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PRODUCT CATEGORY

Laser Cladding & Directed Energy Repair Powders

Flow-stable alloy powders for controlled deposition, component restoration, and local reinforcement.

Product Grades
5
Documentation
Lot Certified
Supply
Standard + Custom
Laser Cladding & Directed Energy Repair Powders applications

AVAILABLE GRADES

Explore Available Powder Grades.

Review individual chemistry, technical specifications, application guidance, material comparisons, and inquiry access for every published grade in this category.

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Fe-Based Self-Fluxing Laser Cladding Powder (Fe45 / Fe60)
Laser Cladding & Directed Energy Repair Powders

Fe-Based Self-Fluxing Laser Cladding Powder (Fe45 / Fe60)

Economical Fe-based self-fluxing cladding powders at 1/3 nickel alloy cost. WC-reinforced options, machinable Fe45 to severe-abrasion Fe60. Mining, agriculture, machinery rebuilds.

Grades
Fe45 (40-47 HRC), Fe60 (58-62 HRC), intermediate options
Particle size
45-106 µm (coaxial laser), 20-53 µm (high-speed)
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H13 Tool Steel Laser Cladding Powder
Laser Cladding & Directed Energy Repair Powders

H13 Tool Steel Laser Cladding Powder

Chemistry-matched H13 (1.2344/SKD61) cladding powder for die-casting and forging die repair. Nitrides and polishes like base steel. Preheat and temper guidance included.

Equivalent grades
H13 / 4Cr5MoSiV1 / 1.2344 / SKD61
Hardness (clad + tempered)
44-52 HRC
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Inconel 625 Laser Cladding Powder
Laser Cladding & Directed Energy Repair Powders

Inconel 625 Laser Cladding Powder

UNS N06625 spherical cladding powder, PREN > 40, NACE MR0175 qualified service. 1-2 layers to spec chemistry with laser. Qualification support and full documentation.

Standard
UNS N06625 / AWS ERNiCrMo-3 chemistry
Particle size
45-106 µm (laser/PTA), 20-53 µm (high-speed)
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Ni60 Nickel-Based Laser Cladding Powder
Laser Cladding & Directed Energy Repair Powders

Ni60 Nickel-Based Laser Cladding Powder

Spherical gas-atomized Ni60 for laser cladding — metallurgical bond, < 5% dilution, chrome-plating replacement. WC-reinforced blends available. Lot-certified flow and chemistry.

Deposit hardness
58-62 HRC
Particle size
45-106 µm (coaxial), 20-53 µm (high-speed cladding)
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Stellite 6 Cobalt-Based Cladding Powder
Laser Cladding & Directed Energy Repair Powders

Stellite 6 Cobalt-Based Cladding Powder

Genuine Stellite 6 chemistry for laser/PTA/HVOF. Hot hardness to 700°C, benchmark galling resistance. Full Stellite family plus W-free Stellite 21 for simple export.

Deposit hardness
38-45 HRC
Hot hardness retention
Effective to ~700 °C
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CATEGORY INTRODUCTION

What Defines Laser Cladding & Directed Energy Repair Powders?

Flow-stable alloy powders for controlled deposition, component restoration, and local reinforcement.

Metal3DP organizes this family around ded · lmd · laser repair, with material options including Ni · Co · Fe · Cu Alloys. Individual grades document the chemistry, particle behavior, technical limits, applications, and relevant material comparisons.

Standard products can be matched to established manufacturing routes, while custom programs can align particle cuts, composition, processing, packaging, and lot inspection with the customer’s production window.

Discuss Your Application
Laser Cladding & Directed Energy Repair Powders product and application detail

CATEGORY ADVANTAGES

Why Source Laser Cladding & Directed Energy Repair Powders From Metal3DP?

A useful powder specification connects material composition, particle behavior, manufacturing conditions, inspection, and supply consistency.

01

Controlled Particle Character

Particle size, morphology, flow, apparent density, and surface condition are aligned with the intended manufacturing route.

02

Application-Specific Chemistry

Standard and custom compositions connect material behavior with service temperature, wear, strength, conductivity, or joining performance.

03

Documented Supply

Agreed chemistry, particle distribution, inspection values, packaging, and traceability can be controlled at lot level.

04

Technical Alignment

Material selection starts with the equipment, process window, finished component, annual volume, and quality requirements.

COMPANY INTRODUCTION

Industrial Powder Expertise From Development to Delivery.

Metal3DP Technology Co., Ltd. is an advanced metal powder supplier headquartered in Qingdao, China. We combine material engineering, powder production resources, application support, inspection, and international supply coordination across demanding manufacturing processes.

For laser cladding & directed energy repair powders, our team translates equipment, process conditions, finished-part targets, annual volume, and documentation needs into a practical purchase specification and quality plan.

About Metal3DP
Plant Area
15,000 m²
Production Lines
15
Customers
600+
Quality System
ISO 9001

CATEGORY FAQ

Laser Cladding & Directed Energy Repair Powders Questions.

Technical answers for material selection, customization, quality documentation, and supply discussions.

What Are Laser Cladding & Directed Energy Repair Powders Used For?

Laser Cladding & Directed Energy Repair Powders support manufacturing routes and industrial applications where chemistry, particle size, morphology, and process consistency directly influence finished-part performance. Review the individual grades for specific applications and operating windows.

How Do I Select a Grade Within Laser Cladding & Directed Energy Repair Powders?

Start with the application and manufacturing process, then define chemistry, particle distribution, morphology, flow, apparent density, and any critical performance targets. Metal3DP can compare these requirements with the available laser cladding & directed energy repair powders.

Can Metal3DP Customize Chemistry or Particle Size?

Yes. Depending on the material family and production route, custom chemistry, particle cuts, blending, coating, heat treatment, and packaging can be reviewed against the required volume and specification.

What Quality Documents Are Available?

Available documentation can include chemical composition, particle size distribution, morphology, apparent density, flow behavior, and other agreed inspection values on a lot-level certificate of analysis.

What Information Should I Include With an Inquiry?

Share the product or alloy, process, target particle size, equipment, finished application, annual volume, destination, and required standards. This allows the material team to identify a standard grade or define a custom supply specification.

CUSTOM POWDER PROGRAMS

Need a Different Chemistry or Particle Range?

Share your process, equipment, performance target, annual volume, and destination. We will match an existing grade or define a custom supply specification.

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