India's Only Instant Multicolor Quote

Multicolor
3D Printing
With Instant Quotes

Upload a model, get a real price in seconds — no waiting on a manual quote. Multicolor and single-colour FDM print on our own Bambu Lab machines and dispatch in days. Resin, MJF and SLS nylon, laser-melted metal and binder-jet steel are produced on Zbotic’s industrial line and delivered pan-India. One service, seven technologies, every spec published below.

7
Technologies
30+
Materials
4
Colors Per Print
24h
In-House Turnaround
ZBOTIC 3D C P M O MULTICOLOR PRINTING

Multicolor Printing

Up to 8 colors via Bambu AMS

Fast Turnaround

Parts in as few as 24 hours

Pan-India Delivery

Free shipping above ₹999

Metal & Industrial

316L steel, titanium, MJF & SLS nylon

Seven Ways To Make Your Part

One upload, one quote engine, seven processes. Multicolor and single-colour FDM run on our own Bambu Lab machines and dispatch in days. Resin, nylon and metal are produced on Zbotic’s industrial line and delivered pan-India in 15–20 days. Every tab below carries the real numbers — tolerance, wall thickness, build size — and the honest limits, so you can pick the right lane before you pay.

In-house — Multicolor & FDM, dispatched in days Industrial — resin, nylon & metal, 15–20 days
4-COLOUR FILAMENT CHANGER
In-house · up to 8 colours

Multicolor FDM

Up to 8 colours in a single print, quoted instantly from a real slice of your file.

Our Bambu Lab X1C and P1S machines run a four-slot filament changer, so a single print can carry up to four colours without anyone touching the machine mid-job. You upload a .3mf saved out of Bambu Studio or OrcaSlicer with your colours already assigned, map each one to a filament we stock, and the price comes back from an actual slice of your geometry rather than a volume estimate. It is the cheapest way to get a coloured part that does not need painting.

Colours per printUp to 8, auto-switched
Layer thickness0.08 – 0.20 mm
Max part size250 × 210 × 250 mm
  • Real four-colour printing in one job — no painting, no masking, no glue-up
  • Instant automated price from a genuine slice of your model, not a rough volume guess
  • Printed on our own machines, so it dispatches in days rather than weeks
  • Colour changes cost filament and time, not tooling — so a one-off is viable

In-house. Instant automated price on the quote page, with a dispatch estimate shown on your quote and a Rush option available at checkout.

Specifications

Layer thickness0.08, 0.12, 0.16 or 0.20 mm (you choose)
Dimensional tolerance±0.3 mm, or ±0.5% on dimensions over 60 mm — whichever is larger
Minimum wall0.8 mm recommended (two perimeters at a 0.4 mm nozzle); 1.2 mm+ for load-bearing walls
Maximum part size250 × 210 × 250 mm usable — a multicolour purge tower eats into the footprint further
Minimum featureHoles 2 mm and up; embossed or engraved detail 0.8 mm wide, 0.4 mm deep
Colours per printUp to 8, switched automatically
Surface finishMatte layered finish; colour boundaries are crisp on flat faces, slightly soft on steep curves

Materials

  • PLA Basic — the widest colour range and the most reliable multicolour material
  • PLA Matte — flat, non-glossy finish that hides layer lines best
  • PLA Silk / ePLA — high-sheen metallics, marble and colour-shift effects
  • PETG — tougher and more temperature-tolerant than PLA
  • ABS — for parts that need to survive above 60 °C
  • TPU 95A — flexible, best ordered single-colour

