Need help? Ask an expert your product and hand safety questions
Need help? Ask an expert your product and hand safety questions
Choose impact-resistant work gloves based on the actual workplace hazard, required protection, material, construction, grip, dexterity, fit and applicable standards.
B2B Buyer & PPE Selection GuideChoosing impact gloves starts with the workplace hazard, not simply the appearance of the glove. The right impact-resistant work gloves should provide appropriate back-of-hand protection while also meeting the job’s requirements for cut resistance, abrasion resistance, grip, dexterity, fit, durability and applicable standards.
The practical selection process is: identify the hazard → determine required protection → evaluate additional hazards → check material and construction → confirm fit → verify standards → test or sample the glove.
ANSI/ISEA 138-2019 provides a U.S. classification system for occupational gloves offering back-of-the-hand impact protection, while EN 388 covers mechanical risks including abrasion, blade cut, tear, puncture and, where applicable, impact.
Purpose: Show the relationship between workplace hazards and impact-glove selection.
Recommended visual: Professional industrial scene showing construction, automotive maintenance, heavy equipment and industrial assembly workers wearing different impact-resistant gloves.
ALT: Workers wearing impact-resistant work gloves for different workplace hazards.
Impact gloves are protective work gloves designed to reduce the forces transmitted to areas of the hand exposed to impact, particularly the knuckles, fingers and back of the hand.
A typical impact glove may combine:
Determine what could strike, crush, pinch or otherwise impact the hand.
Identify whether workers also face cuts, abrasion, puncture, chemicals, heat, cold, vibration or other risks.
Match the glove’s documented performance to the identified workplace exposure.
Examine TPR coverage, palm material, reinforcement, stitching, cuffs and protective zones.
Consider dry, wet or oily handling and the amount of finger control required.
Make sure the glove fits securely while allowing the required movement.
Confirm applicable standards, product markings and supporting documentation.
Evaluate fit, construction, grip and suitability before committing to a larger B2B order.
Start by asking what is actually striking, crushing or trapping the hand.
| Workplace Hazard | Typical Exposure | Important Considerations |
|---|---|---|
| Struck-by objects | Tools, components or materials hitting the hand | Back-of-hand impact protection |
| Pinch points | Machinery, pipes and components | Impact protection + dexterity |
| Heavy equipment | Machinery maintenance and operation | Impact + abrasion + grip |
| Construction | Tools, materials and equipment | Impact + cut/abrasion protection |
| Automotive work | Components, tools and machinery | Impact + grip + dexterity |
| Maintenance | Hand tools and machinery | Impact + abrasion + tactile control |
Do not choose a glove solely because it has TPR or another visible protective element.
Consider whether the job also involves:
For buyers supplying the United States market, ANSI/ISEA 138-2019 is an important reference for impact-resistant gloves.
The standard establishes testing, classification and labeling requirements for occupational gloves providing back-of-the-hand impact protection.
| Impact Level | Mean Peak Transmitted Force | All Impacts | General Interpretation |
|---|---|---|---|
| Level 1 | < 9 kN | < 11.3 kN | Lower impact performance |
| Level 2 | < 6.5 kN | < 8.1 kN | Intermediate impact performance |
| Level 3 | < 4 kN | < 5 kN | Higher impact performance |
Buyers should avoid assuming that a glove with thicker-looking armor automatically provides a higher tested performance level. Check the applicable product marking and supporting documentation.
Lower transmitted force represents higher impact performance within this classification system.
Buyers supplying different markets may encounter both ANSI/ISEA and EN standards.
| Standard | Primary Focus | Buyer Consideration |
|---|---|---|
| ANSI/ISEA 138 | Back-of-hand impact protection | Check impact classification and documentation |
| EN 388 | Mechanical risks | Review abrasion, cut, tear, puncture and applicable impact information |
Impact gloves commonly combine several materials because no single material has to perform every function.
Thermoplastic rubber, commonly abbreviated as TPR, is frequently used for flexible protective components on the back of impact gloves.
Depending on the design, protective components may cover areas such as:
Leather may be used for palms or reinforcement areas where durability, handling and grip are important.
Buyers should evaluate:
Synthetic materials can be used on the glove back to provide flexibility and help maintain dexterity.
Padding materials may be incorporated into selected glove constructions for comfort or additional cushioning. Their presence should not automatically be interpreted as a certified impact rating.
The protective material is only one part of the glove. Examine the complete construction.
Check whether the protective component covers the areas most exposed to impact.
Some applications expose the fingers to impact as well as the knuckles. Review the actual protective coverage rather than assuming the entire hand is protected equally.
The palm may need to support:
Possible cuff designs include:
Inspect high-stress areas for appropriate reinforcement and construction quality. For bulk purchasing, sample evaluation can help verify actual fit, stitching, material quality and construction before larger production.
Construction workers can encounter tools, materials, machinery and pinch points.
Depending on the task, a suitable glove may need impact protection combined with cut resistance, abrasion resistance, grip and dexterity.
Automotive applications may involve hand tools, metal components, machinery, oil, grease, abrasion and impact.
Selection should balance impact protection with grip, dexterity and other application-specific requirements.
Heavy-equipment environments can involve substantial mechanical hazards.
Consider impact exposure, abrasion, grip, dexterity, durability and equipment-specific hazards.
Oil and gas operations can involve tools, pipes, equipment and demanding handling conditions.
