Nylon Moisture Treatment: Drying and Storage Guide
22 апреля 2026 года | 7 минут чтения
Nylon is notoriously hygroscopic, absorbing moisture from the air like a sponge. This moisture causes printing defects ranging from poor surface finish to complete print failure. The following drying, storage, and handling techniques apply to both FDM filaments and injection molding feedstock.
Почему нейлон впитывает влагу
В химической структуре нейлона присутствуют амидные группы, образующие водородные связи с молекулами воды. Эта гидрофильная природа означает, что нейлон будет впитывать влагу, пока не достигнет равновесия с влажностью окружающей среды.
При относительной влажности 50% нейлон может впитывать:
1. Разогрейте до 70°C (для нейлона не выше 80°C)
2. Поместите катушку на стойку (не прямую металлическую)
3. Слегка приоткройте дверцу для выхода влаги
4. Сушите в течение 4-6 часов
5. Дайте полностью остыть перед обработкой
Внимание: Во многих духовках температура может меняться. Проверьте термометром.
1. Используйте вакуумные пакеты, предназначенные для хранения продуктов
2. Добавьте пакеты с влагопоглотителем (силикагелем)
3. Запечатывайте сразу после высыхания
4. Этикетка с указанием даты и типа материала
Системы сухих ящиков
Активный контроль влажности для частых пользователей:
Пассивный: Герметичный контейнер с влагопоглотителем
Активный: Обогреваемый бокс с контролем влажности
Гибрид: Комбинация с прямой подачей
Типы влагопоглотителей
Тип
Вместимость
Многоразовые
Стоимость
Силикагель
Хорошо
Да
Низкий
Молекулярное сито
Превосходно
Да
Средний
Индикация (синий)
Хорошо
Да
Низкий
Лучшие практики профилактики
Правила обращения
1. Никогда не оставляйте нить накаливания под воздействием воздуха
2. Верните на хранение сразу после печати
3. Используйте сухие коробки для влажного климата
4. Контролируйте влажность с помощью гигрометра
Экологический контроль
Влажность в печатном зале: Ниже 40% RH идеально
Избегайте печати во время дождя/влажных дней
Кондиционер помогает снизить влажность
Рассмотрите вариант осушителя воздуха для мастерской
Проверка на влажность
Простой тест
Нагрейте сопло до температуры печати и выдавите филамент:
Сухой нейлон: Гладкая, глянцевая экструзия
Влажный нейлон: Шипение, хлопанье, пузырьки, шероховатая поверхность
Измерение веса
Для точного определения:
1. Взвесьте катушку перед сушкой
2. Полностью высушите
3. Взвесить еще раз
4. Рассчитайте процент влажности
Целевая влажность: Ниже 0,2% для оптимальной печати
ЧАСТО ЗАДАВАЕМЫЕ ВОПРОСЫ
How do you know whether Nylon Moisture Treatment — Complete Drying & Storage Guide fits a part?
Nylon Moisture Treatment — Complete Drying & Storage Guide fits a part when its load capacity, temperature range, moisture exposure, wear behavior, and processing method match the real service conditions.
What properties should be checked for Nylon Moisture Treatment — Complete Drying & Storage Guide?
What is the biggest selection risk for Nylon Moisture Treatment — Complete Drying & Storage Guide?
Наибольший риск заключается в том, чтобы ориентироваться на значения из технического паспорта, не учитывая реальные условия эксплуатации, метод обработки, геометрию детали и долгосрочную эксплуатацию.
When should Nylon Moisture Treatment — Complete Drying & Storage Guide be tested before production?
Проведение испытаний рекомендуется в случаях, когда деталь подвергается воздействию нагрузок, высоких температур, химических веществ, влаги, должна соответствовать жестким допускам, нормативным требованиям или эксплуатироваться в новых условиях.
Drying, Storage and Conditioning Are Different Steps
For procurement and process control, treat this as a nylon moisture treatment plan: remove moisture before processing, protect the dry material during transfer, and define the conditioning state used for inspection.
