Large-Scale 3D Printing Infrastructure
99% On-Time Delivery with a Large-Scale Production Facility
Materials
We recommend the optimal material based on your specific needs.
Polymer
Filament Materials
ULTEM
PEEK
PLA
PLA-CF
PEEK-CFR
Polymer
Resin Materials
ABS-like (White)
ABS-like (Gray)
ABS-like (Transparent)
Metal
Materials
Aluminum
Stainless Steel (17-4PH)
Maraging Steel
Inconel
Titanium
Polymer
Powder Materials
PA11
PA12
Can't find the material you need?
We'll help you through a consultation.
Process Overview
We deliver optimized products quickly through an efficient process.
1
Instant
Quotation
Upload your CAD file through the inquiry form.
2
Order Review &
Preprocessing
We verify and optimize your CAD file.
3
3D Printing
Production
We produce products quickly and accurately.
4
Quality Control &
Delivery
We deliver printed parts safely.
Industries
Introducing the fields
where 3D printing is used










Many companies have achieved success through Lincsolution’s 3D printing services.
Design Services
No design data?
We offer optimized
design support
for high-quality prints.
Product Design
1. Rough sketch (2D) → Detailed sketch (2D) → Product design (3D)
2. Various design options can be provided based on the proposed concept.
Mechanical Design Engineering
1. We begin by analyzing product functionality, identifying required elements, and planning a systematic design process, leading to complete mechanical design.
2. Our services cover a wide range of products — from simple daily necessities to small home appliances.
3. Designs are typically completed and reviewed within 3 to 10 days, ensuring a fast and efficient turnaround.
Inspection & Lightweight Design (DfAM)
1. Acquire drawings → Set up scanner → 3D scanning → Convert to parameterized data using reverse engineering tools
2. We provide highly accurate drawings, with scan tolerance of 80 μm and design tolerance under 100 μm — closer to the actual product.
3. All scan and reverse-engineering data is handled with strict confidentiality.
3D Scanning & Reverse Engineering
1. Utilize 3D scan data and original design files for product inspection.
2. Provide specialized DfAM structures to enhance strength and reduce weight in metal and polymer 3D printing.
Mold Design
1. We provide production-ready mold design for products that have completed the prototyping stage.
2. We collaborate with manufacturers to reduce defects and ensure high-quality output.
FAQ
Is there a deadline for placing an order each day?
[Quotation Processing Cut-off Policy]
Monday to Friday
Orders received before 5:00 PM will be processed and quotations sent on the same day.
Orders received after 5:00 PM will be processed and quotations sent the next business day.
Saturday to Sunday
Quotations will be processed and sent on Monday.
Public Holidays
Quotations will be sent on the following business day after the holiday.
What are the differences between the printing methods?
FDM (Fused Deposition Modeling) : Durable, but surface quality is relatively low. Supports a wide range of materials — from cost-effective options like PLA and ABS to high-strength engineering plastics such as PC, PEEK, and ULTEM.
SLA (Stereolithography): Offers moderate durability with excellent surface finish and high assembly precision. Compatible with materials that mimic ABS and PP properties.
SLS / MJF (Selective Laser Sintering / Multi Jet Fusion) : Provides exceptional durability and good assembly precision, although the surface may be slightly rough. Utilizes PA (Nylon 12) materials.
PolyJet (MJP – MultiJet Printing) : Moderate durability with high precision, ideal for fine-detail parts. Supports digital ABS-like materials and rubber-like flexible materials.
Metal 3D Printing : Supports a variety of metals including aluminum, stainless steel, nickel alloys, titanium, cobalt-chrome, and maraging steel.
The quotation seems a bit expensive — is there any way to reduce the cost?
Most of the quotation cost comes from the material. If you can hollow out the interior of the part as much as possible, it can significantly reduce the cost.
How can I ensure the product doesn't get damaged during delivery?
3D-printed parts should have a minimum wall thickness of at least 1 mm. The main body of the design must maintain a thickness of 1 mm or more to ensure the overall structural integrity of the product.