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Bambu H2D Combo + Tullomer 500g Bundle

Product# H2DC-TULLOMER-500G-BUNDLE

Bundle Includes:

  • Bambu Lab H2D Combo Printer
  • Z Polymers Tullomer - 500g Spool


Key Features:

  • Dual-nozzle Multi-material 3D Printing
  • 350*320*325 mm³ Print Volume
  • 5μm Resolution Optical Motion Calibration
  • Closed-loop Servo Extruder
  • 350°C Nozzle & 65°C Active Chamber Heating

Tullomer Design and Printing Guide

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Bambu H2D Combo + Tullomer 500g Bundle$2,274.00
Regular Price $2,274.00 Discount $2,274.00

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Why Upgrade?

Bambu Lab H2D

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  • Secure network connection
  • Tungsten Carbide Nozzle
  • Enhanced Filtration System
  • Higher Accuracy motion system
  • Auxiliary hotend cooling fan
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Bambu Lab H2D Pro

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  • Secure network connection
  • Tungsten Carbide Nozzle
  • Enhanced Filtration System
  • Higher Accuracy motion system
  • Auxiliary hotend cooling fan

Tullomer Performance Challenge Bring Your Ideas to Life

Submit your most ambitious applications for Tullomer filament, and you could win the chance to bring your vision to reality. Winners will receive Tullomer filament and a unique opportunity to collaborate with our team to showcase your project.

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Case Study Erdos Miller Transformed MWD Tooling with Tullomer: Cut Costs & Boost Efficiency!

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Who We Are

Founded in 1997, we bring next-generation technology to customers, with an emphasis on expertise and white-glove service. Showrooms in Chicago, Detroit, Tokyo, and Seoul.

Our Company

The leading national supplier of Desktop 3D printers. Expertise in both Industrial and Desktop 3D printing. Supplier of next-generation Metal, SLS, ultrafast Industrial printers.

Customer Benefits

  • White glove support
  • On-site support options
  • Training packages


Product Overview


Download Custom Bambu Material Profiles for Premium Print Quality


What's Included

3D Printer

Bambu Lab H2D Combo

3D Printing Material

Z Polymers Tullomer - 500g x 1


Bundle Items Details


Unleash Unprecedented Versatility

The Bambu Lab H2D AMS Combo is more than just a 3D printer; it's a comprehensive personal manufacturing platform designed to bring your most ambitious ideas to life. Combining dual-nozzle capabilities with advanced material handling and optional laser engraving/cutting, the H2D empowers you to create with unparalleled flexibility and efficiency.


Key Features

  • Multi-Material Printing: Seamlessly combine flexible and rigid filaments, or low-cost and exotic materials in a single print.
  • Dedicated Support Material: Achieve perfect supports with minimal waste, purging, and reloading.
  • Efficient Multi-Color Printing: Print vibrant, multi-color models with speed and precision.
  • All-in-One Solution: Expand your capabilities with optional laser engraving, digital cutting, and even pen drawing (with respective module add-ons).
  • AMS (Automatic Material System) 2 Pro: Enjoy automated filament loading, unloading, and spool switching for continuous printing.

Explore Dual-Nozzle Capabilities

Multi-Material Printing

Dedicated Support Material

Perfect supports with minimal waste, purging and reloading

Efficient Multi-Color Printing


Maximize Material Efficiency, Minimize Waste

Leveraging real-time images from the BirdsEye camera (H2D Laser Edition only, or with Laser Upgrade Kit), Bambu Suite can automatically arrange your project according to the shape of your material, i.e., leftover plywood from the previous project. This feature helps you get the most out of every material.

Powerful Performance

  • Go Big: Print volume up to Single Nozzle Printing: 325 x 320 x 325 mm³, Dual Nozzle Printing: 300 x 320 x 325 mm³, Total Volume for Two Nozzles: 350 x 320 x 325 mm³.
  • Go Fast: Achieve impressive print speeds (reference using Bambu PLA Matte filament).
  • Go Precise: High-precision components and advanced control algorithms ensure exceptional print quality.

