Heavy-Duty Orange PVC Coated Gloves – Textured Grip Chemical-Resistant Canvas Cuff
Product Description:
Built for durability and dependable protection, these Orange PVC Chemical-Resistant Gloves are designed to perform in rugged work environments involving chemicals, oils, and slippery conditions. The sandy-textured PVC coating ensures excellent abrasion resistance and anti-slip grip, even in wet or oily applications.
Function | Anti-slip,Wear-resistant,Oil-resistant,Waterproof | Machine washable | Yes |
Cuff | Canvas Cuff | Material | Polyester + PVC |
Application | Warehouse,Mechanical,Agriculture | Size | 10 |
Logo | Customized Logo (heat transfer printing) | Package | 12 Pairs/bag,120 Pairs/CTN |
Sample | Free Sample | Color | Orange |
The gloves feature a reinforced canvas safety cuff, providing extended wrist protection and easy donning/doffing. The bright orange color improves visibility in low-light or high-traffic worksites, enhancing safety awareness. These gloves are ideal for industrial workers, sanitation crews, agriculture, and chemical handling operations.

Applications:
- Chemical Processing & Transport – Protects hands and wrists from liquid chemicals, acids, and alkalis.
- Industrial Cleaning & Degreasing – Suitable for exposure to oils, detergents, and solvents.
- Agricultural Spraying & Fertilizer Handling – Shields hands from pesticides and corrosive substances.
- Oilfield & Marine Work – Offers secure grip and high visibility in wet, greasy environments.
- Waste Management & Sanitation – Prevents contact with hazardous liquids and rough materials.
Key Features:
- Sandy-Textured PVC Coating:Provides secure grip and high abrasion resistance on wet, oily, or slippery surfaces.
- Bright Orange High-Visibility Shell:Enhances worker safety by making hand movements easily visible.
- Canvas Safety Cuff:Durable gauntlet-style cuff for forearm protection and quick removal.
- Chemical-Resistant Protection:Reliable barrier against acids, alkalis, oils, and cleaning agents.
- Durable & Comfortable:Flexible construction allows for freedom of movement during repetitive tasks.