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Photosensitive resin fully transparent SLA 3D printing material (transparent SLA resin / fully transparent photosensitive resin / Clear SLA Resin), suitable for transparent display samples, lampshade shells, visible structural parts and verification parts that require observation of the internal structure. A more ideal light-transmitting look and feel can be obtained through finishing such as grinding, sandblasting, translucence, and gradient dyeing. It supports threaded inserts for assembly enhancement, and provides fast quote and delivery.

Clear Resin – Transparent

Clear Resin – Transparent is used to achieve transparent or semi-transparent display effects and is a common choice for lampshade housings, visual structural components, and transparent display samples.

Transparent photosensitive resin (SLA) Transparent display sample Lampshade/transparent shell visible structural parts Observe the internal structure High precision details

Quote checklist: Upload your 3D model and, when available, a 2D drawing. Identify the required process, material, quantity, critical dimensions, finish, appearance standard, and target delivery date.

SLA photosensitive resin fully transparent sample: suitable for transparent display, lampshade casing and visible structural parts, optional polishing, sandblasting semi-transparent, gradient dyeing transparent and threaded inserts (threaded insert) finishing

Key Material and Manufacturing Parameters

Engineering note: Values below are typical reference ranges. Final manufacturability, tolerances, material condition, surface finish, cost, and lead time depend on the drawing, geometry, quantity, and selected process.

Upload CAD files and mark critical features for an engineering review before production.

ProcessSLA light-curing 3D printing (transparent photosensitive resin)
ColorFully transparent (the light transmission effect is affected by wall thickness, placement and finishing; it can be sandblasted, semi-transparent or gradient dyed to improve the look and feel)
Layer thickness0.05–0.10 mm (commonly used); 0.025 mm high-precision mode (increased lead time/cost)
Dimensional tolerance±0.20 mm or ±0.20% (whichever is greater); it is recommended to mark the tolerance or note "accuracy first" for the key hole/datum surface
Minimum wall thicknessAppearance non-structural ≥0.8–1.0 mm; general structure ≥1.2–1.5 mm; stress/near screws ≥2.0 mm
Minimum apertureDirect forming hole ≥1.5–2.0 mm; it is recommended to reserve allowance for assembly holes/mating holes and ream/ream holes
Text/textureThe height of the embossed characters is ≥0.4 mm; the depth of the concave characters is ≥0.3 mm; the line width is ≥0.25–0.30 mm (transparent parts are recommended to be larger to avoid "clear visibility")
HardnessShore D 80–88 (varies with formulation/post-cure)
Tensile strength35–55 MPa (related to post-cure/placement direction)
Service temperature60–80℃ (for high temperature requirements, it is recommended to choose a high temperature-resistant resin system)
Surface roughnessRa ~1–3 μm (related to layer thickness/direction); transparent appearance is more sensitive to surface state, it is recommended to clarify the finishing goals
DensityApproximately 1.1 g/cm³
Recommended maximum unit sizeDepends on equipment and placement; oversized pieces can be disassembled and spliced or other processes can be evaluated
Accuracy levelStandard accuracy / high accuracy (remark "key hole/critical surface/tolerance requirements" required)
Optional appearance effectsFully transparent / sandblasted semi-transparent matte / gradient dyed transparent (it is recommended to provide reference pictures or effect requirements)
Assembly enhancements support Threaded inserts; Please indicate the thread specifications (such as M2/M3/M4), quantity and location; please note if tapping/expanding/reaming is required
FinishingPolished, sandblasted, translucent, gradient dyed transparent, threaded inserts
Post-cure instructionsPost-curing can improve strength/dimensional stability, but the transparent look and feel still centers on the surface state; it is recommended to determine the process path based on appearance goals.
Typical lead timeRelated to size, quantity, placement and finishing; clear delivery and expedited options will be given after uploading the file

Finishing

Polishing (improving light transmission and surface consistency)

It is used to reduce layer lines and support marks and improve the overall look and feel of transparent parts. It is recommended to polish the display surface more precisely and clarify the acceptable mark standards.

Sandblasted and semi-permeable (the matte surface is even and more attractive)

Changes the appearance to a more uniform translucent matte surface, which can significantly weaken fine scratches/fingerprints and slight layering, making it more suitable for exhibitions/light environment displays.

Gradient dyeing and transparency (stronger display effect)

Suitable for brand display, gradient visual effects or distinguishing component areas; it is recommended to provide reference pictures or clarify the color and gradient direction.

