EP0563788B1 - Working process for a wet-dry cleaner having an automatic cut-out system and wet-dry cleaner operating accordingly - Google Patents

Working process for a wet-dry cleaner having an automatic cut-out system and wet-dry cleaner operating accordingly Download PDF

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Publication number
EP0563788B1
EP0563788B1 EP93104911A EP93104911A EP0563788B1 EP 0563788 B1 EP0563788 B1 EP 0563788B1 EP 93104911 A EP93104911 A EP 93104911A EP 93104911 A EP93104911 A EP 93104911A EP 0563788 B1 EP0563788 B1 EP 0563788B1
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EP
European Patent Office
Prior art keywords
dirt
suction
volume flow
electrical
tool
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP93104911A
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German (de)
French (fr)
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EP0563788A1 (en
Inventor
Rainer Oberdorfer-Bögel
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WAP Reinigungssysteme GmbH and Co
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WAP Reinigungssysteme GmbH and Co
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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/28Installation of the electric equipment, e.g. adaptation or attachment to the suction cleaner; Controlling suction cleaners by electric means
    • A47L9/2857User input or output elements for control, e.g. buttons, switches or displays
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L7/00Suction cleaners adapted for additional purposes; Tables with suction openings for cleaning purposes; Containers for cleaning articles by suction; Suction cleaners adapted to cleaning of brushes; Suction cleaners adapted to taking-up liquids
    • A47L7/0004Suction cleaners adapted to take up liquids, e.g. wet or dry vacuum cleaners
    • A47L7/0023Recovery tanks
    • A47L7/0028Security means, e.g. float valves or level switches for preventing overflow
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L7/00Suction cleaners adapted for additional purposes; Tables with suction openings for cleaning purposes; Containers for cleaning articles by suction; Suction cleaners adapted to cleaning of brushes; Suction cleaners adapted to taking-up liquids
    • A47L7/0004Suction cleaners adapted to take up liquids, e.g. wet or dry vacuum cleaners
    • A47L7/0042Gaskets; Sealing means
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/10Filters; Dust separators; Dust removal; Automatic exchange of filters
    • A47L9/19Means for monitoring filtering operation
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/28Installation of the electric equipment, e.g. adaptation or attachment to the suction cleaner; Controlling suction cleaners by electric means
    • A47L9/2805Parameters or conditions being sensed
    • A47L9/2821Pressure, vacuum level or airflow
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/28Installation of the electric equipment, e.g. adaptation or attachment to the suction cleaner; Controlling suction cleaners by electric means
    • A47L9/2836Installation of the electric equipment, e.g. adaptation or attachment to the suction cleaner; Controlling suction cleaners by electric means characterised by the parts which are controlled
    • A47L9/2842Suction motors or blowers

