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As more warehouses and distribution centers optimize their storage capacity by reducing aisle width to add more rack positions, narrow-aisle operation scenarios have put forward higher targeted requirements for electric material handling equipment. Buyers who are looking for suitable electric forklift solutions for such scenarios need to evaluate multiple dimensions based on their actual operation conditions, instead of only referring to basic nominal parameters of general models.
The first core consideration is the accurate matching of actual aisle width. Before selection, the operation team should measure the net clear width of all involved passages in daily work, excluding the nominal aisle size in the initial warehouse design. The measurement should also reserve reasonable safety redundancy by taking protruding parts of shelves, suspended pipeline facilities on the top of aisles, and reserved space for pedestrian avoidance into full account. Avoid selecting equipment whose nominal minimum turning or passing width is too close to the actual aisle size, so as to reduce the risk of frequent scratches on equipment, goods and shelf structures in daily continuous operation.
The second key point is the matching of load and lifting performance. Buyers should sort out the actual weight of conventional transported goods, and confirm the remaining effective load capacity at the maximum required lifting height, rather than only referring to the rated load parameter at the low lifting position. When the forklift mast rises to the height for high-position goods storage, the effective load will decrease within a reasonable range, which should fully match the weight of goods stored on the top layers of the racks, to ensure stable and safe operation in all daily operation links.
Third, evaluate the power configuration according to actual operation intensity. The purchasing team can count the single-shift continuous working hours, the number of working shifts per day, and the available resting or intermittent charging time in the operation schedule. It is not necessary to blindly pursue oversized battery configuration to avoid unnecessary cost waste, and choose matching battery capacity and supporting charging schemes to meet the continuous operation demand under normal working conditions.
The last important part is the matching of operation auxiliary configurations. The relatively narrow operation space will limit the operator’s viewing angle to a certain extent, so selecting models with practical operation auxiliary, prompt and sensing configurations can effectively reduce the probability of misoperation, lower the threshold of operator skill training, and ensure long-term stable operation efficiency of the whole warehouse.
