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Shanghai Pumin Industrial Automation Equipment Co., Ltd
Room 726, Building 2, No. 55 Meisheng Road, Pudong New Area Pilot Free Trade Zone, Shanghai (Baozhou Innovation Center)
Parker gear pump D41FCE02CC1 series in stock
Parker gear pump D41FCE02CC1NE7019 with high quality and good price
Shanghai Pumin Industrial Automation Equipment Co., Ltd. specializes in the sales of imported spare parts from Europe and America. The company has its own offices in Germany and the United States for direct procurement, with first-hand sources and competitive prices in the market
Price advantage: We directly obtain quotations from factories, avoiding many intermediate links. Many factories provide us with fixed discounts to ensure that we offer favorable prices to customers
Wide channels: In addition to factories, we have direct business relationships with many distributors in Europe, which allows us to purchase products that cannot be quoted due to protecting agents
The working principle of Parker gear pump is based on positive displacement hydraulic transmission. The core is to rotate a pair of meshing gears inside the pump body, periodically changing the volume of the sealing chamber, thereby achieving the circulation of oil suction and pressure, and converting mechanical energy into hydraulic energy.
Its core components include a pair of precision meshing driving and driven gears, a pump body, and front and rear end caps. Multiple sealed working spaces are formed between the two gears and the pump body and end cover. When an external power source drives the driving gear to rotate, the driving gear drives the driven gear that meshes with it to rotate synchronously in the opposite direction. On the side where the gear disengages, namely the suction port side, as the gear teeth gradually disengage, the enclosed volume between the tooth valley space and the pump body gradually increases, forming a local vacuum. The oil in the oil tank is sucked in through the suction port under atmospheric pressure and fills these increased tooth valley spaces. The oil that is sucked in is carried by the gear teeth and rotates along the inner wall of the pump body from the suction side to the pressure side. On the side where the gears enter into meshing, that is, on the oil pressure port side, as the teeth of the two gears gradually enter meshing, the volume originally enclosed by the tooth valley decreases sharply, and the oil is compressed, causing the pressure to rise and forcibly pushed out of the oil discharge port into the hydraulic system pipeline. With the continuous rotation of the gears, the oil suction and pressure cycle repeats, and the Parker gear pump can achieve continuous and stable hydraulic oil output.
In order to ensure continuous and smooth oil supply of the gear pump, the meshing overlap of the gears must be greater than 1. This means that at a certain moment, two pairs of gear teeth will mesh simultaneously, forming a closed volume that is not connected to both the suction chamber and the pressure chamber, known as the trapped oil area. When the enclosed volume decreases, the trapped oil is compressed and generates high pressure, which can cause the bearings to bear additional loads and cause the oil to heat up; When the volume increases, local vacuum and air pockets will be generated, causing vibration and noise. In order to solve the problem of trapped oil, Parker gear pumps are usually designed with unloading grooves on the front and rear cover plates. The positions of these unloading grooves are precisely calculated. When the volume of the trapped oil area decreases, they are connected to the pressure chamber to discharge high-pressure oil, and when the volume increases, they are connected to the suction chamber to replenish oil, effectively eliminating the harm of trapped oil and ensuring smooth and low-noise pump operation. Parker gear pumps typically use high-strength materials to manufacture gears and housings, and are matched with precision machined clearances to reduce internal leakage while avoiding the risk of jamming, allowing them to maintain stable performance at high working pressures and a wide range of speeds.
Parker gear pump D41FCE02CC1 series in stock
The characteristics of Parker gear pumps are reflected in their systematic engineering design and precision manufacturing processes for high-pressure, high-speed, and continuous operating conditions.
In terms of structural design and material technology, its characteristics are particularly prominent. Gears are usually made of high-strength alloy steel or carburizing steel, and undergo precision grinding to ensure the accuracy and surface smoothness of the tooth profile. The pump body is made of high-density cast iron or aluminum alloy materials according to application requirements, with high-strength steel liners often embedded inside the aluminum alloy pump body. This bimetallic structure balances lightweight and wear resistance. The radial clearance and end clearance between the gear and the pump body are precisely controlled, which effectively reduces the leakage of internal high-pressure oil to the low-pressure chamber, improves volumetric efficiency, and avoids the risk of jamming caused by too small clearance.

In terms of high pressure and high-speed performance, Parker gear pumps exhibit good tolerance. Thanks to precision manufactured gear and bearing systems, many models are able to operate continuously within a higher pressure range and adapt to input speeds of over 3000 revolutions per minute. The sturdy structural design enables it to withstand frequent pressure shocks and speed changes, making it suitable for hydraulic systems that require rapid response and load fluctuations. Some models also adopt an automatic axial clearance compensation structure, which uses high-pressure oil to push the floating side plate towards the gear end face to compensate for wear during operation and ensure high efficiency under high-pressure conditions.
