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Hydrophilic Implant

Hydrophilic Implants Features

-Small Surface Contact Angle
Most implant surfaces are hydrophobic, and water droplets will form on their surface; On the other hand, the surface of hydrophilic implants has a greater affinity for water, which can attract water molecules, or it can be easily dissolved in water, and water droplets will be quickly absorbed on its surface.

-Good Biocompatibility, Fast Early Osseointegration
The super hydrophilic active layer is conducive to protein adsorption in the blood and accelerates osseointegration speed.

-The Principle of Super hydrophilic implant
Successfully stripped the attached hydrocarbons from the porous structure of the implant using organic matter decomposition technology; The implant is then stored in a sodium chloride solution to isolate the contact between the organic carbon and other components in the air and the implant surface and maintain a super hydrophilic surface state.

Hydrophilic Implants Features
DMD DME hydrophilic implant combination
parameters
Inverted Taper Crown Neck Design

Inverted Taper Crown Neck Design

Maximizes alveolar bone preservation and improves soft tissue support

Gradually Expanding Cone-like Body

Gradually Expanding Cone-like Body

Provides high initial stability in case of poor bone condition

Top Drill Edge

Top Drill Edge

Only a small implantation pathis required to reduce jaw damage and preserve bone mass to the maximum

Hydrophilic Surface Implant
Machined Collars

Machined Collars

A tight protective layer is formed with soft tissue attachment

Parallel-wall Implant

Flexible for a wide range of bones

Tapered Root Tip, Four-edged Tapping Grooves

Tapered Root Tip, Four-edged Tapping Grooves

Double cortical bone fixation is permitted with the tapered root tip. Four-edged tapping grooves have good tapping effect when the width or the length of the hole are insufficient.

Preferred Cold Working CP Titanium grade 4

Through a special cold work process, new cold working titanium grade 4 is formed with better biocompatibility, higher mechanical strength, and longer durability while being compatible with pure titanium.

After 5 million tests, the tensile strength ofthe implant raw material is higher than 900MPa·
Higher yield point and strength are obtained through specialized cold working treatment

Cold Working Titanium Grade 4 750 MPa
Cold Working CP Titanium Grade 4 Yield-resistant>800MPa
Tensile-resistant>900MPa
Grading of Ti material 0.2% pliability(minimum)
ASTM Grade 1 170 MPa
ASTM Grade 2 280 MPa
ASTM Grade 3 380 MPa
ASTM Grade 4 480 MPa
Natural Enamel 600 MPa
Cold Working Titanium Grade 4 750 MPa
Ti Alloys(Ti-6AL-4V-ELI) 1000MPa
Preferred Cold Working CP Titanium grade 4
SLA (Sandblasted, Large-grit, Acid-etched) treatment of implants

National Patent SLA Treatment Technique

Patent Number: ZL 2012 1 0431965.7
Patent Number: ZL 2012 1 0432046.1

Unlike the traditional sandblasting and acid etching surface treatment, the short-term load and long-term stability of the implant can be realized:

Mixed particle size sandblasting, richer surface topography and large holes covering small holes are conducive to bone cell pseudopodia climbing of different diameters ·No sharp edges are generated after acid etching, the function release is more stable, and the pseudopodia will not be damaged

Surface activation treatment, smaller contact angle, better hydrophilic performance ·Under the microscope, burrs and impurities are manually removed

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