Typical applications

  • Display and presentation models where the colours are the point
  • Signage, logos and lettering printed in colour instead of painted
  • Board-game pieces, tabletop miniatures and collectibles
  • Teaching models — anatomy, geology, geography, circuit layouts
  • Product mockups where different colours mark different components
  • Colour-coded jigs, gauges and sorting fixtures for a workshop floor
  • Cosplay and prop parts that would otherwise need masking and spraying
Good to know — the honest limits of Multicolor FDM
  • Every colour change purges filament into a waste tower. On colour-heavy models that waste can exceed the part itself, which pushes both price and print time up noticeably.
  • Four colours is a hard ceiling per print. A fifth colour means splitting the model or painting.
  • We need a .3mf with colours already assigned. A plain STL carries no colour data, so we cannot guess your intent from it.
  • A trace of the previous colour can carry over at a transition, showing as a faint smear on the first millimetre or two of a new colour.
  • PLA softens from roughly 55–60 °C. Anything destined for a parked car, an enclosure with a motor in it, or direct summer sun should be PETG, ABS or an industrial nylon instead.
  • Layer lines are always visible up close, and parts are meaningfully weaker across layers than along them — design so loads run in-plane.
FDM LAYER BUILD
In-house · dispatched in days

FDM — Fused Deposition Modelling

The fastest, most affordable route from CAD file to a functional plastic part.

FDM builds your part by laying down molten filament one track at a time, and it remains the best value in 3D printing for anything that has to be held, bolted, tested and revised. We run it in-house on Bambu Lab X1C and P1S machines with a 0.4 mm nozzle, so a quote comes back in seconds and the part dispatches in days. Material choice spans everyday PLA through to PETG, ABS, carbon-filled engineering filament and flexible TPU.

Layer thickness0.08 – 0.20 mm
Tolerance±0.3 mm / ±0.5%
Max part size250 × 210 × 250 mm
  • Lowest cost per part of any technology we offer, at every quantity
  • Instant automated price from a real slice — no waiting on a manual quotation
  • Widest everyday material range, including flexible TPU and carbon-filled engineering filament
  • Easy to post-process: sandable, drillable, tappable, paintable and glueable

In-house. Instant automated price on the quote page, with a dispatch estimate shown on your quote and a Rush option available at checkout.

Specifications

Layer thickness0.08, 0.12, 0.16 or 0.20 mm (you choose)
Dimensional tolerance±0.3 mm, or ±0.5% on dimensions over 60 mm — whichever is larger
Minimum wall0.8 mm recommended; 1.2 mm+ where the wall carries load. A 0.45 mm single-extrusion wall will print but is fragile.
Maximum part size250 × 210 × 250 mm — measured usable envelope, smaller than the nominal 256 mm bed
Minimum featureHoles 2 mm and up; embossed or engraved detail 0.8 mm wide, 0.4 mm deep
Hole accuracyHoles print roughly 0.1–0.3 mm undersize; ream or model in clearance for press fits
Surface finishVisible layer lines, matte or satin depending on filament; support contact points leave marks

Materials

  • PLA — cheapest, stiffest, best detail; softens around 55–60 °C
  • PLA PRO — tougher and less brittle than standard PLA
  • PLA Silk / ePLA and PLA Glass — decorative sheen and translucent effects
  • PETG — tougher, more chemical- and moisture-resistant, usable to about 70 °C
  • ABS — heat- and impact-resistant to roughly 95 °C, and glue- or acetone-bondable
  • PLA-CF / engineering filament — carbon-filled, much stiffer, matte black finish
  • TPU 95A — flexible, abrasion- and tear-resistant

Typical applications

  • Enclosures, panels and housings for electronics projects
  • Jigs, fixtures, drill guides and assembly aids for the workshop
  • Robotics chassis, drone frames and mounting brackets
  • Replacement parts for appliances, machines and vehicles that are no longer sold
  • Form-and-fit prototypes ahead of tooling or an industrial print
  • Educational and hobby parts where cost per iteration matters more than finish
  • Gaskets, bumpers, grips and flexible feet in TPU
Good to know — the honest limits of FDM
  • Layer lines are always visible. If the part is going in front of a customer and has to look moulded, SLA resin is the better lane.
  • Strength is directional. A printed part is typically 40–60% weaker pulled apart across layers than along them, so orient the load in-plane or move to MJF/SLS nylon.
  • Overhangs need supports, and removing them leaves witness marks and slight roughness on down-facing surfaces.
  • PLA creeps and softens from about 55–60 °C. Sustained heat, direct sun or a warm enclosure calls for PETG, ABS or nylon.
  • Large flat ABS parts can warp or split at corners as they cool; splitting the design or switching material is often the fix.
  • FDM parts are not watertight by default — sealing needs deliberate wall thickness, full infill and often a coating.
  • Anything over 250 × 210 × 250 mm has to be split and bonded, or moved to an industrial lane.
SLA UV CURING
Industrial · 15–20 days

SLA — Stereolithography Resin

Smooth, high-detail resin parts for when surface finish and fine features decide it.

