Self-propelled Scissor Lift Platform
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Self-propelled Scissor Lift Platform

Surface Treatment Processes for Self-Propelled Scissor Lifts: Powder Coating and Electrocoating
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Product Introduction

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Model Number   MSL06 MSL08 MSL10 MSL12
Max platform height mm 6000 8000 10000 11800
Max working height mm 8000 10000 12000 13800
Load capacity kg 300 300 300 300
Maximum height when closing (guardrail stands up) mm 2150 2275 2400 2525
Maximum height when closing (guardrail removed) mm 1190 1315 1440 1565
Total length mm 2400 2400 2400 2400
Total width mm 1150 1150 1150 1150
Platform size mm 2270x1150 2270x1150 2270x1150 2270x1150
Extended platform Length mm 900 900 900 900
Minimum ground clearance (closed state) mm 110 110 110 110
Minimum ground clearance (lifting state) mm 20 20 20 20
Wheelbase mm 1850 1850 1850 1850
Minimum turning radius (inner wheel) mm 0 0 0 0
Minimum turning radius (outer wheel) mm 2100 2100 2100 2100
Machine moving speed (closed state) km/h 3.5 3.5 3.5 3.5
Machine moving speed (lifting state) km/h 0.8 0.8 0.8 0.8
Rise/fall speed sec 70/80 70/80 70/80 70/80
Battery V/Ah 4x6/210 4x6/210 4x6/210 4x6/210
charger V/A 24/25 24/25 24/25 24/25
Maximum climbing ability % 20 20 20 20
Working maximum allowable angle / 2-3° 2-3° 2-3° 2-3°
Driven / Double front wheel
Hydraulic brake wheel / Double rear wheel
Wheel size / Φ381x127 Φ381x127 Φ381x127 Φ381x127
extended platform load capacity kg 113 113 113 100
Net weight kg 1900 2080 2490 2760

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Surface Treatment Processes for Self-Propelled Scissor Lifts: Powder Coating and Electrocoating

Self-propelled mobile scissor lifts typically employ two metal surface treatment processes: powder coating and electrocoating (e-coating). Both protect the steel structure from corrosion and wear, but differ in appearance, durability, application methods, and cost.

 

1. Powder Coating

 

Powder coating for self-propelled scissor lifts involves electrostatically spraying dry powder onto the metal surface, followed by baking at high temperatures to form a hard, thick coating. This process results in a thicker coating (60–120 μm) with strong impact resistance. The surface is smooth and glossy, offering excellent decorative effects. It is ideal for outdoor environments, resisting UV rays and fading. Furthermore, it is simple to apply, offers a wide range of colors, and is relatively inexpensive.

 

2. Electrocoating

 

Electrocoating for self-propelled mobile scissor lifts involves immersing the metal components in an electrocoating tank. Under the influence of electric current, the coating forms a uniform, extremely fine, and corrosion-resistant film that can even penetrate into concealed areas.

This process results in a highly uniform coating, including internal cavities and welds. The coating thickness is typically 15–35 μm, thin yet with superior corrosion resistance, approaching automotive-grade protection standards.

It is the best choice for corrosion protection among common metal treatment processes.

 

3. Price Differences

 

Powder Coating – Lower cost, approximately 20-40% cheaper than electrophoresis, and simpler equipment, with lower labor and material costs.

Electrophoresis – Higher cost due to:

Requirement for large electrophoresis tanks

Strict pretreatment requirements

High energy consumption

Therefore, the price of electrophoresis versions of self-propelled scissor lifts is typically 1.2 to 1.5 times that of powder-coated versions. If a topcoat (powder or paint) is applied after electrophoresis, the total cost will increase further.

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