EP1447144A1 - Appareil pour durcir des revêtements durcissables par exposition aux UV - Google Patents

Appareil pour durcir des revêtements durcissables par exposition aux UV Download PDF

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Publication number
EP1447144A1
EP1447144A1 EP03029502A EP03029502A EP1447144A1 EP 1447144 A1 EP1447144 A1 EP 1447144A1 EP 03029502 A EP03029502 A EP 03029502A EP 03029502 A EP03029502 A EP 03029502A EP 1447144 A1 EP1447144 A1 EP 1447144A1
Authority
EP
European Patent Office
Prior art keywords
lamp
hardening device
radiation
chassis
hardening
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.)
Withdrawn
Application number
EP03029502A
Other languages
German (de)
English (en)
Inventor
Klaus Schulze Tertilt
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Balteschwiler AG
Bernd Muenstermann & Co KG GmbH
Saicos industry GmbH
uv-technik meyer GmbH
Bernd Muenstermann GmbH and Co KG
Original Assignee
Balteschwiler AG
Bernd Muenstermann & Co KG GmbH
Saicos industry GmbH
uv-technik meyer GmbH
Bernd Muenstermann GmbH and Co KG
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Balteschwiler AG, Bernd Muenstermann & Co KG GmbH, Saicos industry GmbH, uv-technik meyer GmbH, Bernd Muenstermann GmbH and Co KG filed Critical Balteschwiler AG
Publication of EP1447144A1 publication Critical patent/EP1447144A1/fr
Withdrawn legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05DPROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05D3/00Pretreatment of surfaces to which liquids or other fluent materials are to be applied; After-treatment of applied coatings, e.g. intermediate treating of an applied coating preparatory to subsequent applications of liquids or other fluent materials
    • B05D3/06Pretreatment of surfaces to which liquids or other fluent materials are to be applied; After-treatment of applied coatings, e.g. intermediate treating of an applied coating preparatory to subsequent applications of liquids or other fluent materials by exposure to radiation
    • B05D3/061Pretreatment of surfaces to which liquids or other fluent materials are to be applied; After-treatment of applied coatings, e.g. intermediate treating of an applied coating preparatory to subsequent applications of liquids or other fluent materials by exposure to radiation using U.V.
    • B05D3/065After-treatment
    • B05D3/067Curing or cross-linking the coating

