Lewati ke konten
  • Testimoni dari Luar Negeri
  • YouTube
  • Indonesian
    • English
    • Japanese
    • French
    • German
    • Italian
    • Spanish
    • Swedish
    • Irish
    • Dutch
    • Portuguese
    • Korean
    • Greek
    • Turkish
    • Vietnamese
    • Thai
    • Indonesian
    • Malay
    • Danish
    • Finnish
    • Hindi
    • Hebrew
    • Icelandic
    • Romanian
    • Russian
DT 3D Mencetak Logo Baru

Layanan pencetakan DT 3d

Produsen OEM – SLM (Pencetakan 3D Logam) Spesialis

  • Rumah
  • 3Layanan Percetakan D
    • SLM (Pencairan Laser Selektif)
    • SLA (Stereolitografi)
    • SLS (Sintering Laser Selektif)
    • DLP (Pemrosesan Cahaya Digital)
    • FDM (Pemodelan Deposisi Menyatu)
    • mjf (Fusi Multi Jet)
    • BJ (Pengaliran Pengikat)
  • Pemesinan CNC
    • Pembubutan CNC
    • Penggilingan CNC
    • Pasca pemrosesan
  • Panduan Materi
        • Bahan Cetak 3D Plastik
          • Damar (Seperti ABS, Seperti PC)
          • Nilon (PA6, PA12, TPU)
          • Lilin Merah
          • TPR, TPU, PA, Serat Karbon, komputer
        • Bahan Percetakan 3D Logam
          • Paduan Aluminium (6061 / AlSi10Mg / 7075)
          • Baja Tahan Karat (316L / 304L / 17-4 / 347)
          • Paduan Titanium (TC4 / TA1)
          • Baja Cetakan (S136/HB/CX/1.2709)
          • Paduan kaya nikel (GH4169 / GH3128 / INCONEL625)
          • Paduan Kuningan (CuCrZr / Perunggu Timah)
        • Bahan Logam untuk CNC
          • Aluminium / Paduan / titanium / Nikel
          • Baja Tahan Karat / Perkakas Baja / Baja Paduan
          • Baja Karbon / Kuningan / Tembaga / Perunggu
        • Bahan Plastik untuk CNC
          • ABS / Akrilik / Delrin / Nilon / hal
          • HDPE / PE / komputer / PEI / TERAKHIR
          • MENGINTIP / POM / TECAFORMAH
  • Dukungan Pelanggan
        • Solusi Industri
          • Cetakan / Cetakan
          • Aerospace & UAV
          • Suku Cadang Otomotif
          • Telekomunikasi
          • Elektronik Konsumen
          • Industri Medis
          • Robotics & Automation
          • Kerajinan Seni / Hadiah
        • Studio Desain
          • Modifikasi Gambar 3D Gratis
          • Gambar 3D Gratis (tersedia terbatas)
        • Proses Pemesanan
          • Kembali & Kebijakan Pengembalian Dana
          • Kebijakan Pengiriman
          • Pertanyaan yang Sering Diajukan (Pertanyaan Umum)
        • blog
          • Video Tur Pabrik
  • Testimonial
  • Tentang DT
  • Hubungi kami

SLM vs DMLS: Panduan Pemilihan Teknologi Pencetakan 3D Logam

Diperbarui pada 08/01/2026 Oleh DT 3dprint
Printer 3D Logam SLM Industri di Pabrik DT
Cetakan blok katup hidrolik cetakan 3D dari logam (cetakan elemen kontrol cairan)
3Cetakan logam cetak D untuk bushing sariawan cetakan injeksi
Metal 3D-printed dental molds made by DT's SLM printers
3Sisipan cetakan injeksi cetak D (dengan saluran pendingin konformal)
Suku Cadang Roda Mobil Dicetak dengan Printer DT SLM 3D
3D-Printed Aero-Engine Combustion Chamber Components Made by DT SLM Metal 3D Printer
Braket di Bidang Dirgantara Buatan Printer DT Metal 3D
3D-Printed Metal Porous Structures Made by DT SLM Metal 3D Printer

