LIGNO LIGNO DEDUST PRO EXPERT SYSTEM SOLUTIONS

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LIGNO LIGNO DEDUST PRO EXPERT SYSTEM SOLUTIONS

CONTROL WITH STYLE SIMPLE, STRAIGHTFORWARD, EFFICIENT BASIC In order to provide simple and efficient operation, all dedusters in the DeDust Pro range are fitted with PLC and touch panel controls. DISPLAY The straightforward menu-driven system and the setting of all important parameters allows the operator to respond to the optimal requirements of the operation. USER-FRIENDLY The sensor response is displayed on the screen. Additionally, text is displayed in order to support the operator in the best possible way. A message history is available as standard. ADAPTABILITY Due to the intuitive menu-driven system, it s possible to adapt to the requirements of the operation at any time. This may be in terms of energy savings, flexibility and rapid amortisation. VARIO AND SEPAS 8000 All connected machines are summarised in a list. Separate parameters can be set for each machine. ENERGY EFFICIENCY Essential consumption values may be viewed at all times. The average utilisation rate of the system is also recorded as a general operating hours meter. 7

DEDUST PRO EXHAUST SYSTEM BASIC STANDARD: FOR ONE MASCHINE Basic at fixed speed. The fan operates at nominal speed. A start / stop contact is provided in the control cabinet for every machine which switches the associated fan on or off. Application Extraction at machine. This was the original idea behind the inception of the deduster. Minimum air volume conveyance velocity The minimum conveyance velocity is already taken into account at the design stage of the main pipework. Consequently there is no air volume control and no secondary air control. OPTION: BASIC FOR SEVERAL MACHINES Extraction of several machines totally simultaneously. basic at fixed speed. The fan operates at nominal speed. A start / stop contact is provided in the control cabinet for every machine which switches the associated fan on or off. Application Mostly for machines or groups of machines with invariably constant capacity / synchronisation. Minimum air volume conveyance speed The minimum conveyance velocity is already taken into account at the design stage of the main pipework. Main pipe v (m/s) 24* m/s BASIC EXHAUST SYSTEM WITH FIXED SPEED Consequently there is no air volume control and no secondary air control. 15 m/s ** * In connection with the nominal air volume and the main pipe measurements, the maximum speed in in the main pipe is normally between 22 und 26 m/s 0 m/s 0% Extraction plant capacity 100% ** False air to insure the conveying speed in the main pipe (waste / inefficiency of the exhaust system) 2

DEDUST PRO EXHAUST SYSTEM VARIO STANDARD: FIXED SPEED slide valve control at fixed speed. The fan operates at nominal speed. Slide valve control A start / stop contact is provided for every machine which opens or closes the associated slide valve. The fan is switched on or off at the same time. Minimum air volume conveyance speed In order to ensure the minimum conveyance speed in the main pipe, additional automatic gate valves for processing machines are opened. Machine safety - extraction air volume If the maximum extraction air volume is exceeded then no further slide valves may be opened. (additional warning lights on the control cabinet) OPTION: VARIABLE SPEED Slide valve control with variable speed. The fan controls the required operational negative pressure via the frequency convertor. Machine negative pressure The appropriate negative pressure is allocated to each machine. One of three negative pressure levels (high, medium or low) can be allocated to each machine. Energy saving Significant energy savings can be realised via frequency convertor control. An air velocity of 15 m/s can be regulated in the lower capacity zone. The amortisation time period is between four and five years.*** Main pipe v (m/s) 24* m/s EXHAUST SYSTEM WITH SLIDE CONTROL & FREQUENCY REGULATION * In connection with the nominal air volume and the main pipe measurements, the maximum speed in in the main pipe is normally between 22 und 26 m/s 15 m/s ** False air to insure the conveying speed in the main pipe (waste / inefficiency of the exhaust system) ***Based on 12 cents/kwh with medium load i.e. 50% and 8h per day ** 0 m/s 0% Extraction plant capacity 100% 3

DEDUST PRO EXHAUST SYSTEM SEPAS 8000 SEPAS 8000 with variable speed. The fan controls the required operational negative pressure via the frequency convertor Machine negative pressure The appropriate negative pressure is allocated to each machine. One of three negative pressure levels (high, medium or low) can be allocated to each machine. led capacity when compared to the standard design. Securing the machines - extraction air volume If the maximum extraction air volume is exceeded then no further slide valves may be opened. (additional warning lights on the control cabinet) Energy saving Significant energy savings can be realised via the frequency convertor control. An air velocity of 7 m/s can be regulated in the lower capacity range. The amortisation time period is between one and two years.*** Main pipe v (m/s) 28* m/s SEPAS 8000 EXHAUST SYSTEM Slide valve control A start / stop contact is provided for every machine which opens or closes the associated slide valve. The fan is switched on or off at the same time. 7 m/s ** 0 m/s 0% Extraction plant capacity 100% Minimum air volume conveyance speed In order to ensure the minimum conveyance velocity in the main pipeline, the patented activation pipe comes into play for material conveyance, even at low velocities. Regulation of 2,000 to 8,000 m³/h this corresponds to double the control- * In connection with the nominal air volume and the main pipe measurements, the maximum speed in in the main pipe is normally is around 28 m/s ** False air to insure the conveying speed in the main pipe (waste / inefficiency of the exhaust system) ***Based on 12 cents/kwh with medium load i.e. 50% and 8h per day 4