SLA cures liquid photopolymer with a laser, layer by layer, and nothing else we offer comes close to it for surface quality or fine detail. Walls down to half a millimetre, crisp lettering, sharp edges and a finish close to injection moulding come straight off the machine. Zbotic industrial 3D printing gives you twelve production resins — general-purpose, high-strength, transparent, low-shrink and one genuinely high-temperature grade — on a build platform large enough for bumper-sized parts.

Layer thickness0.05 – 0.10 mm typical
Tolerance±0.2 mm under 100 mm
Materials12 production resins
  • Best surface finish and finest detail of any lane we offer — parts look moulded, not printed
  • Tightest tolerance of the industrial lanes: ±0.2 mm under 100 mm
  • Genuinely transparent and translucent options, which no powder process can match
  • Dyeing and spray finishing available, so parts can arrive presentation-ready

15–20 days, produced on Zbotic's industrial line and delivered pan-India.

Specifications

Layer thickness0.05–0.10 mm typical; 0.025 mm available for fine cosmetic and jewellery work
Dimensional tolerance±0.2 mm on features under 100 mm; ±0.3% above 100 mm
Hole tolerance±0.3 mm
Minimum wall0.5 mm on small parts, scaling to about 2.0 mm on large flat panels
Maximum part sizeUp to 780 × 780 × 530 mm on the largest platform; individual resins have their own smaller size and weight ceilings, confirmed at quote
Minimum featureHoles from 1.0 mm; embossed or engraved detail 0.8 mm wide, 0.8 mm deep; drain holes 2.5 mm
Surface finishSmooth and semi-gloss, roughly Ra 1–5 µm as printed; dyeing and spray finishing available

Materials

  • Matte white general-purpose resin — high hardness and strength (heat deflection ~59 °C)
  • Deep black resin — high toughness, good dimensional stability (~65 °C)
  • Grey resin — polishes to a very smooth touch, low shrinkage (~59 °C)
  • Black resin for batch work — low shrinkage, high stability (~58 °C)
  • Light-green low-shrink resin — good yellowing resistance (~56 °C)
  • Natural-white stable resin — for moisture-exposed models (~56 °C)
  • Transparent and translucent resin — light pipes, fluid visualisation (~53 °C)
  • Faint-yellow high-strength resin — best all-round mechanical grade (~72 °C)
  • High-temperature resin — heat deflection ~101 °C, for tooling and warm environments
  • High-strength white resin — industrial models and structural mockups (~60 °C)
  • High-precision black resin — for humid environments (~46 °C)
  • Mixed-batch economy resin — random colour, sample quantities only

Typical applications

  • Master patterns for silicone moulding, vacuum casting and investment casting
  • Jewellery masters and fine ornamental work
  • Dental and medical models and surgical planning aids
  • Fit-check and assembly-verification parts where 0.2 mm matters
  • Miniatures, figurines and highly detailed scale models
  • Transparent parts — light guides, fluid-flow channels, lens mockups
  • Cosmetic prototypes for client and investor presentation
Good to know — the honest limits of SLA Resin
  • Heat resistance is the real limitation. Most of these resins have a heat-deflection temperature between 46 °C and 72 °C, so parts will soften in a parked car, near a motor, or in direct Indian summer sun. Only the high-temperature grade reaches about 101 °C — pick it deliberately, or move to nylon.
  • Cured resin is stiffer and more brittle than nylon. It chips and snaps rather than bending, so snap-fits, living hinges and drop-tested parts belong in MJF or SLS.
  • Ultraviolet light continues to work on resin after printing. Parts left in sunlight yellow and grow more brittle over months.
  • Supports are required. Down-facing surfaces carry small witness marks unless you specify additional finishing.
  • Resin keeps shrinking slightly for several days after printing — expect drift on the order of 0.15–0.2 mm on larger dimensions.
  • Large thin unsupported panels can bow. Add ribs, or thicken to the 2 mm end of the wall range.
  • Heat-deflection figures quoted here are measured at low load (0.45 MPa). A part under real mechanical stress will deform well below its stated number.
MJF FUSING AGENT + HEAT
Industrial · 15–20 days

