Auxiliary Equipment
Sieving machine, GPS300
The equipment used for the screening of metal powder divides the powder into different particle sizes through the vibration movement of the screen, which can effectively remove impurities in the material and improve the quality and purity of the powder. Sieve diameter: 300mm, power supply: 220V/50Hz, 300W, sieve volume: 5L, equipment size: 580(W)mm×630(D)mm×1050(H)mm, with inert gas protection function.
Sandblasting Machine, 6050
It is a kind of metal abrasive with compressed air power, so that the high-speed moving sand to wash the surface of the object, to improve the surface quality of the object. Machine size: length 650mm× width 880mm× height 1550mm, sandblasting chamber size: length 600mm× width 500mm× height 580mm, power supply: 300W/220V.
Vacuum drying oven, DZF-6020
When working, a certain vacuum degree can be maintained in the working room, and the metal powder can be dried quickly. Power supply voltage: 220V, 50Hz, temperature control range: RT+10℃~200℃, power consumption: <250W, studio size: 300×300×275mm.
Pneumatic cleaner, AX1030E
Vacuum treatment of metal powder. ATEX explosion-proof certification, certification number: NO.0H210805.JYETC15.
Capacity: 15L, filtration area :10800, filtration accuracy: 0.3μm, vacuum suction
: 280mbar, suction diameter: 32mm, product size: 400mm*400mm*800mm.
Chiller, CWFL-1000ANS03
In advance, a certain amount of water is injected into the water tank of the machine, and the water is cooled through the cold water mechanism cold system, and then the low temperature cooling water is sent to the equipment to be cooled by the pump, and the chilled water of the chiller takes away the heat after the temperature rises and then returns to the water tank to achieve the cooling effect. Used in metal SLM160, SLM280, 500W laser equipment, voltage: AC 1P 220V, working frequency: 50Hz, working current: 3.4~13.7A, power: 2.14kW, water tank capacity: 15L.
Nitrogen generator, BDL-A3
Nitrogen molecules in the compressed air are separated from oxygen molecules, resulting in a pure nitrogen supply. Dimensions: 900*750*1330mm, purity and output: 99%-11Nm³/h, 99.5%-9Nm³/h, 99.9%-7Nm²/h, 99.99%-4Nm³/h, 99.999%-3Nm³/h
Inert gas heat treatment furnace, RQF1400-7-12
"Specially used for annealing of cobalt-chromium support; Furnace size: 300X200X200mm; Maximum power: 7KW more energy saving; Maximum temperature: 1400℃; Functional performance: full vacuum and atmosphere dual process annealing mode; Heating rate: 35-40 minutes to 1200℃(faster heating rate); Cooling rate: 1200℃-700℃ only 20-25 minutes, to 300℃ only 2-3 hours;
Equipment dimensions: 818X982X1578mm."
High vacuum non-oxidation heat treatment furnace, RZF1150-10-219
Annealing environment: full vacuum, can vacuum anneal cobalt chromium bracket, crown bridge, TC4 bracket, etc., diameter of less than 180mm substrate can be placed 2 pcs, the highest temperature 1150 degrees Celsius, annealing time in 3-3.5 hours, power is 10kw, voltage 220v, maximum power consumption per furnace: 12-15 degrees of electricity.
Explosion-proof sieving machine, TSF-F10
"China explosion-proof certification, CE certification, ATEX explosion-proof certification. Imported explosion-proof ultrasonic system, improve 10 times the screening efficiency.
Fully sealed inert gas protection, explosion-proof, safety, to ensure powder quality, improve powder reuse times.
Overpressure protection, on-line automatic pressure relief. Ambient temperature: +5℃≤Ta≤40℃, rated voltage: 220/230v, rated power: 150w, screen size: 322mm*141mm"
Grinding machine, GD-6025Q
A machine that grinds the surface of the workpiece with an abrasive tool, can be used to grind metal substrates and parts. Table size: 130×600mm, table left and right stroke: 245mm, table front and rear stroke: 170mm, grinding wheel vertical lifting distance: 135mm, motor: 550W 380V/220V, packaging size length × width × height: 790×650×710mm
Saw machine, SCA280
It is capable of cutting metal materials of all shapes and sizes. Motor power: 400W, power supply: 220V/50Hz, workbench: 280*280*60mm, saw blade: 19*0.9* 23608/12, noise: ≤75dB, equipment size: 1070×750×1000mm
Explosion-proof vacuum cleaner, TEX5-E
"Remove metal powder, eliminate static electricity, avoid electric switch arc or isolate electric switch arc and powder direct contact, avoid ignition dust. Explosion-proof mark :Ex tD A22 IP6X T130℃; Protection grade :IP6X;
Ambient temperature: -20℃≤Ta≤+40℃; Single-phase electricity, rated voltage: 220-240V, rated frequency: 50/60Hz, rated current: 6A, vacuum: 2100/20.5mmH2O /KPa, dust bucket capacity: 50L, powder absorption capacity: 9L, explosion-proof motor dust explosion-proof grade: 22 zone, explosion-proof certificate."
