How to Print & Assemble The SPACESHIP-S10

How to print the SPACESHIP-S10

If you want to save this How-To instruction as a pdf file (and print it out later if needed), simply copy the URL of this page and paste it to https://www.printfriendly.com/ . Printfriendly will generate a printer-friendly pdf of the page with all the texts and images for you.

Please consider joining Morethan3D community on our Discord channel to discuss 3D printing hints & tips, ask questions, and get help if you come across any printing issues.

The STL package of this model includes an “All-In-One” Print Profile created for Bambu Lab H2 Series 3D printers. If you don’t have a H2 Series but any other printers from Bambu Lab, simply load the profile in Bambu Studio and change the printer setting to your printer. If you are new to 3D printing and never use a “All-In-One” Print Profile before, follow this instruction: How to use Bambu Studio’s All-In-One Print Profile

If you don’t have access to any Bambu Lab 3D printers. We recommend you to download Bambu Studio and load our Profile up so you can replicate the print settings that we use for each part of the model in your own slicer. Most parts of the model can be printed with a standard 0.4mm Nozzle. However, to achieve the optimum result for parts with small details, we strongly recommend using a 0.2mm Nozzle

Please note: The STL for each part was saved in the recommended orientation to print on FDM printers. Hence, when you load the STL in your slicer software, you don’t need to orientate them again, unless you want to try to print them in a different orientation.

Below are some tips

  • There are two “All-In-One” Bambu Studio Profiles created for this model:
    – SPACESHIP-S10 [MORETHAN3D – H2D Profile] – 0.2 Nozzle
    This profile contains all parts that are recommended to print with a 0.2mm Nozzle

    – SPACESHIP-S10 [MORETHAN3D – H2D Profile] – 0.4 Nozzle
    This profile contains all parts that are recommended to print with a 0.4mm Nozzle

    It is strongly recommended that you use the correct Nozzle size to print the parts to achieve the optimum result. You can print all parts with a 0.4mm Nozzle if you don’t have a 0.2mm one, but some parts won’t look as good as they should

  • All magnet holes can be printed without support regardless of their positions/orientations on the model. Please don’t generate support for these holes (unless you really need to). Otherwise, you may struggle to remove support inside the holes due to restricted access.

  • All internal stiffeners (inside the Skirt Section, Thrust Dome Section, LOX Tank Section, Common Dome Section, and Forward Dome Section) can be printed without support.

  • This model is designed in such a way to allow you to assemble and disassemble the model into piece part level, because almost every part is held together by magnets. However, if you prefer to glue everything, or some parts, together, that’s also fine – but please be aware that if you do, it may be difficult to update the model later on.

  • There are two STL’s in folder ‘STEP 01’ called ‘SPACESHIP Assembly_S10’, and ‘SPACESHIP Propellant Distribution System_S10’.
    If you load these files (separately), you’ll see the fully assembled SPACESHIP-S10 model, and the internal plumbing of the ship. This will help you understand where each and every part is fitted on the model.

  • This model contains a number of parts that require multi-colour printing.
    To print these multi-colour parts, all you need to do is load both files of the same part (Black, and Silver) into your slicer software, assign the correct colour to the part, and print.
    Please note: Both the Black and Silver parts are saved from the same coordinate in relation to each other. Hence, when you load them into your slicer software, they should merge together correctly. You don’t need to align them manually

  • There are a number of parts that come with custom support (these files has the words “With custom support” after their names).
    These particular parts have critical design features which are difficult for the slicing software to auto-generate the correct support, hence the custom support were designed into the model to ensure these parts can be printed successfully and perfectly.
    Therefore, it is strongly recommended that you use these files instead of trying to create your own support for these parts.

    Please note: the custom support provided only support the critical design features of the part, you still need to generate support for other non-critical feature wherever required.

    If you are an experienced user and want to generate your own support for the parts, just use the STL files without the “With custom support”

  • This model is designed at 1:96 scale, hence, it is recommend that you print at this scale to achieve the highest quality. However, if you decide to print the model at a smaller scale, please be aware that the magnets we selected for this model will no longer fit  and you will have to find smaller magnets to fit, or glue the parts together.

How to assemble this model?