MJF — Multi Jet Fusion Nylon

Support-free nylon with production-grade consistency, built for end-use parts.

Multi Jet Fusion prints into a heated bed of nylon powder, jetting a fusing agent where the part should be and fusing the whole layer at once. Because the surrounding powder holds everything up, there are no supports to remove — interlocking assemblies, internal channels and lattices come out clean, and there are no witness marks anywhere on the part. It is the lane we point people to when a plastic part has to survive real use rather than just look right.

Layer thickness0.08 mm
Tolerance±0.3 mm under 100 mm
Max part size370 × 276 × 360 mm
  • No support structures at all — geometry is genuinely free, including interlocking and captive parts
  • Mechanical properties are close to consistent in every direction, unlike FDM
  • Highly repeatable batch to batch, which is what makes it viable for real production
  • Best strength-per-rupee of any industrial lane we offer

15–20 days, produced on Zbotic's industrial line and delivered pan-India.

Specifications

Layer thickness0.08 mm
Dimensional tolerance±0.3 mm on features under 100 mm; ±0.4% above 100 mm
Hole tolerance±0.3 mm
Minimum wall1.0 mm on small parts, scaling to about 2.0 mm on large panels
Maximum part size370 × 276 × 360 mm (minimum 5 × 5 × 5 mm)
Minimum featureHoles from 1.5 mm; embossed or engraved detail 0.8 mm wide, 0.8 mm deep; powder escape holes 2.5 mm
Typical PA12 propertiesTensile strength ~48 MPa, elongation at break 15–20%, density ~1.01 g/cm³
Surface finishFine-grained matte; natural grey as standard, or dyed through-black

Materials

  • PA12 nylon — the workhorse: strong, chemically resistant, natural grey or dyed black. Heat deflection 175 °C at 0.45 MPa, 95 °C at 1.82 MPa.
  • PA12S nylon — same family with a finer, more refined surface texture and tighter repeatability; black or greyish white
  • PA11 nylon — tougher, better impact and chemical resistance, heat deflection ~185 °C at 0.45 MPa; ideal for snap-fits and sporting goods
  • Full-colour nylon — smooth, very high detail and true colour, but only ~80 °C heat resistance and accepts 3MF or OBJ files only

Typical applications

  • End-use housings, covers and enclosures in small production runs
  • Snap-fit assemblies, clips and living hinges that have to flex repeatedly
  • Air ducting, manifolds and internal-channel parts
  • Drone, robotics and automotive mounting brackets
  • Jigs, fixtures and gauges for a production line
  • Lattice and lightweighted structures that no other process can build
  • Bridge production of 10–500 parts before committing to injection tooling
Good to know — the honest limits of MJF Nylon
  • Colour is limited. Standard parts arrive natural grey, or dyed through-black. There is no broad colour palette — the full-colour grade exists but is markedly weaker and only rated to about 80 °C.
  • The surface is slightly grainy and mildly porous. It feels good in the hand but it is not a cosmetic gloss finish, and it will pick up stains and oils unless sealed or painted.
  • Nylon absorbs atmospheric moisture, which shifts dimensions slightly and softens the part over time in humid conditions.
  • Fully enclosed hollows trap unfused powder. Design in escape holes of at least 2.5 mm, or expect the part to arrive heavier and rattling.
  • Sharp external corners round off very slightly at this layer thickness.
  • The 175 °C figure is heat deflection at low load. Under real mechanical stress PA12 is good to about 95 °C — design to that number, not the headline one.
SLS LASER SINTERING
Industrial · 15–20 days

SLS — Selective Laser Sintering Nylon

Tough sintered nylon, including a glass-filled grade with near-machined stiffness.

