Resin For Printer

Resin For Printer

resin dental XSR20 Can be used in lost waxcasting, burning clear, ash free and noresidue, low contraction percentage,shape dimension fixed, high finenesssmooth surface spare parts.
● Burning clear
● Low contraction percentage
● Low smell, non toxic
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Description

Technical Parameters

Printer resin, specifically designed for 3D printing, is a photosensitive liquid polymer that rapidly cures under UV light (typically at a wavelength of 405nm), transforming from a liquid to a solid state, thereby building three-dimensional models layer by layer. Its carefully formulated chemical composition and additives optimize mechanical and chemical properties, making it compatible with various 3D printers, including SLA, DLP, LCD, and MSLA, meeting printing needs across a wide range of applications, from creative design to industrial manufacturing.

 

Technical Data:

Liquid Properties

Appearance Liquid resin
Viscosity @25°C,cps 125 ±25
Density @25°C,g/cm³ 1.05 -1.13
Alcohol solubility Soluble in alcohol
Water solubility Slightly soluble in water
Color Green

 

resin for printer

 

 

High-Precision Detail Reproduction: Each layer can be precisely cured, resulting in a clear rendering of subtle features. When used with high-precision printers such as SLA and DLP printers, intricate jewelry models and complex mechanical component prototypes can be easily printed. The smooth surface eliminates the need for extensive post-polishing, and dimensional errors are kept to a minimum, ensuring the model is highly consistent with the original design.

 

Diverse Performance Options: Rigid resins, such as Rigid 10K Resin, are used to create structurally stable industrial parts; flexible resins, such as Flexible 80A Resin, are suitable for products subject to repeated bending and flexing; and resins with specialized properties, such as Flame Retardant Resin, are flame-retardant and suitable for applications in electronics and aerospace where fire protection is essential; and ESD Resin, which is anti-static and suitable for printing electronic equipment components.
 

Excellent Flowability: During the printing process, complex model structures can be quickly and evenly filled, ensuring consistent build quality across all parts. Even models with cutouts and thin walls can be printed smoothly, reducing defects caused by poor resin flow and increasing print success rates.

Fast curing speed: Working in conjunction with advanced 3D printing technology, this technology delivers high curing efficiency. For example, a DLP printer paired with Fast Model Resin can achieve print speeds of up to 100mm/hour, enabling the completion of small dental models in just minutes. This significantly shortens production cycles and meets the efficiency requirements of rapid prototyping and small-batch production.

 

 

flexible 3d resin application
 
 

Xinshan is a professional 3D printing resin supplier

 

Medical field

Biocompatible resins are used to make surgical guides, dental models, dentures, etc. For example, Formlabs' Dental SG resin, which has passed Class 1 biocompatibility certification, helps dentists accurately customize surgical guides, assist in surgical operations, and shorten the operation time; digital denture resins can 3D print full dentures, which fit the oral structure and improve patients' wearing comfort.

 
 

Industrial manufacturing

The engineering resin family is widely used in production tool manufacturing, component prototype verification, etc. High-temperature resistant High Temp Resin can print molds and components used in high-temperature environments; high-strength Rigid 10K Resin is used to manufacture mechanical parts that bear large stresses, such as automotive engine component prototypes. Through 3D printing, the feasibility of the design can be quickly verified, reducing research and development costs.

 
 

Creative design and jewelry industry

Designers use resin to print complex artworks, figure models, etc., quickly transforming creativity into physical objects. Jewelry resins can be used to make jewelry design prototypes, and through the lost-wax casting process, mass production of exquisite jewelry can be realized, and the printed prototypes can clearly present complex patterns and inlaid structures.

 
 

Electronics industry

Anti-static ESD Resin is used to print internal components of electronic devices to prevent static electricity from damaging precision electronic components; transparent resins can be used to make optical lenses, electronic device casings, etc., which not only meet optical performance requirements but also have certain strength and aesthetics.

 

 

 

 Castable Resin Inspection Certificates
 

  

resin for printer

 

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      3d printer dental resin  Creality Resin Creality Resin Creality Resin

        

 

FAQ

 

 


 

What types of printer resins are there, and which printers are they suitable for?​

Common types include SLA resin, DLP resin, LCD resin, etc. SLA resin is compatible with SLA 3D printers, which rely on lasers to cure point by point; DLP resin is suitable for DLP 3D printers, which cure a layer at a time through digital light processing technology; LCD resin is used in LCD 3D printers, which control ultraviolet light irradiation and curing through liquid crystal displays. Different types of printers have different requirements for resin photosensitivity, curing speed and other characteristics. When purchasing, you need to choose the appropriate resin according to the printer model.​

 

Can the strength of the printed model meet the actual use requirements?​

This depends on the resin type and application scenario. Models printed with rigid resins have high strength and can be used for industrial structural parts, tool manufacturing, etc.; models printed with flexible resins have good flexibility and are suitable for making seals, protective covers, etc. For example, high-strength engineering resins used in the production of automotive component prototypes can withstand certain mechanical stress tests; while resins used in printing daily wear jewelry, although relatively low in strength, meet the requirements of aesthetics and light use.​

 

What problems are prone to occur during resin printing, and how to solve them?​

Common problems include printing failure, model deformation, rough surface, etc. Printing failure may be due to expired resin or improper parameter settings. It is necessary to regularly check the resin shelf life and debug the printing parameters according to the manual; model deformation may be due to uneven curing. The support structure design can be optimized and the curing time can be adjusted; rough surface can be improved by increasing the exposure time and post-polishing.​

 

Is uncured resin harmful to the human body, and how to operate safely?​

Most uncured resins are toxic and may irritate the skin and respiratory tract. When operating, you must wear gloves and masks, work in a well-ventilated environment, and avoid direct skin contact and inhalation of volatile gases. If contact occurs accidentally, rinse immediately with plenty of water and seek medical attention if necessary. After printing, the model must be thoroughly cleaned with alcohol and other cleaning agents to remove residual uncured resin.​

 

What are the storage requirements for resin, and how long is the shelf life?​

It needs to be stored in a cool, dry and dark place, and the temperature is recommended to be controlled at 15 - 25°C. The shelf life of unopened resin is generally 1 - 2 years. After opening, use it as soon as possible. Seal it well after each use to prevent dust and moisture from entering, so as to avoid resin deterioration affecting printing quality.​
 

Do resins of different colors have different properties?​

Usually, basic properties such as curing speed, strength, and flexibility are not affected by color. The color is determined by the added environmental protection pigments, aiming to meet different aesthetic and identification needs. For example, in industrial manufacturing, resins of different colors are used to distinguish different functional components; in the field of creative design, rich colors add more expressiveness to works.

 

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