Nylon moisture control has three separate stages. Drying removes process moisture before the material is heated. Storage prevents the dried material from taking moisture back from the surrounding air. Conditioning changes the moisture state of a finished part after molding or printing and should be controlled as a separate engineering step. Treating these as one activity can produce unstable processing, changing dimensions and misleading test results.
The correct workflow depends on the material form. Pellets for injection molding, filament for additive manufacturing and molded parts do not share the same handling assumptions. Start with the exact grade, supplier drying guidance, package history, ambient humidity, dryer type, target process and the symptoms being investigated. A temperature and time copied from another nylon grade is not a reliable process specification.
Spool condition, dry-box humidity, drying cycle and a controlled test print
Dried material in transit
Reabsorption between dryer, hopper, machine and work area
Sealed container, exposure time, desiccant condition and opening record
Molded or printed part
Moisture changes toughness, stiffness, fit and dimensions after processing
Conditioning state, humidity, time and measurement timing
Resin-Pellet Drying Workflow
For molding, confirm whether the package is factory sealed, partially used or exposed to ambient air. Load only the quantity that can be dried and transferred within the approved handling window. The dryer should provide stable temperature and sufficiently dry air; a nominal setpoint alone does not prove that the material reached the required moisture state. Record the grade, lot, start time, setpoint, actual air condition, end time and transfer route.
After drying, move the resin through a closed or protected path into the hopper. Avoid open trays, uncovered bins and long pauses beside the machine. If a hopper dryer is used, record residence time and confirm that material is not bypassing the intended heat and airflow. For a material change, clean the hopper and conveying line so wet residue or a different polymer does not contaminate the next lot.
Process check
What to confirm
Why it matters
Grade and lot
Exact polymer, filler, color and supplier lot
Different grades can require different temperature, time and moisture limits
Dryer condition
Actual temperature, airflow, dew point and calibration
Setpoint alone does not show the material received adequate drying
Residence time
Time in dryer and time from discharge to hopper
Prevents underdrying and unrecorded reabsorption
Moisture check
Method, sample location, result and acceptance limit
Links a material record to surface and mechanical results
Transfer
Sealed route, container condition and opening time
Protects the dry state before melting
Filament Drying and Sealed Storage
Filament needs the same discipline but a different workflow. A spool may have absorbed moisture before it was opened, and a dry box may protect it without removing moisture that is already inside the polymer. Drying time depends on filament diameter, polymer grade, spool size, dryer air movement and the starting condition. After drying, keep the spool in a controlled dry box or sealed package and limit the time it is exposed while loading the printer.
A test print can reveal improvement, but it is not a substitute for a moisture record when the part is safety-critical or dimensionally sensitive. Record nozzle, bed, chamber, material, drying history, storage condition and print orientation. For a narrow filament-specific workflow, use the nylon filament drying guide; this page keeps the molding, storage and cross-process decision together.
Dew Point, Verification and Reabsorption
Dew point describes the moisture condition of the drying air, while temperature and time describe the heat exposure. Both should be considered with airflow and material depth. A dryer that reports a low setpoint but has unstable dew point or poor air circulation may not deliver a repeatable result. Moisture analyzers, Karl Fischer testing or a validated supplier method can be used when the project requires a numerical limit. Use one method consistently and document its sample preparation.
Nylon can reabsorb moisture quickly after drying, especially in warm or humid conditions. The elapsed time between dryer, hopper and molding machine should be part of the process record. If a defect changes during a shift, compare material exposure time and storage condition before changing injection parameters. Surface splay, bubbles, silver streaks, poor layer bonding, reduced toughness and changing dimensions can have several causes, so confirm moisture alongside venting, melt temperature and contamination.
Supplier and Process Checklist
Exact nylon grade, filler, color, package condition and material lot.
Intended route: injection molding, extrusion, FDM, SLS, MJF or another process.
Dryer type, actual temperature, airflow, dew point, residence time and calibration.
Moisture test method, sample location, result and acceptance limit.
Sealed transfer, dry-box condition, exposure time and storage record.
Conditioning state for finished-part dimensions, mechanical tests and assembly.
For an RFQ or process review, send the grade, material form, package history, dryer data, observed defects, target properties and production route. We can help separate drying, storage and post-process conditioning so the material record supports stable molding, printing and inspection.