In terms of medium adaptability and ease of use, this pump exhibits strong versatility. Its structure is insensitive to oil pollution and can adapt to a certain degree of particle impurities, which reduces the strict requirements for filtration accuracy in hydraulic systems and enhances the system's risk resistance. At the same time, the gear pump itself has good self-priming ability, which can quickly establish suction pressure within a wide speed range, reducing the need for oil filling operations before starting. Parker provides a variety of installation flanges, shaft extension forms, and oil port connection methods that comply with international standards, making it easy to replace or integrate on various equipment. The compact structural design makes it also easy to arrange in space limited installation environments.
In terms of lifespan and economy, its value lies in the balance of design. All moving parts undergo strict heat treatment and surface hardening treatment, possessing excellent fatigue and wear resistance. Within the specified operating range, the service life of the pump is relatively long, and its structure is relatively simple with fewer components, which makes daily maintenance and repair more convenient and helps to reduce the full life cycle cost of users.
These products are widely used in fields such as steel, automotive, papermaking, energy, petrochemicals, textiles, metallurgy, aerospace, rubber, water conservancy, power plants, medical and food packaging, metallurgical industry, automotive industry, power equipment, chemical industry, engineering machinery, papermaking industry, shipbuilding industry, and machine tool manufacturing.
Rexroth, Hydac, Parker, WEBTEC, Atos,
EBRO, METRIX, Megger, ODE, HEIDENHAIN, Heidenhain, USA
Samson, Aventics, Bently, Ifm,
Fairchild, Asco solenoid valve, P+F, MOOG servo valve,
Burkert, Balluff, Pilz, Baumer,
Hengstler, Norgren, Mac solenoid valve from the United States, EPRO from Germany,
Danfoss, German HBM sensors, Lenze Lenz, Tiefenbach, and others
The hot selling models are as follows:
AGAM-20/100/V
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DHA-0751/2/M 24DC
DHA-0713/M 24DC)
DHA-0631/2/M/A 24DC
DHA-0632/2/M24DC
RZGO-REB-P-NP-033/100/1 10
Electromagnetic valve DHA-0751/2/NPT/WP \ \ Two position four-way valve \ \ 1/2inNPTF \ \ DC24V 8W
Electromagnetic valve DHA-0711/M/7 24 \ \ Two position four-way valve M20 × 1.5 \ \ DC24V 8W
Screw flowmeter SVC10K1F1R2SH
Displacement probe \ \ TM0180-07-00-10-02
Front end processor \ \ TM0182-A50-B00-C00
KRACHT 齿轮泵 KF50RF2/197-D15
KRACHT 齿轮泵 KF25RF1-D15
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KRACHT 齿轮泵 KF25RF2-D15
KRACHT 齿轮泵 KF20RF1-D15
KRACHT 齿轮泵 KF16RF2-D15
KRACHT 齿轮泵 KF16RF1-D15
KRACHT 齿轮泵 KF10RF2-D15
KRACHT 齿轮泵 KF3/80F10BPOA7DP1
KRACHT 齿轮泵 KP2/50 S10GY00
KRACHT 齿轮泵 KP0/1 K20S M0A 8ML1
KRACHT 齿轮泵 KF63RF2-D15
KRACHT 齿轮泵 KF80RF2-D15
KRACHT 齿轮泵 KF80RF1-D15
KRACHT 齿轮泵 KF63RF1-D15
KRACHT 齿轮泵 KF40RF2-D15
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KRACHT 齿轮泵 KF32RF2-D15
PVWJ-046-A1UV-LDFY-P-1NNNN-CP
Gaonuo relay 81513552
E+L tension sensor PD5020
HYDAC leather bag SB330-100A1/112A9-330A
590C/1800/5/3/0/0/0/00
590C/1800/5/3/0/0/0/00/000
6483066400105001809
Double pump: T6CC 031 010 1R00 C110
Double pump: T6CC 031 010 1R00 C110
AA10VS028DFR1/31R-PPA12NOO
Double blade pump \ \ T6CC-028-010-1R00-C1W0
PVWJ-076-A1UV-LSAS-P1NN
PVH07R01AB10A250000002001AB010
Gear pump \ \ PGP505A0060CQ2D2NE5E3B1B1
HYDACEVS3106-A-0060-000
HYDACEVS3106-A-0300-000
MAC solenoid valve 34C-ABA-GDFA-1GA
ASCO 400425-142 24VDC
Samson valve 3730-0 ID2659921
4WRKE16E220L-3X/6EG24K31/A1M-909
Samson valve 3730-300
Samson valve 3760-001211
Keyence FD-M100ATP
CUS52D-AA1AA3
COS61D-AAA1A3
CM442-AAM1A2F010A+AK
FMU30-AAHEABGHF
FMU90-R11CA111AA3A
FMU42-APB2A22A
PMP11-AA1U1PBWJJ
Aventics0820052526
AventicsR412010717
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