Custom Safety Jacket manufacturer
in China

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Annual production up to 1 million PCS & lower wholesale price.

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Compliance of ISO and EN, strictly production to guarantee quality.

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Your Trusted Source for Safety Jacket

At Vissafety, we specialize in producing high-quality reflective jackets tailored to your specific needs. With 16 years of production experience, our advanced manufacturing process ensures each vest meets rigorous safety standards, offering superior visibility and durability. With 10 production lines, we efficiently handle large orders, ensuring timely delivery to keep your business on track. We know your brand identity is crucial, which is why we offer customizable logos and unique styles that help your brand stand out. Serving clients across Europe, North America, and South America, we are committed to providing exceptional customer service and transparent communication throughout the entire process.

Our Revolutionary Products

Focus on high visibility clothing manufacturing.

Class 3 Bomber Jacket

Class 3 Quilted Jacket

Class E Bib Pants

Class 3 Rip-stop Softshell

Class 3 Blak Bottom Softshell

ODM Service:

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Custom Logos

Print Logos for you

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Material Options for you

Please contact us for the materials which are not listed as below.

150D Oxford with PU Coating

300D Oxford with PU coating

Anti-static and FR Oxford

Rip-stop Oxford fabric

Sew-on reflective fabric

Two-tone Reflective Tapes

Prismatic Tapes in different colors

Heat transfer tapes

What is fluorescent fabric?

Fluorescent fabric is a type of textile that is designed to emit bright, vivid colors under normal lighting conditions and often glows under ultraviolet (UV) light. These fabrics are commonly used for high-visibility clothing, safety gear, fashion, and decorative purposes. Here are some key characteristics and types of fluorescent fabrics based on the provided sources:

Characteristics

  • High Visibility: Fluorescent fabrics are designed to be highly visible, making them ideal for safety clothing and gear.
  • UV Reactive: Many fluorescent fabrics glow under UV light, enhancing their visibility in low-light conditions.
  • Bright Colors: These fabrics come in a range of bright, eye-catching colors such as neon yellow, pink, green, blue, red, and orange.
  • Material Composition:They can be made from various materials, including polyester, spandex, and cotton blends.

Types of Fluorescent Fabrics

  • Stretch Fabrics:These include spandex and other stretchable materials that are often used in activewear and costumes. They are available in various patterns and colors, and some are UV reactive.
  • Reflective Fabrics: These fabrics combine fluorescent colors with reflective properties, enhancing visibility in both  daylight and nighttime conditions.
  • Glow in the Dark Fabrics: These fabrics are designed to glow in the dark after being exposed to light. They are often used for safety gear and decorative purposes.
  • Printed Fabrics: Fluorescent fabrics can also feature various printed designs, adding an extra layer of visual interest.

Applications

  • Safety Gear: High-visibility vests, jackets, and other safety clothing often use fluorescent fabrics to ensure the wearer is easily seen in various lighting conditions.
  • Fashion and Costumes: Fluorescent fabrics are popular in fashion for creating bold, attention-grabbing outfits and costumes.
  • Decorative Uses: These fabrics are also used in events and parties to create striking visual effects, especially under UV lighting.

Examples

  • Etsy: Offers a variety of fluorescent fabrics, including iridescent reflective stretch fabrics, neon woven fabrics, and luminous fiber optic fabrics.
  • Funki Fabrics: Provides a range of UV reactive fluorescent fabrics with various prints and designs, all made  in the UK.
  • Luminosos Fluorescentes: Specializes in UV fluorescent fabrics available in different materials like satin, lycra, and tulle, suitable for events and parties.
  • Amazon: Sells glow in the dark fabrics that charge under light and provide illumination in dark conditions, made from polyester fiber.

In summary, fluorescent fabrics are versatile textiles known for their bright colors and enhanced visibility, making them suitable for a wide range of applications from safety gear to fashion and decorative uses.

What is reflective material?