Definitions

  • the invention relates to a method for operating a vacuum cleaner with automatic shutdown and a vacuum cleaner for performing this method according to the preamble of claim 1.
  • Such vacuum cleaners are generally used in conjunction with a power tool or the like, the power tool having suction slots in order to be able to vacuum off contaminants generated by the power tool and be supplied to the vacuum cleaner.
  • the problem with vacuum cleaners in connection with a power tool is that different, dust-generating power tools with different cross-sectional areas and with different suction hoses are connected from the power tool to the vacuum cleaner to a single vacuum cleaner.
  • a certain automatic switch-off is now arranged within the vacuum cleaner in order to be able to switch off the vacuum cleaner and / or the tool in the case of a certain impermissibly high suction resistance in connection with the connected tool, or in the event of filter contamination of the vacuum cleaner.
  • DE-U-8 704 714 shows a vacuum cleaner with air volume control, in which the air volume conveyed or its intake speed is recorded and is kept essentially constant by means of a control system. This regulation only works depending on the fill level of the filter; an adaptation to device-related changes in the suction resistance is not provided.
  • the invention is therefore based on the object of developing a method for operating a vacuum cleaner in such a way that, regardless of the suction hose diameter used and other circumstances influencing the efficiency of the suction on the power tool, care is always taken to ensure that the power tool is not sucked off with a too low volume flow .
  • the technical teaching of claim 1 serves to solve the problem.
  • Circumstances that could lead to an unacceptable drop in the minimum volume flow on the power tool are e.g. a decrease in the operating voltage of the vacuum cleaner, the speed of the turbine decreasing and thereby a lower volume flow being sucked off.
  • Other circumstances include the use of different suction hoses with different diameters, which also influences the volume flow on the power tool.
  • the volume flow prevailing in the vacuum cleaner is measured and included in a calculation formula, on the basis of which a minimum volume flow not to be undercut is calculated, when it is reached the power tool and / or (possibly with a time delay) the vacuum cleaner are switched off.
  • volume flow per unit of time is recorded on the intake side of the turbine fan wheel.
  • the differential pressure is measured in the area of a Venturi orifice, which is arranged in front of the suction side of the fan wheel of the turbine.
  • this minimum volume flow depends on a number of factors, namely, for example, the degree of soiling of the power tool, the degree of soiling of the suction hose, the degree of soiling of the filter bag and the filter, the speed of the turbine (and thus also fluctuations in the network) and from other circumstances more.
  • a switch with several switch positions is arranged on the control panel of the vacuum cleaner, with which different minimum volume flows can be specified on a scale arranged around the switch, at which the vacuum cleaner and / or the power tool are switched off (if one Power tool is switched on).
  • the minimum volume flow assigned to the respective power tool is e.g. determined by the trade association, determined and in future documented on the nameplate and the operating instructions for the power tool.
  • the suction hose diameter is available as a coded number through correspondingly arranged contacts in the connecting sleeve of the suction hose, and that this coding is tapped via a corresponding contact arrangement in the inlet opening of the vacuum cleaner.
  • volume flow measurements directly in the inlet area of the vacuum cleaner, i.e. For example, in the area of the inlet opening, so as not to fall below a minimum volume flow.
  • a vacuum cleaner 1 is shown schematically, which has in its cover 2 a fan wheel 16 which is part of a turbine 28 (see Figure 2) and which is driven by an electric motor, not shown.
  • the vacuum cleaner 1 also has a dirt container 13 in which a filter bag 14 is arranged in a manner known per se.
  • the filter bag 14 is connected in an airtight manner to an inlet opening 33, to which a suction hose 17 attaches, which is connected to an electric tool 18.
  • a filter 15 which is designed, for example, as a pleated filter.
  • the filter 15 covers a ventilation grille 22 on the clean air side, through which the air sucked in through the filter bag 14 and through the filter 15 is sucked in by the turbine and flows out into the cover 2 in the direction of the arrows shown.
  • the turbine 28 has outlet openings 39, the turbine being held in upper and lower seals 30.
  • the lower seal 30 is arranged in the area of a receiving plate 29, while the upper seal 30 is arranged in the area of a clamping plate 31.
  • a wire mesh 38 is arranged on the underside of the turbine in the area of the receiving plate 29, in the area of which a venturi screen 21 is arranged.
  • the venturi cover 21 consists of two tube pieces 41, 42 arranged coaxially to one another, which form two annular chambers 40, 44 between them, the lower annular chamber 40 being separated from the upper annular chamber 44 by a horizontal transverse partition 43.
  • One port 45 for the decrease in pressure P4, for the one vacuum line, is now in the area of the lower annular chamber 40, while the other port 46 for the decrease in pressure P3 is in the area of the upper annular chamber 44.
  • the differential pressure cell 20 is therefore connected to the connections 45, 46.
  • FIG. 3 a volume flow diagram is drawn in FIG. 3, which works with the differential pressure method as it is constructed in FIG. 2.
  • switch-off point 51 is always on this straight line 47 regardless of the voltage, and this switch-off point corresponds, for example, to a differential pressure of 250 Pa at a volume flow of 26 cbm / h.
  • the working range is in the direction of arrow 52, starting from point 49, down until the lower switch-off point 51 is reached.
  • a signal must first be generated, which can be given optically or acoustically. After generating this signal, the power tool can optionally be switched off.
  • an optical or acoustic signal lights up in point 51 and the vacuum turbine may be switched off after a certain delay.
  • a volume flow switch is arranged on the front of the device, e.g. selectable volume flows from 25 cbm / h to 100 cbm / h in several stages and can be selected.
  • each volume flow value is assigned a pressure switch with a fixed switch-off value that can be selected from the switch.
  • the switch-off time i.e. change the switch-off point 51.
  • the selection of the volume flow is based either on the diameter of the suction hose used or on the connecting piece diameter of the power tool used.
  • this suction device according to the invention can be adapted to all power tools on the market and their suction nozzle.
  • the advantage of the differential pressure decrease is that you are independent of the nominal voltage of the turbine and independent of the atmospheric pressure, i.e. it does not matter whether you have the turbine at sea level or on a mountain peak of 2000 m.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Electric Vacuum Cleaner (AREA)
  • Filters For Electric Vacuum Cleaners (AREA)
  • Cleaning In General (AREA)

Abstract

A process for operating a wet-dry cleaner (1) having an automatic cut-out of the turbine (28) and an electric tool (18), which may be connected thereto, provides for an impermissibly high loading of dirt to be detected in the case of the loading of dirt of the filter (15) and/or of the dust bag (14) being exceeded or in the case of any other disturbance in the suction region, due to the fact that either the absolute pressure is recorded on the intake side of the fan wheel (16) of the turbine or a differential pressure is recorded in the region of a Venturi plate (21) on the entry side of the fan wheel. <IMAGE>

Description

Die Erfindung betrifft ein Verfahren zum Betrieb eines Schmutzsaugers mit automatischer Abschaltung und einen Schmutzsauger zur Ausübung dieses Verfahrens nach dem Oberbegriff des Patentanspruchs 1.The invention relates to a method for operating a vacuum cleaner with automatic shutdown and a vacuum cleaner for performing this method according to the preamble of claim 1.

Derartige Schmutzsauger werden im allgemeinen in Verbindung mit einen Elektrowerkzeug oder dergleichen benutzt, wobei das Elektrowerkzeug Absaugschlitze aufweist, um vom Elektrowerkzeug erzeugte Verunreinigungen absaugen zu können, die dem Schmutzsauger zugeführt werden. Bei Schmutzsaugern in Verbindung mit einen Elektrowerkzeug besteht das Problem, daß an einen einzigen Schmutzsauger unterschiedliche, stauberzeugende Elektrowerkzeug mit unterschiedlichen Absaugstutzenquerschnitten und mit unterschiedlichen Absaugschläuchen vom Elektrowerkzeug zum Schmutzsauger angeschlossen werden.Such vacuum cleaners are generally used in conjunction with a power tool or the like, the power tool having suction slots in order to be able to vacuum off contaminants generated by the power tool and be supplied to the vacuum cleaner. The problem with vacuum cleaners in connection with a power tool is that different, dust-generating power tools with different cross-sectional areas and with different suction hoses are connected from the power tool to the vacuum cleaner to a single vacuum cleaner.

