Search results for: taller laser powder

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  • Taller Laser Powder Bed Fusion Machines

    Type : Bid Notification

    Due : 15 Jul, 2022 (21 months ago)
    Posted : 22 months ago
    Started : 22 Jun, 2022 (22 months ago)

    NNL is issuing this request for information to identify sources capable of developing and building laser powder bed fusion machines with build heights of 53 inches or greater. These machines should have horizontal dimensions of at least 10" x 10" in addition to the increased build height of 53 inches. Increased build height will be used to manufacture parts requiring more space than is currently available in commercial machines.

    From: Federal Government (Federal)

  • Laser Vaporized Feedstock Powder Production for Additive Manufacturing

    Type : Bid Notification

    Due : 16 Aug, 2023 (8 months ago)
    Posted : 20 months ago
    Started : 16 Aug, 2022 (20 months ago)

    This method address alloy and phase segregation via the use of laser light to produce molecular vapors, and controlled nucleation to adjust the size of feedstock powders that are produced.

    From: Federal Government (Federal)

  • Paladin Compact Laser System

    Type : Bid Notification

    Due : 16 Aug, 2023 (8 months ago)
    Posted : 8 months ago
    Started : 01 Aug, 2023 (8 months ago)

    The University of Waterloo (UW) intends to award a single source contract to Coherent Canada Inc, of Markham, ON, Canada, for the purchase of a Paladin Compact Laser System. Contact Suhair Gilbert, Procurement Agent Procurement and Contract Services Bidding and Documents are available on http://www.merx.com.

    From: Canada (Federal)

  • Pump Laser System

    Type : Bid Notification

    Due : 23 Jun, 2023 (10 months ago)
    Posted : 10 months ago
    Started : 12 Jun, 2023 (10 months ago)

    The group cools and manipulates the ions with lasers and electric or magnetic fields for applications in quantum information science and precision measurements. As part of that research, the group requires a pump laser system capable of delivering >70 mJ, >10 Hz pulses of 355 nm light with good beam shape. A description of the requirements for the item(s) to be acquired is in the attached Requirements and Specifications document.

    From: Federal Government (Federal)

  • TRANSMITTER, LASER

    Type : Bid Notification

    Due : 21 Jul, 2023 (9 months ago)
    Posted : 10 months ago
    Started : 20 Jun, 2023 (10 months ago)

    ) SET FORTH IN FULL TEXT IN THE DLA MASTER LIST OF TECHNICAL AND QUALITY REQUIREMENTS FOUND ON THE WEB AT: http://www.dla.mil/HQ/Acquisition/Offers/eProcurement.aspx. FOR SIMPLIFIED ACQUISITIONS, THE REVISION OF THE MASTER IN EFFECT ON THE SOLICITATION ISSUE DATE OR THE AWARD DATE CONTROLS. FOR LARGE ACQUISITIONS, THE REVISION OF THE MASTER IN EFFECT ON THE RFP ISSUE DATE APPLIES UNLESS A SOLICITATION AMENDMENT INCORPORATES A FOLLOW- ON REVISION, IN WHICH CASE THE AMENDMENT DATE CONTROLS. 52.204-16 COMMERCIAL AND GOVERNMENT ENTITY CODE REPORTING (AUG 2020) FAR SECTION B - SUPPLIES OR SERVICES AND PRICES OR COSTS PID Data - Custom Claus...

    From: Federal Government (Federal)

  • Cornerstone CS-23-1101: Improvements to Manufacturing Laser Weapons

    Type : Bid Notification

    Due : 30 Jul, 2023 (8 months ago)
    Posted : 10 months ago
    Started : 09 Jun, 2023 (10 months ago)

    Manufacturing and Defense Industrial Base and provide a strong complement to the mandates in Presidential Executive Order 13806.ACC-RI, on behalf of DEVCOM CBC and Program Executive Office Integrated Warfare System (PEO IWS) 2.0 Above Water Sensors and Lasers, intends to issue a competitive Cornerstone Initiative Request (CIR) for Improvements to Manufacturing Laser Weapons on or after 22 JUN 2023, with an estimated closing date of 20 business days

    From: Federal Government (Federal)

  • Femtosecond Laser System

    Type : Bid Notification

    Due : 01 Nov, 2023 (5 months ago)
    Posted : 6 months ago
    Started : 17 Oct, 2023 (6 months ago)

    Particular research topics include: 1) advanced nanomanufacturing of functional materials; 2) fundamental investigation on laser-matter interaction; 3) ultrafast laser processing of metallic components for enhanced durability towards applications in aerospace/automotive industry, and biomedical/electronic devices; 4) post-processing of 3D printed components for improved properties. Suppliers may bid new, used, OR demo units.

    From: Iowa State University (Higher Education)