Selective Laser Sintering traces a laser across a bed of nylon powder, fusing each layer into the one below while the unsintered powder supports everything around it. Like MJF it needs no supports, but the material range leans harder towards structural work — including a glass-bead-filled grade stiff enough to stand in for machined or moulded components on short runs. It is the lane for brackets, housings and mechanisms that have to take load and heat.

Layer thickness0.10 – 0.12 mm
Tolerance±0.3 mm under 100 mm
Max part size350 × 350 × 400 mm
  • No support structures, so complex, interlocking and internal geometry prints cleanly
  • Genuinely tough parts — the general-purpose grades take impact and repeated flexing well
  • The glass-filled grade approaches machined-part stiffness for short-run substitution
  • Heat resistance far beyond anything FDM or SLA can offer

15–20 days, produced on Zbotic's industrial line and delivered pan-India.

Specifications

Layer thickness0.10–0.12 mm typical
Dimensional tolerance±0.3 mm on features under 100 mm; ±0.4% above 100 mm
Hole tolerance±0.3 mm
Minimum wall1.0 mm on small parts, scaling to about 2.0 mm on large panels
Maximum part size350 × 350 × 400 mm (minimum 5 × 5 × 5 mm)
Minimum featureHoles from 1.5 mm; embossed or engraved detail 0.8 mm wide, 0.8 mm deep; powder escape holes 2.5 mm
Minimum clearance0.5 mm between moving or nested parts, or they sinter together
Surface finishGrainy matte texture, bead-blasted as standard

Materials

  • Tough general-purpose nylon, greyish black — good all-round mechanical properties, heat deflection ~147 °C at 0.45 MPa
  • White nylon — highest heat resistance in the range, ~179 °C at 0.45 MPa
  • White high-impact nylon — high strength with excellent toughness, ~140 °C at 0.45 MPa
  • Glass-bead-filled nylon, greyish white — the stiffest grade, ~150 °C at 0.45 MPa; visible particles in the surface

Typical applications

  • Robotics structures, arms and mounting plates
  • Ducting, plenums and manifolds with internal geometry
  • Automotive and aerospace brackets and trim components
  • Production tooling, alignment fixtures and hard gauges
  • Low-volume production where injection tooling cannot be justified
  • Cable guides, clamps and routing hardware
  • Drone airframes and structural chassis parts
Good to know — the honest limits of SLS Nylon
  • The surface is grainy and slightly porous by nature. Bead blasting evens it out but does not make it smooth — this is not a cosmetic finish without sealing or painting.
  • Colour choice is limited to white, greyish white and greyish black. Anything else means painting or dyeing.
  • The glass-filled grade buys stiffness at the cost of ductility — it is noticeably more brittle, so avoid it for snap-fits and impact parts.
  • Nylon takes up moisture from the air, which shifts dimensions marginally and reduces stiffness over time in humid conditions.
  • Unfused powder gets trapped in sealed cavities. Add escape holes of at least 2.5 mm.
  • Large flat, thin sections can bow slightly as the build cools. Ribbing or a thicker section is the fix.
  • Heat-deflection numbers here are measured at low load (0.45 MPa); the safe working temperature under real stress is substantially lower.
SLM LASER-MELTED METAL
Industrial · 15–20 days

SLM — Laser-Melted Metal

Fully dense 316L steel and Ti-6Al-4V, in geometry machining cannot reach.

Selective Laser Melting fully melts metal powder with a high-power laser, welding each layer into the last to produce a part over 99% dense — real metal with real metal properties, not a sintered approximation. That means internal cooling channels, topology-optimised structures and thin-walled lattices that no mill or lathe could ever produce. Zbotic industrial 3D printing runs it in 316L stainless steel and Ti-6Al-4V titanium, and the parts can be machined, welded, tapped and heat-treated afterwards like any other metal component.