Je nachdem, welche Strömungswiderstände im Werkzeug mit den Absaugschlitzen, im Absaugschlauch und im weiteren Bereich der Absaugstrecke liegen, ist damit ein höherer oder niedrigerer Absaugwiderstand gegeben. Innerhalb des Schmutzsaugers ist nun eine bestimmte Abschaltautomatik angeordnet, um bei einem bestimmten unzulässig ohen Absaugwiderstand in Verbindung mit dem angeschlossenen Werkzeug, oder bei einer Filterverschmutzung des Schmutzsaugers, diesen und/oder das Werkzeug abschalten zu können.Depending on the flow resistance in the tool with the suction slots, in the suction hose and in the wider area of the suction section, there is a higher or lower suction resistance. A certain automatic switch-off is now arranged within the vacuum cleaner in order to be able to switch off the vacuum cleaner and / or the tool in the case of a certain impermissibly high suction resistance in connection with the connected tool, or in the event of filter contamination of the vacuum cleaner.

Bisher konnte es nach dem Stand der Technik passieren, daß an einen Schmutzsauger mit einer bestimmten Abschaltautomatik unterschiedliche Absaugwerkzeuge angeschlossen wurden, wobei unterschiedliche Absaugschläuche systembedingt verwendet werden. Hierbei tritt das Problem auf, daß einem bestimmten Absaugwerkzeug ein bestimmter systembedingter Absaugschlauch zugeordnet ist, der z.B. einen kleinen Durchmesser aufweist, wodurch, ohne daß eine Verschmutzung vorliegt, ein großer Absaugwiderstand entstand und hierbei die Abschaltautomatik des Schmutzsaugers abschaltete.So far, it has happened according to the prior art that different suction tools were connected to a vacuum cleaner with a certain automatic switch-off, different suction hoses being used depending on the system. The problem that arises here is that a certain suction tool has a certain system-related suction hose is assigned, which has a small diameter, for example, which, without contamination being present, created a high suction resistance and thereby switched off the automatic switch-off of the vacuum cleaner.

So zeigt die DE-U-8 704 714 einen Staubsauger mit Luftmengenregelung, bei dem die geförderte Luftmenge bzw. deren Ansauggeschwindigkeit erfasst und über eine Regelung im wesentlichen konstant gehalten wird. Diese Regelung arbeitet nur in Abhängigkeit vom Füllgrad des Filters; eine Anpassung an gerätebedingte Änderungen des Absaugwiderstandes ist nicht vorgesehen.For example, DE-U-8 704 714 shows a vacuum cleaner with air volume control, in which the air volume conveyed or its intake speed is recorded and is kept essentially constant by means of a control system. This regulation only works depending on the fill level of the filter; an adaptation to device-related changes in the suction resistance is not provided.

Der Erfindung liegt deshalb die Aufgabe zugrunde, ein Verfahren zum Betrieb eines Schmutzsaugers so weiterzubilden, daß unabhängig von dem verwendeten Saugschlauchdurchmesser und von anderen den Wirkungsgrad der Absaugung am Elektrowerkzeug beeinflussenden Umständen stets dafür gesorgt wird, daß das Elektrowerkzeug nicht mit einem zu niedrigen Volumenstrom abgesaugt wird.The invention is therefore based on the object of developing a method for operating a vacuum cleaner in such a way that, regardless of the suction hose diameter used and other circumstances influencing the efficiency of the suction on the power tool, care is always taken to ensure that the power tool is not sucked off with a too low volume flow .

Zur Lösung der gestellten Aufgabe dient die technische Lehre des Anspruchs 1.The technical teaching of claim 1 serves to solve the problem.

Umstände, die dazu führen könnten, daß in unzulässiger Weise ein Mindest-Volumenstrom am Elektrowerkzeug unterschritten wird, sind z.B. ein Absinken der Betriebsspannung des Schmutzsaugers, wobei die Drehzahl der Turbine abnimmt und hierdurch ein geringerer Volumenstrom abgesaugt wird. Andere Umstände sind z.b. die Verwendung unterschiedlicher Saugschläuche mit unterschiedlichen Durchmessern, wodurch ebenfalls der Volumenstrom am Elektrowerkzeug beeinflusst wird.Circumstances that could lead to an unacceptable drop in the minimum volume flow on the power tool are e.g. a decrease in the operating voltage of the vacuum cleaner, the speed of the turbine decreasing and thereby a lower volume flow being sucked off. Other circumstances include the use of different suction hoses with different diameters, which also influences the volume flow on the power tool.

Nach der Erfindung wird also der im Staubsauger vorherrschende Volumenstrom gemessen und in eine Berechnungsformel einbezogen, aufgrund deren ein nicht zu unterschreitender Mindest-Volumenstrom berechnet wird, bei dessen Erreichen zunächst das Elektrowerkzeug und/oder (eventuell zeitverzögert) der Schmutzsauger abgeschaltet werden.According to the invention, the volume flow prevailing in the vacuum cleaner is measured and included in a calculation formula, on the basis of which a minimum volume flow not to be undercut is calculated, when it is reached the power tool and / or (possibly with a time delay) the vacuum cleaner are switched off.

