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    Integrated Lacing-Zone Reinforcement

    3D Integrated Eyelet System for Cleaner Upper Assembly

    FX Footwear develops 3D integrated eyelet components using multi-layer constructions that combine surface, cushioning and reinforcement layers. The formed structure can eliminate separate metal eyelets and stitching around the eyelet zone, creating a cleaner lacing area with a more integrated upper construction.

    3D molded constructionNo separate metal eyeletsReduced eyelet-zone stitchingMulti-layer reinforcement

    Product Value

    A More Integrated Lacing Zone with Fewer Separate Parts

    The construction integrates eyelet reinforcement, cushioning and surface layers into one formed component, creating a cleaner lacing zone and a more direct upper assembly approach.

    01

    No Separate Metal Eyelets

    The molded eyelet structure can form the lace openings directly into the component, eliminating separate metal eyelets where the approved construction allows.

    02

    Reduced Eyelet-Zone Assembly

    The integrated structure can replace additional stitching around the eyelet area, reducing part-handling steps and assembly work in this part of the upper.

    03

    Integrated Multi-Layer Construction

    Surface, cushioning and reinforcement layers can be combined and formed as one prepared component, with the material stack developed around the required support and upper construction.

    04

    Lightweight & Cleaner Upper Integration

    The integrated structure can combine multiple functions within one component, supporting weight optimization and a cleaner lacing-zone appearance.

    Development Framework

    3D Eyelet System Selection Framework

    A useful eyelet specification connects the visible lacing design with the substrate, forming route and validation plan. These decisions shape tooling, sampling and the approved upper interface.

    Development areaProject inputsWhat the decision shapes
    Eyelet layoutHole count, diameter, spacing and lace pathLacing geometry and local load direction
    Molded geometryOutline, contour, thickness profile and edge transitionFit with the upper pattern and visible form
    Upper interfaceBase textile, surrounding layers and attachment areaMaterial compatibility and assembly sequence
    Structural objectiveBuyer-defined lace load, flex and abrasion criteriaSample validation and acceptance methods
    Surface directionColor, texture, finish and approved visual detailBrand expression and tooling surface
    Size rangeGrading rules, orientation and dimensional tolerancesTooling coverage and inspection reference

    Application Fit

    Footwear Programs for Integrated Eyelet Reinforcement

    Application fit depends on the lacing loads, flex requirement, upper substrate and finished-shoe approval plan rather than the footwear category alone.

    Running & Training

    The component can be developed around lace position, upper contour and the intended hold across the midfoot.

    Outdoor

    Structured lacing zones can be reviewed for trail, hiking and approach footwear with project-specific load and flex criteria.

    Lifestyle & Casual

    Color, texture and molded form can create a dimensional eyelet area without separate visible metal hardware.

    Work & Utility

    Selected work or utility designs may benefit from fewer hardware parts. Safety and market requirements remain part of complete-shoe approval.

    OEM & ODM Development

    Custom 3D Eyelet Development

    The option set is confirmed after the upper construction and forming route have been reviewed. Geometry, material interface and the assembly sequence remain connected through the sample process.

    • Eyelet positions and lace path
    • Hole profile and spacing
    • Molded contour and thickness
    • Multi-Layer Material Construction
    • Upper substrate interface
    • Edge transition and attachment
    • Color, texture and finish
    • Size Grading, Tooling & Testing

    Quality Process

    From Lacing-Zone Brief to Production Reference

    The process aligns the formed component with the upper construction and its agreed quality criteria. FX laboratory and testing support follows the agreed product and buyer requirements.

    01

    Development Route

    Reference-sample matching or new-mold development is established alongside geometry, material and documentation needs.

    02

    Tooling & Material Review

    The composite route, formed shape and upper substrate are evaluated together before the approval sample.

    03

    Golden Sample

    The approved component records construction, dimensions, visual limits, tooling status and revision history.

    04

    Production Checks

    First-article, process and final inspection follow the agreed specification and any buyer-defined lace-load or durability methods.

    Connected Footwear Development

    Why Footwear Teams Develop with FX

    One-Stop Component Context

    FX works across upper components, insoles and midsoles. Product teams can review how the featured component relates to the surrounding shoe instead of treating it as an isolated part.

    Regional Manufacturing Coverage

    Fuxiang Group runs eight factories across China, Vietnam and Indonesia. Production scope and location remain part of the individual project review.

    Project-Specific Validation

    In-house laboratory support follows the approved material, construction and buyer test plan. Third-party coordination is available when external reporting forms part of the program.

    Buyer Questions

    3D Integrated Eyelet System FAQ

    What is a 3D integrated eyelet system?

    It is a 3D molded upper component that integrates the eyelet area with surface, cushioning and reinforcement layers. The structure can form the lace openings directly into the component, reducing the need for separate metal eyelets and additional stitching around the eyelet zone where the approved construction allows.

    Can it replace metal eyelets and extra stitching?

    Yes, selected constructions can replace separate metal eyelets and additional stitching used around the eyelet reinforcement area. Feasibility depends on the material stack, upper substrate, lace loads, geometry and agreed validation requirements.

    Does a custom eyelet component require new tooling?

    A new molded shape, major geometry change or different support structure may require new tooling. The drawing, size range, material route and tolerances determine the tooling plan.

    Can geometry, color and surface finish be customized?

    Yes. Feasible eyelet positions, contour, color, finish and texture depend on the selected composite structure, forming process, tooling surface and approval standard.

    Which footwear categories can use the system?

    Potential programs include running, training, outdoor, selected work or utility, and lifestyle footwear. Final suitability depends on lacing loads, upper construction, flex and market requirements.

    How is production quality controlled?

    The approved sample and specification form the production reference. Project controls can cover material verification, first-article dimensions, appearance, process parameters, in-process inspection and final release.

    A Connected Starting Point for Eyelet Development

    Eyelet geometry, upper material, tooling route and approval criteria can be reviewed as one development package, with adjacent upper components considered within the same program when relevant.

    3D Eyelet Project Inquiry