China best Hydraulic Motor Gear Motor MCR-W780 860 940 1120 1250 1340 CHINAMFG Piston Motor MCR-W Mcrwz/33 Frame Size 10 CHINAMFG vacuum pump electric

Product Description

Product Description

[Features]

Our company now supplies a large number of piston pumps, motors, hydraulic valve, vane pump, gear pump,hydraulic cyliner ,hydraulic accumulator ,reducers and related spare parts. The main manufacturers are: Rexroth, Hitachi, Komatsu, Kawasaki, CHINAMFG , Toshiba, CHINAMFG / Katoetc,Parke ,Nachi,Yuken,Eaton,Vickers,JEIL,KAYABA,HAWE,SAM,KOKIWA,OILGEAR,MESSORID and other products.

 

PocLlain Hydraulics Motor Hydraulic Motor Category Introduction:
1. MS series (multi -purpose): MS/MSE02, MSE03, MS/MSE05, MS/MSE08, MS/MSE11, MS/MSE18, MS25, MS35, MS50, MS83, MS125
2. MK series (compact type): MK04, MKD04, MK05, MK09, MK/MKE12, MK/MKE18, MK/MKE23, mk35, mk47, mk47
3. MG series: MG/MGE02 Series, MG/MGE11 Series, MG21 Series
4. CHINAMFG series: MW14 Series, MW24 Series, MW50 Series

CHINAMFG SERIES HYDRAULIC PUMP /MOTOR

CHINAMFG Series:

A4V40; A4V56; A4V71; A4V125; A4V250; A4VFO28; A4VSO40; A4VSO71; A4VSO125; A4VSO180; A4VSO250; A4VSO355; A4VSO500; A4VF500 /
A4F500; A4VG28 (A4F571); A4VG50;; A4VG40; A4VG45 A4VG56; A4VG71; A4VTG71; A4VG90 (A4VT90HW / 32R); A4VHW90; A4VTG90 charge pump
(Laid thick); A4VG125; A4VG125 Charge pump; A4VG125 charge pump (general use type); A4VG125 charge pump (A10VO28 string type);
A4VG12 charge pump (large).
A10VG18 A10VG28 A10VG45 A10VG63

A22VG045

A24VG

A28VLO520

A11VLO

A8VO

A20VO 520
Rexroth bent axis pump series:

A2F5;A2F12;A2F23;A2VK28;2VK28;A2F28;A2F55;A2F80;A2F107;A2F160;A2F200;
A2V225;A2F250;A2V500;A2V915;A2F355;A2F500;A2F1000;A2FO10;A2FO12;A2FO16;A2FO23;A2FO28;A2FO32;A2FO45; A2FO56; A2FO63; A2FO80; A2FO90
/ A2FE90; A2FO107; A2FO125 (A2FM125); A2FO200;; A2FO160; A2FO180 A2FO250; A2FO500; A6V28; A7V55 / A8V55; A7V58; A7V80 / A8V80;
A7V107 / A8V107; A7V160 / A8V160; A7V200; A7V225 ; A7V250; A7V355; A7V500; A6VM / A7V1000; A6VM / A7VO12; A7VO28; A7VO55; A7VO80;
A7VO107; A7VO160; A6VM160; A6VE160; A6VM200; A6VM500; A7VO172; A7VO200; A7VO250; A7VO355; A7VO500.

Sauer  Series:

PV20; PV21 (PVD21); PV22; PVD22 dual pump; PV23 (PVD23); PV24; SPV6 / 119; PV25; PV26; PV112; OPV27; MF16A; MFO35; MF500; MPVO46 /
M46; MPR63; MPV45.

