11735-2026 - Ergebnis
Dänemark – Lasergesteuerte Werkzeugmaschinen und Bearbeitungszentren – Wire-Based Laser Induced DED System
OJ S 6/2026 09/01/2026
Bekanntmachung vergebener Aufträge oder Zuschlagsbekanntmachung – Standardregelung
Lieferleistungen
1. Beschaffer
1.1.
Beschaffer
Offizielle BezeichnungDanmarks Tekniske Universitet - DTU
E-Mailaasst@dtu.dk
Rechtsform des ErwerbersEinrichtung des öffentlichen Rechts
Tätigkeit des öffentlichen AuftraggebersBildung
2. Verfahren
2.1.
Verfahren
TitelWire-Based Laser Induced DED System
BeschreibungAcquisition of an advanced laser wire deposition welding system, specifically tailored for industrial repair applications and research on metallic components. The system integrates a coaxial ring-shaped beam for direction-independent weld quality, multi-material processing with automatic wire change, closed-loop laser power control with coaxial pyrometer, and an integrated laser line scanner for geometry digitization and automated toolpath generation. The software provides full access to all relevant process parameters, while the hardware offers modular upgradeability (e.g. extended working area, open sidewalls). This unique combination of robustness, openness, and adaptability is indispensable for establishing and validating novel repair process chains with industrial partners. The system must comply with the following: 1. The system should be a laser-wire DED setup integrated on a robot arm 2. The system should have software integration with Metrology using laser scanners and automated tool path generation 3. Most importantly, it should be open-architecture, it means that we should have full control over all parameters of the system The contracting entity intends to procure one complete, highly specialized system for laser wire deposition welding (LMD-w). The system will be used in close collaboration with industrial partners to explore, develop, and validate repair process chains for metallic components and to prepare their transfer into industrial practice. Since many of the relevant scientific and technical questions are being addressed for the first time, the system must combine the robustness and stability of an industrial-grade solution with the openness and adaptability of a research platform. The technical requirements include: 1. A coaxial, ring-shaped laser beam, ensuring that the quality of the deposition process is unaffected by the head’s direction of movement and thereby enabling consistent results even in complex geometries. 2. Capability to process up to three different wire materials and/or diameters with fully automat-ed switching, in order to flexibly adapt to changing repair scenarios. 3. Closed-loop laser power control, combined with a coaxial pyrometer, for continuous monitoring and precise stabilization of process conditions. 4. A welding head with an integrated laser line scanner, directly linked to the control software, enabling three-dimensional surface digitization of the component. This functionality supports automatic defect detection, geometry analysis, toolpath planning, and execution of the sub-sequent repair welding operation. The associated software must provide unrestricted access to all relevant process parameters. This is indispensable for research and development activities, as it allows users to investigate cause–effect relationships in the repair process, implement new control strategies, and adapt the system to evolving industrial requirements. In addition, the system hardware must be modular and upgradeable, with options such as enlarging the working area through exchangeable inserts or removing side walls to accommodate oversized or elongated parts. In contrast to purely experimental laboratory setups, the procured solution must provide an industrially robust platform that can withstand intensive use in collaborative projects with industrial partners, while still offering the openness required for scientific investigation. This dual nature - research flexibility combined with industrial-grade stability - is critical for the intended application. The acquisition therefore covers one integrated system consisting of the machine tool, the coaxial laser head with closed-loop control and integrated scanner, the control and analysis software, as well as auxiliary components enabling automated repair welding operations.
Kennung des Verfahrens077fb46e-5b38-4685-87f5-aee1498db1a5
Vorherige Bekanntmachung6b4ce2fd-7a7f-4895-9531-d87e81ad9bfd-01
Interne Kennung10414
VerfahrensartVerhandlungsverfahren ohne Aufruf zum Wettbewerb
2.1.1.
Zweck
Art des AuftragsLieferleistungen
Haupteinstufung (cpv): 42610000 Lasergesteuerte Werkzeugmaschinen und Bearbeitungszentren
Zusätzliche Einstufung (cpv): 42611000 Werkzeugmaschinen für besondere Zwecke
2.1.2.
Erfüllungsort
PostanschriftProduktionstorvet, Bygning 427, Port 2  
StadtLyngby
Postleitzahl2800
Land, Gliederung (NUTS)Københavns omegn (DK012)
LandDänemark
Zusätzliche InformationenProduktionstorvet, Bygning 427, Port 2 Lokale 305
2.1.4.
