Formlabs Form Cure L for 3D printer Form 3L / 3BL

163 700 грн.

Form Cure L will help you to achieve the best results and finish for your printed parts. Maximum productivity with an automated large format curing mashine for Form 3L, Form 3BL, Form 3, Form 3B and Form 2 3D printers. Parts printed from liquid Resins achieve their maximum mechanical properties.

3DDevice is the official representative of Formlabs in Ukraine and Moldova.

Free training to work with a 3D equipment and related programs in our 3D printing center. Technical support during operation. Highly qualified service.

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Description

Formlabs Form Cure L for 3D Form 3L / 3BL printer

Form Cure L dryer is a polymerizer of the American company Formlabs. The device is designed specifically for wide-format 3D printers Formlabs Form 3L and Form 3BL. It freely accommodates large print details or a large number of smaller parts. Automates the final polymerization of photopolymer prints. Helps to achieve the maximum mechanical properties and dimensional accuracy of your models without undue effort.

The Cure L dryer has two 500 W heaters and powerful ultraviolet lamps. Together with a mirrored inner surface and a rotating table, they provide consistent and high-intensity final polymerization.

Form Cure L can be used with all Formlabs stereolithographic 3D printers. Place one large part of a Form 3L or Form 3BL 3D printer or several smaller parts of a Form 3+, Form 3B, or Form 2 3D printer in this polymerizer.

Polymerization of Formlabs Resins

Form Cure L polymerizer helps your printed parts achieve the highest possible strength and stability. Optimal polymerization settings depend on the material and geometry of the part itself. Below you can read the recommended time and temperature settings for the best curing. Thick and bulky parts may heat up more slowly to the desired temperature. Unless otherwise specified, excessive curing is allowed. For biocompatible polymer parts, follow the final polymerization instructions in the relevant application instructions for these polymers.

Specifications

Printing technology SLA
Printer compatibility Form 3L, Form 3BL, Form 3, Form 3B, Form 2
Maximum part height (mm) 320
Diameter of a rotating table (mm) 395
Maximum curing chamber temperature (°C) 80
Light 45 multidirectional LEDs
Power of LEDs 70 W
LED Radiant 36 W
LED wavelength (nm) 375, 405
Power Supply Input voltage (EC) 220–240 V AC, 50–60 Hz, 8 A
Net weight (kg) 24
Net dimensions (mm) 690 x 540 x 445
Operating temperature range (°C) 18 – 28

Form Cure L settings for different polymers

Settings Time Temperature
Black Resin
Color Resin
Grey Resin
White Resin
Recommended1 30 min 60 °C
Complete polymerization 60 min 60 °C
BioMed Amber Resin Complete polymerization2 30 min Form 2: 60 °C
Form 3B: 70 °C
BioMed Clear Resin Complete polymerization2 60 min 60 °C
Castable Resin Complete polymerization3 240 min 60 °C
Castable Wax Resin
Castable Wax 40 Resin
N/A4 N/A N/A
Clear Resin Recommended1 15 min 60 °C
Complete polymerization 30 min 60 °C
Custom Tray Resin Complete polymerization2 30 min 60 °C
Dental LT Clear Resin V1 Complete polymerization2 20 min 80 °C
Dental LT Clear Resin V2 Complete polymerization2 60 min 60 °C
Dental SG Resin Complete polymerization2 30 min 60 °C
Denture Teeth Resin
Denture Base Resin
Complete polymerization5 30 min+  30 min 80 °C
Draft Resin Better elongation 5 min Without heating
Better UTS 5 min 60 °C
Durable Resin Complete polymerization6 60 min 60 °C
Elastic 50A Resin Complete polymerization 20 min 60 °C
Flexible Resin Recommended1 15 min 60 °C
Complete polymerization 60 min 60 °C
Flexible 80A Resin
Soft Tissue Resin
Complete polymerization 10 min 60 °C
Grey Pro Resin Complete polymerization7 15 min 80 °C
High Temp Resin V1 Recommended1 30 min 60 °C
Complete polymerization 60 min 60 °C
High Temp Resin V2 Recommended8 120 min 80 °C
IBT Resin Complete polymerization2 60 min 60 °C
Model Resin Recommended1 30 min 60 °C
Complete polymerization 60 min 60 °C
Permanent Crown Resin Complete polymerization9 20 min + 20 min 60 °C
Rigid 4000 Resin Complete polymerization7 15 min 80 °C
Rigid 10K Resin Recommended3 60 min 70 °C
Thermal post-curing 90 min 125 °C
Surgical Guide Resin Complete polymerization2 30 min Form 2: 60 °C
Form 3B: 70 °C
Temporary CB Resin Complete polymerization9 20 min + 20 min 60 °C
Tough 2000 Resin Recommended1 60 min 70 °C
Tough Resin V5 Recommended1 60 min 60 °C
Complete polymerization 120 min 60 °C
Tough 1500 Resin Complete polymerization 60 min 70 °C

Notes:

1 Recommended post-curing settings provide near-optimal mechanical properties and minimize post-curing time. Complete post-curing settings provide optimal mechanical properties. Use full post-curing settings when using materials for functional applications.

2 This curing setting ensures that the parts achieve both biocompatibility and optimal mechanical properties. Read the Instructions for Use for a complete description of the workflow.

3 Cure for 4 hours to increase the strength of the part. Increasing the curing time can improve the casting results, especially for thicker parts, although the success of casting depends more on the geometry of the part and the casting process.

4 Does not require additional curing. After washing, allow the parts to dry completely before firing / casting.

5 Fill the glass container with glycerin. Preheat the glycerin to 80 °C in a Form Cure. Use heat-resistant silicone forceps to completely immerse the assembled prosthesis in glycerin inside the Form Cure. Cure for 30 minutes. After the first 30 minutes of polymerization, turn the prosthesis to the opposite side. Re-polymerization within 30 minutes.

6 For parts printed using Durable Resin, the modulus of elasticity increases within the first hour after curing.
7 After 15 minutes, no significant increase in properties was observed. There is only one recommended post-curing time.
8 There are several post-curing options for High Temp Resin V2 and Rigid 10K Resin. Refer to the technical data sheet to understand how different parameters affect the mechanical properties, and select the post-curing option that is best suited for the intended application..
9 This curing setting ensures that the parts achieve both biocompatibility and optimal mechanical properties. Remove the supports and sandblast between post-curing cycles.

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