Surface coating of plastics parts

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Focus on time robbers

Future-proof coating lines are characterized by cost-effectiveness and maximum flexibility thanks to the use of intelligent control and digitalized communication systems. Venjakob's modular concept also allows the individual machines to be equipped as required and upgraded with additional functions at any time.

Surface coating in the industrial production of plastics components, including for the automotive industry, is an important, possibly even the most important part of the entire production chain. A lot of money can be spent here, but just as much can be saved. Expensive paints, time-consuming machine cleaning, compliance with environmental regulations and constantly changing trends in materials and paints require technical equipment that offers the user the required flexibility and therefore investment security over the years.

Overall concept with optimized individual equipment

The overall system concept for surface treatment described here serves as an example of what modern coating lines are capable of. Plastics parts are painted and dried in the system using wet paint systems. The individual machines - from pre-treatment to painting and drying - were fitted with optimized individual equipment and combined to form a complete system. Traditional 1K and 2K solvent-based water-based paints and UV paints can be used.

The entire system can be configured with the following modules:

  • Cleaning modules: CO2 cleaning, high-performance dedusting/ionization
  • Activation modules: Flame treatment, plasma, UV
  • Coating: coating booth
  • Drying: Evaporation zone, infrared dryer, UV dryer, circulating air dryer, cooling zone
  • Fresh air supply: Supply air system, full air conditioning
  • Exhaust air purification: Exhaust air purification system RNV, TVA

Central control panel for all machines

All relevant system parameters are available via the system's internal communication system (Ethernet) and can be preselected and set via a central control panel. This enables flexible interaction between all individual components. Each product is given its own recipe. Each color can be prepared parallel to ongoing production and activated within a very short time.

High system availability

With regard to the amortization of the system investment, Venjakob focused on the highest possible variability in the use of the machines used when planning the production line presented here. The technical equipment was selected accordingly. In particular, the focus was on the spray painting process. Typical for industrial spray coating is the division of the total production time into production and cleaning. This determines how efficiently and profitably the system works. The advantages of the modular design are therefore particularly evident in spray coating lines. important "time robbers", such as color changes, can take place parallel to production and can be carried out as quickly as possible with minimal downtime of the transport.

Indispensable: machine and process data

Information about the processes, the productivity of the system and characteristic data documenting wear are indispensable for consistent production quality, logistical planning and system maintenance. The advantages of process data acquisition include

  • Maintenance is informed of necessary wear work by means of the characteristic data before the plant has to be stopped due to a breakdown.
  • Production management receives reliable data on productivity and can therefore meet the specified targets.
  • Material flows and resource planning are easier within the networked information network, as requirements are recognized at an early stage.
  • The entire supply and discharge logistics can be planned flexibly as productivity is known.

Process steps in surface treatment

1. Material handling

At the infeed of the machine, the components lying on specific parts skids are placed horizontally on the transport pallet and later removed at the same point as a finished component. If coating of the workpieces on the sides is required, an optional turning device can be installed.

The conveyor chain of the pallet conveyor moves at a constant speed through all system components. This has been programmed in particular for the flash-off after coating in industrial production so that the desired treatment and holding times are achieved.

The advantage is that space-saving system concepts are possible with this pallet conveyor. On the one hand, this relates to the high dryer, which utilizes the space in height instead of spreading out lengthwise. The pallets are conveyed in circulation according to the paternoster principle.

2. Pre-treatment of the components

The upstream pre-treatment removes contamination from the workpiece surfaces using liquidCO2. This is followed by high-performance dedusting/ionization with consumption-optimized, rotating blow-off nozzles. The whirled up particles are removed by an efficient extraction system. Cleaning is followed by neutralization of the static surface charge of the workpieces via an ionizing system. The workpieces leave the pre-cleaning process in a clean and charge-neutral state.

3. Activating the components

Surface activation for better wettability using flame treatment, plasma or UV could be the next step in pre-treatment. The processes mentioned increase the quality of the feel and optimally prepare the plastics workpieces for absorption of the coating material.

4. Spray painting

The coating lines convey the components on a parts carrier under the spray guns, which move at right angles to the direction of travel. Industrial finishing is carried out in a continuous process without stopping. The machine can be equipped with an automatic color change system. The color change takes place automatically in conjunction with the higher-level system control.

The supply lines between the system and the spray guns have been kept short to avoid unnecessary paint loss during rinsing. The Venjakob color management system also ensures shorter set-up times and lower solvent consumption.

An application-adapted extraction system, in conjunction with a sophisticated fresh air supply, enables the overspray produced to be optimally removed. The workpieces are scanned on the infeed side using a workpiece scanner and the machine control system creates a consumption-optimized spray painting program for each spray gun installed.

5. Drying process

The length of the subsequent flash-off zone is designed for the painting process and the associated painting speed. It is also possible to integrate infrared drying into the evaporation zone. A downstream UV drying system using a robot that moves at right angles to the conveying direction can also be selected. The downstream circulating air dryer is designed on six levels and is easily accessible for cleaning and maintenance purposes thanks to movable dryer elements. The drying time and associated size (length) of the dryer is adapted to the painting process. There is a cooling zone below the system. This is where the components are conveyed back to the inlet of the coating lines. optimal flash-off after coating in industrial production, drying , hardening or cooling are important process steps when it comes to achieving a high surface quality.

6. Fresh air supply

Fresh air is supplied independently of the hall. The supply air systems draw in the air from outside, filter, heat and humidify it in accordance with the climatic conditions of the paint systems to be processed. At some locations and when using different paint systems, full air conditioning of the supply air is a prerequisite in order to keep the climatic conditions for industrial finishing constant all year round. Full air conditioning can be integrated into the supply air system at any time.

7. Exhaust air purification

The removal of organic solvents from the exhaust air of the entire system is ensured by exhaust air purification technology from Venjakob Umwelttechnik. This is adapted and designed to suit the solvent consumption and the exhaust air volume. A wide variety of technologies such as RNV and TNV are used here, if necessary in conjunction with a concentration rotor. In this way, the strict limit values of the international air treatment guidelines, such as the European VOC, can be complied with.

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If you have any questions about this press release, please do not hesitate to contact us.

Alexandra Lewe

Head of Customer Experience

Telephone: +49 5242-9603-0
E-mail: ed.bokajnev@ofni

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