Product Description
High Quality Diesel Water Pump Spare Parts Water Pump replacement of CHINAMFG Ec210 Ec290 types of machine
About our other Products:
Our main products: steel cover locks, filters, oil grids, pumps, cylinder heads, crankshafts, camshafts, connecting rods, connecting rod bearings, valves, plungers, nozzles, exhaust valves, engine assemblies, Inlet pump, fan blade, engine preheater, intake valve, main bearing, crankshaft bearing, nozzle, nozzle pipe, oil pump, piston, piston pin, piston ring, plunger, valve seat, thrust bearing, valve guide, valve seat , valve seals, complete set of gaskets, water pump, turbocharger, generator, starter,
sensor……
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WATER PUMP ASSY | ||||||||||||||
NO. | LB NO. | Model | OEM NO. | Name | NO. | LB NO. | Model | OEM NO. | Name | NO. | LB NO. | Model | OEM NO. | Name |
1 | KLB-E3-1 | WATER PUMP ASSY | 101 | KLB-E3101 | C240 | 5-13610-057-0 | WATER PUMP ASSY | |||||||
22 | KLB-E3571 | EX2-1 | WATER PUMP ASSY | 62 | KLB-E3062 | ZAX2-5 | WATER PUMP ASSY | |||||||
23 | KLB-E3571 | EX220-1/2/3 H06CT | WATER PUMP ASSY | 63 | KLB-E3063 | 4JB1 CHINAMFG SK60 SH60 | WATER PUMP ASSY | 103 | KLB-E3103 | 4BC2 | 8-97571171-1 | WATER PUMP ASSY | ||
24 | KLB-E3571 | H07CT EX220-5 | WATER PUMP ASSY | 64 | KLB-E3064 | ZX330 6HK1 | 1-13650133-0 | WATER PUMP ASSY | 104 | KLB-E3104 | 4BD2T | 8-97125051-1 | WATER PUMP ASSY | |
25 | KLB-E3571 | EX3-0 | WATER PUMP ASSY | 65 | KLB-E3065 | 6D95L | 6206-61-1505 | WATER PUMP ASSY | 105 | KLB-E3105 | PD6 | 21008-96107 | WATER PUMP ASSY | |
26 | KLB-E3026 | R200-5/R200 OLD MTSUBISHI | WATER PUMP ASSY | 66 | KLB-E3066 | E3406 | 4N7657 | WATER PUMP ASSY | 106 | KLB-E3106 | RE8 | 21571-97227 | WATER PUMP ASSY | |
27 | KLB-E3571 | R210-5 NEW | new type | WATER PUMP ASSY | 67 | KLB-E3067 | E3408 | 4N7498 | WATER PUMP ASSY | 107 | KLB-E3107 | FE6 | 21571-Z5607 | WATER PUMP ASSY |
28 | KLB-E3571 | 6D14 NEW 6D15NEW HD800 | new type | WATER PUMP ASSY | 68 | KLB-E3068 | EF750 | 16100-2393 | WATER PUMP ASSY | 108 | KLB-E3108 | RD8 | WATER PUMP ASSY | |
29 | KLB-E3571 | 6D22 (GREASE) | ME94218 | WATER PUMP ASSY | 69 | KLB-E3069 | 6WG1 EI | WATER PUMP ASSY | 109 | KLB-E3109 | RF8 | WATER PUMP ASSY | ||
30 | KLB-E3030 | 6D31 HD700-5 | old type ME391343 | WATER PUMP ASSY | 70 | KLB-E3070 | 6WG1 DI | WATER PUMP ASSY | 110 | KLB-E3110 | PE6 | 21008-96073 | WATER PUMP ASSY | |
31 | KLB-E3031 | HD250 S4F ME996861 | WATER PUMP ASSY | 71 | KLB-E3071 | SK130-8 | WATER PUMP ASSY | 111 | KLB-E3111 | EK100 OLD | 16100-2571 | WATER PUMP ASSY | ||
32 | KLB-E3032 | HD250 HD400 HD450 4D31 | WATER PUMP ASSY | 72 | KLB-E3072 | 4D95 FORKLIF | 6202-63-1200 | WATER PUMP ASSY | 112 | KLB-E3112 | W06D | 16100-2532 | WATER PUMP ASSY | |
33 | KLB-E3033 | HD700-7 SK200-3/5/6 6D31 | new type ME993520 | WATER PUMP ASSY | 73 | KLB-E3073 | S6D140E | 6211-61-1401 | WATER PUMP ASSY | 113 | KLB-E3113 | H07D | 16100-2971 | WATER PUMP ASSY |
34 | KLB-E3034 | HD1250 6D22 OIL | ME155715 | WATER PUMP ASSY | 74 | KLB-E3074 | S6D140E small | 6212-61-1203 6212-61-1205 |
WATER PUMP ASSY | 114 | KLB-E3114 | J08C | 16100-3467 | WATER PUMP ASSY |
35 | KLB-E3035 | S6K E200B E320 | 5I-7693/1252989 | WATER PUMP ASSY | 75 | KLB-E3075 | PC650-3 S6D140 big | 6212-61-1305 | WATER PUMP ASSY | 115 | KLB-E3115 | J05C | 16100-3475 | WATER PUMP ASSY |
36 | KLB-E3036 | E307B SH60 4M40 | ME993473 | WATER PUMP ASSY | 76 | KLB-E3076 | M11 | 3803403 | WATER PUMP ASSY | 116 | KLB-E3116 | DEUTZ 1013 | 429547 | WATER PUMP ASSY |