High-Performance Materials Ready

Unleash the full potential of high-performance materials. Equipped with 65°C active chamber heating and a high-temperature hotend reaching up to 350°C, the H2D delivers precise closed-loop temperature control. This advanced system effectively eliminates warping and deformation in high-performance materials, ensuring superior layer bonding and maximizing their full potential.

Smarter and Safer Experience

Unlike legacy systems with single filament run-out detectors, the H2D features comprehensive material flow monitoring. Throughout the AMS-to-nozzle path, 15 strategic sensors form an intelligent network, continuously tracking five key parameters: feeding velocity, tension, filament tip location, extruder thermal environment, and dynamic extrusion pressure. This establishes an industry-leading filament behavior control system.


What’s Included With H2D

  H2D H2D AMS Combo H2D Laser Full Combo
Bambu Lab H2D
Bambu Lab H2D Laser Edition
Build Plate
Spool Holder
Accessory Box
AMS 2 Pro
10W Laser Module
Depending on selected combo
40W Laser Module
Depending on selected combo
Cutting Module (with Pen Holder)
Laser Platform
Cutting Platform
Safety Key
Ventilation Pipe
Laser & Cutting Material
Emergency Stop Button


The Vision

Tullomer is a breakthrough superpolymer engineered to match the mechanical performance of continuous fiber-reinforced materials like PEEK, Ultem, and PC—without relying on fibers.


The Material Science

The key to Tullomer is the Mesogen Nematic Structures that line up in the same direction this alignment helps create strong fiber like properties. When the material is pushed through a nozzle the molecules stay lined up. This controlled alignment makes the material much stronger in the direction of printing.


The Strength Tullomer’s Molecular Structure Vs Other Super Polymers

Tullomer is considered a 100% crystalline polymer, meaning its molecular structure is highly organized with a consistent repeating pattern, similar to the crystalline structure of metals. This crystalline structure is why it stands up to the performance of PEEK, Ultem & PC.


Key Benefits & Applications

Tullomer excels in mechanical strength, chemical resistance, and stability across extreme environments, outperforming PEEK, Ultem, and PC in fiber-like performance.

Property Tullomer Applications
Mechanical Strength Superior (Metal-like, Fiber Reinforced) Industrial tools, heavy machinery, aerospace structures
Chemical Resistance Exceptional (Pure Crystalline Barrier) Oil & gas, pharmaceuticals, chemical processing equipment
Self-Extinguishing (Flame Resistance) Yes, V-0 Rating Aircraft interiors, electrical enclosures
Temperature Resistance (~200°C) Very High Engine components, high-temp enclosures
Low Coefficient of Expansion Minimal (Highly Stable) Vacuum molds, precision optical components
Dielectric Constant & Loss Tangent Very Low (Superior Insulation) EV battery components, high-voltage insulation
Moisture Absorption & Transmission Best-in-Class (Excellent Barrier) Food packaging, electronics protection
RF Transparency High (Ideal for Signal Clarity) Radomes, antennas, satellites
Low Outgassing Very Low (Stable in Vacuum Environments) Biocompatible applications, semiconductor manufacturing
Sustainability (PFAS-Free, Low Carbon Footprint) Yes Eco-friendly manufacturing applications

Printing Basics

Z Adhesion

Tullomer is strong and rigid in the X and Y directions, allowing control over part strength, even for complex shapes. Like most 3D printed materials, it is weaker in the Z direction due to layer bonding.

Recommended Tools

  • Use textured or untextured build plates
  • Thick steel build plate is recommended but not needed
  • Must use a strong glue or adhesive Magigoo for PC is recommended

Recommended Print Settings

Nozzle

  • Keep nozzle temperature around~275-300°C
  • Start around 290°C and explore the effects of going hotter and colder.
  • Tullomer viscosity drops the faster you extrude it, so going hotter is not always better.
  • Z-adhesion is a challenge with Tullomer, and hotter temperatures help improve adhesion but require slower print speeds.