Es ist hierbei vorgesehen, daß der Volumenstrom pro Zeiteinheit an der Ansaugseite des Lüfterrades der Turbine erfasst wird.It is provided that the volume flow per unit of time is recorded on the intake side of the turbine fan wheel.

Hierzu ist vorgesehen, daß der Differenzdruck im Bereich einer Venturiblende gemessen wird, die vor der Ansaugseite des Lüfterrades der Turbine angeordnet ist.For this purpose, it is provided that the differential pressure is measured in the area of a Venturi orifice, which is arranged in front of the suction side of the fan wheel of the turbine.

Bei dem beschriebenen Verfahren ist wichtig, daß ein Mindest-Volumenstrom nicht unterschritten wird, dem eine Mindest-Luftgeschwindigkeit von geforderten 20 m/s entspricht. Auf diese Weise wird den Anforderungen der Berufsgenossenschaft Rechnung getragen, die vorschreiben, daß

  • a) beim Betrieb des Staubsaugers zum Aufsaugen von abgelagerten Stäuben die Mindest-Luftgeschwindigkeit im dabei verwendeten Saugschlauch den Wert von 20 m/s nicht unterschreitet,
  • b) beim Betrieb des Staubsaugers als Entstaubers zur Absaugung von Stäuben, erzeugt durch stauberzeugende, handgeführte Maschinen, z.B. Elektrowerkzeuge, wie Rutscher, Winkelschleifer usw., die Mindest-Luftgeschwindigkeit von 20 m/s im Absaugstutzen des dabei verwendeten stauberzeugenden Werkzeuges nicht unterschritten wird.
In the described method it is important that a minimum volume flow is not undercut, which corresponds to a minimum air speed of 20 m / s required. In this way, the requirements of the professional association, which stipulate that
  • a) when operating the vacuum cleaner to vacuum deposited dust, the minimum air speed in the suction hose used does not fall below 20 m / s,
  • b) when operating the vacuum cleaner as a dust extractor for the extraction of dust, generated by dust-generating, hand-held machines, e.g. power tools, such as slides, angle grinders, etc., the minimum air speed of 20 m / s in the extraction nozzle of the dust-generating tool used is not undercut.

Wie bereits schon eingangs ausgeführt, hängt dieser Mindest-Volumenstrom von einer Reihe von Faktoren ab, nämlich z.B. vom Verschmutzungsgrad des Elektrowerkzeuges, vom Verschmutzungsgrad des Absaugschlauches, vom Verschmutzungsgrad des Filtersackes und des Filters, von der Drehzahl der Turbine (damit auch von Netzschwankungen) und von anderen Umständen mehr.As already stated at the beginning, this minimum volume flow depends on a number of factors, namely, for example, the degree of soiling of the power tool, the degree of soiling of the suction hose, the degree of soiling of the filter bag and the filter, the speed of the turbine (and thus also fluctuations in the network) and from other circumstances more.

Wichtig ist, daß am Bedienpult des Schmutzsaugers ein Schalter mit mehreren Schaltstellungen angeordnet ist, mit dem unterschiedliche, auf einer, um den Schalter angeordneten Skala aufgetragene, Mindest-Volumenströme vorgebbar sind, bei denen der Schmutzsauger und/oder das Elektrowerkzeug abgeschaltet werden (sofern ein Elektrowerkzeug angeschaltet ist).It is important that a switch with several switch positions is arranged on the control panel of the vacuum cleaner, with which different minimum volume flows can be specified on a scale arranged around the switch, at which the vacuum cleaner and / or the power tool are switched off (if one Power tool is switched on).

Damit ist es möglich, an einen Schmutzsauger unterschiedliche Typen von Elektrowerkzeugen mit unterschiedlichen Ansaugstutzen-Durchmessern anzuschließen und trotzdem dafür zu sorgen, daß der, dem Elektrowerkzeug zugeordnete, Mindest-Volumenstrom nicht unterschritten wird.This makes it possible to connect different types of power tools with different intake manifold diameters to a vacuum cleaner and still ensure that the minimum volume flow assigned to the power tool is not undercut.

Der dem jeweiligen Elektrowerkzeug zugeordnete Mindest-Volumenstrom wird z.B. von der Berufsgenossenschaft ermittelt, festgelegt und zukünftig auf dem Typenschild und der Bedienungsanleitung des Elektrowerkzeuges dokumentiert.The minimum volume flow assigned to the respective power tool is e.g. determined by the trade association, determined and in future documented on the nameplate and the operating instructions for the power tool.

Daß der Mindest-Volumenstrom nicht unterschritten wird, wird dadurch erreicht, daß man den erwähnten Schalter in eine derartige Schaltstellung dreht, die auf der fest angebrachten Skala den Mindest-Volumenstrom angibt. Die Unterschreitung des Mindest-Volumenstroms wird dann in der Steuerung des Schmutzsaugers überwacht.The fact that the minimum volume flow is not undershot is achieved by turning the switch mentioned in such a switch position that indicates the minimum volume flow on the fixed scale. The drop in the minimum volume flow is then monitored in the control of the vacuum cleaner.