So now you’ve got all your parts printed? Great! Let’s assemble the model. I’ll take you through the assembly process step by step but before that, you need to purchase some items:

  • 5mm dia x 3mm thick N42 Neodymium magnets (LINK) | Qty: 98-off
  • 3mm dia x 2mm thick N42 Neodymium (LINK) | Qty: 46-off
  • Super glue (LINK) | Qty: 1 bottle

STEP 1: ‘Dry’ assemble the model

At this step, all I want you to do is try to stack all the parts together to get a good understanding of where they are located. Because there are a lot of magnets you need to fit during the assembly process, doing this first step will give you an idea of how to fit the magnets in each part correctly. Please use the files in STEP 01 folder, and the photos below if required.

STEP 2: Assemble the Skirt/Thrust Dome Section

Parts required (refer to the photos below)

  • 1x Skirt-Thrust Dome Section (a)
  • 1x Thrust Dome Section Heat Shield (b)
  • 1x Thrust Dome Section Flap Hinge Heat Shield_RH (c)
  • 1x Thrust Dome Section Flap Hinge Heat Shield_LH (d)
  • 2x Camera (e)
  • 1x Fuel Transfer Port_RH (f)
  • 1x Fuel Transfer Port_LH (g)
  • 2x Locating Pin (h)
  • 6x Magnets (3mm dia x 2mm thick) (highlighted in RED)
  • 10x Magnets (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 2a: Glue 4x magnets (5mm dia x 3mm thick) into their locations on the top face of the Skirt-Thrust Dome Section
  2. STEP 2b: Glue 6x magnets (3mm dia x 2mm thick) into their locations on the bottom face of the Skirt-Thrust Dome Section
  3. STEP 2c: Glue 4x magnets (5mm dia x 3mm thick) into their locations on the front face of the Skirt-Thrust Dome Section
  4. STEP 2d: Glue the Heat Shields to the back, then insert 2x Location Pins to the holes located on the top face of the Skirt-Thrust Dome Section

    IMPORTANT: Glue the the main Heat Shield first, then the Flap Hinge Heat Shields

  5. STEP 2e: Glue 2x Cameras into their locations on the front face of the Skirt-Thrust Dome Section
  6. STEP 2f: Glue 1x magnet (5mm dia x 3mm thick) to each of the Fuel Transfer Port
  7. STEP 2g: Install the Fuel Transfer Ports to the Skirt-Thrust Dome Section

STEP 3: Assemble the Thrust Puck

Parts required (refer to the photos below)

  • 1x Thrust Puck (a)
  • 1x Skirt/Thrust Dome Section from STEP 2 (b)
  • 9x Magnets (3mm dia x 2mm thick) (highlighted in RED)
  • 4x Magnets (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 3a: Glue 4x magnet (5mm dia x 3mm thick) into their locations on the top face (x1) and bottom face (x3) of the Thrust Puck
  2. STEP 3b: Glue 9x magnets (3mm dia x 2mm thick) into their locations on the bottom face of the Thrust Puck
  3. STEP 3c: Glue the Thrust Puck to the Skirt/Thrust Dome Section from STEP 2, use the locating feature on both parts for alignment.

STEP 4: Assemble the LOX Tank Section

Parts required (refer to the photos below)

  • 1x LOX Tank Section (a)
  • 1x LOX Tank Section Heat Shield (b)
  • 1x LOX Tank Section Flap Hinge Heat Shield_RH (c)
  • 1x LOX Tank Section Flap Hinge Heat Shield_LH (d)
  • 2x LOX Tank Section Test Heat Shield (e)
  • 2x Locating Pin (f)
  • 8x Magnets (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 4a: Glue 8x magnets (5mm dia x 3mm thick) into their locations on the top face (x4) and bottom face (x4) of the LOX Tank Section
  2. STEP 4b: Glue the Heat Shields to the back, then insert 2x Location Pins to the holes located on the top face of the LOX Tank Section

    IMPORTANT: Glue the the main Heat Shield first, then the Flap Hinge Heat Shields

  3. STEP 4c: Glue the 2x Test Heat Shield patches to the front of the LOX Tank Section, use the weld marks for alignment.

STEP 5: Assemble the Common Dome Section

Parts required (refer to the photos below)

  • 1x Common Dome Section (a)
  • 1x Common Dome Section Heat Shield (b)
  • 2x Locating Pin (c)
  • 3x Magnets (3mm dia x 2mm thick) (highlighted in RED)
  • 10x Magnets (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 5a: Glue 10x magnets (5mm dia x 3mm thick) into their locations on the top (x5) & bottom (x5) faces of the Common Dome Section
  2. STEP 5b: Glue 3x magnets (3mm dia x 2mm thick) into their locations on the bottom faces of the Common Dome Section
  3. STEP 5c: Glue the Heat Shield to the back, then insert 2x Location Pins to the holes located on the top face of the Common Dome Section