SLM vs. DMLS 3D Printing Technology Basics

Comparison DimensionSLM (Pencairan Laser Selektif)DMLS (Sintering Laser Logam Langsung)
DefinitionA metal additive manufacturing (AM) technology that uses a high-power laser to fully melt metal powder, building up parts layer-by-layer to form dense, solid metal components.A metal 3D printing technology where a laser partially melts and sinters metal powder particles, causing them to fuse on a surface level to create near-net-shape parts.
Working Principle 1. Powder Recoating: A recoater blade spreads a thin, even layer of metal powder across the build platform.
2. Laser Melting: A high-energy laser beam selectively scans and fully melts the powder based on CAD cross-section data.
3. Layer-by-Layer Buildup: The build platform descends, and the process repeats until the part is complete.
1. Powder Layering: Metal powder is evenly distributed across the build platform.
2. Laser Sintering: A laser beam scans to partially melt powder particles, sintering them together through surface fusion.
3. Solidification: The sintered layer cools and solidifies, and the process repeats for subsequent layers.
Characteristics of Products Printed – Very high density (near 100%), sifat mekanik yang sangat baik.
– Higher surface quality (Ra 5-15 m).
– Primarily suited for single-metal alloys (misalnya, Titanium alloys, Aluminum alloys).
– Often requires post-processing (misalnya, heat treatment, pemolesan) to improve surface finish.
– Slightly lower density (95-99%) with minimal porosity.
– Higher surface roughness (Ra 10-25 m).
– Compatible with multi-material powders and high-temperature alloys (misalnya, Nickel-based superalloys, Stainless steel).
– Lower residual stress, but often requires support structures to prevent warping.
Industrial 3D Printer: SLM vs. DMLSSLM 3D Printers (Picture from dt3dprint.com)
SLM 3D Printers (Picture from dt3dprint.com)
The cost of SLM 3D Printer is very high, and SLM is suitable for mass production
DMLS 3D Printer (Picture from jgvogel.cn)
DMLS 3D Printer (Picture from jgvogel.cn)
The cost of DMLS 3D Printer is much lower, and DMLS is suitable for customization.
Extensiveness of Application SLM has a wider application scope.
Due to its characteristics of high density and high strength, it has become the preferred technology in fields such as aerospace, medical implants, and heavy – duty automotive components. Moreover, it is more suitable for large – scale production.
DMLS overall market share is relatively low.
It is applicable to specific scenarios. It has advantages in multi-material alloys and complex precision structures, such as medical dental implants and sensor housings.

SLM vs. DMLS Technology Application Comparison and Selection Recommendations

Comprehensive comparison and application analysis of Selective Laser Melting (SLM) and Direct Metal Laser Sintering (DMLS)

Choosing between SLM (Pencairan Laser Selektif) and DMLS (Sintering Laser Logam Langsung) requires a comprehensive evaluation of material properties, performance requirements, geometric complexity, and cost-effectiveness.

This guide will help you understand the differences, suitable applications, and selection criteria for both technologies to make the optimal decision for your project.

SLM vs. DMLS Application Comparison

Application FieldSLM (Pencairan Laser Selektif) Typical ApplicationsDMLS (Sintering Laser Logam Langsung) Typical Applications

🏭

Luar angkasa
Engine brackets, wing spars, rocket fuel nozzles, and other high-strength load-bearing structuresEngine turbine blades, injektor bahan bakar, heat exchangers, and other high-temperature functional components

🏥

Medis & Healthcare
Pure titanium joint implants, orthopedic plates, cranial implants, and other dense biomedical implantsImplan gigi, surgical guides, bionic bone scaffolds, and other multi-material custom tools