In einer Weiterbildung ist vorgesehen, daß beim Betrieb des Staubsaugers zum Aufsaugen von abgelagerten Stäuben der Saugschlauch-Durchmesser als codierte Zahl durch entsprechend angeordnete Kontakte in der Anschlußmuffe des Saugschlauches vorhanden ist und daß diese Codierung über eine entsprechende Kontaktanordnung in der Einlaßöffnung des Schmutzsaugers abgegriffen wird, um so der Steuerung des Schmutzsaugers mitzuteilen, welche Art von saugschlauch angeschlossen ist. Der vorher erwähnte Schalter ist dann nicht mehr notwendig, mit den der Steuerung des Schmutzsaugers mitgeteilt wird, welche Art von Saugschlauch angeschlossen ist.In a further development it is provided that during operation of the vacuum cleaner for vacuuming deposited dust, the suction hose diameter is available as a coded number through correspondingly arranged contacts in the connecting sleeve of the suction hose, and that this coding is tapped via a corresponding contact arrangement in the inlet opening of the vacuum cleaner. to tell the control unit of the vacuum cleaner which type of suction hose is connected. The previously mentioned switch is then no longer necessary, with which the control of the vacuum cleaner is informed which type of suction hose is connected.

In einer anderen Ausgestaltung ist vorgesehen, daß die vorher erwähnten Volumenstrommessungen direkt im Einlaßbereich des Schmutzsaugers, d.h. beispielsweise im Bereich der Einlaßöffnung, vorgenommen werden, um somit einen Mindest-Volumenstrom nicht zu unterschreiten.In another embodiment it is provided that the previously mentioned volume flow measurements directly in the inlet area of the vacuum cleaner, i.e. For example, in the area of the inlet opening, so as not to fall below a minimum volume flow.

Im folgenden wird die Erfindung anhand von einen Ausführungsweg darstellenden Zeichnungen näher erläutert.The invention is explained in more detail below with the aid of drawings illustrating an embodiment.

Es zeigen:

Figur 1:
schematisiert einen Schmutzsauger mit angeschlossenen Werkzeug,
Figur 2:
einen Schnitt durch einen Schmutzsauger mit Darstellung des Meßortes für eine Differenzdruckmessung;
Figur 3:
ein Volumenstromdiagramm unter Verwendung der Differenzdruckmessung.
Show it:
Figure 1:
schematically shows a vacuum cleaner with attached tool,
Figure 2:
a section through a vacuum cleaner showing the measuring location for a differential pressure measurement;
Figure 3:
a volume flow diagram using the differential pressure measurement.

In Figur 1 ist ein Schmutzsauger 1 schematisiert dargestellt, der in seinem Deckel 2 ein Lüfterrad 16 aufweist, welches Teil einer Turbine 28 (vergleiche Figur 2) ist und welches von einem nicht näher dargestellten Elektromotor angetrieben wird.In Figure 1, a vacuum cleaner 1 is shown schematically, which has in its cover 2 a fan wheel 16 which is part of a turbine 28 (see Figure 2) and which is driven by an electric motor, not shown.

Der Schmutzsauger 1 weist ferner einen Schmutzbehälter 13 auf, in dem in an sich bekannter Weise ein Filtersack 14 angeordnet ist.The vacuum cleaner 1 also has a dirt container 13 in which a filter bag 14 is arranged in a manner known per se.

Der Filtersack 14 ist luftdicht mit einer Einlaßöffnung 33 verbunden, an welcher ein Absaugschlauch 17 ansetzt, der mit einem Elektrowerkzeug 18 verbunden ist.The filter bag 14 is connected in an airtight manner to an inlet opening 33, to which a suction hose 17 attaches, which is connected to an electric tool 18.

Im Innenraum des Schmutzbehälters 13 ist ferner ein Filter 15 vorhanden, der beispielsweise als Faltenfilter ausgebildet ist.In the interior of the dirt container 13 there is also a filter 15 which is designed, for example, as a pleated filter.

Das Filter 15 deckt an der Reinluftseite ein Lüftungsgitter 22 ab, durch welches die durch den Filtersack 14 und durch das Filter 15 hindurchgesaugte Luft von der Turbine angesaugt wird und in den eingezeichneten Pfeilrichtungen in den Deckel 2 abströmt.The filter 15 covers a ventilation grille 22 on the clean air side, through which the air sucked in through the filter bag 14 and through the filter 15 is sucked in by the turbine and flows out into the cover 2 in the direction of the arrows shown.

Gemäß Figur 2 weist die Turbine 28 Austrittsöffnungen 39 auf, wobei die Turbine in oberen und unteren Abdichtungen 30 gehalten wird. Die untere Abdichtung 30 ist hierbei im Bereich einer Aufnahmeplatte 29 angeordnet, während die obere Abdichtung 30 in Bereich einer Spannplatte 31 angeordnet ist.According to FIG. 2, the turbine 28 has outlet openings 39, the turbine being held in upper and lower seals 30. The lower seal 30 is arranged in the area of a receiving plate 29, while the upper seal 30 is arranged in the area of a clamping plate 31.