Bed Temperature

  • Keeping bed temperature at 120C
  • Keeping the part hot while printing is key to maximizing Z-layer adhesion and minimizing warping.

Mechanical Properties

  • If you have a heated chamber, set it to 60°C or hotter if possible.
  • Keeping the part hot when printing is key to maximizing Z-layer adhesion and minimizing warping.

Print Speed & Layer Recommendations for Tullomer

Recommended Settings

  • Layer height: 0.050mm
  • Wall speed: 500 mm/s (or as fast as your printer allows)

Key Considerations

  • Faster print speeds and thinner layers improve fiber strength by applying more shear during printing.
  • Z-direction adhesion is weaker than X-Y strength. Printing slower and with thicker layers can improve Z-adhesion but may reduce overall part strength.

Additional Tips

For Better Layer Bonding
  • Use thicker line widths
  • Experiment with thinner or thicker layers
  • Increase nozzle and build chamber temperatures
  • Print slower or adjust layer times based on part geometry
To Reduce Warping
  • Use layers thicker than 0.1mm

H2D Specs

Printing Technology
Fused Deposition Modeling
Body
Build Volume (WxDxH)
Single Nozzle Printing: 325 x 320 x 325 mm3 Dual Nozzle Printing: 300 x 320 x 325 mm3 Total Volume for Two Nozzle: 350 x 320 x 325 mm3
Chassis & Shell
Aluminum, Steel, Plastic and Glass
Laser Safety Windows
Equipped on Laser Edition, normal H2D can upgrade through Laser Upgrade Kit
Air Assist Pump
Equipped on Laser Edition, normal H2D can upgrade through Laser Upgrade Kit
Physical Dimensions
Physical Dimensions
492 x 514 x 626 mm3
Net Weight
31 Kg
Toolhead
Hot End
All-Metal
Extruder Gear
Hardened Steel
Nozzle
Hardened Steel
Max Nozzle Temperature
350 C
Included Nozzle Diameter
0.4 mm
Supported Nozzle Diameter
0.2 mm, 0.4 mm, 0.6 mm, 0.8 mm
Filament Diameter
1.75 mm
Extruder Motor
Bambu Lab High-precision Permanent Magnet Synchronous Motor
Heatbed
Supported Build Plate Type
Textured PEI Plate, Smooth PEI Plate
Max Heatbed Temperature
120 °C
Speed
Max Speed of Toolhead
1000 mm/s
Max Acceleration of Toolhead
20,000 mm/s2
Max Flow for Hotend (Standard Flow Hotend)
40 mm3/s (Test parameters: 250 mm round model with a single outer wall; Bambu Lab ABS; 280 °C printing temperature)
Max Flow for Hotend (Optional High Flow Hotend)
65 mm3/s (Test parameters: 250 mm round model with a single outer wall; Bambu Lab ABS; 280 °C printing temperature)
Chamber Temperature Control
Active Chamber Heating
Supported
Max Temperature
65 °C
Air Purification
Pre-filter Grade
G3
HEPA Filter Grade
H12
Activated Carbon Filter Type
Granulated Coconut Shell
Cooling
Part Cooling Fan
Closed Loop Control
Auxiliary Part Cooling Fan
Closed Loop Control
Chamber Heat Circulation Fan
Closed Loop Control
Cooling Fan for Hotend
Closed Loop Control
Main Control Board Fan
Closed Loop Control
Chamber Exhaust Fan
Closed Loop Control
Supported Filament Type
