What is the reason for the short stroke length of the plunger pump

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The stroke length of a plunger pump is the distance the plunger or piston travels within the pump cylinder during each pumping cycle. There may be several reasons or considerations for the short stroke of the plunger pump: 1. Pressure and flow control: Piston pumps are often used in applications where precise control of pressure and flow is critical. Shorter strokes allow for more accurate regulation of these parameters because the pump can cycle at a higher frequency and adjust flow output more quickly. 2. High RPM operation: Shorter strokes allow the pump to run at higher revolutions per minute (RPM) without excessive wear or mechanical stress. This may be important where high flow is required but the physical limitations of the pump prevent the use of longer strokes at high RPM. 3. Reduced Wear and Maintenance: Longer strokes cause increased wear on pump components including plungers, seals and valves. Shorter strokes help extend the life of these components and reduce the frequency of maintenance and replacement. 4. Compact design: Short-stroke plunger pumps can be more compact and save space. This is especially beneficial for applications where space is limited or where the pump needs to be integrated into a smaller system. 5. Efficiency and energy consumption: In some cases, a shorter stroke may increase pump efficiency and reduce energy consumption. Shorter strokes reduce wasted energy due to internal friction and losses. KR-L-045D-LS-17-20-NN-N-3-C3NF-A6N-PLB-NNN-NNN KRL045DLS1720NNN3C3NFA6NPLBNNNNNN KR-R-045D-EA-21-10-NN-N-3-C2NK-A6N-KNB-NNN-NNN KRR045DEA2110NNN3C2NKA6NKNBNNNNNN KR-L-045D-RP-20-12-NN-N-3-C2NF-A6N-AAA-NNN-NNN KRL045DRP2012NNN3C2NFA6NAAANNNNNN KR-R-045D-PC-21-NN-NN-N-3-K2NF-A6N-AAA-NNN-NNN KRR045DPC21NNNNN3K2NFA6NAAANNNNNN KR-R-045D-LB-15-20-NN-N-3-C2NM-A6N-KNB-NNN-NNN KRR045DLB1520NNN3C2NMA6NKNBNNNNNN KR-L-045D-PC-21-NN-NN-N-3-K2AG-A6N-PLB-NNN-NNN KRL045DPC21NNNNN3K2AGA6NPLBNNNNNN KR-R-038C-LS-21-20-NN-N-3-C2NG-A6N-KNB-NNN-NNN KRR038CLS2120NNN3C2NGA6NKNBNNNNNN KR-R-045D-LS-21-20-NN-N-3-C2NR-A6N-PLB-NNN-NNN KRR045DLS2120NNN3C2NRA6NPLBNNNNNN KR-L-038C-LS-25-20-NN-N-3-C3AG-A6N-PLB-NNN-NNN KRL038CLS2520NNN3C3AGA6NPLBNNNNNN KR-R-038C-LS-26-20-NN-N-3-C3NF-A6N-PLB-NNN-NNN KRR038CLS2620NNN3C3NFA6NPLBNNNNNN KR-R-045D-LB-18-20-NN-N-3-C3BK-A6N-KNB-NNN-NNN KRR045DLB1820NNN3C3BKA6NKNBNNNNNN KR-R-038C-LS-25-20-NN-N-3-C3RG-A6N-AAA-NNN-NNN KRR038CLS2520NNN3C3RGA6NAAANNNNNN KR-R-038C-LB-14-25-NN-N-3-C2AG-A6N-AAA-NNN-NNN KRR038CLB1425NNN3C2AGA6NAAANNNNNN KR-R-038C-RP-21-20-NN-N-3-C2NG-A6N-KNB-NNN-NNN KRR038CRP2120NNN3C2NGA6NKNBNNNNNN KR-R-045D-RP-21-20-NN-N-3-C2BG-A6N-PLB-NNN-NNN KRR045DRP2120NNN3C2BGA6NPLBNNNNNN KR-R-038C-EN-21-12-NN-E-3-C3BK-A6N-KNB-NNN-NNN KRR038CEN2112NNE3C3BKA6NKNBNNNNNN KR-R-038C-LS-26-29-NN-N-3-C3BG-A6N-AAA-NNN-NNN KRR038CLS2629NNN3C3BGA6NAAANNNNNN KR-R-038C-LS-26-29-NN-N-3-C2AG-A6N-AAA-NNN-NNN KRR038CLS2629NNN3C2AGA6NAAANNNNNN KR-R-045D-LS-21-20-NN-N-3-K2TG-A6N-AAA-NNN-NNN KRR045DLS2120NNN3K2TGA6NAAANNNNNN KR-R-038C-LS-26-20-NN-N-3-C2BG-A6N-AAA-NNN-NNN KRR038CLS2620NNN3C2BGA6NAAANNNNNN 6. Noise Reduction: Shorter strokes contribute to quieter operation because the pump cycles more often but displaces less. This can be important for applications where noise levels need to be minimized. 7. Application details: Different industries and applications require different pump characteristics. The decision to use short strokes can be based on the specific requirements of the application, including required pressure, flow, reliability and operating conditions. 8. Controlled Fluid Delivery: Short stroke plunger pumps are often used in applications that require precise metering or metering of fluids. Short strokes allow for better control of the amount of fluid delivered per cycle, which is important in industries such as chemical processing, pharmaceuticals and water treatment. 9. Viscous fluids: Short-stroke plunger pumps may be better suited for pumping viscous fluids or materials with higher resistance to flow. The shorter stroke helps create the pressure needed to move these materials efficiently. 