Allgemeine Informationen
Der Aufruf zum Wettbewerb ist beendet
Rechtsgrundlage
Richtlinie 2014/24/EU
5. Los
5.1.
LosLOT-0000
TitelWire-Based Laser Induced DED System
BeschreibungAcquisition of an advanced laser wire deposition welding system, specifically tailored for industrial repair applications and research on metallic components. The system integrates a coaxial ring-shaped beam for direction-independent weld quality, multi-material processing with automatic wire change, closed-loop laser power control with coaxial pyrometer, and an integrated laser line scanner for geometry digitization and automated toolpath generation. The software provides full access to all relevant process parameters, while the hardware offers modular upgradeability (e.g. extended working area, open sidewalls). This unique combination of robustness, openness, and adaptability is indispensable for establishing and validating novel repair process chains with industrial partners. The system must comply with the following: 1. The system should be a laser-wire DED setup integrated on a robot arm 2. The system should have software integration with Metrology using laser scanners and automated tool path generation 3. Most importantly, it should be open-architecture, it means that we should have full control over all parameters of the system The contracting entity intends to procure one complete, highly specialized system for laser wire deposition welding (LMD-w). The system will be used in close collaboration with industrial partners to explore, develop, and validate repair process chains for metallic components and to prepare their transfer into industrial practice. Since many of the relevant scientific and technical questions are being addressed for the first time, the system must combine the robustness and stability of an industrial-grade solution with the openness and adaptability of a research platform. The technical requirements include: 1. A coaxial, ring-shaped laser beam, ensuring that the quality of the deposition process is unaffected by the head’s direction of movement and thereby enabling consistent results even in complex geometries. 2. Capability to process up to three different wire materials and/or diameters with fully automat-ed switching, in order to flexibly adapt to changing repair scenarios. 3. Closed-loop laser power control, combined with a coaxial pyrometer, for continuous monitoring and precise stabilization of process conditions. 4. A welding head with an integrated laser line scanner, directly linked to the control software, enabling three-dimensional surface digitization of the component. This functionality supports automatic defect detection, geometry analysis, toolpath planning, and execution of the sub-sequent repair welding operation. The associated software must provide unrestricted access to all relevant process parameters. This is indispensable for research and development activities, as it allows users to investigate cause–effect relationships in the repair process, implement new control strategies, and adapt the system to evolving industrial requirements. In addition, the system hardware must be modular and upgradeable, with options such as enlarging the working area through exchangeable inserts or removing side walls to accommodate oversized or elongated parts. In contrast to purely experimental laboratory setups, the procured solution must provide an industrially robust platform that can withstand intensive use in collaborative projects with industrial partners, while still offering the openness required for scientific investigation. This dual nature - research flexibility combined with industrial-grade stability - is critical for the intended application. The acquisition therefore covers one integrated system consisting of the machine tool, the coaxial laser head with closed-loop control and integrated scanner, the control and analysis software, as well as auxiliary components enabling automated repair welding operations.
Interne Kennung10414
5.1.1.
Zweck
Art des AuftragsLieferleistungen
Haupteinstufung (cpv): 42610000 Lasergesteuerte Werkzeugmaschinen und Bearbeitungszentren
Zusätzliche Einstufung (cpv): 42611000 Werkzeugmaschinen für besondere Zwecke
5.1.2.
Erfüllungsort
PostanschriftProduktionstorvet, Bygning 427, Port 2  
StadtLyngby
Postleitzahl2800
Land, Gliederung (NUTS)Københavns omegn (DK012)
LandDänemark
Zusätzliche InformationenProduktionstorvet, Bygning 427, Port 2 Lokale 305
5.1.3.
Geschätzte Dauer
Laufzeit1 Jahr
5.1.6.
Allgemeine Informationen
Auftragsvergabeprojekt nicht aus EU-Mitteln finanziert
Die Beschaffung fällt unter das Übereinkommen über das öffentliche Beschaffungswesenja
5.1.10.
Zuschlagskriterien
Kriterium
ArtPreis
BezeichnungPrice
BeschreibungPrice
Kategorie des Gewicht-ZuschlagskriteriumsGewichtung (Prozentanteil, genau)
Zuschlagskriterium — Zahl100
5.1.15.
