Improvement direction of chemical pump

Oct 13, 2020 Leave a message

Standardization is very helpful and meaningful to the manufacturing and application of chemical pumps. But: From the perspective of the high or low cost of life cycle time, what is the standardization of economic development like? Is it a detailed and cost-effective standardization of long-term improvement based on various practical application conditions? Or is it a rough standardization and cost-effective? When will the block of standardized project investment that can be retrieved in a long time due to the application of new technologies and the development of products be completed? How can we make each other have a consistent understanding of the specifications of chemical pumps without harming the rights and interests of either the chemical pump manufacturer or the chemical pump user? This kind of problem can only be answered based on conversations among the upgrading chemical pump application factories, industry associations and chemical pump manufacturers. The solution will be: from the user’s perspective, such as creating long-term strategic partner associations with distributors; creating different standardized levels within the established and defined different levels (such as structural characteristics of chemical pumps, distribution Commerce, series products, raw materials, equipment methods, etc.) and its integrated modular design structure. But the key is the "lifetime cost" problem.
The development potential of chemical pumps during their service life has not been fully tapped. How could this happen? Among the many reference answers that will be given, there is one reference answer that everyone will undoubtedly give: because the technical parameters of chemical pumps are different, the allowable service life and the load size of chemical pumps are different. .
The product cost, installation cost, energy consumption and maintenance cost of the chemical pump during operation are relatively easy to carry forward. However, the relative estimation of the maintenance cost of chemical pumps is more difficult to clarify: because the ineffectiveness and damage of chemical pumps are not determined by the pump itself, it usually suffers from continuously changing substances in the transported chemical plant and unique application standards. Of containment. Using the already grasped working experience of a certain type of chemical pump to estimate the maintenance cost of another type of chemical pump usually has considerable limitations, and the estimated results are only approximate and rough estimates.

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