Layer thickness0.03 – 0.05 mm typical
DensityOver 99% of wrought
Max part size390 × 290 × 390 mm
  • Fully dense, load-bearing metal — not a sintered or filled substitute
  • Internal channels, undercuts and lattices that are impossible to machine
  • Parts can be machined, welded, tapped, polished and heat-treated after printing
  • 316L delivers real corrosion resistance; Ti-6Al-4V delivers exceptional strength-to-weight

15–20 days, produced on Zbotic's industrial line and delivered pan-India.

Specifications

Layer thickness0.02–0.06 mm; typically 0.03–0.05 mm
Dimensional tolerance±0.3 mm on features under 100 mm; ±0.4% above 100 mm
Hole tolerance±0.5 mm
Minimum wall1.5 mm on small parts, scaling to about 2.5 mm on large sections
Maximum part size390 × 290 × 390 mm (minimum 5 × 5 × 5 mm)
Minimum featureHoles from 1.5 mm; embossed or engraved detail 1.0 mm wide, 1.0 mm deep
DensityOver 99% of wrought density
Surface finishRa 3.2–12 µm as built, sanded as standard; machine or polish for sealing and bearing faces
ThreadsTapped threads from M6 upwards

Materials

  • 316L stainless steel — excellent corrosion resistance, weldable and machinable. As-printed tensile strength typically 530–650 MPa, yield 370–550 MPa, elongation around 20–40%.
  • Ti-6Al-4V (grade 5 / TC4) titanium — very high strength-to-weight, density ~4.43 g/cm³, outstanding corrosion resistance and biocompatibility

Typical applications

  • Aerospace and motorsport brackets where every gram counts
  • Conformal cooling inserts for injection moulds
  • Heat exchangers and manifolds with internal flow channels
  • Surgical and medical instrument bodies in titanium
  • High-temperature jigs and fixtures that plastic cannot survive
  • Topology-optimised and lattice structures for lightweighting
  • Obsolete or discontinued metal components with no supply chain left
Good to know — the honest limits of SLM Metal
  • This is by far our most expensive lane. Price climbs steeply with volume and with part height, because build time is dominated by the number of layers. Hollowing and lightweighting your model genuinely lowers the price.
  • SLM needs support structures, and they are welded on. Down-facing surfaces come out rougher, and support removal leaves witness marks that only machining or polishing will erase.
  • The melt-and-cool cycle builds residual stress. Tall thin walls and large flat plates can distort, and heavily stressed geometry may need design changes to build successfully.
  • As-built roughness of Ra 3.2–12 µm is too coarse for sealing faces, bearing surfaces or precision fits — budget for post-machining on those features.
  • Minimum wall is 1.5 mm and up, which is thicker than the plastic lanes. Very fine metal detail is not achievable here.
  • Only two alloys are available. Aluminium, tool steels and superalloys are not in the range.
  • Metal parts are heavy, so shipping cost is a real line item on larger geometries.
  • Mechanical properties vary with build orientation and are not supplied with material certification — do not treat printed values as certified for safety-critical use.
BINDER ON METAL POWDER
Industrial · 15–20 days

Binder Jetting — Sintered 316L Steel

The economical route to small stainless steel parts, up to a 100 mm cube.

Binder Jetting sprays a liquid binder into a bed of stainless steel powder to glue the part together layer by layer, then debinds and sinters it in a furnace to fuse the metal. Nothing is melted during printing, so there are no supports, no residual stress and no witness marks — and the process is considerably cheaper than laser melting for small parts. The trade-off is that the part shrinks substantially in the furnace, so accuracy is proportional rather than absolute.

Layer thickness~0.05 mm (green state)
Tolerance±0.3–0.4% up to 50 mm
Max part size100 × 100 × 100 mm
  • Substantially cheaper than laser-melted metal for small parts
  • No support structures at all — geometry is free and no witness marks are left behind
  • Nothing melts during printing, so there is no residual-stress distortion from the print itself
  • Parts nest densely in the build box, so batches of small parts price very well

15–20 days, produced on Zbotic's industrial line and delivered pan-India.