Optional Auxiliary Equipment
- Nitrogen generator, BDL-A3
- Inert gas heat treatment furnace, RQF1400-7-12
- High vacuum non-oxidation heat treatment furnace, RZF1150-10-219
- Explosion-proof sieving machine, TSF-F10 VAD
- Grinding machine, GD-6025Q
- Saw machine, SCA280
- Explosion-proof vacuum cleaner, TEX5-E
SLM 3D Printing Materials for Industrial Printers
Our SLM (Selective Laser Melting) 3D printing materials are crafted to meet the rigorous demands of industrial applications, offering superior mechanical properties, precision, and reliability. Designed for compatibility with a wide range of SLM 3D printers, these materials deliver exceptional performance for both prototypes and end-use parts in critical industries.
Why Choose Our SLM Materials?
- Versatility: Engineered for use with various SLM 3D printers across multiple industries.
- Performance: Outstanding mechanical properties, including high strength, thermal resistance, and corrosion protection.
- Precision: Exceptional accuracy and surface quality, ensuring optimal results for complex geometries.
- Industry-Specific Solutions: Materials tailored to unique applications such as aerospace, automotive, and medical industries.
Unlock the full potential of your industrial SLM 3D printer with our premium materials. Enhance productivity, achieve superior part quality, and meet the stringent requirements of modern manufacturing.
Fe 316L
15-53μm
| Alloy Designation | Nominal Chemical Composition (wt%) | ||||||||
| Fe | C | Mn | Si | Cr | S | P | Mo | Ni | |
| 316L | Allowances | ≤0.03 | ≤2.0 | ≤1.0 | 16–18 | ≤0.03 | ≤0.045 | 2–3 | 10–14 |
| Product | 316L | ||||||||
| Size Distribution (μm): | 15-53 | ||||||||
| Particle size distribution (μm) | D10 | ≥18 | |||||||
| D50 | 30-40 | ||||||||
| D90 | ≤56 | ||||||||
| Hall flow (s/50g) | ≤18 | ||||||||
| Apparent density (g/cm³) | ≥4.1 | ||||||||
| Oxygen content (ppm) | ≤600 |
Al AlSi10Mg
15-53μm/20-63μm
| Alloy Designation | Nominal chemical composition (wt%) | |||||||||||||
| Al | Si | Mg | Ti | Mn | Cu | Fe | Ni | Pb | Zn | Sn | N | Other | ||
| Single | Sum | |||||||||||||
| AlSi10Mg | Allowances | 9.5∼10.5 | 0.20∼0.45 | ≤0.05 | ≤0.45 | ≤0.05 | ≤0.55 | ≤0.05 | ≤0.05 | ≤0.10 | ≤0.05 | ≤0.05 | ≤0.05 | ≤0.15 |
| Product | AlSi10Mg | |||||||||||||
| Size distribution (μm) | 15∼53 | 20∼63 | ||||||||||||
| Particle Size Distribution (μm) | D10 | 15∼22 | 21∼24 | |||||||||||
| D50 | 25∼35 | 30∼40 | ||||||||||||
| D90 | 50∼58 | 60∼63 | ||||||||||||
| Hall flow (s/50g) | ∼ | 75 | ||||||||||||
| Apparent density (g/cm³) | >1.35 | >1.35 | ||||||||||||
| Oxygen content (ppm) | <500 | <500 |
Ti TC4
15-53μm
| Chemical Composition | Test Method | Range Criteria | Test Result | ||||
| Ti% | ICP-OES | Bal. | Bal. | ||||
| Al% | ICP-OES | 6.00-6.50 | 6.05 | ||||
| V% | ICP-OES | 3.50-4.50 | 3.79 | ||||
| Fe% | ICP-OES | ≤0.25 | 0.091 | ||||
| Y% | ICP-OES | ≤0.005 | 0.005 | ||||
| C% | ASTME 1941 | ≤0.08 | 0.014 | ||||
| O% | ASTME1409 | ≤0.1 | 0.085 | ||||
| N% | ASTME1409 | ≤0.03 | 0.01 | ||||
| H% | ASTME1447 | ≤0.01 | 0.0041 | ||||
| Each Res. | ICP-OES | ≤0.1 | <0.10 | ||||
| Total Res. | ICP-OES | ≤0.4 | <0.30 | ||||
| Apparent Density g/cm³ | Test Method: ISO 3923-1: 18-05 | ||||||
| Standard(Ø2.5mm) | ≥2.35 | Test | 2.42 | ||||
| Flow Rate s/50g | Test Method: ISO 4490 | ||||||
| Standard(Ø2.5mm) | ≤42 | Test | 38.8 | ||||
| Standard(Ø5.0mm) | - | Test | 6.6 | ||||
| Tap Density g/cm³ | Test Method: ISO 3953 | ||||||
| 2.80 |
Ni In718
15-53μm
| Alloy Designation | Nominal Chemical Composition (wt%) | ||||||||||||||||
| Ni | Cr | Fe | Nb | Mo | Al | Ti | C | Si | Mn | P | S | B | Co | Mg | N | Cu | |