An der Unterseite der Turbine im Bereich der Aufnahmeplatte 29 ist ein Drahtgitter 38 angeordnet, in dessen Bereich eine Venturiblende 21 angeordnet ist. Die Venturiblende 21 besteht aus zwei koaxial zueinander angeordneten Rohrstücken 41,42, die zwischen sich zwei Ringkammern 40,44 ausbilden, wobei die untere Ringkammer 40 durch eine horizontal liegende Querunterteilung 43 von der oberen Ringkammer 44 getrennt ist. Der eine Anschluß 45 zur Abnahme des Druckes P4, für die eine Unterdruckleitung, liegt nun im Bereich der unteren Ringkammer 40, während der andere Anschluß 46 für die Abnahme des Druckes P3 im Bereich der oberen Ringkammer 44 liegt.A wire mesh 38 is arranged on the underside of the turbine in the area of the receiving plate 29, in the area of which a venturi screen 21 is arranged. The venturi cover 21 consists of two tube pieces 41, 42 arranged coaxially to one another, which form two annular chambers 40, 44 between them, the lower annular chamber 40 being separated from the upper annular chamber 44 by a horizontal transverse partition 43. One port 45 for the decrease in pressure P4, for the one vacuum line, is now in the area of the lower annular chamber 40, while the other port 46 for the decrease in pressure P3 is in the area of the upper annular chamber 44.

Durch die Anbringung der beiden Rohrstücke 41,42 und die Ausbildung der beiden horizontal übereinanderliegenden Ringkammern 40,44 wird durch die Ausbildung der unteren Ringkammer 40 ein höherer Eingangsdruck P4 erreicht, und im übrigen werden unerwünschte Luftgeräusche, die aufgrund des hohen Volumenstroms entstehen können, vermieden.By attaching the two pipe sections 41, 42 and the formation of the two horizontally superimposed annular chambers 40, 44, a higher inlet pressure P4 is achieved by the formation of the lower annular chamber 40, and, moreover, undesirable air noises that can arise due to the high volume flow are avoided .

Dadurch ergibt sich insgesamt ein höheres Delta p, welches als Differenz des Drucks P4 zu den Druck P3 errechnet wird.This results overall in a higher delta p, which is calculated as the difference between the pressure P4 and the pressure P3.

Die Differenzdruckdose 20 wird also an die Anschlüsse 45,46 angeschlossen.The differential pressure cell 20 is therefore connected to the connections 45, 46.

Bei dieser Meßmethode ergibt sich ein Volumenstrom-Diagramm, welches in Figur 3 näher dargestellt ist.This measurement method results in a volume flow diagram, which is shown in more detail in FIG. 3.

Nachfolgend wird ein Volumenstrom-Diagramm Figur 3 gezeichnet, welches mit der Differenzdruckmethode arbeitet, wie sie in Figur 2 konstruktiv ausgeführt ist.In the following, a volume flow diagram is drawn in FIG. 3, which works with the differential pressure method as it is constructed in FIG. 2.

Als Druckwerte werden definiert:

P3 =
ist der Druck stromabwärts der Venturiblende 21 und der Druck
P4 =
ist der Druck im Innenraum des Filters 15.
The following are defined as pressure values:
P3 =
is the pressure downstream of the venturi orifice 21 and the pressure
P4 =
is the pressure inside the filter 15.

Wichtig ist, daß der Differenzdruck Delta p kurz vor und nach der Venturiblende 21 abgenommen wird, um genaue Werte zu bekommen.It is important that the differential pressure delta p is removed shortly before and after the venturi orifice 21 in order to obtain exact values.

Auf der Abzisse ist der Volumenstrom V aufgetragen, während auf der Ordinate ein Differenzdruck Delta p aufgetragen ist, der sich aus dem Differenzdruck Delta p = p4-p3

Figure imgb0001
ergibt.The volume flow V is plotted on the abscissa, while a differential pressure delta p, which results from the differential pressure, is plotted on the ordinate Delta p = p4-p3
Figure imgb0001
results.

Es ergibt sich nun, daß zu einem bestimmten Turbinentyp nur eine einzige Gerade 47 erzeugt wird, die lageunabhängig ist von der Versorgungsspannung für den Antriebsmotor der Turbine.It now emerges that only a single straight line 47 is generated for a specific turbine type and is independent of the position of the supply voltage for the drive motor of the turbine.

Spannungsabhängig ändert sich also lediglich der Maximalwert für den Volumenstrom, wie es in den Punkten 48 bis 50 eingetragen ist.Depending on the voltage, only the maximum value for the volume flow changes, as entered in points 48 to 50.

Analog ändern sich auch die entsprechenden Absolutdrücke pro Arbeitspunkt 48,49,50.The corresponding absolute pressures per operating point 48,49,50 change accordingly.

Wichtig ist nun, daß der Abschaltpunkt 51 spannungsunabhängig immer auf dieser Geraden 47 liegt, und diesem Abschaltpunkt beispielsweise ein Differenzdruck von 250 Pa entspricht bei einem Volumenstrom von 26 cbm/h.It is now important that the switch-off point 51 is always on this straight line 47 regardless of the voltage, and this switch-off point corresponds, for example, to a differential pressure of 250 Pa at a volume flow of 26 cbm / h.

Bei einer Nennspannung von 230 V ist der Arbeitsbereich in Pfeilrichtung 52, ausgehend von dem Punkt 49 nach unten gehend, bis der untere Abschaltpunkt 51 erreicht wird.At a nominal voltage of 230 V, the working range is in the direction of arrow 52, starting from point 49, down until the lower switch-off point 51 is reached.

