DHZ1-2,DLY0-16A無錫溫納離合器
34GDBYO-H20B-T,34GDEYO-H20B-T,34GDBYH-H20B-T防爆電液換向閥,無錫溫納防爆閥
34GDEYH-H20B-T,34GDBYY-H20B-T,34GDEYY-H20B-T防爆電液換向閥,無錫溫納防爆閥
34GDBYM-H20B-T,34GDEYM-H20B-T,34GDBYX-H20B-T防爆電液換向閥,無錫溫納防爆閥
34GDEYX-H20B-T,34GDBYP-H20B-T,34GDEYP-H20B-T
34GDBYC-H20B-T,34GDEYC-H20B-T,34GDBYN-H20B-T防爆電液換向閥,無錫溫納防爆閥
34GDEYN-H20B-T,34GDBYK-H20B-T,34GDEYK-H20B-T防爆電液換向閥,無錫溫納防爆閥
24GDEYO-H32B-T,24GDBYO-H32B-T,24GDEYH-H32B-T
DHZ1-2,DLY0-16A無錫溫納離合器
PV2R2-59-F-1-L,PV2R2-59-F-1-R,葉片泵,高壓低噪音葉片泵,PV2R系列葉片泵



DHZ1-2,DLY0-16A無錫溫納離合器
2LA-F16D-AB單向節流閥
2LA-F16D-ABU-1單向節流閥
LE-F10D-B電磁節流閥
LE-F16D-B電磁節流閥
XYL-Fg6/10D-P1/P(A)-1順序節流閥
XYL-Fg6/16D-P1/P(A)-1順序節流閥
Q-F6D-O,Q-F6D-P調速閥
Q-F10D-O,Q-F16D-O調速閥
QA-F6D-A,QA-F6D-AU單向調速閥
QA-F6D-B,QA-F6D-BU單向調速閥
QA-F6/10D-A單向調速閥
QA-F6/10D-AU單向調速閥
PV2R1-4L,PV2R1-4R葉片泵廠家直銷
PV2R1-6L,PV2R1-6R葉片泵廠家直銷
PV2R1-8L,PV2R1-8R葉片泵廠家直銷
PV2R1-10L,PV2R1-10R葉片泵廠家直銷
PV2R1-12L,PV2R1-12R葉片泵廠家直銷
PV2R1-14L,PV2R1-14R葉片泵廠家直銷
PV2R1-17L,PV2R1-17R葉片泵廠家直銷
PV2R1-19L,PV2R1-19R葉片泵廠家直銷
PV2R1-23L,PV2R1-23R葉片泵廠家直銷
PV2R1-25L,PV2R1-25R葉片泵廠家直銷
PV2R1-28L,PV2R1-28R葉片泵廠家直銷
PV2R1-31L,PV2R1-31R葉片泵廠家直銷
PV2R2-26L,PV2R2-26R葉片泵廠家直銷
PV2R2-33L,PV2R2-33R葉片泵廠家直銷
PV2R2-41L,PV2R2-41R葉片泵廠家直銷
PV2R2-47L,PV2R2-47R葉片泵廠家直銷
PV2R2-53L,PV2R2-53R葉片泵廠家直銷
PV2R2-59L,PV2R2-59R葉片泵廠家直銷
PV2R2-65L,PV2R2-65R葉片泵廠家直銷
PV2R3-52L,PV2R3-52R葉片泵廠家直銷
PV2R3-60L,PV2R3-60R葉片泵廠家直銷
PV2R3-66L,PV2R3-66R葉片泵廠家直銷
PV2R3-76L,PV2R3-76R葉片泵廠家直銷
PV2R3-94L,PV2R3-94R葉片泵廠家直銷
PV2R3-116L,PV2R3-116R葉片泵廠家直銷
PV2R3-125L,PV2R3-125R葉片泵廠家直銷
PV2R3-136L,PV2R3-136R葉片泵廠家直銷
PV2R3-153L,PV2R3-153R葉片泵廠家直銷
YB-D355葉片泵廠家直銷
PV2R1-06-L-R葉片泵,無錫溫納
PV2R1-06-L-L葉片泵,無錫溫納
PV2R1-06-F-R葉片泵,無錫溫納
PV2R1-06-F-L葉片泵,無錫溫納
PV2R1-08-F-R葉片泵,無錫溫納
PV2R1-08-F-L葉片泵,無錫溫納
PV2R1-08-L-R,PV2R1-08-L-L葉片泵,無錫溫納
PV2R1-10-F-R葉片泵,無錫溫納
PV2R1-10-F-L葉片泵,無錫溫納
PV2R1-10-L-R,PV2R1-10-L-L葉片泵,無錫溫納
PV2R1-12-F-R葉片泵,無錫溫納
PV2R1-12-F-L葉片泵,無錫溫納
PV2R1-12-L-R,PV2R1-12-L-L葉片泵,無錫溫納
PV2R1-14-L-R,PV2R1-12-L-L葉片泵,無錫溫納
PV2R1-14-F-R葉片泵,無錫溫納
PV2R1-14-F-L葉片泵,無錫溫納
PV2R1-17-F-R葉片泵,無錫溫納
PV2R1-17-F-L葉片泵,無錫溫納
PV2R1-17-L-R,PV2R1-17-L-L葉片泵,無錫溫納同時為了保證差壓變送器在冰冷的環境中正常事變,還須配有伴熱保溫裝置,其結構龐大復雜,而且浪費能源。充滿孔板流量計管道的流體,當它們流經管道內的節流裝置時,流束將在節流裝置的節流件處形成局部收縮,從而使流速增加,靜壓力低,于是在節流件前后便產生了壓力降,即壓差,介質流動的流量越大,在節流件前后產生的壓差就越大,所以孔板流量計可以通過測量壓差來衡量流體流量的大小。這種測量方法是以能量守衡定律和流動連續性定律為基準的。