Affordable 3D Print Dental PFM CoCr Crown Dental Lab

Affordable 3D Print Dental PFM CoCr Crown Dental Lab

A PFM CoCr crown, with 700–1100 MPa CoCr strength and porcelain veneer, suits moderate-bite patients, balances cost and durability, survives 10+ years.
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Shenzhen Lucky Dental Laboratory Co., Ltd. is one of the leading manufacturers and suppliers of affordable 3d print dental pfm cocr crown dental lab in China. With abundant experience, we warmly welcome you to buy discount affordable 3d print dental pfm cocr crown dental lab from our factory. We also accept customized orders.

 

Products Description

 

Affordable 3D Print Dental PFM CoCr Crown Dental Lab

 

The dental PFM CoCr crown is a metal-ceramic restoration composed of a cobalt-chromium (CoCr) alloy framework bonded with a veneering porcelain layer. The CoCr base offers a flexural strength of 700–1,100 MPa, withstanding an 800N biting force for posterior teeth. Its high thermal conductivity ensures uniform heat distribution, while the 0.3–0.5 mm porcelain layer mimics the translucency of natural teeth. Milled by CAD/CAM technology with ±50 μm precision, the crown undergoes porcelain fusing at 800–950°C to achieve solid bonding between ceramic and metal. The biocompatible CoCr alloy avoids allergic reactions, making it suitable for patients with moderate occlusal demands. Although less translucent than zirconia, its cost-effectiveness and proven 10-year clinical survival rate make it a classic choice for functional restorations.

 

 

Product Details

 

 

Manufacturer

Lucky Dental Lab

Quality

Great

Customer service

Professional

Shipping Carrier

UPS, FedEx, DHL, etc.

Guarantee

5 years

turnaround time

3 days in lab

 

 

Picture

 

 

20250526135921

 

 

FAQ

 

What are the differences between dental PFM CoCr crowns and other porcelain-fused-to-metal crowns?

 

The main differences between dental PFM CoCr crowns and other PFM crowns are as follows. CoCr crowns have 700–1100 MPa flexural strength, ideal for withstanding 800N posterior biting force. Their biocompatible CoCr alloy causes fewer allergies than nickel-chromium ones. The 0.3–0.5 mm porcelain layer mimics tooth translucency, though not as translucent as zirconia or gold-based crowns.

 

CAD/CAM milled with ±50 μm precision, they bond ceramic to metal at 800–950°C. Cost-effective with 10+ year survival rate, they suit moderate-bite patients. Gold-based PFM crowns are pricier but better for high occlusal needs. Nickel-chromium crowns, once common, are now less used due to allergy risks and gum discoloration. CoCr crowns balance strength, biocompatibility, and cost for functional restorations.

 

 

 

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