PLA, PETG, TPU, PVA, BVOH, ABS, ASA, PC, PA, PET, Carbon/Glass Fiber Reinforced PLA, PETG, PA, PET, PC, ABS, ASA, PPA-CF/GF, PPS, PPS-CF/GF
Supported
Sensor
Live View Camera
Built-in; 1920 x 1080
Nozzle Camera
Built-in; 1920 x 1080
BirdsEye Camera
Built-in; 3264 x 2448 (Equipped with Laser Edition)
Toolhead Camera
Built-in; 1920 x 1080
Door Sensor
Supported
Filament Run Out Sensor
Supported
Filament Tangle Sensor
Supported
Filament Odometry
Supported with AMS
Power Loss Recovery
Supported
Electrical Requirements
Voltage
100-120 VAC / 200-240 VAC, 50/60 Hz
Max Power*
2200 W@220 V / 1320 W@110 V
Electronics
Touchscreen
5-inch 720 x 1280 Touchscreen
Storage
Built-in 8 GB EMMC and USB Port
Control Interface
Touchscreen, mobile App, PC App
Neural Processing Unit
2 TOPS
Software
Slicer & Software
Bambu Studio, Bambu Suite, Bambu Handy Supports third-party slicers which export standard G-code, such as Super Slicer, PrusaSlicer and Cura, but certain advanced features may not be supported.
Supported Operating System
MacOS, Windows
Wi-Fi
Operating Frequency
2412-2472 MHz, 5150-5850 MHz (FCC/CE) 2400-2483.5 MHz, 5150-5850 MHz (SRRC)
Wi-Fi Transmitter Power (EIRP)
2.4 GHz: <23 dBm (FCC); <20 dBm (CE/SRRC/MIC)
5 GHz Band1/2: <23 dBm (FCC/CE/SRRC/MIC)
5 GHz Band3: <30 dBm (CE); <24 dBm (FCC)
5 GHz Band4: <23 dBm (FCC/SRRC); <14 dBm (CE)
Wi-Fi Protocol
IEEE 802.11 a/b/g/n
10W & 40W Laser Module
Laser Type
Semiconductor Laser
Laser Wavelength
Engraving Laser: 455 nm ± 5 nm Blue Light Height Measuring Laser: 850 nm ± 5 nm Infrared Light
Laser Power
10 W ± 1 W; 40 W ± 2 W
Laser Spot Dimension
10W: 0.03 mm * 0.14 mm; 40W: 0.14 mm * 0.2 mm
Working Temperature
0 °C–35 °C
Max Engraving Speed
10W: 400 mm/s; 40W: 1000 mm/s
Max Cutting Thickness
10W: 5 mm; 40W: 15mm (Basswood Plywood)
Laser Safety Class for Laser Module
Class 4
Overall Laser Safety Class*
Class 1
Engraving Area
10W: 310 mm * 270 mm; 40W: 310 mm * 250 mm
XY Positioning Accuracy
< 0.3 mm
Z Height Measuring Method
Micro Lidar
Z Height Measuring Accuracy
± 0.1 mm
Flame Detection
Supported
Temperature Detection
Supported
Door Sensor
Supported
Laser Module Installation Detection
Supported
Safety Key
Included
Ventilation Pipe Adapter Outer Diameter
100 mm
Supported Material Type
Wood, rubber, metal sheet, leather, dark acrylic, stone, and more
Cutting Module
Cutting Area
300 x 285 mm2
Drawing Area
300 x 255 mm2
Supported Pen Diameter
10.5 mm-12.5 mm
Cutting Mat Type
LightGrip and StrongGrip Cutting Mats
Blade Type
45°*0.35 mm
Blade Pressure Range
50 gf-600 gf
Max Cutting Thickness
0.5 mm
Blade and Pen Recognition
Supported
Cutting Mat Type Detection
Supported
Supported Image Type
Bitmap and Vector Images
Supported Material Type
Paper, vinyl, leather, and more
* To ensure the heatbed quickly reaches the needed temperature, the printer will maintain maximum power for no more than 3 minutes. * When the printer's protection is complete and properly working, the printer and laser module work as a class 1 laser product.

