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Categories | Invisible Denture Base Resin(Flexible Denture) |
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Brand Name: | Zhongchuang |
Place of Origin: | china |
MOQ: | 1 bottles |
Price: | Discuss personally |
Payment Terms: | L/C, D/A, D/P, T/T, Western Union, MoneyGram |
Supply Ability: | 100 tons/month |
Delivery Time: | 5-8 days |
Packaging Details: | 1kg packaging size: 100*100*220mm 10kg packaging size: 500*210*260mm |
Certification: | ASTM D638,ASTM D790,ASTM D256,ASTM D2204 |
Model Number: | DJ06 |
Stability: | Through precise 3D printing technology, the denture can perfectly match the oral structure, providing good stability and fixation. |
Strong durability: | High-quality resin materials have good impact resistance and durability and can be used for a long time. |
Reduced errors: | The errors that may occur in traditional manual production are greatly reduced in 3D printing. |
Customized fit: | 3D printing technology can accurately scan and replicate the patient's oral structure to ensure that the denture fits perfectly. |
Children and the elderly: | Suitable for children and the elderly with more sensitive oral cavity, providing soft and easy-to-wear dentures. |
Temporary denture solutions: | As a temporary restoration solution before long-term treatment such as dental implants. |
Biocompatibility: | The resin material has no irritation to oral tissues and is not easy to cause allergic reactions, ensuring safety. |
Sensitive patients: | Provide safe and comfortable alternatives for patients who are allergic to traditional denture materials. |
Company Info. |
Zhongchuang Medical Group Co., Ltd, |
Verified Supplier |
View Contact Details |
Product List |
One of the most notable features of this product is its invisible effect. The transparency of the resin or close to the natural gum color makes the denture almost invisible when worn, which greatly improves the aesthetics of the wearer's smile. This makes it an excellent choice for patients who are concerned about the appearance of their dentures.
The Invisible Denture Base Resin is also suitable for partially edentulous restoration, making it an ideal product for patients with single or multiple missing teeth. The high-quality resin materials used in this product have good impact resistance, making them less likely to break or become damaged over time. This ensures that patients can enjoy their new dentures for a long time without having to worry about them breaking or becoming damaged.
The Invisible Denture Base Resin is made from Botanical Growth Resin, Crop Cultivation Resin, and Farming Simulation Resin. These materials are carefully selected and combined to create a denture base that is both durable and comfortable to wear. The Botanical Growth Resin is obtained from plants, making it a safe and eco-friendly choice for patients. The Crop Cultivation Resin is obtained through sustainable farming practices, ensuring that the production of this product is ethical and responsible. The Farming Simulation Resin is used to create a denture base that closely resembles the texture and appearance of natural gum tissue.
In conclusion, the Invisible Denture Base Resin (Flexible Denture) is an excellent choice for patients who are looking for a safe, comfortable, and durable denture base. Its invisible effect and impact resistance make it an ideal product for patients who are concerned about the appearance and longevity of their dentures. With its unique combination of Botanical Growth Resin, Crop Cultivation Resin, and Farming Simulation Resin, this product is both safe and environmentally responsible, making it a great choice for patients who are looking for an eco-friendly option.
Product Name | Invisible Denture Base Resin(Flexible Denture) |
Product Category | Resin for denture base |
Types of partial denture resins | Acrylic resin partial dentures, Flexible partial denture resin |
Customized fit | High-precision customization through 3D scanning and printing technology |
Invisible effect | Transparency of the resin or close to natural gum color for improved aesthetics |
Stability | Precise 3D printing technology for perfect match to oral structure |
Biocompatibility | No irritation to oral tissues, low risk of allergic reactions for safe use |
Temporary denture solutions | Used as a temporary restoration solution before long-term treatment such as dental implants |
Strong durability | High-quality resin materials for good impact resistance and durability for long-term use |
Auxiliary tools for orthodontics | Used as an auxiliary tool during orthodontic treatment to help stabilize the position of teeth, temporarily replace braces or brackets during the correction process |
Brand Name: Zhongchuang
Place of Origin: China
Model Number: DJ06
Certification: ASTM D638,ASTM D790,ASTM D256,ASTM D2204
Minimum Order Quantity: 1 bottle
Supply Ability: 100 tons/month
Price: Discuss personally
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Delivery Time: 5-8 days
Packaging Details: 1kg packaging size: 100*100*220mm, 10kg packaging size: 500*210*260mm
Product Attributes:
Product Application Occasions and Scenarios:
Our technical support and services for the Invisible Denture Base Resin (Flexible Denture) product include:
- Assistance with product selection and compatibility
- Troubleshooting for any issues with product performance or application
- Guidance on proper handling, storage, and disposal of the product
- Product training and education for dental professionals
- Access to product documentation, including safety data sheets and instructions for use
- Ongoing customer support and communication to ensure satisfaction with the product
In dental laboratories, 3D printed invisible elastic resin has a
wide range of applications:
1. Customized denture manufacturing: Using oral scanning and 3D
modeling technology, customized invisible elastic dentures can be
accurately designed and manufactured. This method is faster and
more accurate than traditional manual production, and can meet the
individual needs of patients.