Specifications

Layer thicknessApproximately 0.05 mm in the green (pre-sintered) state
Dimensional tolerance±0.3–0.4% on features up to 50 mm; ±1.3% above 50 mm
Hole tolerance±0.5 mm
Minimum wall1.5–2.0 mm
Maximum part size100 × 100 × 100 mm — a hard limit (minimum 5 × 5 × 5 mm)
Minimum featureHoles from 1.5 mm; embossed or engraved detail 1.0 mm wide, 1.0 mm deep
Sintered densityTypically 96–99% of wrought density
Surface finishEven Ra 4–8 µm, sandblasted as standard

Materials

  • 316L stainless steel — corrosion resistant, high temperature tolerant, good toughness

Typical applications

  • Small custom metal fittings, brackets and hardware
  • Everyday-carry items, tool parts and metal accessories
  • Decorative and jewellery pieces in stainless steel
  • Tooling inserts and small production fixtures
  • Compact parts with complex internal flow channels
  • Low-cost metal prototypes before committing to laser-melted parts
  • Replacement metal fittings for discontinued equipment
Good to know — the honest limits of Binder Jetting
  • Sintering shrinks the part by roughly 17–20%, compensated by scaling the model up before printing. That is why tolerance is quoted as a percentage: ±0.3–0.4% up to 50 mm, widening to ±1.3% beyond it. On an 80 mm feature that is about a millimetre — plan fits accordingly.
  • The 100 mm cube is an absolute ceiling. Anything larger has to go to laser-melted metal or be split.
  • Sintered parts sit around 96–99% dense, so fatigue strength and pressure-tightness are below fully melted metal. Do not use this lane for pressure vessels, high-cycle fatigue or safety-critical loads.
  • 316L stainless is the only material offered.
  • Long, thin or unsupported overhanging features can sag or distort during the furnace cycle — thicken them or add support geometry into the design.
  • Because shrinkage is slightly anisotropic, tall parts can be marginally less accurate in the build direction than across it.
  • No material certification is supplied — treat this as a functional and decorative process, not a certified structural one.

How It Works

Three simple steps from your design file to finished parts at your doorstep.

01

Upload Your Design

Upload STL, OBJ, 3MF, or STEP files. For multicolor, upload a .3mf from Bambu Studio. Instant 3D preview and auto-analysis included.

02

Configure & Get Quote

Choose technology, material, colors and finish. Get an instant automated price — no waiting for manual quotes. Map multicolor filaments live in our 3D viewer.

03

Print & Deliver

Track your order through every production stage. In-house FDM and multicolor parts ship in days; industrial resin, nylon and metal parts arrive in 15–20 days. Quality-inspected, shipped pan-India.

Zbotic vs Typical 3D Print Services

We built what we wished existed — an instant-quote, multicolor-capable 3D printing platform that doesn't make you wait days for a price.

Zbotic
  • Instant automated quotes — even for metal parts
  • Multicolor printing — up to 8 colors per model
  • Interactive 3D model preview before ordering
  • Real-time order tracking through production
  • 7 technologies — plastics to metals, one platform
Others
  • Manual quotes — wait 24-48 hours for a price
  • Single color only — no multicolor support
  • No model preview — blind ordering
  • No tracking — email updates at best
  • Usually FDM only — limited technology options

What We Offer

Advanced manufacturing capabilities for every type of 3D printing project.

30+ Materials

PLA, ABS, PETG, TPU, 12 production resins, 8 industrial nylons, stainless steel and titanium

7 Technologies

Multicolor FDM, FDM, SLA resin, MJF nylon, SLS nylon, SLM metal and Binder Jetting

0.025mm SLA Layers

Available on resin for jewellery-grade detail; 0.05–0.10mm is the everyday range

Post-Processing

Sanding, painting, polishing and vapor smoothing

Batch Production

Consistent quality across 1 to 1000+ parts

Quality Assured

Every part dimensionally verified before shipping

Trusted by Creators

Hear from engineers, students, and businesses who use Zbotic for their 3D printing needs.