Sauer  Sunstrand Hydraulic Motor.
90K 55, 90K 75.
90M 55, 90M 75, 90M 100, 90M 130.
MF 20, MF 21, MF 22, MF 23, MF 24, MF 25, MF 26, MF 27.
SMF 20, SMF 21, SMF 22, SMF 23, SMF 24, SMF 25, SMF 26, SMF 27.
H1 060, H1 080, H1 110, H1 160, H1 210, H1 250.
H1B 060, H1B 080, H1B 110, H1B 160, H1B 210, H1B 250.
T90 Series 055, 075, 100
T90 (M) Series 055 MF, 075 MF, 100 MF.
Series 90 030 MF, 042 MF, 055 MF, 075 MF, 100 MF, 130 MF.
Series 90 055 MV, 075 MV.
Series 20 (frame size) 070, 089, 227, 334.
Series 51 / 51V (frame size) 060, 080, 110, 160, 250.
New or Reusable Spares of Hydraulic Motors like Shaft, Rotor, Cylinder Block, Pistons, Piston Rings, Pressure Plate, Swash Plate,
Ball Xihu (West Lake) Dis., Bearings, Retainer Plate, Springs, Distributor, Covers, Control Valve, Seal Kits and others can be supplied.

Eaton CHINAMFG Series:
3321/3331 (Eaton 006); CHINAMFG 3322 (EATON3322); 4621/4621-007; 5421/5431 (Eaton 23); Case 1460 (CASE1460); Case CS05A; CHINAMFG 3932-243; CHINAMFG 6423; 7621 (Eaton 24-7620); Road roller (Eaton 78462). CHINAMFG series: PVE19;TA19;PVE21;PVH45;PVH57;PVH74;PVH81;PVH98;PVH106(HPN-1398);PVH131;PVH141;PVB5;PVB6;PVB10;PVB15(PVQ32 some common);PVB20;PVB29;PVBQA29-SR;PVQ40 /50; PVB110; TB35; B45

Parker series
PVP16/23/33/41/48/60/76/100/140;

PVM16/23/28;PV016/571/571/571/032/040/046/063;

F11-005/006/012/014/019/10/28/39/80/110/150/250;

F12-030/040/060/080/110/125/150/250;

V12-060/080
V14-110/160;

P2/P3-060/075/105/145;

PAVC 33/38/65/100

YUKEN hydraulic pump
AR variable piston pump: AR16, AR22

A variable piston pump: A10,A16,A22,A37,A40,A45,A56,A70,A80,A90,A125,A145

A3H variable piston pump: A3H16 A3H37 A3H56 A3H70 A3H100 A3H145 A3H180

Vane pump: PV2R PV2R2 PV2R3 PV2R4 PV2R21 PV2R23 PV2R42 PV2R43

LINDE Model Number
Linde
HMF63-01
MPF55-01
MPR28 MPR45 MPR63 MPR71-01
HPR75-01 HPR90-01 HPR100-01 HPR130-01 HPR160-01
HPR55 HPR75 HPR105 HPR135 HPR165 HPR210
MPV45-01 MPV63-01
HMR75-02 HMR105-02 HMR135-02 HMR165-02 HMR210-02 HMR280-02
BPV35 BPV50 BPV70 BPV100 BPV200
B2PV35 B2PV50 B2PV75 B2PV105 B2PV140 B2PV186
BMF35 BMF55 BMF75 BMF105 BMF135 BMF140 BMF186 BMF260
BMV35 BMV55 BMV75 BMV105 BMV135 BMV140
BPR55 BPR75 BPR140 BPR186 BPR260
HPV55T HPV75 HPV105 HPV135 HPV165 HPV210 HPV280
HMF28 HMF35 HMF50 HMF55 HMF75 HMF105 HMF135 HMF165 HMF210 HMF280
HPV130-01

[Products]

[Company Profile ]

 

 

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Certification: CE
Excitation Mode: Hydraulic
Power Rating: 4000W
Casing Protection: Open Type
Number of Poles: 12
Speed: High Speed
Customization:
Available

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gear motor

Where can individuals find reliable resources for learning more about gear motors and their applications?

Individuals seeking to learn more about gear motors and their applications have access to various reliable resources that provide valuable information and insights. Here are some sources where individuals can find reliable information about gear motors:

1. Manufacturer Websites:

Manufacturer websites are a primary source of information about gear motors. Gear motor manufacturers often provide detailed product specifications, application guides, technical documentation, and educational materials on their websites. These resources offer insights into different gear motor types, features, performance characteristics, and application considerations. Manufacturer websites are a reliable and convenient starting point for learning about gear motors.

