and food.

The HX-61D features single furnace heating with dual station forming. The power consumption of one board-cutting machine is equivalent to the production efficiency of two board-cutting machines, making it suitable for enterprises with large output. It effectively saves electricity, shortens investment return time, and significantly reduces operating time and equipment costs.

Core Performance Features
Energy Saving & Efficient Operation
  • Dual Station Molding Architecture: Single electric furnace heating efficiently covers two molding stations, avoiding thermal energy loss during idle periods and reducing electrical consumption
  • Alternating Operation: Dual stations enable continuous production cycles without waiting for single station completion, nearly doubling production efficiency
  • Production Optimization: Effectively shortens production cycles for small batch orders
Advanced Heating System
  • Energy-Efficient Heating: Equipped with new energy-saving heating bricks for higher heat conversion efficiency
  • Precision Temperature Control: Independent temperature control device allows accurate adjustment based on material thickness and type
  • Complex Product Capability: Handles production needs for complex-shaped and uneven thickness vacuum-formed products
Enhanced Cooling System
  • Reinforced Cold Air System: Directly applies to formed products for rapid temperature reduction
  • Accelerated Production: Quick cooling accelerates plastic part shaping and prevents deformation
  • Cycle Compression: Significantly reduces product finalization time, improving overall production efficiency
Machinery & Operational Features
Optimized Mechanical Structure
  • Durable Construction: Core components mechanically optimized with high-quality materials to reduce wear and tear
  • Simplified Design: Removal of redundant components reduces maintenance difficulty and failure risk
  • Long-Term Reliability: Ensures stable operation throughout extended use periods
Flexible Operation Modes
  • Automatic Mode: Preset parameters enable automatic completion of core processes, ideal for batch production
  • Manual Mode: Adjustable heating time and molding pressure for beginners and special specification products
  • Operator Adaptation: Meets usage needs across different skill levels and production requirements
Semi-Automated Process
  • Manual Feeding + Automatic Forming: Combines flexibility with automation efficiency
  • Small Batch Optimization: Manual feeding allows flexible board positioning for multi-specification orders
  • Labor Efficiency: Automatic molding process enables one operator to manage multiple devices, reducing labor costs
Key Benefit: This twin station blister sampling machine delivers energy-efficient performance with nearly double the production capacity of traditional single-station models, making it ideal for high-output manufacturing environments requiring rapid prototyping and small batch production.