A kind of 3D printing lower limb prosthesis socket bushing and its making method
A technology of 3D printing and manufacturing methods, which is applied in the fields of medical science, prosthesis, and improvement of process efficiency, etc. It can solve problems such as poor resistance to compression deformation, atrophy of residual limbs, and poor resilience, so as to increase the cushioning effect and improve Comfort, comfort-enhancing effect
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Embodiment 1
[0049] like Figure 1 to Figure 3 The shown 3D printed lower extremity prosthetic receptacle liner includes a bottom and a body, both of which are made of elastomeric materials, the bottom and the body are connected, and the body includes and The patellar tendon area corresponding to the patellar ligament and the popliteal fossa area corresponding to the popliteal fossa, the console bottom, the patellar tendon area and the popliteal fossa area all increase in thickness. The size of the increased thickness ranges from 1 mm to 10 mm. The added thickness in this embodiment is preferably 4 mm. The increase of the thickness is beneficial to increase the cushioning effect, wearing comfort and the suspension effect of the prosthesis when the patient walks. In order to ensure the tightness of the connection of the bushing in the receiving cavity, the sleeve bottom and the sleeve body are integrated structure, that is, the connection between the sleeve bottom and the sleeve body is i...
Embodiment 2
[0066] The 3D printed lower extremity prosthetic receptacle bushing in this embodiment is the same as Embodiment 1 except for the following technical features: Figure 8 As shown, the filling structure in this embodiment is a honeycomb filling structure, which ensures that the lining in the receiving cavity has good stability and strength.
Embodiment 3
[0068] The 3D printed lower extremity prosthetic receptacle bushing in this embodiment is the same as Embodiment 1 except for the following technical features: Figure 9 As shown, the filling structure in this embodiment is a circular filling structure. The circular filling structure increases the elastic effect in the circumferential direction while maintaining the strength of the inner liner in the vertical direction (perpendicular to the ground).
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