Definitions

  • the present invention relates to a curing device for a coating material, the coating material in a liquid initial state to a surface to be coated Surface, in particular of wood or wood-based material, can be applied and then by irradiation with UV radiation is chemically quickly curable and the curing device at least one UV lamp for generating on the applied coating material of directional UV radiation and means for moving the hardening device or at least the UV lamp relative to the one to be cured Has coating material bearing surface.
  • DE 30 45 077 A1 describes a method for sealing of parquet floors and a device for carrying out known of the procedure. With this sealing process at least two coats are applied in succession, the next coat of paint only after drying of the previously applied varnish. The drying or curing of the paints is carried out by means of a UV lamp, the one at an operator too pushing carriage is arranged. In addition, it usually takes place after applying and curing the second Lacquer layer another lacquer sanding and then either the application of another UV-curing top coat or a conventional polyurethane-based varnish or on an acid-curing basis or on Oil / resin base.
  • the coating process is clearly very material- and time consuming since at least two, usually even applied more than two layers of paint and must be cured.
  • Trolley with the UV lamp is also a reliable one and exact dosing of the paint aimed at the paint to be hardened UV radiation is not guaranteed, because at Movement speed of the carriage moved by hand with the UV lamp can experience large fluctuations that to corresponding fluctuations in the UV radiation dose per Guide the unit area of the paint to be hardened.
  • One too rapid movement of the UV lamp leads to an incomplete Curing of the paint; if the movement is too slow it can damage the paint or the paint bearing it Surface due to excessive UV radiation and overheating come.
  • EP 1 048 362 A2 describes a method for curing known from floor coatings, the long-wave and short-wave ultraviolet radiation is used. Essential is in this process that the two are in their Wavelength distinguishing ultraviolet radiation act on the floor covering one after the other, whereby the irradiation first with the long-wave UV radiation and then with the short-wave UV radiation he follows.
  • the floor coating becomes a self-propelled device with its own Generator and a driver's seat and controls proposed that is technically very complex and has a large size that can be used in residential and Excludes office space.
  • the one used on the device UV lamp is also technically very complex, because it has its own for each UV wavelength Group of two different UV radiation sources required.
  • UV lamps generate a very large amount of heat that is too high Temperatures of several hundred ° C at least that Guide the UV lamp adjacent parts of the device can what is harmful to the life of the emitter and can be dangerous for the operating personnel. Also to thermal damage to the irradiated surface it can happen.
  • a curing device for a coating material specify that compared to the known prior art Has advantages.
  • the use of the Hardening device is intended for the workers with are concerned with the curing of the coating, and for that Device itself and no hazards for the irradiated surface cause.
  • the process of curing should the coating quickly and ensuring one high coating quality.
  • the formation of for the workers who the coating produce harmful ozone is indicated by the Wavelength of UV radiation excluded.
  • the control unit of the UV lamp is guaranteed, that this actually has a predetermined radiation power and releases permanently, so that a constant and high Quality of the finished coating is guaranteed.
  • the means for moving the hardening device or at least the UV lamp relative to that surface to be cured coating material include an adjustable motion drive and that the radiation power emitted by the UV lamp via the ballast with the speed of the motion drive is coupled. This allows a given Relationship between speed and radiation power constant even with changes in speed are observed, which means that per unit area the dose of UV radiation acting on the coating is constant is kept at a predetermined value. One too weak or too strong UV radiation with consequential damage for the coating is safely avoided and it is left high-quality coatings even with less experienced or less skilled personnel.
  • the coating material preferably consists of natural vegetable raw materials in the form of oils and hard waxes. Such a coating material is chemical both for the workers who are coating manufactures, as well as for residents or users of one Room in which the finished coating will be later, harmless.
  • the present invention is a curing device tailored to the coating material, that for both the workers who are coating manufacture, as well as for the users of the rooms, which have coated surfaces, Avoids health risks. At the same time, high and uniform quality of the finished coating with little effort for the production of the coating reached.
  • the hardening device one to be coated on a floor Surface supporting chassis as part of the Movement drive has.
  • the hardening device can be on the floor itself are moved, only care being taken that the parts of the chassis that are supported on the floor the floor just in with the UV radiation already Touch hardened areas of the coating. This is by a suitable positioning of the UV lamp without any problems to reach.
  • chassis is at least one Wheel that is coupled to a drive motor or can be coupled.
  • the chassis is at least one Wheel that is coupled to a drive motor or can be coupled.
  • the hardening device can this also several, for example three or have four wheels in its chassis, one of which Wheel or several wheels can be driven.
  • the chassis can have one or more crawler tracks have, with at least one crawler belt with a drive motor is coupled or can be coupled.
  • a such a caterpillar track or arrangement of several caterpillar tracks has the particular advantage of distributing the weight of the curing device on a larger area, whereby Avoid excessive point loads on a floor can be.