CONVEYANCE / STORAGE PNEUMATIC CONVEYANCE Conveyance / ring pipe system Material is conveyed using a ring-pipe conveyance system. The fan blows separated material into the conveyance pipe towards the storage location. The air which is fed back is guided towards the fan. In such a way, the air is guided into circular motion and no dust escapes. and cost-effective solution available for nearly all applications, including existing masoned silos for which there is otherwise no safe and legal solution. Specially created reports for the applications mentioned are available from Scheuch to complement the offerings. Container filled with compressed air The open container is fitted with a combination of filter and cover tarps. No explosive pressure may build up due to the open construction. No particular constructive measures are therefore required to be taken. (Pressure relief systems and decoupling measures) Only fire protection need to be observed for in compliance with local regulation Silo with axial fill The material is directly introduced into the Silo through a non-return flap via compressed air conveyance piping. The conveyed air is fed back again via a pressure relief vent which acts as a non-return flap in terms of the technical explosion decoupling mechanism. Container filled with compressed air Fewer decompression areas are required inside the silo thanks to the special Scheuch filling combined with the explosion protection mechanisms in the silo. Practical tried and tested flame profiles are also available for both lateral and upward decompression. As a result, there is a practical and cost-effective solution available for nearly all applications. Specially created reports for the applications mentioned are available from Scheuch to complement the offerings. Silo pressure-free filling via rotary valves The material separated in the cyclone is introduced into the silo through a rotary valve. The rotary valve performs the role of fire and explosion decoupling. Fewer pressure relief areas are required inside the silo thanks to the special Scheuch filling process combined with with the explosion protection mechanisms in the silo. Practical tried and tested flame profiles are also available for both lateral and upward decompression. As a result, there is a practical Silo with axial fill Silo pressure-free filling via rotary valves 5

GENERAL CONDITIONS REGULATED BY EN 16770 INTERFACES The extraction plant begins at the extraction hood and terminates with intermediate deposit of the separated material. CE-MARKING The entire extraction plant must be marketed. It is not sufficient to rely purely on CE conformity. The overall system with its interlinked safety engineering aspects must be considered. The extraction plant distributor can either be the machinery supplier or the extraction plant manufacturer. To ease this process, Scheuch has developed the Vario, Basic and SEPAS 8000 exhaust systems. The distributor can resort to a standardised system with existing safety analysis. FUNDAMENTAL SECURITY REQUIREMENTS Adherence to the specified conveyance velocity in order to avoid deposits. Fire and explosion protection Dust residue < 0.1 mg/nm³/h Ensuring the required extraction air volume for each machine in varying operating conditions. Storage and disposal of the extracted material. Minimising running costs due to high efficiency extraction design. Flexibility in adding machinery SLIDE VALVES Slide valves to shut off individual woodworking machines or other extraction points must open and close automatically. Manual valves may, in exceptional cases, be used to block individual woodworking machines with a small air volume flow, based on the total volume of air flow. Even if part of the slide valve is closed, the required minimum air conveyance velocity must be achieved in all sections of the pipeline system being used and for all operating states (capacity) involved in conveying materials. Note: this can be achieved with bypass systems or via air injection. INTERFACE TO WOODWORKING MACHINES EXTRACT FROM EN 16770 INTERFACE The extraction plant should interface to an external start / stop signal which serves to automatically start and stop the extraction plant (see image). If a woodworking machine requires a monitoring system for volumetric flow, then this monitoring system is not part of the extraction plant design but rather that of the machine itself (from the manufacturer). PLANNING AND DESIGN GUIDELINES EXTRACT FROM EN 16770 EXTRACTION AIR VOLUME The construction and design of the extraction plant must ensure that all machinery operated under the specified operating conditions can perform the extraction of the air flow volumes indicated by the manufacturer at the very least. Legend 1: Interface between extraction plant and woodworking machine 2: Access for external starting of the extraction plan 3: Gate valve 4: Monitoring of the volumetric air flow for internal locking of a woodworking machin 6

LIGNO Scheuch LIGNO GmbH Mehrnbach 116 4941 Mehrnbach Austria Phone +43 / 7752 / 905 8000 Fax +43 / 7752 / 905 68000 E-Mail office@scheuch-ligno.com Web www.scheuch-ligno.com WE ARE TECHNOLOGY FOR CLEAN AIR WWW.SCHEUCH-LIGNO.COM