Techniken
Rahmenvereinbarung
Keine Rahmenvereinbarung
Informationen über das dynamische Beschaffungssystem
Kein dynamisches Beschaffungssystem
5.1.16.
Weitere Informationen, Schlichtung und Nachprüfung
ÜberprüfungsstelleKlagenævnet for Udbud
Informationen über die Überprüfungsfristen: Complaint that the Contracting Authority, contrary to the Public Procurement Act, has concluded a contract without prior publication of a contract notice in the European Union Official Journal must be submitted no later than 30 calendar days from the date after a contract award notice has been published by the Contracting Authority in the European Union Official Journal and that contract award notice includes the grounds for the decision to award the contract directly, cf. lov om Klagenævnet for Udbud (Complaints Board for Tenders) § 7, section 3. The agreement will not be concluded before the expiry of 10 calendar days from the day after the day on which this notice is published, cf. section 4(1)(2) of the Complaints Board Act.
Organisation, die weitere Informationen für die Nachprüfungsverfahren bereitstelltKonkurrence- og Forbrugerstyrelsen
Organisation, aus deren Mitteln der Auftrag bezahlt wirdDanmarks Tekniske Universitet - DTU
Organisation, die die Zahlung ausführtDanmarks Tekniske Universitet - DTU
Organisation, die den Auftrag unterzeichnetDanmarks Tekniske Universitet - DTU
6. Ergebnisse
Wert aller in dieser Bekanntmachung vergebenen Verträge493 740,00 EUR
Direktvergabe
Begründung der DirektvergabeDer Auftrag kann nur von einem bestimmten Wirtschaftsteilnehmer ausgeführt werden, da aus technischen Gründen kein Wettbewerb vorhanden ist
Sonstige BegründungA market survey was performed where several suppliers were contacted. The technical features from the description of the acquisition are listed again below. Only some of the suppliers could support technical features 1, 2 and 3 (listed below), and we got quotes and technical descriptions from the suppliers. Only one supplier was able to supply all required technical features 1-4 (listed below). One supplier even suggested some third party hardware and software to solve the technical problem (requirement 4), but they were not able to integrate them into a solution that is directly capable of Remanufacturing on top of complex shapes with automated tool path panning. Aconity in Germany provided detailed quotations and technical descriptions of their system, demonstrating full compliance with all technical requirements. In particular, Aconity could meet the critical requirement (4) related to automated integration for remanufacturing on top of complex shapes with automated tool path planning. This automated integration is a key requirement for the Remanufactory project, funded by the Industriens Fond, to ensure that the system is operational as soon as it is acquired. The acquisition responsible from DTU visited Aconity in Germany and verified the system was appropriate for our application. Thus, in the end, we were only able to identify one supplier that satisfied all our technical requirements. The technical features include: 1. A coaxial, ring-shaped laser beam, ensuring that the quality of the deposition process is unaffected by the head’s direction of movement and thereby enabling consistent results even in complex geometries. 2. Capability to process up to three different wire materials and/or diameters with fully automat-ed switching, in order to flexibly adapt to changing repair scenarios. 3. Closed-loop laser power control, combined with a coaxial pyrometer, for continuous monitoring and precise stabilization of process conditions. 4. A welding head with an integrated laser line scanner, directly linked to the control software, enabling three-dimensional surface digitization of the component. This functionality supports automatic defect detection, geometry analysis, toolpath planning, and execution of the sub-sequent repair welding operation. The unique combination of these technical features is indispensable for fulfilling the project’s objectives. No alternative supplier is able to provide a system that simultaneously offers the required openness for research, the robustness for industrial validation, and the specific integrated functionalities described above. For this reason, the procurement shall be carried out as a negotiated procedure without prior publication, due to lack of competition for technical reasons, cf. § 80, subsection 3, no. 2 of the Public Procurement Act (Directive 2014/24/EU, Article 32).
6.1.
Ergebnis, Los-– KennungLOT-0000
Status der PreisträgerauswahlEs wurde mindestens ein Gewinner ermittelt.
6.1.2.