  • a further embodiment provides that the chassis Means for producing at least a part of the hardening device supporting air cushion, these Means coupled or connectable to a drive motor are. With such an air cushion, the total weight or at least part of the weight of the Hardening device can be added without a mechanical There is contact with the floor. A mechanical one Contact with the floor is only necessary to the extent that than he wanted for ensuring a Direction and speed of movement is needed.
  • the invention further proposes that the curing device a chassis supported on the floor as Has part of the motion drive and that the curing device a drivable at least carrying the UV lamp Lifting device at least for lifting and lowering of the UV lamp includes.
  • a hardening device can be one on a wall surface or on the bottom coating applied to a ceiling surface without any problems and in particular precisely dosed and evenly UV radiation are irradiated and hardened without the operating personnel is physically stressed.
  • the radiation power of the UV lamp by means of the electronic ballast regardless of supply voltage fluctuations constant at a given power value is durable. This ensures that independent from a fluctuating supply voltage to a constant one UV radiation power is emitted by the UV lamp what for a constant and high quality of curing Coating is essential. It should be noted that fluctuations in the supply voltage without the corresponding Ballast unit disproportionately to the Radiation power would affect, so that even low Fluctuations in the supply voltage to considerable Fluctuations in the UV radiation power and thus too noticeable would cause fluctuations in the quality of the coating.
  • the UV lamp formed by a single quartz tube burner is, the longitudinal axis of which in a basic orientation transverse to Direction of movement of the hardening device or its lifting device runs.
  • the specified basic orientation of the quartz tube burner transverse to the direction of movement of the hardening device ensures that a strip of the coating at the Movement of the curing device is irradiated, the length corresponds to the quartz tube burner, so that a quick Irradiation with relatively few passes the coating to be hardened is reached. Also avoids a single burner thermal problems.
  • the Swivel angle is preferably 90 °.
  • the quartz tube burner When running with the preferably specified swivel angle of 90 ° can the quartz tube burner from its basic position in be pivoted in a direction in which it is longitudinal to the direction of movement of the curing device.
  • the pivot axis at or near one Front end of the quartz tube burner arranged so that after swiveling the quartz tube burner on one or runs on the other long side of the hardening device.
  • This also means intensive radiation from Edge areas of a coating, for example in the Corners between floor and wall or between wall and Ceiling, guaranteed.
  • the quartz tube burner a typical maximum radiation power of 100 to 120 W / cm.
  • a quartz tube burner designed in this way can at reasonable speeds of movement of the Generate the necessary UV radiation dose, for fast curing of the coating material is needed.
  • the associated electrical and possibly electronic Components still by their size and weight like this small that they can easily be accommodated on the hardening device and can be moved together with the hardening device are.
  • the hardening device is operated with one current mains voltage of usually 220 V from one Socket, as it exists in every living room or office is possible.
  • the UV lamp has a working width between about 0.2 and 2.0 m, preferably between about 0.5 and 0.7 m.
  • the specified working width in particular with the preferred working width, the hardening device can easily be used in residential buildings and use office buildings, with passages through doors are still possible.
  • large working widths make sense to get the job done accelerate.
  • the invention further proposes that at the of the radiating surface facing away from the quartz tube burner a reflector is arranged, which is shaped is that from him not directly to that to be irradiated UV radiation reaching the surface of the quartz tube burner over to the surface to be irradiated is reflected.
  • the reflector is advantageously shaped that it does not reflect the UV radiation it reflects reflected on the quartz tube burner, but on this passes over to the surface to be irradiated. hereby good radiation efficiency is achieved, because otherwise the reflected in the quartz tube burner UV radiation for the irradiation of the coated Surface would be lost.
  • the quartz tube burner runs in its basic orientation with its reflector in one position, if possible just above the surface to be irradiated with the Coating to reduce radiation losses in the one hand Avoid environment and on the other hand a hazard by people in the vicinity of the hardening device exclude scattering UV radiation.
  • a hazard by people in the vicinity of the hardening device exclude scattering UV radiation.
  • the Quartz tube burner aligned with its reflector that the UV radiation is no longer just down, Radiation no longer just downwards, but at least sometimes also through a certain way forward or is emitted to the side.
  • areas can be irradiated by surfaces caused by the curing device not achieved by constricting spatial requirements, such as e.g. Heating niches or similar structural elements.
  • the invention proposes that the reflector at least a reflector end piece on one of its ends has that in order to be parallel to that to be irradiated Surface and perpendicular to the longitudinal axis of the quartz tube burner extending axis is pivotable upwards.
  • the UV radiation sometimes also to the front of the reflector out so that the radiation is then also effective in peripheral areas, especially in corners between floor and Wall or between two walls or between wall and Blanket.
  • the quartz tube burner and its reflector together in one this receiving, opening in the direction of radiation or opening Housing with an integrated cooling device, in particular with an adjustable cooling fan are.