2. Clinical trials and model making: In dental clinical trials, 3D printed invisible elastic resin can be used to make models and samples for evaluating the effects and adaptability of new technologies and treatment plans. These models can accurately replicate the oral structure, which helps doctors and researchers conduct experiments and teaching.
3. Auxiliary equipment and tool manufacturing: Dental laboratories can use 3D printing technology to manufacture various auxiliary equipment and tools, such as treatment templates, orthodontic devices, support structures, etc. These devices can improve work efficiency and reduce the complexity of manual operations.
4. Denture repair and replacement: For dentures that need to be repaired or replaced, 3D printed invisible elastic resin can provide accurate replicas to ensure that the dentures fit the patient's oral structure perfectly and have good adaptability and comfort.
5. Education and training: In dental education and training, 3D printed invisible elastic resins can be used to make models and simulation tools to help students understand oral anatomy, treatment planning and denture production processes, and improve practical skills and expertise.
In dental clinics, 3D printed invisible elastic resin has multiple application directions, mainly including the following aspects:
1. Customized denture production: Doctors can design and produce
customized invisible elastic dentures for patients through oral
scanning and 3D modeling technology. These dentures can be
precisely customized according to the patient's oral structure and
individual needs, providing better fit and comfort.
2. Immediate repair and replacement: For dentures that need immediate repair or replacement, 3D printing technology can quickly produce dentures that meet the patient's oral characteristics, reduce treatment cycles and waiting time, and improve patient satisfaction and comfort.
3. Clinical trials and research: Clinics can use 3D printed invisible elastic resin to make models and samples for clinical trials and research. These models can help doctors evaluate the effectiveness and adaptability of different treatment options and promote innovation and progress in dental treatment.
4. Treatment planning and simulation: In treatment planning, doctors can use 3D printing technology to make oral models and treatment templates to help accurately measure and position, and improve the predictability and accuracy of treatment. This is especially important for the treatment of complex cases.
5. Education and patient communication: Outpatient clinics can use 3D printed invisible elastic resin to make educational models to explain treatment plans and expected results to patients. This visual educational tool can enhance patients’ understanding and participation, and improve the acceptance and effectiveness of treatment.
FQA
Q: Poor print quality or rough surface:
A: Check and adjust the printing parameters, especially layer
height, printing speed and temperature. To ensure the uniformity
and accuracy of the material during the printing process, you may
need to appropriately reduce the layer height and adjust the
printing speed.
Q: Support structures are difficult to remove or affect surface
smoothness:
A: Redesign the support structure to ensure that the support points
are set in a position that does not affect the main surface of the
denture. Use appropriate tools and techniques to remove support
structures, such as cutting tools or grinding equipment, to
maintain the smoothness of the denture surface.
Q: Denture size does not match or shape is inaccurate:
A: Re-evaluate the quality and data integrity of the oral scan to
ensure accurate acquisition of oral structures. Use professional
modeling software for precise design and correction to ensure that
the size and shape of the denture exactly matches the patient's
mouth.
Q: Improper material selection leads to fit or comfort issues:
A: Ensure that the selected material has appropriate elasticity,
biocompatibility and durability. Select the appropriate material
according to the patient's oral condition and individual needs to
avoid affecting the fit and comfort of the denture due to material
mismatch.
Q: Dentures are not durable enough or are easily damaged:
A: Use high-quality 3D printing materials and strictly follow the
manufacturer's recommendations for post-processing steps such as
curing and cleaning. Ensure that the dentures are durable and
stable enough to avoid damage caused by improper materials or
handling.
Q: Fit and comfort issues:
A: Through customized design and adjustment, ensure that the
dentures can fit the patient's oral structure well. Use oral
scanning and 3D modeling technology to accurately measure and
position to improve the fit and comfort of the dentures.
Q: Poor printing quality or weak interlayer bonding:
A: Re-evaluate the printing parameters to ensure that the
appropriate layer height and printing temperature are selected. In
addition, the printing speed and filling density can be adjusted to
improve the printing quality and interlayer bonding.
Q: Improper material selection leads to fit or durability issues:
A: Ensure that the selected resin material has good elasticity,
biocompatibility and durability. When selecting materials, consider
the use environment and expected life of the denture, as well as
the biocompatibility requirements for oral tissue.
Q: Inaccurate model size or distorted shape:
A: Regularly calibrate the oral scanning equipment to ensure that
accurate and complete oral structure data is obtained. Use
professional 3D modeling software for precise design and correction
to ensure that the size and shape of the denture fully matches the
patient's oral structure.
Q: Inadequate post-processing steps lead to deterioration of
material performance:
A: Strictly follow the recommendations and requirements of the
material supplier for post-processing steps, including adequate
curing and appropriate cleaning processes. Ensure that the denture
material achieves optimal performance and durability.
Q: Cost control and efficiency optimization:
A: Optimize the printing process flow to improve equipment
utilization and production efficiency. Choose the right materials
and equipment to ensure cost control while ensuring quality.
Consider the balance between mass production and customization
requirements to improve the overall operational efficiency of the
factory.
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