Reflective material, also known as retroreflective material, is a specialized type of material designed to reflect light back towards its source, making it highly visible in low-light conditions. It is commonly used in safety apparel, road signs, and other applications where enhanced visibility is crucial. Here are the key points about reflective material based on the provided sources:

Composition

Reflective material is typically composed of microscopic glass beads or exposed retroreflective lenses bonded to a polymer layer or fabric backing. These tiny glass beads or lenses act like mirrors, reflecting light back towards the source in a prism-like fashion.

Working Principle

When light from a source like vehicle headlights hits the reflective material, the microscopic glass beads or lenses reflect a significant portion of that light directly back towards the light source. This makes the material appear to “glow” or shine brightly when viewed from an angle close to the light source, enhancing visibility.

Types of Reflective Materials

  • Transfer Films: These have an adhesive backing and can be heat-applied to fabrics like t-shirts.
  • Fabric Trims: Reflective lenses are bonded to a durable cloth backing, which is then sewn onto garments like jackets and vests.
  • Reflective Fabrics: The reflective lenses are directly bonded to the fabric, creating a reflective surface.
  • Color Reflective Fabrics: Instead of silver, these fabrics reflect various colors by using different coating techniques.
  • Gradient Reflective Fabrics: These fabrics transition gradually from colored to silver reflective areas, creating a dynamic visual effec

Applications

  • Safety apparel for construction workers, firefighters, and others working in low-light conditions.
  • Athletic and casual wear for enhanced visibility during outdoor activities.
  • Road signs, traffic cones, and other traffic safety equipment.
  • Fashion and decorative applications, leveraging the unique visual properties of reflective materials.

Manufacturers

Major manufacturers like 3M produce a wide range of reflective materials, including the Scotchlite series, which are designed for various applications and performance requirements.  Other companies like Chinastars also offer reflective fabrics with customizable colors, patterns, and properties. In summary, reflective material is engineered to reflect light back towards its source, making it highly visible in low-light conditions. It is widely used in safety apparel, traffic equipment, and increasingly in fashion and decorative applications due to its unique visual properties.

GlobalStandardsFor high visibility clothing

What is EN ISO 20471 ?

EN ISO 20471 is an international standard that specifies the requirements for high visibility clothing designed to make the wearer more noticeable in hazardous situations, both during the day and at night. This standard has replaced the previous EN 471 standard.

Key Aspects of EN ISO 20471

Purpose

The primary goal of EN ISO 20471 is to ensure that high visibility clothing provides conspicuity of the wearer in any light condition when viewed by operators of vehicles or other mechanized equipment during daylight and under illumination by vehicle headlights in the dark.

Classification

EN ISO 20471 classifies high visibility clothing into three classes based on the minimum areas of fluorescent and retroreflective materials used:

  • Class 1: Provides the lowest level of visibility. Suitable for low-risk environments with traffic speeds up to 30 km/h. Requires at least 0.14 m² of fluorescent material and 0.10 m² of retroreflective material.
  • Class 2: Provides intermediate visibility. Suitable for environments with traffic speeds up to 60 km/h. Requires at least 0.50 m² of fluorescent material and 0.13 m² of retroreflective material.
  • Class 3: Provides the highest level of visibility. Suitable for high-risk environments with traffic speeds exceeding 60 km/h. Requires at least 0.80 m² of fluorescent material and 0.20 m² of retroreflective material. Class 3 garments must cover the torso and have either sleeves with retroreflective bands or full-length trouser legs with retroreflective bands.

Design Requirements

  • 360° Visibility: The clothing must ensure visibility from all angles, including the rear.
  • Reflective Strips: Reflective strips must be at least 50 mm wide, and the space between two strips must be at least 50 mm. The distance from the end of the garment to the reflective strip must also be at least 50 mm.
  • Combination Options: Class 3 visibility can be achieved by combining two Class 2 garments, such as a jacket and trousers, provided they meet the specified requirements when worn together.

Testing and Certification

The standard includes performance requirements for color and retroreflection, as well as for the minimum areas and placement of high-visibility materials. Garments are tested to ensure they maintain their visibility after repeated use and washing.