10. Pulsation suppression: The shorter stroke helps reduce the pulsation of the pump discharge flow. In some applications where a steady flow is required, such as in medical equipment or precision instruments, pulsation may be undesirable. 11. Cost Efficiency: Short stroke plunger pumps are more cost effective to manufacture and maintain as they may require simpler mechanisms and less material. 12. Temperature control: short stroke helps to control the temperature rise inside the pump. In some applications, longer strokes may generate more heat due to increased friction and pressure changes, which may affect the fluid being pumped. 13. Safety: Short-stroke plunger pumps have advantages in applications where safety is concerned. The smaller displacement per stroke reduces the potential effects of sudden pressure spikes or other operational anomalies. 14. Corrosive or abrasive fluids: When pumping corrosive or abrasive fluids, short stroke plunger pumps may be preferred. The reduced stroke length helps minimize wear and deterioration of pump components exposed to these challenging fluids. 15. Start-up and shutdown: Short-stroke pumps can reach the required working pressure faster during start-up and achieve faster shutdown when required. This is useful in situations where intermittent operation is common. KR-R-045D-EB-10-15-NN-N-3-C2BG-A6N-AAA-NNN-NNN KRR045DEB1015NNN3C2BGA6NAAANNNNNN KR-L-045D-LB-18-20-NN-N-3-C2NF-A6N-PLB-NNN-NNN KRL045DLB1820NNN3C2NFA6NPLBNNNNNN KR-R-045D-LB-18-20-NN-N-3-C2NF-A6N-PLB-NNN-NNN KRR045DLB1820NNN3C2NFA6NPLBNNNNNN KR-R-038C-LS-25-20-NN-N-3-K2BG-A6N-AAA-NNN-NNN KRR038CLS2520NNN3K2BGA6NAAANNNNNN KR-L-038C-LS-17-14-NN-N-3-C2AG-A6N-PLB-NNN-NNN KRL038CLS1714NNN3C2AGA6NPLBNNNNNN KR-R-045D-LS-20-18-NN-N-3-C2BG-A6N-PLB-NNN-NNN KRR045DLS2018NNN3C2BGA6NPLBNNNNNN KR-R-038C-PC-26-NN-NN-N-3-C3NR-A6N-AAA-NNN-NNN KRR038CPC26NNNNNN3C3NRA6NAAAANNNNNNN KR-L-045D-EE-21-10-NN-N-3-C2NF-A6N-PLB-NNN-NNN KRL045DEE2110NNN3C2NFA6NPLBNNNNNN KR-R-045D-LS-16-20-NN-N-3-C2NG-A6N-KNB-NNN-NNN KRR045DLS1620NNN3C2NGA6NKNBNNNNNN KR-R-045D-LS-21-18-NN-N-3-K1RG-A6N-AAA-NNN-NNN KRR045DLS2118NNN3K1RGA6NAAANNNNNN KR-L-038C-PC-21-NN-NN-N-3-C3VG-A6N-AAA-NNN-NNN KRL038CPC21NNNNNN3C3VGA6NAAAANNNNNNN KR-R-038C-EA-25-12-NN-N-3-C2AG-A6N-PLB-NNN-NNN KRR038CEA2512NNN3C2AGA6NPLBNNNNNN KR-R-038C-LS-18-15-NN-N-3-C2NF-A6N-AAA-NNN-NNN KRR038CLS1815NNN3C2NFA6NAAANNNNNN KR-R-038C-EA-25-12-NN-N-3-C2AG-A6N-AAA-NNN-NNN KRR038CEA2512NNN3C2AGA6NAAANNNNNN KR-L-045D-LS-18-16-NN-N-3-C3NF-A6N-PLB-NNN-NNN KRL045DLS1816NNN3C3NFA6NPLBNNNNNN KR-R-045D-RP-21-20-NN-N-3-C3NR-A6N-AAA-NNN-NNN KRR045DRP2120NNN3C3NRA6NAAANNNNNN KR-R-045D-LS-21-12-NN-N-3-C2NG-A6N-KNB-NNN-NNN KRR045DLS2112NNN3C2NGA6NKNBNNNNNN KR-L-045D-LS-18-20-NN-N-3-C2NG-A6N-KNB-NNN-NNN KRL045DLS1820NNN3C2NGA6NKNBNNNNNN KR-R-038C-LS-25-20-NN-N-3-C3AK-A6N-KNB-NNN-NNN KRR038CLS2520NNN3C3AKA6NKNBNNNNNN KR-R-045D-LS-21-18-NN-N-3-C2RG-A6N-AAA-NNN-NNN KRR045DLS2118NNN3C2RGA6NAAANNNNNN 16. Adaptability: Short-stroke pumps can be designed with a wider range of materials and configurations, enabling them to adapt to different operating conditions and requirements. 17. Customization: Short-stroke pumps can be customized to more easily fit specific applications. Engineers can customize the stroke length to meet the specific needs of the process. 18. Hygiene and cleanability: Short-stroke plunger pumps are easier to clean and maintain, which is important for applications where hygiene and cleanliness are critical, such as the food and beverage industry. 19. Low NPSH (Net Positive Suction Head) Requirements: Short stroke pumps may work well where available NPSH is limited, as they generally require lower NPSH values compared to long stroke pumps. 20. Versatility: Due to their adaptability and ability to handle different fluids and conditions, short-stroke piston pumps are used in a wide range of industries from agriculture and mining to manufacturing and oil and gas. Ultimately, the selection of piston pump stroke length should be based on a thorough analysis of specific application requirements, fluid properties, system design, and operating goals. As mentioned above, the benefits of short strokes can significantly impact the overall performance, reliability and efficiency of pumps in various industries and scenarios.

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