Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table Platform

Product Details
Customization: Available
After-sales Service: Online
Warranty: 1year
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  • Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table Platform
  • Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table Platform
  • Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table Platform
  • Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table Platform
  • Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table Platform
  • Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table Platform
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  • Overview
  • Product Parameters
Overview

Basic Info.

Model NO.
SL0.5-1
Application
Workshop Crane, Shipboard Crane, Warehouse Crane, Building Crane
Lift Mechanism
Scissor Lift
Carrying Capacity
Weight Level
Moves
Stationary
Driven Type
Hydraulic
Running Mode
Stationary
Feature
Explosion-Proof, Insulating
Certification
CE
Parameter1
Scissor Lift Platform for Car
Parameter2
Lift Work Platform
Parameter3
Scissor Lift Platform Factory
Parameter4
Scissor Lift Platform Supplier
Parameter5
Double Scissor Lift Table
Parameter6
2m Fixed Lift Platform
Parameter7
Cargo Loading Lift Platform
Parameter8
Plaform Scissor Lift 2m
Parameter9
Scissor Lift Work Platform 1m
Parameter10
Work Table Platform
Parameter11
Goods Lift Platform
Parameter12
Battery Scissor Lift Platform
Parameter13
Scissor Lift Platform Cheap
Parameter14
Scissor Lift Table Cheap
Parameter15
2m Scissor Lift Platform
Transport Package
Wooden Box
Specification
customized
Trademark
DAAILIFT
Origin
China

Packaging & Delivery

Package Size
70.00cm * 120.00cm * 120.00cm
Package Gross Weight
500.000kg

Product Description

Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table Platform
Product Parameters
Model Loading Platform size Min/Max height Weight
HW1001 1000 1300*820 205-1000 200
HW1002 1000 1600*1000 205-1000 230
HW1003 1000 1700*850 240-1300 250
HW1004 1000 1700*1000 240-1300 260
HW1005 1000 2000*850 240-1300 260
HW1006 1000 2000*1000 240-1300 280
HW2001 2000 1300*850 230-1000 260
HW2002 2000 1600*1000 230-1000 290
HW2003 2000 1700*850 250-1300 320
HW2004 2000 1700*1000 250-1300 340
HW2005 2000 2000*850 250-1300 340
HW2006 2000 2000*1000 250-1300 360
HW4001 4000 1700*1200 250-1050 490
HW4002 4000 2000*1200 250-1050 520
HW4003 4000 2000*1000 300-1400 540
HW4004 4000 2000*1200 300-1400 560
HW4005 4000 2200*1000 300-1400 560
HW4006 4000 2200*1200 300-1400 580
double scissor lift
Model Loading platform size Min/Max height Weight
HWS1001 1000 1300*820 305-1780 300
HWS2001 2000 1300*850 360-1780 400
HWS4001 4000 1700*1200 500-2050 650
Customized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformCustomized Hydraulic Stationary Scissor Car Lift Fixed Scissor Lift Table PlatformStationary scissor lifts are essential equipment in various industries, used for lifting personnel, tools, and materials to elevated work areas. Designing them to prevent pinching is critical for ensuring safety, compliance, and operational efficiency. Here are the key reasons why pinch prevention is a crucial design consideration:
1. Operator and Worker Safety
Preventing Injuries: Scissor lifts have moving parts, particularly in the scissor mechanism, where gaps between the arms can create pinch points. If a person's fingers, hands, or clothing get caught in these gaps, it can lead to severe injuries, such as cuts, bruises, or even amputations.
Safe Operation: By eliminating pinch points, the risk of accidents during operation, maintenance, or repair is significantly reduced.
2. Compliance with Safety Standards
Regulatory Requirements: Many countries and regions have strict safety regulations (e.g., OSHA in the U.S., CE marking in Europe) that mandate the design of equipment to minimize hazards, including pinch points.
Liability Reduction: Compliance with these standards helps manufacturers and users avoid legal liabilities and penalties.
3. Enhanced Usability and Accessibility
User Confidence: A scissor lift designed to prevent pinching is more user-friendly, encouraging operators to use the equipment without fear of injury.
Ease of Maintenance: Maintenance personnel can work on the equipment more safely and efficiently when pinch hazards are minimized.
4. Protection of Clothing and Equipment
Avoiding Entanglement: Loose clothing, gloves, or tools can easily get caught in pinch points, leading to accidents or damage to personal protective equipment (PPE).
Preventing Damage: Pinch points can also damage tools or materials being lifted, affecting productivity and increasing costs.
5. Long-Term Durability and Reliability
Reduced Wear and Tear: Pinching can cause excessive stress on the scissor mechanism, leading to premature wear and potential mechanical failures.
Lower Maintenance Costs: By designing out pinch points, the equipment experiences less strain, resulting in fewer breakdowns and lower maintenance expenses.
6. Reputation and Trust
Brand Image: Manufacturers that prioritize safety in their designs build a reputation for reliability and quality, which can lead to increased customer trust and market share.
Customer Satisfaction: Users are more likely to recommend and repurchase equipment that prioritizes their safety and well-being.
How Pinch Prevention is Achieved in Design
To prevent pinching, manufacturers implement several design features:
Guards and Covers: Installing physical barriers to cover pinch points.
Smooth Edges: Rounding or smoothing edges to reduce the risk of injury.
Safety Sensors: Using sensors to detect obstructions and stop the lift if a pinch hazard is detected.
Clear Warning Labels: Providing visible warnings and instructions to operators about potential hazards.
Ergonomic Design: Ensuring that moving parts are spaced and aligned to minimize pinch risks.
Preventing pinching in stationary scissor lifts is a fundamental aspect of their design, driven by the need to protect users, comply with safety regulations, and ensure reliable operation. By addressing pinch hazards, manufacturers can create safer, more efficient, and longer-lasting equipment, ultimately benefiting both operators and businesses.

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