



About 3D Printing Robot Parts
| Robot Category | Core Hardware Component | Main 3D Printing Process | Typical Materials Used | Core Value Created by 3D Printing |
|---|---|---|---|---|
| Humanoid Robot | Torso thoracic bracket, load-bearing upper/lower leg bones | SLM | AlSi10Mg aluminum alloy, TC4 titanium alloy | Delivers 20%–40% weight reduction via topology optimization and lattice infill, lowering limb moment of inertia; achieves part consolidation to eliminate assembly clearances |
| Humanoid Robot | Hip/knee/wrist joint adapters, reducer housings | SLM | High-strength aluminum alloy, 316L stainless steel | Integrates internal cable routing and hydraulic circuits to minimize external pipelines and connectors; fabricates complex irregular geometries in one pass to ensure coaxiality and dimensional accuracy |
| Humanoid Robot | Conformal motor cooling components, liquid cooling channel assemblies | SLM | Aluminum alloy, copper alloy | Conformal cooling channels conform closely to heat-generating surfaces, boosting heat dissipation efficiency by over 30%; complex internal flow paths unachievable with conventional machining |
| Humanoid Robot | Head face shields, body covers, protective shells | SLS / SLA | PA12 nylon, high-toughness photosensitive resin | Enables rapid iteration of free-form surfaces with no injection mold tooling required during R&D; integrates snap fits, mounting posts and ventilation holes in a single part |
| Quadruped Robot | Leg connecting rods, hip support frames | SLM | AlSi10Mg aluminum alloy | Extreme lightweight design improves dynamic performance such as jumping and running; incorporates internal tendon and wiring cavities to protect cabling |
| Quadruped Robot | Foot-end cushioning pads, shock-absorbing structures | FDM / SLS | TPU, flexible nylon | Customized lattice and texture structures tune shock absorption performance; enables graded stiffness design to adapt to diverse terrains |
| Quadruped Robot | Main control compartment, battery compartment frame | SLS / SLM | PA12-CF (carbon fiber reinforced nylon), 알루미늄 합금 | Integrates mounting points and reinforcing ribs monolithically to reduce total part count; balances strength and lightweight design to extend battery life |
| Dexterous Hand / Collaborative Robotic Arm | Bionic phalanges, integrated flexible hinges | SLS / high-precision SLA | PA12 nylon, high-toughness resin | Eliminates need for bearings and pin assemblies, with zero motion backlash and no lubrication required; fabricates miniature complex joint structures in a single build |
| Dexterous Hand / Collaborative Robotic Arm | 6-axis force sensor elastic elements, sensor housings | SLM | 316L stainless steel, titanium alloy | Fabricates complex elastic beam structures monolithically to ensure uniform stress distribution; significantly improves sensor sensitivity and overload capacity |
| Dexterous Hand / Collaborative Robotic Arm | Customized grippers, end effectors | SLS / FDM | PA12 nylon, ABS, polycarbonate (PC) | Enables rapid modification and customization for different grasping scenarios; shorter lead times and far lower costs than machining and injection molding for low-volume production |
| Soft Bionic Robot | Pneumatic artificial muscles, soft actuators | PolyJet multi-material printing / DLP | Silicone, TPU, elastic resin | Achieves rigid-flexible integration and stiffness gradients in one piece; eliminates assembly for complex sealed internal cavities to ensure air tightness |
| Soft Bionic Robot | Bionic skin, tactile sensor substrates | Multi-material stereolithography | Flexible resin, conductive composite materials | Embeds sensing channels and electrodes for integrated structure and sensing; replicates the mechanical properties of biological tissues |
| Mobile Manipulator Robot | LiDAR / vision camera mounting brackets | SLA / SLS | Photosensitive resin, PA12 nylon | Enables precision mounting of multiple sensors to ensure calibration accuracy; lightweight design adds no extra payload to the end effector |
| Mobile Manipulator Robot | Irregular transmission parts for lifting mechanisms | SLM / SLS | Aluminum alloy, glass fiber reinforced nylon | Integrates complex transmission and guide structures to reduce cumulative assembly errors; more cost-effective than injection molding for low-volume production |
| Universal for All Categories | R&D verification prototypes, test fixtures and jigs | FDM / SLA | PLA, general-purpose resin | Cuts structural iteration cycles from weeks to days, matching the rapid pace of algorithm development; significantly reduces R&D trial-and-error costs |
해외 고객 후기

“무슨 안 좋은 일이 생길까 봐 정말 걱정되었습니다. 하지만 제품을 수령한 후, 제 걱정은 전혀 불필요한 것이었음을 알게 되었습니다. DT 3D Printing은 품질이 보장된 매우 신뢰할 수 있는 공장입니다.”


“제품 품질은 최고입니다 – notch, 장인 정신이 돋보입니다, 인쇄 효과가 훌륭합니다, 배송 속도가 정말 빠릅니다. 전체적으로, 가격 대비 훌륭한 가치를 제공합니다, 그리고 저는 매우 만족합니다.”


“인쇄 품질이 정말 훌륭합니다, 그리고 가격은 꽤 합리적입니다. 물류 처리 속도도 빠릅니다. 종합하자면, DT는 신뢰할 수 있는 공장입니다, 그리고 앞으로도 그들과 지속적으로 협력해 나갈 것입니다.”









공장 직판: 비용 절감 & 전적인 권한
소스 팩토리의 금속 3D 프린팅 서비스
Metal Materials Commonly Used:
스테인리스 스틸 (316L/304L/17-4/347), 알루미늄 합금 (6061/AISi10Mg/7075), 티타늄 합금 (TC4/TA1), 성형강 (S136/CX/1.2709), 니켈 함량이 높은 합금 (GH4169/GH3128/INCONEL625), 황동 합금 (CuCrZr/Tin Bronze)…
Metal Materials are Customizable for Bulk Printing
왜 저희를 선택해야 할까요??
1. Source Factory: 30 SLM 금속 3D 프린터, 14 CNC 기계, 수십 곳의 후가공 시설, 그리고 60 산업용 플라스틱 3D 프린터, (숫자는 계속 늘어나고 있습니다…)
2. 산업용 금속 3D 프린팅 전문 기술: 핵심 팀과 함께 10+ 3D 프린팅의 역사 & CNC 정밀 가공
3. 원스톱 3D 프린팅 서비스: SLM / SLA / MJF / FDM / SLS / DLP / BJ
4. 원스톱 제조: 33D 프린팅 / CNC 가공 / 후처리
5. 3D 모델 지원: 디자인, 최적화 & 수정
6. 신속한 프로토타이핑: 예시 처리 기간은 24 시간 (그림 이후 & 주문 확인)7. 품질 보증: 불량품에 대한 무상 재인쇄

