  • the invention proposes that on the side of the housing in the direction of radiation one at least between an open and a closed one Position adjustable aperture is arranged.
  • This aperture creates the possibility of UV radiation completely prevent what is particularly useful in short breaks when the UV lamp remains in operation at low power, long burn-in times before continuing radiation to avoid.
  • Hardening device overdoses of UV radiation on one small area of the coating can be avoided, without the UV lamp being stopped every time the curing device is stopped should be switched off completely.
  • the invention further proposes that the UV lamp by means of the electronic ballast unit in one energy-saving standby state is durable which the UV lamp illuminates within a few seconds its maximum radiation power can be increased.
  • this version will be an energy-saving one hand Operation of the UV lamp and on the other hand a fast Mode of operation, especially when operating the hardening device with shorter breaks.
  • UV lamps need a certain burn-in time, those in the range of about a minute or two lies in order from a switched off, cold state an operational state with delivery of a desired one UV radiation power. So that the hardening device not before the operational state is reached is used and so none or only an incomplete one Curing of the coating is provided that by means of the electronic ballast burning in of the UV lamp from its cold Condition can be monitored in its operational state is and that from the electronic ballast The UV lamp is ready for operation an enable signal can be generated.
  • a further embodiment is to avoid operating errors provided that the release signal of an operator of the hardening device optically and / or acoustically can be displayed and / or that the drive motor and / or the lifting device from a locked state missing release signal by means of the release signal in a release state can be switched.
  • the curing device according to the invention preferably for is intended for use in living or office spaces usually have a relatively small room size the hardening device expediently by means of the drive motor with a movement speed between about 1 and 20 m / min at least in the forward direction. With this specified range of movement speed sufficient speed of operation of the hardening device reached and at the same time allowed an operator, to guide and steer the hardening device as a pedestrian.
  • the speed of movement continuously or in several stages is adjustable. This allows the spatial conditions of use of the hardening device are taken into account because large free areas a greater speed of movement allow as smaller or angled surfaces.
  • the hardening device at least one guide handle for guidance and control of the curing device by an operator is provided and that in the field of vision and grip the operator a display and control unit with at least controls for one setting the speed of movement of the hardening device and / or the radiation power of the UV lamp is arranged.
  • the hardening device advantageously requires only a single one Operator for his guidance and guidance. simultaneously the operator has all display and control elements within sight and reach, so that the leadership and Operating the hardening device easily and safely is possible.
  • the maximum track width of the chassis is smaller than that Working width of the UV lamp and that the wheels or Crawler tracks of the chassis with an abrasion-resistant, against UV radiation-resistant rubber coating.
  • the curing device according to the invention is, as already above mentioned, not only for the hardening of a coating of a Suitable for floors, but also for the hardening of Coatings can be used that on wall surfaces or on the Bottom of a ceiling surface are applied.
  • the latter applications is intended to be the above already mentioned lifting device by one with the rest Hardener connected lifting column is formed on or with which the UV lamp is opened and closed by means of a lifting drive can be moved downwards.
  • the lifting column can, for example be a telescopic component that between different positions is movable. For the transport of the hardening device, the lifting column can then be at its minimum Bring length so that they are no longer is annoying.
  • the curing device comprises the one with a supply line with the electronic control unit or one on the hardening device provided own connected ballast or is connectable and can be supplied with electrical energy and the manually guided or using its own bracket can be used fixed.
  • mobile Additional UV lamps can cover areas of a coating are irradiated and hardened due to structural conditions not directly from the actual hardening device can be achieved.
  • the additional UV lamp can either manually or using your own Bracket, e.g. fixed with a tripod become.
  • the hardening device carries 1 on its front, i.e. in Figure 1 on the right, a UV lamp 2. Furthermore, the curing device 1 a chassis 3 with a total of four wheels 32, 33, of which two wheels 32 by means of a drive motor 31 in Rotation are displaceable.
  • the hardening device 1 also includes an electronic one Ballast unit 4 for electrical supply and Control of the UV lamp 2 and the drive 31 of the curing device 1 is used.
  • the UV lamp 2 here has a single quartz tube burner 21, the longitudinal axis of which is perpendicular to the plane of the drawing runs.
  • the longitudinal axis of the Quartz tube burner 21 parallel to a floor 5, the with a coating 6 curable by UV radiation its surface or in its surface up to one certain depth.
  • This reflector 22 is shaped so that it discharges from the quartz tube burner 21 Radiation that is not immediately down the coating 6 arrives so that it reflects the quartz tube burner 24 also onto the coating 6 arrives.
  • the quartz tube burner 21 is together with its reflector 22 housed in a housing 20, the exception its bottom and with the exception of ventilation openings is essentially closed.