Key Benefits

  • 100% crystalline like metals
  • Tensile strength > Stainless Steel & Carbon Filament
  • 6X Lighter than Steel and 22-36% Lighter than carbon fiber
  • Stiffer than most polymers
  • Inert to most (harsh) chemicals
  • Radio Transparent
  • Low Dk and Df (tailorable)
  • Eliminates PFAS and environmental issues
  • 100% Recyclable
  • Inherently non-flammable
  • Highest barrier (O2 and water vapor)
  • High dimensional stability (low creep)
  • Low coefficient of thermal expansion (tailorable)
  • High thermal stability
  • No need for additional post processing like annealing
  • Low moisture absorption (.04%)
  • High dielectric strength

Healthcare

Medical  Mesh, Prosthetics, etc.

Aerospace & Defense

Aerospace, Ballistics, Tethers, Functional fabrics

Energy & Transportation

Fuel Cells, Automotive Parts, etc.


Tullomer Advantages over Aluminum, Stainless Steel, Magnesium

  • Higher strength to weight & stiffness to weight ratios
  • Excellent corrosion resistance
  • Tremendous space and weight savings
  • Advantageous electrical properties
  • Faster solidification time
  • Higher dimensional stability
  • Eliminates secondary machining

The Tullomer Advantages as a 3D Printing Material

  • Exceeds the mechanical strength of all the commercially available FDM filament super-polymers
  • Superior thermal stability over other plastics
  • Halogen-free flame retardant (UL94 V-0)
  • Excellent dimensional stability and low CTE
  • Outstanding chemical resistance and low water absorbency
  • Superlative gas barrier with low oxygen and moisture permeability
  • Advantageous electrical properties
  • Eliminates need for annealing/post process
  • Lower printing temperature compared to PEEK

Tullomer vs Carbon Fiber

  • Higher strength-to-weight ratio than some commercially available carbon monofilament fiber
  • Higher elongation property than carbon fiber
  • Tullomer is recyclable & uses an eco-friendlier manufacturing process with less toxic gas generation

Magigoo Pro PC is designed to address first layer adhesion to the build platform and print warping with Polycarbonate filaments, making sure prints stick firmly when the print bed is hot and that the part is easy to remove once it cools. This unique and innovative mechanism means that no tools are needed to remove prints from the bed, as they just pop off when the bed cools down. 

 

The strength and toughness of PC make it an ideal FFF material for the production of functional prototypes as well as end use parts, but printing with it does present some challenges. Virgin PC has a high glass transition temperature (Tg) and thus can be used in high temperature applications. However, having a high Tg can make it very difficult to print using desktop printers, as these are usually not equipped as well for the high printing temperatures required to print virgin PC. Virgin PC tends to warp considerably when using an insufficient bed temperature (<130 ºC), or when printed in non-heated enclosed chambers without the use of an appropriate bed adhesive.

 

Magigoo Pro PC can be used on glass or a multitude of other surfaces. Use on other plastic-based surfaces, including sheets, is recommended to provide strong adhesion and preventing the part from fusing to the sheet.

Key Features

  • Over 100 applications per pen
  • Works with PC (Polycarbonate) build materials
  • Easy application
  • Easy release
  • Easy clean
  • No smell
  • Non-toxic
  • No additional tools needed
  • Easy to transport

Why Dynamism?

We're dedicated to earning each customer's loyalty through exceptional service.

Who We Are

Founded in 1997, we bring next-generation technology to customers, with an emphasis on expertise and white-glove service. Showrooms in Chicago, Detroit, Tokyo, and Seoul.

Our Company

The leading national supplier of Desktop 3D printers. Expertise in both Industrial and Desktop 3D printing. Supplier of next-generation Metal, SLS, ultrafast Industrial printers.

Customer Benefits

  • White glove support
  • On-site support options
  • Training packages


2026 Edition Professional 3D Printer Buyers Guide

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