混合动力方向控制阀 - D3DWR系列 | Product Series

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混合动力方向控制阀 - D3DWR系列

NG10中的再生和混合直接方向控制阀系列D3DWR允许带差压气缸的节能回路。

技术规格:

  • 产品序列: 方向控制阀
  • 运行类型: 直动
  • 启动类型: 电磁铁
  • 安装类型: 底板安装
  • 安装位: Unrestricted, preferably horizontal
  • 功能: 3-way
  • 端口连接: NG10 / CETOP 05
  • 最大运行压力: P, A B: 350; T: 210; option 9: P, A, B, T: 350; X, Y: 210 bar
  • 最大流速: 150 L/min
  • 最高运行温度: 60 °C
  • 最低运行温度: -25 °C
  • 输入电压: 24 VDC
  • 连接类型: 电气接头符合 EN 175301-803
  • 密封材料: FPM, NBR
  • 与流体类型共同使用: Hydraulic oil
  • 重量: 6.3 kg
  • 阀体材料: Cast iron

完整的产品说明

代表了提高液压系统效率的有效方法,派克的再生式和混合式直动式方向控制阀系列D3DWR通过阀控线性气缸执行器比以往更轻松地节省能源。A线中的集成再生功能可以有效地具有差压气缸的电路。混合动力型号可以随时自由切换,实现更大的节能,而不会限制运行范围。

市场:
•工业

特点与优势:
•经验丰富的强大设计,代表了我们在液压方面的长期经验
•高功能 - 低流量下也能实现安全运行
•低压降 - 导致运行中的能量损失较低
•有效的A再生 - 通过减少部分负载的差压气缸的油耗来提高能源效率
•可切换混合版本 - 可以在再生模式(高速)和标准模式之间切换(对于高力)
•交货时间短 - 不需要仓储

应用:
•适用于一般液压应用
•通用印刷机

信息再生和混合功能:
在具有差压缸的应用中,通常将返回流从气缸的杆侧返回到活塞侧,以实现更高的速度或更低的泵流量.Parker区分再生到泵的压力水平(P再生)或分别直接连接到活塞区域的A口(A再生).Parker再生阀使用有利的A再生。

 具有集成电磁阀的混合动力型号可以在再生模式和标准模式之间切换。再生模式用于更大速度,更大力的标准模式。

注意:
D3DWR系列需要与适配板组合使用。对于再生和混合功能,请参见适配板系列A10和夹层板系列H10。

相关文档(前身为“产品支持”)

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产品 阀芯代码 阀芯位置 排水选件 密封材料 电磁阀选件
D3DWR01C9NJW R01 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) NBR Without manual override
D3DWR04C9NJW R04 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) NBR Without manual override
D3DWR81C9NJW R81 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) NBR Without manual override
D3DWR82C9NJW R82 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) NBR Without manual override
D3DWR01C9VJW R01 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) FPM Without manual override
D3DWR04C9VJW R04 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) FPM Without manual override
D3DWR81C9VJW R81 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) FPM Without manual override
D3DWR82C9VJW R82 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) FPM Without manual override
D3DWR01C9NJWT R01 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) NBR With manual override
D3DWR04C9NJWT R04 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) NBR With manual override
D3DWR81C9NJWT R81 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) NBR With manual override
D3DWR82C9NJWT R82 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) NBR With manual override
D3DWR01C9VJWT R01 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) FPM With manual override
D3DWR04C9VJWT R04 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) FPM With manual override
D3DWR81C9VJWT R81 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) FPM With manual override
D3DWR82C9VJWT R82 3 positions, spring offset in position 0, operated in position a or b X and Y for high pressure in T1 (tank) or T2 (regenerative function) FPM With manual override
D3DWR01CNJW R01 3 positions, spring offset in position 0, operated in position a or b Standard NBR Without manual override
D3DWR04CNJW R04 3 positions, spring offset in position 0, operated in position a or b Standard NBR Without manual override
D3DWR81CNJW R81 3 positions, spring offset in position 0, operated in position a or b Standard NBR Without manual override
D3DWR82CNJW R82 3 positions, spring offset in position 0, operated in position a or b Standard NBR Without manual override
D3DWR01CVJW R01 3 positions, spring offset in position 0, operated in position a or b Standard FPM Without manual override
D3DWR04CVJW R04 3 positions, spring offset in position 0, operated in position a or b Standard FPM Without manual override
D3DWR81CVJW R81 3 positions, spring offset in position 0, operated in position a or b Standard FPM Without manual override
D3DWR82CVJW R82 3 positions, spring offset in position 0, operated in position a or b Standard FPM Without manual override
D3DWR01CNJWT R01 3 positions, spring offset in position 0, operated in position a or b Standard NBR With manual override
D3DWR04CNJWT R04 3 positions, spring offset in position 0, operated in position a or b Standard NBR With manual override
D3DWR81CNJWT R81 3 positions, spring offset in position 0, operated in position a or b Standard NBR With manual override
D3DWR82CNJWT R82 3 positions, spring offset in position 0, operated in position a or b Standard NBR With manual override
D3DWR01CVJWT R01 3 positions, spring offset in position 0, operated in position a or b Standard FPM With manual override
D3DWR04CVJWT R04 3 positions, spring offset in position 0, operated in position a or b Standard FPM With manual override
D3DWR81CVJWT R81 3 positions, spring offset in position 0, operated in position a or b Standard FPM With manual override
D3DWR82CVJWT R82 3 positions, spring offset in position 0, operated in position a or b Standard FPM With manual override

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