STEP 6: Assemble the Forward Dome Section

Parts required (refer to the photos below)

  • 1x Forward Dome Section (a)
  • 1x Forward Dome Section Heat Shield (b)
  • 1x Forward Dome Bulkhead (1st Half) (c)
  • 1x Forward Dome Bulkhead (2nd Half) (d)
  • 2x Forward Dome Section Test Heat Shield (e)
  • 2x Locating Pin (f)
  • 8x Magnets (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 6a: Glue 8x magnets (5mm dia x 3mm thick) into their locations on the top (x4) & bottom (x4) faces of the Forward Dome Section
  2. STEP 6b: Glue the Heat Shield to the back, then insert 2x Location Pins to the holes located on the top face of the Forward Dome Section
  3. STEP 6c: Glue two halves of the Forward Dome Bulkhead together, then press fit (or glue if required) to the Forward Dome Section
  4. STEP 6d: Glue the 2x Test Heat Shield patches to the front of the Forward Dome Section, use the weld marks for alignment.

STEP 7: Assemble the Payload Section

Parts required (refer to the photos below)

  • 1x Payload Section (a)
  • 1x Payload Section Heat Shield (b)
  • 1x Payload Door (c)
  • 1x Payload Door Stop (d)
  • 1x S39 Lable (e)
  • 1x Fuel Transfer Port_RH (f)
  • 1x Fuel Transfer Port_LH (g)
  • 2x Locating Pin (h)
  • 9x Magnets (3mm dia x 2mm thick) (highlighted in RED)
  • 16x Magnets (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 7a: Glue 14x magnets (5mm dia x 3mm thick) into their locations on the top (x8), bottom (x4), and front (x2) faces of the Payload Section
  2. STEP 7b: Glue 3x magnets (3mm dia x 2mm thick) into their locations on the top & bottom faces of the downcomer pipes
  3. STEP 7c: Glue 3x magnets (3mm dia x 2mm thick) into their locations on the Payload Door, then slide the Payload Door into the Payload Section
  4. STEP 7d: Glue 3x magnets (3mm dia x 2mm thick) into their locations on the Payload Door Stop, then glue the Payload Door Stop to the Payload Section.

    IMPORTANT: STEP 7c and 7d must be completed in the correct order as described above, otherwise you won’t be able to install the Payload Door

  5. STEP 7e: Glue the Heat Shield, and S39 Label, then insert 2x Location Pins to the holes located on the top face of the Payload Section
  6. STEP 7f: Glue 1x magnet (5mm dia x 3mm thick) to each of the Fuel Transfer Port, and then install the Fuel Transfer Ports to the Payload Section

STEP 8: Assemble the Nose Cone Section

Parts required (refer to the photos below)

  • 1x Nose Cone Section (a)
  • 1x Nose Cone Heat Shield (Bottom) (b)
  • 1x Nose Cone Heat Shield (Mid) (c)
  • 1x Nose Cone Heat Shield (Top) (d)
  • 2x Camera (e)
  • 2x Starlink Terminal (f)
  • 5x Magnets (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 8a: Glue 5x magnets (5mm dia x 3mm thick) into their locations on the Nose Cone Section
  2. STEP 8b: Glue Nose Cone Heat Shield (Bottom) to the Nose Cone Section
  3. STEP 8c: Glue Nose Cone Heat Shield (Mid) to the Nose Cone Section
  4. STEP 8d: Glue Nose Cone Heat Shield (Top) to the Nose Cone Section

    IMPORTANT: It is strongly recommended that you install the Heat Shields to the Nose Cone in the specific order as described above to achieve the optimum accuracy.

  5. STEP 8e: Glue 2x Cameras to the Nose Cone Section
  6. STEP 8f: Glue 2x Starlink Terminals to the Nose Cone Section

STEP 9: Assemble the Raptor/RVac Engines

Parts required (refer to the photos below)

  • 3x R3 Engine (a)
  • 3x R3 RVAC Engine (b)
  • 9x Magnets (3mm dia x 2mm thick) (highlighted in RED)
  • 3x Magnet (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 9a: Glue 3x magnets (3mm dia x 2mm thick) into the magnet holes on top of each R3 Engine
  2. STEP 9b: Glue 1x magnets (5mm dia x 3mm thick) into the magnet hole on each of the R3 RVac Engine

STEP 10: Stack Thrust Dome Section

Parts required (refer to the photos below)