In summary, EN ISO 20471 ensures that high visibility clothing provides effective visibility in various hazardous environments, enhancing the safety of workers by making them more noticeable to vehicle operators and other machinery users.

What is ANSI/ISEA 107-2020?

ANSI/ISEA 107-2020 is the American National Standard for High-Visibility Safety Apparel (HVSA). This standard outlines the performance requirements for high-visibility clothing designed to provide visibility to the wearer under any light conditions, both day and night, particularly in hazardous environments.

Key Updates and Features

Performance Requirements

The standard specifies requirements for color, retroreflection, and the configuration of materials used in high-visibility clothing. These requirements ensure that the apparel provides adequate visibility to the user in various lighting conditions.

Changes from Previous Versions

  • Removal of High-Visibility Accessories Criteria: The 2020 update removed the criteria for high-visibility accessories, focusing instead on the configurations and design requirements that contribute to the Type-Performance Class designation.
  • Single-Use Disposable Coveralls: The standard now includes specific criteria for single-use disposable coveralls, which must comply with the minimum material amounts and color requirements. These coveralls have unique marking requirements and material integrity standards applicable only to single-use items.
  • Updated Test Methods: The test methods have been updated to align more closely with other material integrity tests and to recognize current versions used for evaluating materials.
  • Nighttime Luminance Measurement: The standard introduces optional language allowing manufacturers to test the overall nighttime luminance of a garment according to ASTM E1501.

Classification

The standard classifies high-visibility clothing into different types and performance classes based on the work environment and the level of protection needed:

  • Type O (Off-Road): For workers not exposed to traffic.
  • Type R (Roadway): For workers exposed to traffic and working against complex backgrounds.
  • Type P (Public Safety): For emergency and incident responders and law enforcement personnel in both roadway and off-road environments.

Importance of High-Visibility Safety Apparel

High-visibility safety apparel is crucial for reducing job injuries and fatalities by making workers more noticeable. Bright colors and retroreflective materials enhance visibility, especially in low-light conditions such as dawn, dusk, or night, thereby helping to prevent accidents. In summary, ANSI/ISEA 107-2020 sets comprehensive guidelines for high-visibility safety apparel, ensuring that workers are visible and safe in various hazardous environments. The updates in the 2020 version reflect advancements in material testing and the inclusion of new garment types like single-use disposable coveralls.

What is CSA Z96?

CSA Z96 is the Canadian Standards Association standard for high-visibility safety apparel (HVSA). It sets out the requirements for clothing designed to make workers more visible in hazardous situations, under any light conditions, including illumination by vehicle headlights. Here are the key aspects of CSA Z96:

Purpose and Scope

  • Visibility: The standard aims to enhance the visibility of workers to prevent accidents and injuries by making them more noticeable to vehicle operators and other machinery users.
  • Performance Requirements: It includes specifications for the color, retroreflection, and minimum areas of high-visibility materials, as well as their placement on garments.

Classification

CSA Z96 classifies HVSA into different classes based on the amount of high-visibility material and the configuration of retroreflective materials:

  • Class 1: Provides the lowest level of visibility, suitable for low-risk environments.
  • Class 2: Offers superior visibility with moderate body coverage, requiring bright or fluorescent background material covering the torso and Level 1 or 2 retroreflective trim.
  • Class 3: Provides the highest level of visibility, suitable for high-risk environments, with extensive coverage of high-visibility materials.

Levels of Retroreflective Performance

  • Level FR: The lowest level of retroreflectivity, with a minimum width of 19 mm for retroreflective trim, and must be flame resistant.
  • Levels 1 and 2: Require retroreflective trim to be at least 50 mm wide, with Level 2 offering the highest retroreflective performance.

Design and Configuration

  • Tape Placement: The standard specifies the placement of retroreflective tape, including two vertical stripes on the front, a horizontal stripe encircling the waist, and an X pattern on the back.
  • Ergonomics and Comfort: The design must consider the ergonomics and comfort of the wearer, ensuring that the HVSA does not impede movement or cause discomfort.