37 | KLB-E3037 | E330 | 129-1169/2364420 | WATER PUMP ASSY | 77 | KLB-E3077 | B3.3 | WATER PUMP ASSY | 117 | KLB-E3117 | PC20 | WATER PUMP ASSY | ||
38 | KLB-E3038 | E330 C9 | 224-3253 | WATER PUMP ASSY | 78 | KLB-E3078 | QSB6.7 | 4891252/3900984 | WATER PUMP ASSY | 118 | KLB-E3118 | E320C | WATER PUMP ASSY | |
39 | KLB-E3039 | E3126 | 224-3255 | WATER PUMP ASSY | 79 | KLB-E3079 | E3306T | 2W8003 | WATER PUMP ASSY | 119 | ||||
40 | KLB-E3040 | E325B/C E3116 | 4W5719 | WATER PUMP ASSY | 80 | KLB-E3080 | E3304 E3306 | 2W8004 | WATER PUMP ASSY | 120 |
1Q:What is your brand?
1A:Our own brand: Mita Group and its range of excavator parts.
2Q:Do you have your own factory? Can we have a visit?
2A:Absolutely, you are alwayswelcome to visit our factory.
3Q:How do you control the quality of the products?
3A:Our factory was obtained the ISO9001CERTIFICATE.Every process of the production is strictly controlled. And all products will be inspected by QC before shipment.
4Q:How long is the delivery time?
4A:2 to 7 days for ex-stock orders. 15 to 30 days for production.
5Q:Can we print our company logo onproduct and package?
5A:Yes, but the quantity of the order is required. And we need you to offer the Trademark Authorization to us.
6Q:Can you provide OEM BRAND package?
6A:Sorry, we can only offer our company ACT BRAND package or neutral packing,blank package ifyou need, and the Buyers’ Brand as authorized.7Q:How long is the warranty period?7A:3 months /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
After-sales Service: | Online After-Sales |
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Warranty: | 3 Months |
Max.Head: | >150m |
Max.Capacity: | >400 L/min |
Driving Type: | Motor |
Material: | Cast Iron |
Samples: |
US$ 150/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
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Can Vacuum Pumps Be Used for Vacuum Furnaces?
Yes, vacuum pumps can be used for vacuum furnaces. Here’s a detailed explanation:
Vacuum furnaces are specialized heating systems used in various industries for heat treatment processes that require controlled environments with low or no atmospheric pressure. Vacuum pumps play a crucial role in creating and maintaining the vacuum conditions necessary for the operation of vacuum furnaces.
Here are some key points regarding the use of vacuum pumps in vacuum furnaces:
1. Vacuum Creation: Vacuum pumps are used to evacuate the furnace chamber, creating a low-pressure or near-vacuum environment. This is essential for the heat treatment processes carried out in the furnace, as it helps eliminate oxygen and other reactive gases, preventing oxidation or unwanted chemical reactions with the heated materials.
2. Pressure Control: Vacuum pumps provide the means to control and maintain the desired pressure levels within the furnace chamber during the heat treatment process. Precise pressure control is necessary to achieve the desired metallurgical and material property changes during processes such as annealing, brazing, sintering, and hardening.
3. Contamination Prevention: By removing gases and impurities from the furnace chamber, vacuum pumps help prevent contamination of the heated materials. This is particularly important in applications where cleanliness and purity of the processed materials are critical, such as in the aerospace, automotive, and medical industries.
