?

Orthopedic 3D Models

Find the best Orthopedic 3D Models, free download in STL, FBX, GLB, OBJ, 3MF, USDZ for 3D modeling and creation in Blender, 3D printing, game developing, animation, eCommerce, AR/VR and etc. Generated by Tripo AI 3D Generator.

Anonymous1773269699
A detailed robotic rehabilitation exoskeleton leg (single leg only), medical assistive robotic device, mechanical lower limb support system.

Structure: upper thigh frame, mechanical knee joint actuator, lower calf support frame, ankle stabilization joint, foot support plate.

Materials: lightweight aluminum frame, black carbon fiber braces, visible servo motors and hinge joints, adjustable straps and orthopedic supports.

Design: realistic medical rehabilitation exoskeleton used for physiotherapy and walking assistance.only single leg not whole body single leg only


Rigging requirements:
hip_joint → thigh → knee_joint → calf → ankle_joint → foot

Clean topology, separate mechanical parts, hinge joints for realistic movement, animation-ready rig, optimized mesh, PBR materials (metal, rubber, carbon fiber).

Pose: neutral straight standing leg, T-pose style for rigging.

Output: **single robotic exoskeleton leg, fully rigged for animation and simulation**
Anonymous1769689634
A detailed robotic rehabilitation exoskeleton leg (single leg only), medical assistive robotic device, mechanical lower limb support system.

Structure: upper thigh frame, mechanical knee joint actuator, lower calf support frame, ankle stabilization joint, foot support plate.

Materials: lightweight aluminum frame, black carbon fiber braces, visible servo motors and hinge joints, adjustable straps and orthopedic supports.

Design: realistic medical rehabilitation exoskeleton used for physiotherapy and walking assistance.

Rigging requirements:
hip_joint → thigh → knee_joint → calf → ankle_joint → foot

Clean topology, separate mechanical parts, hinge joints for realistic movement, animation-ready rig, optimized mesh, PBR materials (metal, rubber, carbon fiber).

Pose: neutral straight standing leg, T-pose style for rigging.

Output: **single robotic exoskeleton leg, fully rigged for animation and simulation**
Anonymous1769689634
Anonymous1770669267
"Create a 3D model of a Tuli's heel cup orthopedic insole. Shape: half-dome cup 9cm long, 6.5cm wide, 3.5cm tall at back tapering to 1cm at front. Interior: smooth concave surface. Exterior: distinctive waffle/grid pattern with 6mm square cells, 2.5mm deep, covering the bottom surface except for a 8mm smooth border around the edge. Material: semi-translucent mint green silicone, soft glossy finish. Round all edges with 2mm fillets. High detail on the grid pattern, clean topology with quads."
Anonymous1765997294
Anonymous1772374246
Anonymous1772366040
一款符合人体工程学的踝关节固定支具
Anonymous1769418530
张凤桐
suela ortopedica basado en una horma mexicana, para un huarache con 🔻 TALÓN

Zona compacta

Forma tipo herradura o bloque

Sin muchos cortes

Absorbe impacto

🔻 ARCO

NO debe verse agresivo abajo

Líneas diagonales o controladas

Más rígido (menos flexión)

🔻 METATARSO

Aquí sí entra tu idea fuerte:
✔ fracturas
✔ segmentación
✔ canales  estas medidas Talón:

20 mm alto

base ancha + grip fuerte

Arco:

17 mm aprox

más cerrado (forma de cintura)

soporte interno (aunque no se vea abajo)

Metatarso:

13 mm

empieza flexión

Punta:

10 mm

ranuras o segmentación
Anonymous1772131368
Anonymous1754223203
Anonymous1772071008
Plantilla ortopedica de color azul
Anonymous1772031730
Anonymous1769522705
Crie um modelo 3D sólido e fechado (watertight), pronto para impressão 3D FDM com bico 0,25 mm em PLA, exportado em STL, escala real em milímetros (mm).

Objeto: Parafuso ortopédico veterinário sistema 1,5 mm com rosca helicoidal real.

Dimensões da rosca:
- Diâmetro maior (major diameter): 1.25 mm
- Diâmetro menor (minor diameter): 0.85 mm
- Comprimento roscado: 10 mm
- Pitch (passo): 0.6 mm
- Perfil do filete: trapezoidal ou V arredondado, altura 0.20 mm
- Rosca helicoidal contínua verdadeira (não usar anéis)

Cabeça:
- Cabeça cilíndrica 1.8 mm diâmetro
- Altura 1.4 mm
- Fenda em cruz tipo Phillips
    - largura 0.5 mm
    - profundidade 0.7 mm

Ponta:
- Levemente cônica 5 graus
- Transição suave

Requisitos:
- Geometria técnica e mecânica
- Superfícies precisas
- Modelo fechado e sólido
- Otimizado para impressão FDM fina
- Uso experimental e educacional
Anonymous1771287033
Anonymous1771701761
Anonymous1764319906
Anonymous1771453482
Enter invite code to get credits!