Threaded inserts (more reliable assembly)

Used for screw connection and repeated disassembly and assembly; please note the thread specification, quantity and location (M2/M3/M4, etc.).

Why Choose Photosensitive Resin - Fully Transparent (SLA)

Transparent and visible (the internal structure can be seen)

Suitable for verifying internal structures, channels, assembly interference and visual effects; one of the most commonly used solutions for transparent display samples.

Good detail performance (transparent parts can also be "seen clearly")

The high precision of SLA is friendly to details; small characters, textures, and chamfers are easier to produce (it is recommended to make the detail size more "abundant").

Controllable appearance (translucent/gradient looks better)

Sandblasting and translucency can be selected to create a uniform matte surface, or gradient dyeing and transparency can be used to enhance the display effect, making transparent parts more "endurable".

Assembly can be strengthened (threaded inserts optional)

Optional when screw fixing or repeated disassembly and assembly is required Threaded inserts Improve reliability and consistency.

Recommended Applications

  • Transparent display sample: Requires clear light transmission or visual effect (shell/cover/display piece)
  • Observe the internal structure: Need to see internal channels, parts locations, and assembly relationships
  • Lampshade/transparent shell: Cosmetic parts that have requirements for look and feel and light transmission effect
  • Controllable appearance: Sandblasting semi-transparent for uniform matte surface, gradient dyeing for transparent display effect

It is not recommended to use it directly (it is recommended to change materials/processes)

  • "Optical grade" lens/high transparency and no distortion: Usually requires more professional optical materials and process routes
  • Long-term wear-resistant moving parts: It is recommended that nylon (SLS/MJF) is more wear-resistant and more suitable for functional parts
  • Continuous high temperature environment: It is recommended to use high temperature-resistant resin or heat resistant material system
  • High load and long-term use: It is recommended that engineering materials/machining/injection molding, etc. be more suitable

Design and DFM Guidelines

  • Transparency effect = wall thickness + surface condition: The larger the wall thickness, the easier it is to become "grey/uneven". It is recommended to keep the wall thickness more uniform; display parts should give priority to avoiding sudden changes in thickness.
  • Priority is given to display/observation surfaces: Please define a transparent display surface. We can give priority to avoiding key fabric supports and select "fully transparent/sandblasted semi-transparent/gradient dyeing transparent" according to the target.
  • Inner cavity/internal flow channel: If you need to observe the internal structure, try to design a cleanable/drainable structure to avoid dead corners that affect the light transmission.
  • Hole location and assembly: It is recommended to leave a margin for key holes; if strict fit is required, please mark the tolerance or note "secondary reaming/reaming required".
  • Screw connection: Recommended for repeated disassembly and assembly Threaded inserts, higher stability and reliability.

Comparison with common nylon/resin materials

Material Key Advantages Mainly applicable Not suitable
White SLA Resin (SLA) Strong versatility, good appearance, friendly finishing, suitable for rapid production of review parts Appearance prototypes, review samples, assembly verification Transparent display requirements, strong impact/high toughness requirements
Black SLA Resin (SLA) The finished product has a stronger feel and is suitable for display and photography; the details are excellent Display/review samples, photographic samples, light load trial assembly Transparent and visible, the buckle can be disassembled and assembled repeatedly (needs a tougher solution)
Tough SLA - Yellow-Green (SLA) More impact-resistant and less brittle than standard resin; suitable for trial assembly and buckle verification Snap verification, repeated assembly, thin-walled parts, light load function verification Transparent display is preferred, wear-resistant long-term moving parts (nylon is better)
High-Temp SLA - Beige (SLA) Stronger heat resistance and dimensional stability, suitable for thermal environment verification Heat resistance testing, jigs and fixtures, functional samples close to heat sources Transparent display is a priority and high toughness is required for repeated disassembly and assembly (needs evaluation)
White Nylon (SLS) The functional type is more stable, does not require support, and is suitable for complex structures and low- to medium-volume typesetting. Structural validation, assembly parts, wear-resistant moving parts, small batch functional parts Transparent display effect, ultra-high-definition appearance (need to change the route)
HP Nylon - Gray (MJF) Better batch consistency and dimensional stability, suitable for repeated delivery Small and medium batch functional parts, assembly positioning parts, repetitive parts Transparent visual appearance, mirror display (still requires finishing/material replacement)

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