4. Rapid Cooling: Some vacuum furnace systems incorporate rapid cooling capabilities, known as quenching. Vacuum pumps assist in facilitating the rapid cooling process by removing the heat generated during quenching, ensuring efficient cooling and minimizing distortion or other unwanted effects on the treated materials.
5. Process Flexibility: Vacuum pumps provide flexibility in the type of heat treatment processes that can be performed in vacuum furnaces. Different heat treatment techniques, such as vacuum annealing, vacuum brazing, or vacuum carburizing, require specific pressure levels and atmospheric conditions that can be achieved and maintained with the use of vacuum pumps.
6. Vacuum Pump Types: Different types of vacuum pumps can be used in vacuum furnaces, depending on the specific requirements of the heat treatment process. Commonly used vacuum pump technologies include oil-sealed rotary vane pumps, dry screw pumps, diffusion pumps, and cryogenic pumps. The choice of vacuum pump depends on factors such as required vacuum level, pumping speed, reliability, and compatibility with the process gases.
7. Maintenance and Monitoring: Proper maintenance and monitoring of vacuum pumps are essential to ensure their optimal performance and reliability. Regular inspections, lubrication, and replacement of consumables (such as oil or filters) are necessary to maintain the efficiency and longevity of the vacuum pump system.
8. Safety Considerations: Operating vacuum furnaces with vacuum pumps requires adherence to safety protocols. This includes proper handling of potentially hazardous gases or chemicals used in the heat treatment processes, as well as following safety guidelines for operating and maintaining the vacuum pump system.
Overall, vacuum pumps are integral components of vacuum furnaces, enabling the creation and maintenance of the required vacuum conditions for precise and controlled heat treatment processes. They contribute to the quality, consistency, and efficiency of the heat treatment operations performed in vacuum furnaces across a wide range of industries.
How Do Vacuum Pumps Affect the Performance of Vacuum Chambers?
When it comes to the performance of vacuum chambers, vacuum pumps play a critical role. Here’s a detailed explanation:
Vacuum chambers are enclosed spaces designed to create and maintain a low-pressure environment. They are used in various industries and scientific applications, such as manufacturing, research, and material processing. Vacuum pumps are used to evacuate air and other gases from the chamber, creating a vacuum or low-pressure condition. The performance of vacuum chambers is directly influenced by the characteristics and operation of the vacuum pumps used.
Here are some key ways in which vacuum pumps affect the performance of vacuum chambers:
1. Achieving and Maintaining Vacuum Levels: The primary function of vacuum pumps is to create and maintain the desired vacuum level within the chamber. Vacuum pumps remove air and other gases, reducing the pressure inside the chamber. The efficiency and capacity of the vacuum pump determine how quickly the desired vacuum level is achieved and how well it is maintained. High-performance vacuum pumps can rapidly evacuate the chamber and maintain the desired vacuum level even when there are gas leaks or continuous gas production within the chamber.
2. Pumping Speed: The pumping speed of a vacuum pump refers to the volume of gas it can remove from the chamber per unit of time. The pumping speed affects the rate at which the chamber can be evacuated and the time required to achieve the desired vacuum level. A higher pumping speed allows for faster evacuation and shorter cycle times, improving the overall efficiency of the vacuum chamber.
3. Ultimate Vacuum Level: The ultimate vacuum level is the lowest pressure that can be achieved in the chamber. It depends on the design and performance of the vacuum pump. Higher-quality vacuum pumps can achieve lower ultimate vacuum levels, which are important for applications requiring higher levels of vacuum or for processes that are sensitive to residual gases.
4. Leak Detection and Gas Removal: Vacuum pumps can also assist in leak detection and gas removal within the chamber. By continuously evacuating the chamber, any leaks or gas ingress can be identified and addressed promptly. This ensures that the chamber maintains the desired vacuum level and minimizes the presence of contaminants or unwanted gases.
5. Contamination Control: Some vacuum pumps, such as oil-sealed pumps, use lubricating fluids that can introduce contaminants into the chamber. These contaminants may be undesirable for certain applications, such as semiconductor manufacturing or research. Therefore, the choice of vacuum pump and its potential for introducing contaminants should be considered to maintain the required cleanliness and purity of the vacuum chamber.
6. Noise and Vibrations: Vacuum pumps can generate noise and vibrations during operation, which can impact the performance and usability of the vacuum chamber. Excessive noise or vibrations can interfere with delicate experiments, affect the accuracy of measurements, or cause mechanical stress on the chamber components. Selecting vacuum pumps with low noise and vibration levels is important for maintaining optimal chamber performance.