Bedingt durch Prüfvorschriften, z.B. des BIA (Berufsgenossenschaftlichtes Institut für Arbeitssicherheit) müssen Mindest-Volumenstromwerte eingehalten werden, die nicht unterschritten werden dürfen, damit eine optimale Absaugung am Werkzeug sichergestellt ist und somit eine Gefährdung der Bedienungsperson ausgeschlossen werden kann.Due to test regulations, e.g. of the BIA (Berufsgenossenschaftliches Institut für Arbeits Sicherheit) must comply with minimum volume flow values, which must not be undercut, so that an optimal extraction on the tool is ensured and thus a hazard to the operator can be excluded.

Mit zunehmender Verschmutzung des Elektrowerkzeuges oder des Staubsaugers (Filter und Filtersack) bewegt man sich auf der Geraden 47 in Pfeilrichtung 52 nach unten, bis ein maximaler Abschaltpunkt 51 erreicht wird, dem ein nicht zu unterschreitender Volumenstrom von z.B. 26 cmb/h entspricht, den ein Absolutdruck von 20.500 Pa zugeordnet ist.With increasing pollution of the power tool or the vacuum cleaner (filter and filter bag), one moves down the straight line 47 in the direction of the arrow 52 until a maximum switch-off point 51 is reached, which a volume flow of e.g. Corresponds to 26 cmb / h, to which an absolute pressure of 20,500 Pa is assigned.

In diesem Punkt muß zunächst ein Signal erzeugt werden, welches optisch oder akustisch gegeben werden kann. Nach Erzeugung dieses Signals kann wahlweise das Elektrowerkzeug abgeschaltet werden.At this point, a signal must first be generated, which can be given optically or acoustically. After generating this signal, the power tool can optionally be switched off.

Wird kein Elektrowerkzeug verwendet, sondern der Schmutzsauger, wird nur zum Aufsaugen von eventuell gefährlichen Stäuben verwendet, erfolgt im Punkt 51 das Aufleuchten eines optischen oder akustischen Signals und eventuell das Abschalten der Saugturbine nach einer gewissen Verzögerungszeit.If no power tool is used, but the vacuum cleaner, is only used for vacuuming up possibly dangerous dusts, an optical or acoustic signal lights up in point 51 and the vacuum turbine may be switched off after a certain delay.

Es ist nun vorgesehen, daß an der Frontseite des Geräts ein Volumenstromschalter angeordnet ist, der z.B. wählbare Volumenströme von 25 cbm/h bis 100 cbm/h in mehreren Stufen angibt und auswählen lässt.It is now provided that a volume flow switch is arranged on the front of the device, e.g. selectable volume flows from 25 cbm / h to 100 cbm / h in several stages and can be selected.

Indirekt ist jeden Volumenstromwert ein Druckschalter mit einem fest eingestellten, vom Schalter aus zu wählenden, Abschaltwert zugeordnet.Indirectly, each volume flow value is assigned a pressure switch with a fixed switch-off value that can be selected from the switch.

Das heißt, man kann mit der Voreinstellung des Volumenstromes den Abschaltzeitpunkt, d.h. den Abschaltpunkt 51, verändern.This means that with the presetting of the volume flow, the switch-off time, i.e. change the switch-off point 51.

Das Auswählen des Volumenstroms richtet sich also entweder nach dem Durchmesser des verwendeten Saugschlauches oder nach dem Anschlußstutzendurchmesser des verwendeten Elektrowerkzeuges.The selection of the volume flow is based either on the diameter of the suction hose used or on the connecting piece diameter of the power tool used.

Damit besteht der Vorteil, daß man mit diesem Absauggerät nach der Erfindung sich an sämtliche am Markt befindliche Elektrowerkzeuge und deren Absaugstutzen anpassen kann.This has the advantage that this suction device according to the invention can be adapted to all power tools on the market and their suction nozzle.

In der Zeichnung Figur 3 ist aufgetragen, daß sich für bestimmte Saugschlauchdurchmesser keine Kurvenscharen, sondern nur Fixpunkte ergeben. Für einen Saugschlauch von z.B. 36 mm Durchmesser bei einer Nennspannung von 230 V ergibt sich der Wert 100 m3/h (9), währenddessen, wenn der gleiche Saugschlauch beim Absinken einer Nennspannung auf z.B. 200 V verwendet wird, ergibt sich der Wert 80 m3/h (9').In the drawing Figure 3 it is plotted that there are no coulters for certain suction hose diameters, but only fixed points. For a suction hose of e.g. 36 mm diameter with a nominal voltage of 230 V, the value is 100 m3 / h (9), meanwhile, if the same suction hose when a nominal voltage drops to e.g. 200 V is used, the value is 80 m3 / h (9 ').

Wird alternativ ein 27 mm Durchmesser-Schlauch verwendet, dann wirrd ein höherer Wert (11) erzeugt, der beim Absinken der Nennspannung von 230 V auf 200 V zum Wert (11') absinkt.If a 27 mm diameter hose is used as an alternative, a higher value (11) will be generated, which will drop from 230 V to 200 V to the value (11 ') when the nominal voltage drops.

Man befindet sich also stets mit seinen Arbeitspunkten auf der Geraden 47.So you are always with your working points on line 47.

