AERO-Blog

Higheffective material handling with the ADVANCE series

Any investment in production facilities and equipment should be well considered before high costs are incurred. For this to succeed, future work and performance processes should be calculable from the outset. A detailed description of the investment plans paves the way for the most profitable investment possible even before the purchase of equipment.

Focus on material flow and capacity utilization

In order to keep the economic risk of investments in plant and machinery as low as possible, such goods are purchased with sufficient planning. In addition to the consideration of the operating environment, i.e. where the plant should be located and what conditions, such as ventilation or connection systems, must be present, the utilization of the plants should be in the focus. After all, it makes no sense to buy expensive machines if you cannot estimate when the machine will pay for itself. 

A major goal of manufacturing companies is to know exactly which paths workpieces and materials have to take through the production environment before they are purchased. At the same time, they will make sure that the machine is operated as continuously as possible and that as many parts as possible are processed. With this in mind, it quickly becomes clear that it can make a huge difference whether the new bending machine or laser cutting system is loaded by hand or a systematic solution is chosen for the transport of materials to and from a system. It is logical that the manual method can be calculated unfavourably compared to a systematic solution simply by reducing the number of employees over a production shift. However, the difference is particularly serious when one considers the manifold possibilities of machine-supported material handling. Here the spectrum ranges from a simple lifting aid to system-integrated devices and systems. Always with the aim of using the most efficient method possible, production processes should therefore be considered specifically in the context of material flow and plant utilization in order to exploit the greatest possible potential of the investment.

ADVANCE series saves the future

With this view to the necessary prerequisites for an effective production, companies secure their future right from the start. The devices of our ADVANCE series are ideally suited for optimum material handling. Designed to provide the greatest possible connectivity to the operator, the vacuum lifters enhance human capabilities and act like extended extremities. The clear goal of our development, to increase the efficiency of employees in highly routine tasks, is achieved by the consistent operation of the devices. Employees always carry the vacuum lifters with both hands without having to reach around for the use of functions. Both the hoist and the vacuum lifter itself are controlled by the thumbs on the multifunction handle. This makes the ADVANCE vacuum lifting devices ideal for extending the arms and strengthening the muscles of users.

 


Are you looking for a solution with which you can move materials and workpieces extremely efficiently? Then ADVANCE vacuum lifters are your perfect companions for high productivity on stringent production lines.

We will be happy to provide you with a detailed quotation for your application environment and tailored to your needs.

View the ADVANCE series now!


Increase productivity and scalability

This optimized usability automatically makes lifting and transport cycles faster and more intuitive, directly increasing the efficiency of a production line. In addition, ADVANCE devices bring with them additional features that recommend the use of vacuum lifters for product environments. The redundant alignment of the design also makes fast material handling safer. Two vacuum pumps instead of just one provide the necessary vacuum and should one of the pumps fail, they complement each other. The associated energy-saving automatic switches the vacuum pumps on or off when the vacuum level reaches or falls below the required level. This reduces the energy consumption of the vacuum lifter by up to 40%, depending on the application, and thus increases the efficiency of the entire environment.

 


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