2. Industry Associations and Organizations:

Industry associations and organizations related to mechanical engineering, automation, and motion control often have resources and publications dedicated to gear motors. These organizations provide technical articles, whitepapers, industry standards, and guidelines related to gear motor design, selection, and application. Examples of such associations include the American Gear Manufacturers Association (AGMA), International Electrotechnical Commission (IEC), and Institute of Electrical and Electronics Engineers (IEEE).

3. Technical Publications and Journals:

Technical publications and journals focused on engineering, robotics, and motion control are valuable sources of in-depth knowledge about gear motors. Publications like IEEE Transactions on Industrial Electronics, Mechanical Engineering magazine, or Motion System Design magazine often feature articles, case studies, and research papers on gear motor technology, advancements, and applications. These publications provide authoritative and up-to-date information from industry experts and researchers.

4. Online Forums and Communities:

Online forums and communities dedicated to engineering, robotics, and automation can be excellent resources for discussions, insights, and practical experiences related to gear motors. Websites like Stack Exchange, engineering-focused subreddits, or specialized forums provide platforms for individuals to ask questions, share knowledge, and engage in discussions with professionals and enthusiasts in the field. Participating in these communities allows individuals to learn from real-world experiences and gain practical insights.

5. Educational Institutions and Courses:

Technical colleges, universities, and vocational training centers often offer courses or programs in mechanical engineering, mechatronics, or automation that cover gear motor fundamentals and applications. These educational institutions provide comprehensive curricula, textbooks, and lecture materials that can serve as reliable resources for individuals interested in learning about gear motors. Additionally, online learning platforms like Coursera, Udemy, or LinkedIn Learning offer courses on topics related to gear motors and motion control.

6. Trade Shows and Exhibitions:

Attending trade shows, exhibitions, and industry conferences related to automation, robotics, or motion control provides opportunities to learn about the latest advancements in gear motor technology. These events often feature product demonstrations, technical presentations, and expert panels where individuals can interact with gear motor manufacturers, industry experts, and other professionals. It’s a great way to stay updated on the latest trends, innovations, and applications of gear motors.

When seeking reliable resources, it’s important to consider the credibility of the source, the expertise of the authors, and the relevance to the specific area of interest. By leveraging these resources, individuals can gain a comprehensive understanding of gear motors and their applications, from basic principles to advanced topics, enabling them to make informed decisions and effectively utilize gear motors in their projects or applications.

gear motor

Are there environmental benefits to using gear motors in certain applications?

Yes, there are several environmental benefits associated with the use of gear motors in certain applications. Gear motors offer advantages that can contribute to increased energy efficiency, reduced resource consumption, and lower environmental impact. Here’s a detailed explanation of the environmental benefits of using gear motors:

1. Energy Efficiency:

Gear motors can improve energy efficiency in various ways:

  • Torque Conversion: Gear reduction allows gear motors to deliver higher torque output while operating at lower speeds. This enables the motor to perform tasks that require high torque, such as lifting heavy loads or driving machinery with high inertia, more efficiently. By matching the motor’s power characteristics to the load requirements, gear motors can operate closer to their peak efficiency, minimizing energy waste.
  • Controlled Speed: Gear reduction provides finer control over the motor’s rotational speed. This allows for more precise speed regulation, reducing the likelihood of energy overconsumption and optimizing energy usage.

2. Reduced Resource Consumption:

The use of gear motors can lead to reduced resource consumption and environmental impact:

  • Smaller Motor Size: Gear reduction allows gear motors to deliver higher torque with smaller, more compact motors. This reduction in motor size translates to reduced material and resource requirements during manufacturing. It also enables the use of smaller and lighter equipment, which can contribute to energy savings during operation and transportation.
  • Extended Motor Lifespan: The gear mechanism in gear motors helps reduce the load and stress on the motor itself. By distributing the load more evenly, gear motors can help extend the lifespan of the motor, reducing the need for frequent replacements and the associated resource consumption.

3. Noise Reduction:

Gear motors can contribute to a quieter and more environmentally friendly working environment:

  • Noise Dampening: Gear reduction can help reduce the noise generated by the motor. The gear mechanism acts as a noise dampener, absorbing and dispersing vibrations and reducing overall noise emission. This is particularly beneficial in applications where noise reduction is important, such as residential areas, offices, or noise-sensitive environments.