Der Vorteil der Differenzdruckabnahme ist, daß man unabhängig von der Nennspannung der Turbine ist und unabhängig vom atmosphärischen Druck, d.h. es ist gleichgültig, ob man die Turbine auf Meereshöhe oder auf einer Bergspitze von 2000 m hat.The advantage of the differential pressure decrease is that you are independent of the nominal voltage of the turbine and independent of the atmospheric pressure, i.e. it does not matter whether you have the turbine at sea level or on a mountain peak of 2000 m.

Claims (5)

  1. A method for operating a dirt suction apparatus with automatic cut-off of the turbine and if necessary of an electric tool connected thereto on exceeding the loading of the filter and/or of the filter bag with dirt, in which the filter bag is arranged in the dirt container and the connecting socket (3) of a suction tube (17) opens into the dirt container, which suction tube is connected if necessary with an electrical tool, the current connection of which is connected to a power supply socket arranged on the dirt suction apparatus, in which to detect an unduly high loading of the filter (15) and/or of the filter bag (14) with dirt, the volume flow per unit of time is detected on the intake side of the fan wheel (16) of the turbine (28), characterised in that the determining of the volume flow per unit of time takes place by detecting the differential pressure ( Delta p=p3-p4
    Figure imgb0003
    ) in the region of a Venturi shutter (21) which is arranged in front of the intake side of the fan wheel (16) of the turbine (28).
  2. A method according to Claim 1, characterised in that a minimum volume flow is associated with the cut-off point for the dirt suction apparatus and/or the connected electrical tool (18), to which a minimum velocity of flow (v) of 20 m/s corresponds, measured in the suction connecting piece (4) of the connected electrical tool or in the connected suction tube.
  3. A device for carrying out the method according to one of Claims 1 - 2, characterised in that a switch is arranged on the front side of the dirt suction apparatus, by which different minimum volume flows can be preset, at which the dirt suction apparatus and/or the electrical tool are switched off, and in that different cross-sections of the suction connecting piece and minimum volume flows resulting therefrom are associated with the switching positions of the switch.
  4. A device according to Claim 3, characterised in that the diameter of the suction tube is arranged as electrical coding in the connecting socket (3) of the suction tube, and in that this electrical coding is detected by the dirt suction apparatus in the region of the inlet opening (32) at the connection of the suction tube and can be preset with the electrical coding of the minimum volume flow which is not to be fallen below.
  5. A device according to one of Claims 3 or 4, characterised in that the minimum volume flow associated with the electric tool is associated as electrical coding in a multipolar power supply plug of the electrical tool, by contact pins being connected in a particular manner internally by bridges in a multipolar power supply plug so that the cut-off points associated with the respective electrical tool are detected automatically on the evaluation electronics. The multipolar power supply plug additionally serves to transfer the power supply voltage to the electrical tool.
EP93104911A 1992-04-02 1993-03-25 Working process for a wet-dry cleaner having an automatic cut-out system and wet-dry cleaner operating accordingly Expired - Lifetime EP0563788B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE4210883 1992-04-02
DE4210883A DE4210883A1 (en) 1992-04-02 1992-04-02 Method of operating a vacuum cleaner with automatic shutdown and vacuum cleaner to carry out the method

Publications (2)

Publication Number Publication Date
EP0563788A1 EP0563788A1 (en) 1993-10-06
EP0563788B1 true EP0563788B1 (en) 1996-09-18

Family

ID=6455749

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Application Number Title Priority Date Filing Date
EP93104911A Expired - Lifetime EP0563788B1 (en) 1992-04-02 1993-03-25 Working process for a wet-dry cleaner having an automatic cut-out system and wet-dry cleaner operating accordingly

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EP (1) EP0563788B1 (en)
AT (1) ATE142866T1 (en)
DE (2) DE4210883A1 (en)
DK (1) DK0563788T3 (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA2187875A1 (en) * 1994-04-11 1995-10-19 Jeff Elliott Components for and methods of operation of bag house filter/cartridge cleaning systems
DE19830737C2 (en) * 1998-07-09 2002-03-07 Wap Reinigungssysteme Method and device for controlling a suction device with a turbine
FI130712B1 (en) * 2021-11-23 2024-02-05 Mirka Ltd Dust extractor

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2748174A1 (en) * 1977-10-27 1979-05-03 Schoettle Kg Electrostar Vacuum cleaner with filter indicator - has control switch switching off machine when filter needs cleaning
US4733431A (en) * 1986-12-09 1988-03-29 Whirlpool Corporation Vacuum cleaner with performance monitoring system
DE8704714U1 (en) * 1987-03-31 1987-08-20 Zubler Gerätebau GmbH, 7910 Neu-Ulm Vacuum cleaner with air volume control
DE8704713U1 (en) * 1987-03-31 1987-08-13 Zubler Gerätebau GmbH, 7910 Neu-Ulm Industrial vacuum cleaner with integrated converter for supplying hand tools
JPH01285235A (en) * 1988-05-13 1989-11-16 Tokyo Electric Co Ltd Vacuum cleaner

Also Published As

Publication number Publication date
DE4210883A1 (en) 1993-10-28
DK0563788T3 (en) 1997-03-10
DE59303805D1 (en) 1996-10-24
ATE142866T1 (en) 1996-10-15
EP0563788A1 (en) 1993-10-06

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