  • the housing 20 and the reflector 22 with the quartz tube burner 21 are pivotable relative to one another.
  • the associated one Pivot axis 24 runs exactly through here Longitudinal axis of the quartz tube burner 21.
  • the quartz tube burner 24 can swivel lock 25 and its reflector 22 in several different ones Pivotal positions can be fixed relative to the housing 20. In the basic position shown in FIG Quartz tube burner 21 only downwards. Depending on the pivoting A radiation can occur about the pivot axis 24 more or less far forward, i.e. according to FIG. 1 to the right.
  • the UV lamp 2 is on its back, in Figure 1 on its left side, with a part of the chassis 3 forming base frame 30 connected. With this Base frame 30, the wheels 32, 33 are also connected. How FIG. 1 illustrates the direction of work movement 39 from left to right according to FIG.
  • the UV lamp 2 always runs in front of the wheels 32, 33 non-contact via the coating 6.
  • the wheels 32, 33 thus only come into contact with the coating 6, if this is already due to the UV radiation from the UV lamp 2 is irradiated and thereby hardened.
  • the curing device 1 is in the illustrated embodiment via a power cord 40 with that required for operation electrical energy available.
  • the electronic Ballast unit 4 is in particular the Quartz tube burner 21 via not specifically shown here electrical lines with the required electrical Energy supplied.
  • the electronic Ballast unit 4 the performance of the quartz tube burner 21 can be changed, both manually by appropriate Operator input as well as automatic by coupling with the speed of movement of the curing device 1 or the rotational speed of the drive motor 31.
  • the ballast serves 4, regardless of fluctuations in the cable 40 supplied supply voltage each set Performance of the quartz tube burner 21 without fluctuations to keep.
  • two vertical struts 35 are provided, which at the top end turned backwards, i.e. to the left and there over a horizontal, perpendicular to the Drawing plane extending guide handle 34 connected are. An operator can use this guide handle 34 guide and steer the hardening device 1.
  • a display and control unit 44 is attached, those for the operation and operation of the hardening device Contains 1 necessary displays and controls.
  • the illustrated embodiment has the curing device 1 also an additional UV lamp 28, designed as a small, manually manageable spotlight and is via a fixed or detachable supply line 48 connected to the electronic ballast unit 4 is.
  • This additional UV lamp 28 can be used for this are to irradiate areas of the coating 6 if necessary, that of the UV lamp 2 on the front of the curing device 1 due to unfavorable spatial conditions are not reachable.
  • FIG. 2 shows the curing device 1 in plan view. All On the right in FIG. 2, the UV lamp 2 can be seen, the transversely to the direction of movement 39 of the curing device 1 extends.
  • the UV lamp 2 is the only one Quartz tube burner 21 formed inside the reflector 22 lies.
  • the quartz tube burner 21 and the reflector 22 are surrounded by the housing 20 and upwards covered, which is why the quartz tube burner 21 and the reflector 22 in Figure 2 shown in dashed lines are.
  • On the top of the housing 20 is a Cooling fan 23 that for a harmless removal from next to the UV radiation generated by the quartz tube burner 21 provides.
  • the housing 20 thus becomes safe Temperature level maintained and thermal damage to the irradiated surface are avoided.
  • the working width a of the UV lamp 2 corresponds to that Width of area taken up by quartz tube burner 21 the floor 5 is irradiated.
  • the base frame 30 of the chassis 3 of the curing device 1 To the left of the front part of the curing device 1 forming UV lamp is the base frame 30 of the chassis 3 of the curing device 1 recognizable. In this area of the base frame 30 are the two driven wheels 32 arranged above and between which the drive motor 31 is positioned.
  • the electronic ballast 4 are the two non-driven wheels 33 of the chassis 3 can be seen.
  • Figure 2 illustrates that the maximum Track width s of the chassis 3 is smaller in any case is as the working width a of the UV lamp 2.
  • the wheels 32, 33 only with already irradiated and hardened areas of coating 6 on the floor 5 come into contact.
  • the rear part of the hardening device that is to the left in FIG. 2 1 form the two vertical struts 35, between the upper rear end of the guide handle 34 is arranged is.
  • the display and control unit 44 Immediately in front of the guide handle 34 the display and control unit 44 in the immediate vicinity Operator's field of vision and grip.
  • the power cord to supply the curing device 1 with electrical energy as well as the additional UV lamp and the Connection lines required for the operation of the hardening device between the electronic ballast 4, the UV lamp 2 and the drive motor 31 are not shown in Figure 2 for reasons of clarity.
  • Figure 3 of the drawing finally shows the curing device 1 in rear view. On the one facing the viewer Side of the curing device 1 are now the two vertical struts 35 which pass through the guide handle 34 are interconnected.
  • the display and control unit is located under the guide handle 34 44. The further down then follows electronic ballast 4.
  • the lower part of the Hardening device 1 is through the chassis 3 with the Base frame 30 and the four wheels 32, 33 are formed.
  • the curing device 1 is by a single operator by means of the guide handle 34 and by means of the in its proximity arranged display and control unit 44 feasible and operable.
  • the operator can do this at least switch the UV lamp 2 on and off, with a corresponding design of the ballast unit 4 also adjust in performance.
  • the operator can Influence the drive of the hardening device, by turning the drive motor 31 on or off or changed in speed to a desired one Speed and direction of movement of the hardening device 1 set.
  • the operator also receives all for the operation of the hardening device 1 necessary information about the operating states of the electrical parts of the curing device 1 via the display unit 44 shown, for example via light displays or display instruments.