Informationen über die Gewinner
Wettbewerbsgewinner
Offizielle BezeichnungAconity3D GmbH
Angebot
Kennung des AngebotsOffer - Wire-Based Laser Induced DED System
Kennung des Loses oder der Gruppe von LosenLOT-0000
Wert des Angebots493 740,00 EUR
Vergabe von UnteraufträgenNein
Informationen zum Auftrag
Kennung des AuftragsContract
Datum der Auswahl des Gewinners06/11/2025
Organisation, die den Auftrag unterzeichnetDanmarks Tekniske Universitet - DTU
6.1.4.
Statistische Informationen
Zusammenfassung der beim Erwerber eingegangenen Überprüfungsanträge
Anzahl der Beschwerdeführer0
Eingegangene Angebote oder Teilnahmeanträge
Art der eingegangenen EinreichungenAngebote
Anzahl der eingegangenen Angebote oder Teilnahmeanträge1
8. Organisationen
8.1.
ORG-0001
Offizielle BezeichnungDanmarks Tekniske Universitet - DTU
Registrierungsnummer30060946
PostanschriftAnker Engelunds Vej 1
StadtKgs. Lyngby
Postleitzahl2800
Land, Gliederung (NUTS)Københavns omegn (DK012)
LandDänemark
KontaktpersonAnna Storch
E-Mailaasst@dtu.dk
Telefon+45 999999
Internetadressehttps://www.dtu.dk
Profil des Erwerbershttps://eu.eu-supply.com/ctm/company/companyinformation/index/165863
Rollen dieser Organisation
Beschaffer
Organisation, die den Auftrag unterzeichnet
Organisation, aus deren Mitteln der Auftrag bezahlt wird
Organisation, die die Zahlung ausführt
8.1.
ORG-0002
Offizielle BezeichnungKlagenævnet for Udbud
Registrierungsnummer37795526
PostanschriftNævnenes hus, Toldboden 2
StadtViborg
Postleitzahl8800
Land, Gliederung (NUTS)Østjylland (DK042)
LandDänemark
E-Mailklfu@naeveneshus.dk
Telefon+45 35291000
Internetadressehttp://www.klfu.dk
Rollen dieser Organisation
Überprüfungsstelle
8.1.
ORG-0003
Offizielle BezeichnungKonkurrence- og Forbrugerstyrelsen
Registrierungsnummer10294819
PostanschriftCarl Jacobsens Vej 35
StadtValby
Postleitzahl2500
Land, Gliederung (NUTS)Byen København (DK011)
LandDänemark
E-Mailkfst@kfst.dk
Telefon+45 41715000
Internetadressehttp://www.kfst.dk
Rollen dieser Organisation
Organisation, die weitere Informationen für die Nachprüfungsverfahren bereitstellt
8.1.
ORG-0004
Offizielle BezeichnungAconity3D GmbH
Größe des WirtschaftsteilnehmersMittleres Unternehmen
RegistrierungsnummerDE311887374
PostanschriftAn den Glaswerken 2
StadtHerzogenrath
Postleitzahl52134
Land, Gliederung (NUTS)Städteregion Aachen (DEA2D)
LandDeutschland
Rollen dieser Organisation
Bieter
Gewinner dieser LoseLOT-0000
8.1.
ORG-0005
Offizielle BezeichnungMercell Holding ASA
Registrierungsnummer980921565
PostanschriftAskekroken 11
StadtOslo
Postleitzahl0277
Land, Gliederung (NUTS)Oslo (NO081)
LandNorwegen
KontaktpersoneSender
E-Mailpublication@mercell.com
Telefon+47 21018800
Fax+47 21018801
Internetadressehttp://mercell.com/
Rollen dieser Organisation
TED eSender
Informationen zur Bekanntmachung
Kennung/Fassung der Bekanntmachung85a1fa74-139a-47cd-9ba2-05d999664ea2  -  01
FormulartypErgebnis
Art der BekanntmachungBekanntmachung vergebener Aufträge oder Zuschlagsbekanntmachung – Standardregelung
Unterart der Bekanntmachung29
Datum der Übermittlung der Bekanntmachung08/01/2026 10:16:20 (UTC+00:00) Westeuropäische Zeit, GMT
Bekanntmachung — eSender-Übermittlungsdatum08/01/2026 10:16:42 (UTC+00:00) Westeuropäische Zeit, GMT
Sprachen, in denen diese Bekanntmachung offiziell verfügbar istEnglisch
Veröffentlichungsnummer der Bekanntmachung11735-2026
ABl. S – Nummer der Ausgabe6/2026
Datum der Veröffentlichung09/01/2026