🚗 Automotive

Steering Systems: Steering gear housing (AlSi10Mg aluminum alloy)
Engine Components: Cylinder heads with optimized cooling channels Custom pistons with internal lattice structures
Lightweight Structures: Suspension elements (paduan titanium) Battery brackets and enclosures for EVs (aluminum series)
perkakas & Fixtures: Custom jigs and fixtures for assembly lines End-of-arm tooling for robotics
Turbocharging Systems: Turbocharger blades with complex internal cooling channels (Haynes 282, Inconel)
Functional Testing Parts: Starter motor bushes (wear-resistant alloys) Transmission test components
Thermal Management: Heat exchangers for battery thermal systems (paduan tembaga) Coolant manifolds with integrated pathways
Performance Components: Exhaust manifolds for racing applications (heat-resistant superalloys) Lightweight brackets for motorsports
🏭Industrial ManufacturingInjection mold inserts, die-casting cores, and other high-precision toolingEngine valve seats, transmission gears, kaliper rem, and other lightweight wear-resistant parts
⚡Energy & DefenseNuclear reactor cooling tubes, armor plating, and other corrosion-resistant pressure componentsMicrochannel heat exchangers, hydraulic manifolds, fuel cell bipolar plates, and other complex fluid systems
Characteristics & KeuntunganHigh density (≥99.5%), high mechanical strength, suitable for pure metals (Dari, Al, baja tahan karat)Multi-material compatibility (Ni-based/Ti alloys), controlled porosity (95%-98%), excellent toughness, suitable for complex hollow structures

Selection Recommendations

Consideration FactorPrefer SLMPrefer DMLS
Jenis BahanPure metals (Dari, Al, baja tahan karat)Multi-component alloys (Ni-based, Ti alloys)
Density Requirement≥99.5% (load-bearing parts)95%-98% (toughness-critical parts)
Cost SensitivityHigh-volume production (lower equipment amortization)Low-volume customization (material flexibility)
Post-Processing LimitationsCan accommodate stress-relief heat treatmentRequires retention of controlled porosity functionality

Important Considerations

Critical Factors

Residual Stress: SLM’s full melting process can generate high residual stresses, requiring support structure design and heat treatment; DMLS sintering generates lower stress but may require infiltration (misalnya, copper) for densification.

Size Limitations: SLM is better suited for larger parts (misalnya, aerospace structures); DMLS excels at small-to-medium components with complex features.

Industry Certification: Medical and aerospace applications require compliance with specific standards (misalnya, ASTM F2924); verify process certification scope beforehand.

Typical Application Examples

Luar angkasa

  • SLM: Rocket engine components, satellite brackets
  • DMLS: Turbine blades, fuel nozzles

Medis

  • SLM: Titanium alloy orthopedic implants
  • DMLS: Cobalt-chromium alloy dental restorations

Industrial

  • SLM: High-precision injection molds
  • DMLS: Lightweight automotive components

Technology Overview

SLM Characteristics

  • Full melting of metal powder
  • High-density parts (≥99.5%)
  • Excellent mechanical properties
  • Suitable for pure metals & alloys
  • Higher build rates

DMLS Characteristics

  • Powder sintering (partial melting)
  • Controlled porosity (5%-8%)
  • Superior toughness
  • Multi-material compatibility
  • Supports complex internal structures

Key Decision Points

  • Part functional requirements
  • Material constraints
  • Budget & production volume
  • Post-processing capabilities
  • Industry standard compliance

Compatible Materials

  • SLM: Titanium alloys, Aluminum alloys, Stainless steels, Tool steels
  • DMLS: Nickel-based alloys, Cobalt-chromium alloys, Titanium alloys, Stainless steels

SLM vs. DMLS Technology Selection Guide © 2025 | Analysis based on real-world industrial applications

blog

Navigasi pos

Posting Sebelumnya: Layanan Menggambar 3D Kustom Gratis (Ketersediaan Terbatas) dan layanan Modifikasi Gambar 3D Gratis
Posting Berikutnya: Perbandingan Biaya dan Analisis Cetakan Sepatu yang Diproduksi dengan Metode Tradisional dan Pencetakan 3D Logam SLM

