faint! CORITON actually used the finite element model to optimize the strength design of the cart
Editor:adminTime:2020-12-07
faint! CORITON actually used the finite element model to optimize the strength design of the cart
Initial model bolt fixation static analysis Safety factor analysis diagram Deformation displacement diagram The initial model was meshed and statically analyzed. An equivalent uniform load of 180kg was applied to the upper surface. Fixed constraints with degrees of freedom were set at the bolts to obtain the stress distribution and safety factor distribution range. The safety factor is the current pressure of the material area divided by its tensile strength. If the safety factor is less than 1, the material will deform or even collapse. It can be seen that there is obvious stress concentration at the bolt fixation point, and it has exceeded the tensile strength that the material can withstand, which can easily cause the collapse of the structure. Therefore, it is considered to increase the bolt fixing length and increase the bolt hole load…

Background
CORITON: Initial model bolt fixation static analysis Safety factor analysis diagram Deformation displacement diagram Carry out mesh division and static analysis for the initial model, apply an equivalent uniform load of 180kg on its upper surface, and set fixed degrees of freedom constraints at the bolts to obtain its stress distribution and safety factor distribution range. The safety factor is the current pressure of the material area divided by its tensile strength. If the safety factor is less than 1, the material will…
Initial model bolt fixation static analysis Safety factor analysis diagram Deformation displacement diagram For the initial model, perform mesh division and static analysis, apply an equivalent uniform load of 180kg on its upper surface, and set fixed degrees of freedom constraints at the bolts to obtain its stress distribution and safety factor distribution range.
The safety factor is the current pressure of the material area divided by its tensile strength. If the safety factor is less than 1, the material will deform or even collapse.
Key information
- CORITON: Initial model bolt fixation static analysis Safety factor analysis diagram Deformation displacement diagram Carry out mesh division and static analysis for the initial model, apply an equivalent uniform load of 180kg on its upper surface, and set fixed degrees of freedom constraints at the bolts to obtain its stress distribution and safety factor distribution range. The safety factor is the current pressure of the material area divided by its tensile strength. If the safety factor is less than 1, the material will…
- Initial model bolt fixation static analysis Safety factor analysis diagram Deformation displacement diagram For the initial model, perform mesh division and static analysis, apply an equivalent uniform load of 180kg on its upper surface, and set fixed degrees of freedom constraints at the bolts to obtain its stress distribution and safety factor distribution range.
- The safety factor is the current pressure of the material area divided by its tensile strength. If the safety factor is less than 1, the material will deform or even collapse.
What this means for medical device customers
It reflects CORITON's ongoing work in medical trolley design, quality management, compliance documentation, global service and practical customer support.
FAQ
Who should read this update?
Medical device manufacturers, distributors, OEM project teams, hospital procurement teams and partners evaluating medical carts, mounting systems or regulatory support from CORITON.
Why is this relevant to CORITON customers?
It reflects CORITON's ongoing work in medical trolley design, quality management, compliance documentation, global service and practical customer support.
News Code: KRT-N-5546