It’s important to note that the specific requirements and performance factors of a vacuum chamber can vary depending on the application. Different types of vacuum pumps, such as rotary vane pumps, dry pumps, or turbomolecular pumps, offer varying capabilities and features that cater to specific needs. The choice of vacuum pump should consider factors such as the desired vacuum level, pumping speed, ultimate vacuum, contamination control, noise and vibration levels, and compatibility with the chamber materials and gases used.
In summary, vacuum pumps have a significant impact on the performance of vacuum chambers. They enable the creation and maintenance of the desired vacuum level, affect the pumping speed and ultimate vacuum achieved, assist in leak detection and gas removal, and influence contamination control. Careful consideration of the vacuum pump selection ensures optimal chamber performance for various applications.
What Industries Commonly Rely on Vacuum Pump Technology?
Vacuum pump technology finds applications in various industries where creating and controlling vacuum or low-pressure environments is crucial. Here’s a detailed explanation:
1. Manufacturing and Production: Vacuum pumps are extensively used in manufacturing and production processes across multiple industries. They are employed for tasks such as vacuum molding, vacuum packaging, vacuum degassing, vacuum drying, and vacuum distillation. Industries like automotive, aerospace, electronics, pharmaceuticals, and food processing rely on vacuum pump technology to achieve precise and controlled manufacturing conditions.
2. Chemical and Pharmaceutical: The chemical and pharmaceutical industries heavily rely on vacuum pumps for numerous applications. These include solvent recovery, vacuum filtration, vacuum drying, distillation, crystallization, and evaporation. Vacuum pumps enable these industries to carry out critical processes under reduced pressure, ensuring efficient separation, purification, and synthesis of various chemical compounds and pharmaceutical products.
3. Semiconductor and Electronics: The semiconductor and electronics industries extensively use vacuum pumps for manufacturing microchips, electronic components, and electronic devices. Vacuum pumps are crucial in processes such as physical vapor deposition (PVD), chemical vapor deposition (CVD), etching, ion implantation, and sputtering. These processes require controlled vacuum conditions to ensure precise deposition, surface modification, and contamination-free manufacturing.
4. Research and Development: Vacuum pump technology is integral to research and development activities across scientific disciplines. It supports experiments and investigations in fields such as physics, chemistry, materials science, biology, and environmental science. Vacuum pumps facilitate processes like freeze drying, vacuum distillation, vacuum evaporation, vacuum spectroscopy, and creating controlled atmospheric conditions for studying various phenomena.
5. Food and Beverage: The food and beverage industry relies on vacuum pumps for packaging and preservation purposes. Vacuum sealing is used to extend the shelf life of food products by removing air and creating a vacuum-sealed environment that inhibits spoilage and maintains freshness. Vacuum pumps are also used in processes like freeze drying, vacuum concentration, and vacuum cooling.
6. Oil and Gas: In the oil and gas industry, vacuum pumps play a role in various applications. They are used for crude oil vacuum distillation, vacuum drying, vapor recovery, gas compression, and gas stripping processes. Vacuum pumps help maintain optimal conditions during oil refining, gas processing, and petrochemical manufacturing.
7. Environmental and Waste Management: Vacuum pumps are employed in environmental and waste management applications. They are used for tasks such as soil vapor extraction, groundwater remediation, landfill gas recovery, and wastewater treatment. Vacuum pumps facilitate the removal and containment of gases, vapors, and pollutants, contributing to environmental protection and sustainable waste management.
8. Medical and Healthcare: The medical and healthcare sectors utilize vacuum pumps for various purposes. They are used in medical equipment such as vacuum-assisted wound therapy devices, vacuum-based laboratory analyzers, and vacuum suction systems in hospitals and clinics. Vacuum pumps are also used in medical research, pharmaceutical production, and medical device manufacturing.
9. Power Generation: Vacuum pumps play a role in power generation industries, including nuclear power plants and thermal power plants. They are used for steam condensation, turbine blade cooling, vacuum drying during transformer manufacturing, and vacuum systems for testing and maintenance of power plant equipment.
10. HVAC and Refrigeration: The HVAC (Heating, Ventilation, and Air Conditioning) and refrigeration industries rely on vacuum pumps for system installation, maintenance, and repair. Vacuum pumps are used to evacuate air and moisture from refrigerant lines and HVAC systems, ensuring optimal system performance and efficiency.
These are just a few examples of industries that commonly rely on vacuum pump technology. The versatility and wide-ranging applications of vacuum pumps make them indispensable tools across numerous sectors, enabling precise control over vacuum conditions, efficient manufacturing processes, and scientific investigations.
editor by Dream 2024-05-07
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