Updates and Harmonization

  • Technical Harmony: The standard is designed to be in technical harmony with ANSI/ISEA 107 and ISO 20471, ensuring consistency across different regions and standards.
  • Recent Updates: The fourth edition, published in 2022, includes updates to abbreviations and definitions, reference publications, and specific requirements for bib-style overalls, among other changes.

Application and Recommendations

  • Hazard Assessment: The standard recommends conducting a hazard assessment to determine the appropriate class and level of HVSA based on factors such as vehicle speed, volume, light conditions, and other hazards like flame exposure.
  • Guidance for Use: Annex A provides advice on the application of HVSA to specific risk categories and job types, emphasizing the importance of high contrast between clothing and the work environment.

In summary, CSA Z96 provides comprehensive guidelines for high-visibility safety apparel, ensuring that workers are visible and safe in various hazardous environments. The standard covers performance requirements, classification, design, and application recommendations to enhance worker safety.

What is AS/NZ5 1906.4:2010 8 AS/NZ5 4602.1:2011?

AS/NZS 1906.4:2010 and AS/NZS 4602.1:2011 are Australian and New Zealand standards related to high-visibility safety garments and materials.

AS/NZS 1906.4:2010:

  • Titled “Retroreflective materials and devices for road traffic control purposes – High-visibility materials for safety garments”
  • Specifies the requirements for high-visibility materials used in safety garments, including:
    • Photometric and colorimetric properties
    • Physical properties
    • Classification into different material classes (F, RF, NF, R)
  • Covers testing methods for properties like color, retroreflection, durability (UV exposure, washing, abrasion, etc.)
  • Ensures the materials provide adequate visibility and durability for use in safety garments.

 

AS/NZS 4602.1:2011:

  • Titled “High visibility safety garments – Garments for high risk applications”
  • Specifies the design requirements for high-visibility safety garments made from materials compliant with AS/NZS 1906.4.
  • Classifies garments into Day Use (Class D), Night Use (Class N), and Day/Night Use (Class D/N) based on visibility needs.
  • Outlines the minimum areas of fluorescent and retroreflective materials required for each garment class
  • Provides guidelines on garment design, including patterns for retroreflective tape placement.

In summary, AS/NZS 1906.4:2010 covers the material requirements, while AS/NZS 4602.1:2011 specifies the garment design and construction requirements using those high-visibility materials. Together, these standards ensure high-visibility safety garments provide adequate visibility and durability for workers in high-risk environments during day, night, or both conditions.

How to make sure the products are passed the standands accordingly

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Could we make third-party Certificates?

The third party certificates can also arranged for you.

We're There Every Step of The Way

Step 1: Make samples (3-7 days)

Step 2: Materials production (7-14 days)

Step 3: Cutting and sewing (20-30 days)

Step 4: quality checking and packing (3-7 days)

Step 5: Shipping methods

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The FAQs About safety Jacket

  • Our safety jackets are certified to meet or exceed global safety standards such as ANSI/ISEA 107-2020 for North America and EN ISO 20471 for Europe. These certifications ensure that the jackets are suitable for use in environments that require high visibility for safety.
  • Yes, we offer customization services including embroidery and printing to add your company logo or other safety markings. Our team can assist you with the placement and size of logos to ensure that they are visible and comply with safety regulations.
  • Our safety jackets are made from high-quality, durable materials designed for visibility and protection. They typically include waterproof and windproof layers, thermal insulation, and high visibility reflective materials suitable for various weather conditions.
  • To maintain the integrity of your safety jackets, we recommend washing them in cool water with mild detergent and hanging them to dry. Avoid using bleach and do not iron the reflective areas. Regular care will help extend the life of the jacket and maintain its protective features.
  • Our safety jackets are available in a range of sizes from Small to 5XL to accommodate various body types. We can also provide size charts to help you select the correct sizes for your team.
  • Each jacket is individually folded and placed in a poly bag for protection. Bulk orders are securely packed in cartons to prevent damage during transit and ensure that they arrive in pristine condition.
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