Impact protection may need to be considered alongside grip, cut resistance, abrasion resistance and other application-specific requirements.
Maintenance work often combines hand tools, machinery, components and unpredictable handling conditions.
Evaluate impact, abrasion, grip and dexterity together.
Assembly tasks can require more tactile control and finger movement.
Avoid unnecessarily bulky construction when precision handling is important.
Purpose: Connect different workplace applications with different glove requirements.
Recommended visual: Four-panel professional industrial photograph showing construction, automotive maintenance, heavy equipment and assembly workers wearing appropriate impact gloves.
ALT: Impact-resistant gloves used in construction, automotive maintenance and assembly.
There is no universal impact-glove level that is appropriate for every worker. Selection should be based on the foreseeable hazard and required protection.
Correct sizing matters because the protective components need to remain properly positioned during work.
An incorrectly sized glove can cause:
Protection should not be evaluated in isolation. A glove may provide substantial protective construction but still be unsuitable if workers cannot manipulate tools or components effectively.
Evaluate whether the work involves:
Consider how much finger movement the worker needs. High-dexterity tasks may require a more flexible glove construction than heavy-duty handling.
Workers are more likely to use protective equipment consistently when the glove is appropriate for the work and comfortable enough for the duration of the task.
Follow the care instructions supplied with the specific glove.
For distributors, contractors, industrial buyers and PPE brands, selection involves more than choosing a single glove from a catalog.
| Requirement | What to Define |
|---|---|
| Application | Where and how the glove will be used |
| Hazards | Impact, cut, abrasion, puncture, heat, vibration and others |
| Protection | Required performance characteristics |
| Material | Leather, synthetic, textile, coatings and reinforcement |
| Construction | TPR, padding, stitching, palm reinforcement and cuff |
| Grip | Dry, wet, oily or general handling |
| Dexterity | Precision, general or heavy-duty work |
| Sizes | Required worker size range |
| Standards | Applicable market and product standards |
| Branding | Logo, color and design requirements |
| Packaging | Retail, bulk or private-label packaging |
| Samples | Pre-production or product evaluation requirements |
Impact gloves can be developed around application-specific requirements when an off-the-shelf configuration does not meet the buyer’s needs.
Potential customization discussions can include:
Purpose: Demonstrate how a custom impact-glove program moves from requirements to sample to production.
ALT: OEM impact glove customization and manufacturing process.
Protekta’s impact-glove category includes products intended for applications such as construction, automotive, maintenance, assembly and heavy-duty work.
| Explore | Purpose |
|---|---|
| Impact Glove Range | Explore impact protection products. |
| Industrial Working Gloves | Explore broader industrial hand protection. |
| Construction Hand Protection | Review construction-specific protection requirements. |
| OEM Safety Gloves | Discuss custom manufacturing and B2B requirements. |
| Custom Safety Gloves | Explore custom product development. |
| Certification & Documentation | Review available certification information. |
Impact-glove selection is closely connected to product construction. For B2B buyers, working with a manufacturer can make it possible to discuss the relationship between:
Protekta identifies product development, material selection, customization, sampling, quality assurance and manufacturing among its capabilities.
Impact gloves are used for workplace tasks where the hands may be exposed to struck-by, pinch or similar impact hazards. They are commonly considered for construction, automotive, heavy equipment, maintenance, assembly and other industrial applications.
Start by identifying the type and severity of impact exposure. Then determine whether the job also involves cut, abrasion, puncture, chemical, thermal or other hazards. Compare the applicable performance requirements, materials, construction, grip, dexterity, fit and standards before selecting the glove.
ANSI/ISEA 138-2019 is a U.S. standard for the performance and classification of impact-resistant gloves. It establishes testing, classification and labeling requirements for occupational gloves providing back-of-the-hand impact protection.
They address different hazards. Impact resistance concerns forces striking or affecting protected areas of the hand, while cut resistance concerns contact with sharp edges or blades. A glove should be evaluated separately for each relevant hazard.
No. The presence of TPR or another protective-looking component does not by itself establish a particular tested impact performance level. Buyers should check the applicable product marking and supporting test or certification documentation.
Yes. ANSI/ISEA 138 uses Levels 1, 2 and 3, with Level 3 representing the lowest measured transmitted force and therefore the highest performance classification within this system.
Not necessarily. Impact protection and cut resistance are separate performance characteristics. If workers handle sharp materials, the glove should also have the appropriate cut-protection performance for the identified hazard.
Impact gloves should fit securely while allowing the required finger movement and keeping protective components properly positioned. Excessively loose or tight gloves can interfere with handling, comfort and effective use.
Yes. Impact gloves can be developed or customized for specific product, application, branding, sizing and packaging requirements. For an OEM program, buyers should define the application and hazards before finalizing construction and performance requirements.
For a new glove program, sample evaluation can be useful for checking fit, materials, stitching, construction, grip and suitability for the intended work. Sampling can help buyers evaluate a product before committing to a larger production order.
Define your application, workplace hazards, required protection, materials, sizing, branding and packaging requirements before starting product development. A sample-first approach can help verify the glove before larger production.
Explore OEM Safety GlovesKeep the page’s primary intent focused on how to choose impact gloves. Link commercially to the Impact Gloves category and use the Certificates page for certification documentation rather than attempting to make this educational guide compete with those pages.