Produk Terkait

Bahan Logam Berbeda' 3Kisaran Harga Percetakan D (Rp/cm³) untuk referensi Bahan Logam Berbeda’ 3D Harga Percetakan (Rp/cm³) untuk Referensi [Februari 2026] blog
12 Hal-Hal yang Tidak Boleh Anda Cetak 3D (2026) blog
Custom 3D Printed Sculptures including Famous Art, Kinetic and Zoetrope Sculptures blog
3D mencetak mobil RC, Pesawat RC dan bagian drone 3D Aksesori Cetak & Suku cadang untuk Mobil RC, Pesawat RC dan Drone blog
Suku Cadang Sepeda Motor Cetak 3D Kustom: Bingkai, Hadiah, Kursi & Suku Cadang Sepeda Motor Trail Ti-6Al-4V blog
memulai perusahaan jasa pencetakan 3D dengan investasi minimal Pencetakan 3D Logam Laut Biru: Peluang Investasi Rendah, Bermitra Dengan Kami blog

Dukungan Pelanggan
Pertanyaan Umum
Modifikasi Gambar 3D Gratis
Gambar 3D Kustom Gratis (Ketersediaan Terbatas)

Pernyataan Hukum
Kebijakan Pengiriman
Kebijakan Pengembalian dan Pengembalian Dana
Kebijakan Privasi
Ketentuan Layanan
Ketentuan Penggunaan
Penafian
Kebijakan Cookie

Tentang kami
Video Tur Pabrik
blog
Kerja sama
Tentang DT
Kontak

YouTube Twitter TikTok Facebook Instagram Quora LinkedIn Pinterest reddit Sedang


Hak Cipta © 2025 Pencetakan DT 3D
Semua Hak Dilindungi Undang-undang.
Didukung oleh Tema Blog PressBook Grid


Kelola Persetujuan Cookie
Untuk memberikan pengalaman terbaik, kami menggunakan teknologi seperti cookie untuk menyimpan dan/atau mengakses informasi perangkat. Menyetujui teknologi ini akan memungkinkan kami memproses data seperti perilaku penjelajahan atau ID unik di situs ini. Tidak menyetujui atau menarik persetujuan, dapat berdampak buruk pada fitur dan fungsi tertentu.
Fungsional Selalu aktif
Penyimpanan atau akses teknis sangat diperlukan untuk tujuan sah yang memungkinkan penggunaan layanan tertentu yang secara eksplisit diminta oleh pelanggan atau pengguna, atau dengan tujuan semata-mata untuk melakukan transmisi suatu komunikasi melalui jaringan komunikasi elektronik.
Preferensi
Penyimpanan atau akses teknis diperlukan untuk tujuan sah menyimpan preferensi yang tidak diminta oleh pelanggan atau pengguna.
Statistik
Penyimpanan atau akses teknis yang digunakan secara eksklusif untuk tujuan statistik. Penyimpanan atau akses teknis yang digunakan secara eksklusif untuk tujuan statistik anonim. Tanpa panggilan pengadilan, kepatuhan sukarela dari Penyedia Layanan Internet Anda, atau catatan tambahan dari pihak ketiga, informasi yang disimpan atau diambil untuk tujuan ini saja biasanya tidak dapat digunakan untuk mengidentifikasi Anda.
Pemasaran
Penyimpanan atau akses teknis diperlukan untuk membuat profil pengguna untuk mengirim iklan, atau untuk melacak pengguna di situs web atau di beberapa situs web untuk tujuan pemasaran serupa.
  • Kelola opsi
  • Kelola layanan
  • Mengelola {vendor_count} vendor
  • Baca lebih lanjut tentang tujuan ini
Lihat preferensi
  • {judul}
  • {judul}
  • {judul}