Что вы ищете?

Ввести поисковый термин

Нам очень жаль!

Результаты поиска отсутствуют.

Вход в систему

Вы новый клиент?

Зарегистрируйтесь и получите множество преимуществ:

Проверка наличия продуктов
Быстрый повторный заказ и история заказов
Персональные рекомендации по продуктам
Оплата по счету

Help & Contact

Your direct line to us

If you have any questions about the online store or our products, you can call our customer service at:

Or use our FAQ

There you get answers to the most frequently asked questions.

Helping people help themselves
ЧАВО

HK A10VSO

Axialkolbenpumpe A10VSO
Design
axial piston pump, swash plate 
Use
Universal medium pressure pump for open circuits in mobile and industrial applications 
Media
HL - HLP DIN 51524 Part 1/2 
Скачать файл PDF
Зарегистрируйтесь сейчас для получения доступа к нашему онлайн-магазину.

Register now and access our complete product range and many exclusive services.

Свойства

Design
  • axial piston pump, swash plate 
Use
  • Universal medium pressure pump for open circuits in mobile and industrial applications 
Media
  • HL - HLP DIN 51524 Part 1/2 
Viscosity
  • 15 to 100 cSt 
Customs tariff number
  • 84135061 
Все свойства

Описание изделия

Указания
If the pumps are to be used below the oil level, please contact us so that we can offer a version with a special paint finish and without a labelling sticker if necessary.
Описание
Setting range of the pump controllers: 50 - 280 bar.
Pumps with variable delivery rate.
Favourable power-to-weight ratio
Two different controller types.
Cylindrical shaft with key
Direction of rotation: clockwise rotating.

Product variants

12 Results
Показать чертеж с размерами
Наименование
VFU (cm³)
Min. speed (r/min)
Max. speed (r/min)
p2 max. (bar)
VFU = conveying volume per revolution
n = speed
p2 = working pressure
p3 = maximum pressure

Shows 10 of 12

Column selection

VFU (cm³)
Min. speed (r/min)
Max. speed (r/min)
p2 max. (bar)
p3 max. (bar)
Ø shaft (mm)
Pressure connection SAE
Suction connection SAE
Controller type
VFU = conveying volume per revolution
n = speed
p2 = working pressure
p3 = maximum pressure