Crane Lever Support Structure

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Crane Lever Support Structure

The figure represents a part named Crane Lever Support Structure designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Paragon Car Carpets & Components Sdn Bhd
Category : Automotive
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Connecting Rod

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Connecting Rod

The figure represents a part named Connecting Rod designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Perodua Manufacturing Sdn. Bhd
Category : Automotive
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Prototype Thumb Brace

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Prototype Thumb Brace

The figure represents a part named Prototype Thumb Brace designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Proreka(M) Sdn Bhd
Category : Automotive
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Lower Arm Control

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Lower Arm Control

The figure represents a part named Lower Arm Control designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Perusahaan Otomobil Nasional Sdn Bhd (PROTON)
Category : Automotive
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Plastic Bag Carrier

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Plastic Bag Carrier

The figure represents a part named Plastic Bag Carrier designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Qudrat Technology Sdn Bhd
Category : E&E
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Clamp CPT

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Clamp CPT

The figure represents a part named Clamp CPT designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Recomtec Sdn Bhd
Category : Automotive
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Air-Cond Door Vent

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Air-Cond Door Vent

The figure represents a part named Air-Cond Door Vent designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Sanden Air Conditioning (Malaysia) Sdn Bhd
Category : Automotive
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Spring Seat

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Spring Seat

The figure represents a part named Spring Seat designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Sanyco Grand Industries Sdn Bhd
Category : Automotive
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Door Support Bracket

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Door Support Bracket

The figure represents a part named Door Support Bracket designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Sapura Industrial Berhad
Category : Automotive
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Bracket

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Bracket

The figure represents a part named Bracket designed in Catia V5. Then it is optimized using Altair Inspire. Topology optimization can be used whenever you need to improve an existing design or design a brand new part which needs to fit in a specific space, be lightweight and withstand certain forces. It works by taking a block of material and shaping it by removing material, minimizing or maximizing part mass, displacement or compliance to fulfil set limits such as maximum stiffness or amount of deformation allowed. The reduced weight gave great cost saving and benefits to the company and industry as a whole.

The optimized part is then prepared for 3D build using Materialise Magics and E-Stage. After printed, the part is then post-processed by sanding and coloring.

Client : Singularity Aerotech Asia (SAT)
Category : Aerospace
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