Synced from Product Parameters V2: Basic & Appearance
| Recommended printing Condizioni < / th > < > td Nozzle Temperature210-230 ° CRecommended Nozzle h ≥ 0,2 mmRecommended build surface treatmentPEI or Coating with PVP glueBuild plate temperature20-50 °CChamber TempN/ACooling fan speedOnPrint speed30-120 mm/sRetraction distance1-5 mmRetraction speed1800-3600 mm/minRecommended Support MaterialFusFree™ S-Multi Quick-Remove SupportDrying setting70-80℃ for 4-6hAnnealingN/A |
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| | Nozzle Temperature210-230 °CRecommended Nozzle H ≥ 0,2 mmRecommended build surface treatmentPEI or Coating with PVP glueBuild piastra temperature20-50 ° CChamber TempN/ACooling fan speedOnPrint speed30-120 mm/sRetraction distance1-5 mmRetraction speed1800-3600 mm/minRecommended Support MaterialFusFree™ S-Multi Quick-Remove SupportDrying setting70-80℃ for organismo > organismo > organismo > If you want to achieve high-speed printing, it is recommended to use direct extruders, such as BMG extruder, Titan extruder and Hemera extruder, and appropriately increase the nozzle temperature.TPU material is very easy to absorb moisture when exposed to air, and printing after absorbing moisture will result ozzing, extruding with bubbles and rough surface appearance, thus reducing print quality. It is recommended that put the filament into a dry box (humidity below 15%) immediately after opening the FusFlex™ TPU95A-HF vacuum foil bag for printing. Please put the unused filament back into the original aluminum foil bag for sealed storage.After the material is damp, there will be more printing ozzing, bubbles extruded and rough printing surface. Please dry the filament in an oven at 70-80℃ for 4-6h to restore the printing quality of FusFlex™ TPU95A-HF.
No matching print profile files.
PRODUCT PARAMETERS V2
Parametri di stampaValori sincronizzati dal profilo prodotto V2 collegato — punto di partenza per slicing e prove di stampa. Printing WindowCore temperature, speed and cooling settings from Product Parameters V2.
Nozzle Temperature
210 - 230 °C
Bed Temperature
20 - 50 °C
Print Speed
30 - 120 mm/s
Suggested Nozzle
0.2 - 0.2 mm
Hardware & PlatformNozzle, build plate and pre-print preparation recommendations.
Build Plate Material
Glass, PEI Film or PC Film
Support & CompatibilitySupport material, spacing and compatible material recommendations.
Raft Gap
0.18 - 0.22 mm
Retraction
0.8 - 1.6 mm
Retraction Speed
30 - 60 mm/s
Application cases for this filament
Live listings from the Application Cases section (same taxonomy as the CMS).
3 cases
FPV camera bracket accessories, etc.FusRock 3D printing materials in the RC Aircraft & Drones segment, illustrated by “FPV camera bracket accessories, etc.”, balancing structural strength, print fidelity and field reliability. Support de protection de caméra de sport flexibleFusRock 3D printing materials in the Flexible Components segment, illustrated by “A kind of flexible sports camera protective cover bracket”, balancing structural strength, print fidelity and field reliability. LOGO de vêtement cas d’application de personnalisation rapideFusRock 3D printing materials in the Roleplay & Cosplay segment, illustrated by “Clothes LOGO Quick Customization Application Case”, balancing structural strength, print fidelity and field reliability. No FAQs for this product yet. 通用安全提示(FusRock)
耗材(防潮)储存要求
耗材受潮处理方案及方法
烘干参数 PTC 小型烘干盒:60–70℃,烘干 4–6 小时。 小型恒温鼓风烘干机:箱内温度场往往不均匀,可能导致料盘变形;此类设备上建议适当降低温度并缩短单次烘干时间(示例:40–45℃,约 4 小时),并结合材料详情中的干燥建议综合判断。 重要:若按此温度烘干后打印效果仍无改善,请先用空料盘做温度测试,再酌情提高烘干温度,以防温度过高或不均匀导致料盘烘干变形。 大型恒温鼓风烘干机:60–70℃,烘干 4–6 小时。 PS:为什么不同烘干设备适用温度会有差别?可在后台插入说明或外链「点击了解」。 注意事项 ⚠ 操作前请阅读
(可插入「变形 vs 正常」料盘对比照片,注意控制烘干温度与摆放方式。) 干燥受潮对比 耗材受潮的影响
(可插入 RH80% 环境下拆封后第 1 / 2 / 3 天打印同一模型的对比图。) * 上述吸湿对比示例可能因产品系列而异(例如 PAHT-CF),请在插入图片时于脚注中注明材料系列。 Fusrock® 3D printing filaments are suitable for general printing applications and have been tested under standard conditions. However, the performance and safety of printed products are influenced by multiple factors, including printing parameters, model design, operating environment, and intended use. By using Fusrock® materials, users acknowledge and agree to independently evaluate the suitability of printed items for their specific applications and assume all associated risks. Fusrock® shall not be held liable for any damages, injuries, or losses resulting from the practical use of products printed with its materials, including but not limited to structural failures, malfunctions, or safety hazards in operational environments. Thorough testing must be conducted before applying printed components to critical, functional, or commercial scenarios. Fusrock® products are not certified for medical, aerospace, or life-support systems, except for certifications explicitly stated by Fusrock® for specific materials.
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