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  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Plasma & Fusion (AREA)
  • Coating Apparatus (AREA)
  • Application Of Or Painting With Fluid Materials (AREA)
EP03029502A 2002-12-24 2003-12-20 Appareil pour durcir des revêtements durcissables par exposition aux UV Withdrawn EP1447144A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE10260998 2002-12-24
DE2002160998 DE10260998A1 (de) 2002-12-24 2002-12-24 Beschichtungsstoff und Härtungsgerät dafür

Publications (1)

Publication Number Publication Date
EP1447144A1 true EP1447144A1 (fr) 2004-08-18

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EP03029502A Withdrawn EP1447144A1 (fr) 2002-12-24 2003-12-20 Appareil pour durcir des revêtements durcissables par exposition aux UV

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DE (1) DE10260998A1 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102009033200A1 (de) 2009-07-15 2011-04-21 Daimler Ag Verfahren und Anlage zum Aushärten einer Beschichtung eines Körpers
DE202017105318U1 (de) * 2017-09-04 2018-12-06 Krones Ag Behandlungsmaschine für Behälter
CN110639778A (zh) * 2019-10-09 2020-01-03 广州希顿包装设备有限公司 一种免拆卸uv灯箱

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8458923B2 (en) * 2011-02-17 2013-06-11 Jelight Company, Inc. Portable ultraviolet floor curing device

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4241255A (en) * 1978-02-02 1980-12-23 Dainichiseika Color & Chemicals Mfg. Co., Ltd. Ultraviolet ray projector
DE3045077A1 (de) * 1980-11-29 1982-07-01 Lhc Loba-Holmenkol-Chemie Dr. Fischer Und Dr. Weinmann Kg, 7257 Ditzingen Verfahren zum versiegeln von parkettboeden und vorrichtung zur durchfuehrung des verfahrens
DE19944380A1 (de) * 1999-09-16 2001-03-22 Juergen Wahrmund Vorrichtung und Verfahren zum Behandeln einer Materialbahn mit Strahlungsenergie
US6207118B1 (en) * 1999-07-20 2001-03-27 Thomas J. Gaven Mobile ultraviolet radiation curing device
WO2001021321A1 (fr) * 1999-09-17 2001-03-29 Minuteman International, Inc. Appareil pour faire durcir un revetement de sol

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Publication number Priority date Publication date Assignee Title
GB861837A (en) * 1959-03-02 1961-03-01 Miehle Goss Dexter Inc Improvements in quick-drying vehicles
US4999216A (en) * 1989-08-21 1991-03-12 Desoto, Inc. Method of coating concrete floors with photocurable coatings
DE10001476B4 (de) * 2000-01-15 2004-08-19 Dreisol Gmbh & Co. Kg Verwendung eines Pflanzenöls für ein Beschichtungsmittel
JP2002336759A (ja) * 2001-03-14 2002-11-26 Gen Gijutsu Kenkyusho:Kk 移動式紫外線照射装置

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4241255A (en) * 1978-02-02 1980-12-23 Dainichiseika Color & Chemicals Mfg. Co., Ltd. Ultraviolet ray projector
DE3045077A1 (de) * 1980-11-29 1982-07-01 Lhc Loba-Holmenkol-Chemie Dr. Fischer Und Dr. Weinmann Kg, 7257 Ditzingen Verfahren zum versiegeln von parkettboeden und vorrichtung zur durchfuehrung des verfahrens
US6207118B1 (en) * 1999-07-20 2001-03-27 Thomas J. Gaven Mobile ultraviolet radiation curing device
DE19944380A1 (de) * 1999-09-16 2001-03-22 Juergen Wahrmund Vorrichtung und Verfahren zum Behandeln einer Materialbahn mit Strahlungsenergie
WO2001021321A1 (fr) * 1999-09-17 2001-03-29 Minuteman International, Inc. Appareil pour faire durcir un revetement de sol

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102009033200A1 (de) 2009-07-15 2011-04-21 Daimler Ag Verfahren und Anlage zum Aushärten einer Beschichtung eines Körpers
DE202017105318U1 (de) * 2017-09-04 2018-12-06 Krones Ag Behandlungsmaschine für Behälter
CN110639778A (zh) * 2019-10-09 2020-01-03 广州希顿包装设备有限公司 一种免拆卸uv灯箱

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