"The multicolor prints blew us away. We uploaded a Bambu 3MF file and got a perfect 4-color prototype delivered in 3 days. No other service in India does this."
AK
Amit Kumar
Product Engineer, TechVentures
"Instant pricing was the game changer. Other services took 2 days just to quote. Zbotic gives me the price the moment I upload. We print all our robotics parts here now."
NS
Neha Sharma
Professor, IIT Bombay
"From concept to physical product in 48 hours. The 3D preview and color mapping before ordering gives us total confidence. The resin prints are flawless every time."
VP
Vikram Patel
Founder, LuminTech

Frequently Asked Questions

Which 3D printing technologies do you offer?
Seven: Multicolor FDM (up to 8 colours in one print), single-colour FDM, SLA resin (12 production resins), MJF nylon, SLS nylon, SLM laser-melted metal and Binder Jetting in 316L steel. Multicolor and FDM are printed in-house; the other five are produced on Zbotic's industrial line. Every technology gets an instant automated quote on the same upload.
Can I 3D print metal parts in India?
Yes — upload your CAD file and pick SLM for fully dense (over 99%) 316L stainless steel or Ti-6Al-4V titanium up to 390×290×390mm, holding ±0.3mm under 100mm with tapped threads from M6. Or pick Binder Jetting for economical sintered 316L up to a 100mm cube, where the furnace shrink makes tolerance proportional (±0.3–0.4% up to 50mm). Both are produced on Zbotic's industrial line and delivered pan-India in 15–20 days.
How fast will I get my parts?
In-house FDM and multicolor parts are printed in as little as 24 hours and ship in days, with a Rush option at checkout. Industrial technologies (SLA resin, MJF, SLS, SLM and Binder Jetting) are produced on Zbotic's industrial line and delivered in 15–20 days. Both timelines are shown on your quote before you pay.
How does instant pricing work?
For in-house prints we slice your actual file on our print farm and price the real print time and material — in seconds. For industrial technologies, your model is analysed for manufacturability and priced live when you click Calculate Price. No manual quoting, no 24–48 hour waits.
MJF or SLS — which nylon should I choose?
Both produce strong, support-free nylon parts with no witness marks. MJF prints at 0.08mm with very consistent, near-isotropic properties in PA11/PA12 — the better pick for end-use housings, snap-fits and repeat batches (370×276×360mm max, natural grey or dyed black). SLS adds a glass-bead-filled grade for near-machined stiffness and a taller build at 350×350×400mm — the better pick for load-bearing brackets, tooling and hot environments. Both surfaces are matte and slightly grainy; neither is a cosmetic gloss finish. If in doubt, quote both — prices are instant.
What file formats can I upload?
STL, OBJ, 3MF and STEP/STP up to 100MB. For multicolor prints, upload a painted .3mf from Bambu Studio or OrcaSlicer. STEP files are recommended for metal parts — they preserve exact geometry.
What accuracy and wall thickness can I expect?
In-house FDM prints at 0.08–0.20mm layers and holds ±0.3mm, or ±0.5% over 60mm — keep walls at 0.8mm or more, 1.2mm+ if they carry load. Industrial SLA holds ±0.2mm under 100mm (walls from 0.5mm); MJF, SLS and SLM hold ±0.3mm under 100mm or ±0.4% above it (walls from 1.0mm, 1.5mm for metal). Binder Jetting is quoted as a percentage because the part shrinks in the furnace: ±0.3–0.4% up to 50mm, ±1.3% above. Full numbers are in the technology tabs, and our upload checker flags risky geometry before you order.
Do you handle batch production?
Yes. All seven technologies scale from a single prototype to hundreds of parts with consistent quality, and industrial orders ship consolidated. Powder processes (MJF, SLS, Binder Jetting) nest parts densely in the build, so a batch is disproportionately cheaper per part than a one-off. For large or recurring runs, talk to us about volume pricing.

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