| In718 | 50.0∼55.0 | 17.00∼21.00 | Allowances | 5.0∼5.50 | 2.80∼3.30 | 0.20∼0.80 | 0.65∼1.15 | 0.02∼0.06 | ≤0.35 | ≤0.35 | ≤0.015 | ≤0.015 | ≤0.006 | ≤1.0 | ≤0.005 | ≤0.02 | ≤0.3 |
| In718 | |||||||||||||||||
| Size distribution (μm) | 15∼53 | ||||||||||||||||
| Particle Size Distribution (μm) | D10 | ≥16 | |||||||||||||||
| D50 | 30∼40 | ||||||||||||||||
| D90 | ≤55 | ||||||||||||||||
| Hall flow (s/50g) | ≤18 | ||||||||||||||||
| Apparent density (g/cm³) | >4.3 | ||||||||||||||||
| Oxygen content (ppm) | ≤200 |
Co Cocrw
15-53μm
| Alloy Designation | Nominal Chemical Composition (wt%) | ||||||||
| Co | Cr | W | Si | Fe | Mn | Be | Cd | Ni | |
| CoCrw | 60–64 | 26–30 | 7.5–9.5 | 0.7–2.3 | ≤0.50 | ≤0.25 | ≤0.02 | ≤0.02 | ≤0.1 |
| Performance | Unit | Detection result | |||||||
| Mobility | s/50g | ≤40 | |||||||
| Apparent density | g/cm³ | >4.0 | |||||||
| Oxygen content | g/cm³ | >4.5 | |||||||
| Size distribution | μm | D10: 12–25 D90: 45–60 | |||||||
| Sphericity | - | Not more than 10% of particles with sphericity less than 0.8 |
MS1
15-53μm
| Type | Chemical Composition (wt%) | ||||||||||||
| MS1 | Fe | O | C | Mn | Si | Cr | S | P | Mo | Ni | Co | Ti | Al |
| Bal. | ≤0.03* | ≤0.03* | ≤0.1* | ≤0.1* | ≤0.5* | ≤0.01* | ≤0.01* | 4.8 | 18 | 9.0 | 0.7 | 0.1 | |
| *: Indicates the maximum value in the alloy | |||||||||||||
| Size distribution (μm) | 15∼53 | Tap density (g/cm³) | ≥4.8 | ||||||||||
| Hall flow (s/50g) | ≤16 | Oxygen content (ppm) | ≤300 | ||||||||||
| Apparent density (g/cm³) | ≥4.2 | Sphericity | ≥85% | ||||||||||
| Performance after printing | |||||||||||||
| Rockwell hardness | Tensile strength | Yield strength | Elongation to failure | ||||||||||
| 54–57 HRC | 2000 MPa | 1980 MPa | 5% | ||||||||||
| Polishing property | |||||||||||||
| SPI:B1 | Ra: ~0.01μm | gaps above 20μm < 20/cm² |
Applications
- Aerospace: Engines, Turbos, Impellers, Nozzle, Etc.
- Nuclear power: Driver components, Valve bodies, Etc.
- Automotive: Engine Components, Knuckles, Fixed parts, Rocker arm, Turbos, Etc.
- Electrical: Radar Components, Communication components, Semiconductor manufacturing equipment components
- Medical: Surgical implants (Hip joint, knee joint, bone, etc.), Prosthodontics (Dental bridge, Dental crown, etc.)
- Others: Hardware parts, Injection molds, Non-standard tools, Artworks, Etc.
Product Specification
| LASER SYSTEM | |
| Type | IPG Laser |
| Wavelength | 1070nm |
| Laser Power | 500W |
| RECOATING SYSTEM | |
| Process | Scraper recoating .bi-directional |
| Normal build style | 0.03mm |
| Quick build style | 0.03-0.05mm |
| Precision build style | 0.02-0.03mm |
| OPTICAL & SCANNING | |
| Beam (diameterΦ) | 0.05-0.15mm |
| Focus style | Germany Scan Lab |
| Part drawing speed | Recommended 2.0m/s max scan speed:10m/s |
| Beam jump speed | Recommended 10.0m/s |
| ELEVATOR | |
| Maximum part weight | 20KG |
| POWDER VAT | |
| Volume | Approx. 5.2 L |
| Maximum build box (Standard) | 160mm(X)*160mm(Y)*100mm(Z), the Z-axis includes substrate thickness. |
| Heating style | Precision resistance wire heating |
| Gas shielded | Nitrogen, argon |
| SOFTWARE | |
| Operating system | Windows 10, Ethernet, IEEE802.3 |
| Build software | ZERO build software |
| CAD interface | 3D design software, STL file format |
| INSTALLATION CONDITION | |
| Power | 200-240VAC 50/60Hz, Single-phases, 5Amps |
| Ambient temperature | 20-26ºC |
| Relative humidity | Less than 40%, non-condesing |
| Machine Size | 1100mm(W)×1300mm(D) ×1850mm(H) |
| Machine Weight | Approx. 850Kg |
| WARRANTY | |
| Laser | 5000 hours or 12months (whichever comes first) |
| Main machine | two years from the date of installation machine |
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