旋盖机Bertolaso
SIGMA 103
旋盖机
Bertolaso
SIGMA 103
出厂年份
1983
状况
二手
位置
Fumane (Verona) 

价格和位置
- 卖方所在地:
- Via Incisa 1, 37022 Fumane (Verona), 意大利

拨打
优惠详情
- 广告编号:
- A18007436
- 参考编号:
- TP99
- 更新:
- 最近更新时间为 16.12.2024
描述
Used Capping Machine BERTOLASO up to 4500 bph
Technical Analysis of the BERTOLASO Capping Machine
The BERTOLASO SIGMA 103 model exemplifies capping technology that significantly enhances high-speed bottling processes. Originally designed in 1983, this machine delivers a production capacity of up to 4500 bottles per hour (bph), thus showcasing its effectiveness in intensive industrial settings. Importantly, its long operational life and minimal maintenance requirements solidify its market value among used capping machines.
Operational Details and Functionality
Equipped with three capping heads, the SIGMA 103 allows for precise application of plastic press-on caps. Furthermore, its clockwise rotation direction facilitates seamless interactions with bottling line components, consequently promoting a continuous and uninterrupted workflow. This specification not only boosts productivity but also critically minimizes the risk of operational errors, which is essential in environments that demand speed and precision.
Electrical Parameters and Maintenance Considerations
Operating at a voltage of 380 V and a frequency of 50 Hz, the machine’s electrical setup matches typical European industrial operations. Currently stored in a warehouse, it must undergo a detailed inspection to verify the integrity of its electrical and mechanical components. Additionally, this step is critical to ensuring the machine can resume production without compromising the quality of the capping process.
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Conclusions
In conclusion, the BERTOLASO SIGMA 103 capping machine stands as a high-value technological resource for the bottling industry. With its high production capacity and efficient capping heads, it is ideally suited for integration into a modern bottling line, ensuring high performance and cost-effective operations. Moreover, this analysis emphasizes the necessity of thoroughly assessing the machine’s operational conditions before deployment to maximize efficiency and extend its lifespan.
Technical Analysis of the BERTOLASO Capping Machine
The BERTOLASO SIGMA 103 model exemplifies capping technology that significantly enhances high-speed bottling processes. Originally designed in 1983, this machine delivers a production capacity of up to 4500 bottles per hour (bph), thus showcasing its effectiveness in intensive industrial settings. Importantly, its long operational life and minimal maintenance requirements solidify its market value among used capping machines.
Operational Details and Functionality
Equipped with three capping heads, the SIGMA 103 allows for precise application of plastic press-on caps. Furthermore, its clockwise rotation direction facilitates seamless interactions with bottling line components, consequently promoting a continuous and uninterrupted workflow. This specification not only boosts productivity but also critically minimizes the risk of operational errors, which is essential in environments that demand speed and precision.
Electrical Parameters and Maintenance Considerations
Operating at a voltage of 380 V and a frequency of 50 Hz, the machine’s electrical setup matches typical European industrial operations. Currently stored in a warehouse, it must undergo a detailed inspection to verify the integrity of its electrical and mechanical components. Additionally, this step is critical to ensuring the machine can resume production without compromising the quality of the capping process.
Bdsdpjvgvppofx Ap Asc
Conclusions
In conclusion, the BERTOLASO SIGMA 103 capping machine stands as a high-value technological resource for the bottling industry. With its high production capacity and efficient capping heads, it is ideally suited for integration into a modern bottling line, ensuring high performance and cost-effective operations. Moreover, this analysis emphasizes the necessity of thoroughly assessing the machine’s operational conditions before deployment to maximize efficiency and extend its lifespan.
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