4. Precision and Control:

Gear motors offer enhanced precision and control, which can lead to environmental benefits:

  • Precise Positioning: Gear motors, especially stepper motors and servo motors, provide precise positioning capabilities. This accuracy allows for more efficient use of resources, minimizing waste and optimizing the performance of machinery or systems.
  • Optimized Control: Gear motors enable precise control over speed, torque, and movement. This control allows for better optimization of processes, reducing energy consumption and minimizing unnecessary wear and tear on equipment.

In summary, using gear motors in certain applications can have significant environmental benefits. Gear motors offer improved energy efficiency, reduced resource consumption, noise reduction, and enhanced precision and control. These advantages contribute to lower energy consumption, reduced environmental impact, and a more sustainable approach to power transmission and control. When selecting motor systems for specific applications, considering the environmental benefits of gear motors can help promote energy efficiency and sustainability.

gear motor

How does the gearing mechanism in a gear motor contribute to torque and speed control?

The gearing mechanism in a gear motor plays a crucial role in controlling torque and speed. By utilizing different gear ratios and configurations, the gearing mechanism allows for precise manipulation of these parameters. Here’s a detailed explanation of how the gearing mechanism contributes to torque and speed control in a gear motor:

The gearing mechanism consists of multiple gears with varying sizes, tooth configurations, and arrangements. Each gear in the system engages with another gear, creating a mechanical connection. When the motor rotates, it drives the rotation of the first gear, which then transfers the motion to subsequent gears, ultimately resulting in the output shaft’s rotation.

Torque Control:

The gearing mechanism in a gear motor enables torque control through the principle of mechanical advantage. The gear system utilizes gears with different numbers of teeth, known as gear ratio, to adjust the torque output. When a smaller gear (pinion) engages with a larger gear (gear), the pinion rotates faster than the gear but exerts more force or torque. This results in torque amplification, allowing the gear motor to deliver higher torque at the output shaft while reducing the rotational speed. Conversely, if a larger gear engages with a smaller gear, torque reduction occurs, resulting in higher rotational speed at the output shaft.

By selecting the appropriate gear ratio, the gearing mechanism effectively adjusts the torque output of the gear motor to match the requirements of the application. This torque control capability is essential in applications that demand high torque for heavy lifting or overcoming resistance, as well as applications that require lower torque but higher rotational speed.

Speed Control:

The gearing mechanism also contributes to speed control in a gear motor. The gear ratio determines the relationship between the rotational speed of the input shaft (driven by the motor) and the output shaft. When a gear motor has a higher gear ratio (more teeth on the driven gear compared to the driving gear), it reduces the output speed while increasing the torque. Conversely, a lower gear ratio increases the output speed while reducing the torque.

By choosing the appropriate gear ratio, the gearing mechanism allows for precise speed control in a gear motor. This is particularly useful in applications that require specific speed ranges or variations, such as conveyor systems, robotic movements, or machinery that needs to operate at different speeds for different tasks. The speed control capability of the gearing mechanism enables the gear motor to match the desired speed requirements of the application accurately.

In summary, the gearing mechanism in a gear motor contributes to torque and speed control by utilizing different gear ratios and configurations. It enables torque amplification or reduction, depending on the gear arrangement, allowing the gear motor to deliver the required torque output. Additionally, the gear ratio also determines the relationship between the rotational speed of the input and output shafts, providing precise speed control. These torque and speed control capabilities make gear motors versatile and suitable for a wide range of applications in various industries.

China best Hydraulic Motor Gear Motor MCR-W780 860 940 1120 1250 1340 CHINAMFG Piston Motor MCR-W Mcrwz/33 Frame Size 10 CHINAMFG   vacuum pump electricChina best Hydraulic Motor Gear Motor MCR-W780 860 940 1120 1250 1340 CHINAMFG Piston Motor MCR-W Mcrwz/33 Frame Size 10 CHINAMFG   vacuum pump electric
editor by CX 2024-03-12

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