  • 1x Skirt/Thrust Dome Section from STEP 2 (a)
  • 3x R3 Engine from STEP 9 (b)
  • 3x R3 RVac Engine from STEP 9 (c)

Assembly process

  1. STEP 10a: Install 3x R3 Engine to the Skirt/Thrust Dome Section
  2. STEP 10b: Install 3x R3 RVAC Engine to the Skirt/Thrust Dome Section

STEP 11: Install plumbing to Thrust Dome Section

Parts required (refer to the photos below)

  • 1x Sub-Assembly from STEP 10 (a)
  • 1x CH4 Main Tank Transfer Tube (Large) (b)
  • 3x CH4 Main Tank Transfer Tube (Small) (c)
  • 3x Magnet (3mm dia x 2mm thick) (highlighted in RED)
  • 2x Magnet (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 11a: Glue 2x magnet (5mm dia x 3mm thick) into their locations on the ends of the CH4 Main Tank Transfer Tube (Large)
  2. STEP 11b: Glue 1x magnet (3mm dia x 2mm thick) into each of the CH4 Main Tank Transfer Tube (Small)
  3. STEP 11c: Install the 3x CH4 Main Tank Transfer Tube (Small) into the Sub-Assembly from STEP 10
  4. STEP 11d: Install the CH4 Main Tank Transfer Tube (Large) into the Sub-Assembly from STEP 10

STEP 12: Stack LOX Tank Section

Parts required (refer to the photos below)

  • 1x Sub-Assembly from STEP 11 (a)
  • 1x LOX Tank Section from STEP 4 (b)

Assembly process

  1. STEP 12: Stack LOX Tank Section to Sub-Assembly from STEP 11

STEP 13: Stack Common Dome Section

Parts required (refer to the photos below)

  • 1x Sub-Assembly from STEP 12 (a)
  • 1x Common Dome Section from STEP 5 (b)
  • 1x CH4 Header Tank Downcomer (Mid) (c)
  • 1x Magnet (3mm dia x 2mm thick) (highlighted in RED)
  • 1x Magnet (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 13a: Glue 1x magnet (3mm dia x 2mm thick) and 1x magnet (5mm dia x 3mm thick) to the ends of the CH4 Header Tank Downcomer (Mid)
  2. STEP 13b: Stack Common Dome Section to Sub-Assembly from STEP 12, then install the CH4 Header Tank Downcomer (Mid) to the Common Dome Section

STEP 14: Stack Forward Dome Section

Parts required (refer to the photos below)

  • 1x Sub-Assembly from STEP 13 (a)
  • 1x Forward Dome Section from STEP 6 (b)

Assembly process

  1. STEP 14: Stack Forward Dome Section to Sub-Assembly from STEP 13

    IMPORTANT: Ensure that the CH4 Header Tank Downcomer (Mid) protrudes through the Forward Dome Bulkhead

STEP 15: Stack Payload Section

Parts required (refer to the photos below)

  • 1x Sub-Assembly from STEP 14 (a)
  • 1x Payload Section from STEP 7 (b)

Assembly process

  1. STEP 15: Stack Payload Section to Sub-Assembly from STEP 14

STEP 16: Stack Nose Cone Section

Parts required (refer to the photos below)

  • 1x Sub-Assembly from STEP 15 (a)
  • 1x Nose Cone Section from STEP 8 (b)
  • 1x CH4 Header Tank (Top) (c)
  • 1x CH4 Header Tank (Bottom) (d)
  • 1x LOX Header Tank (e)
  • 1x CH4 Header Tank Downcomer (Top) (f)
  • 1x LOX Header Tank Downcomer (Top) (g)
  • 1x COPV Cluster 1 (h)
  • 1x COPV Cluster 2 (i)
  • 2x Locating pin (j)
  • 6x Magnet (3mm dia x 2mm thick) (highlighted in RED)
  • 3x Magnet (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 16a: Glue 4x magnets (3mm dia x 2mm thick) into the magnet holes on the CH4 Header Tank Downcomer (Top) and LOX Header Tank Downcomer (Top) pipes
  2. STEP 16b: Glue 3x magnets (5mm dia x 3mm thick) and 2x magnets (3mm dia x 2mm thick) into the magnet holes on the Header Tanks
  3. STEP 16c: Install the Header Tanks, and the Header Tank Downcomer pipes together
  4. STEP 16d: Glue the COPV Cluster 1 into the Nose Cone Section (use the “bracket” feature inside the Nose Cone Section for alignment)
  5. STEP 16e: Install the COPV Cluster 2 into the Nose Cone Section

    Please note: The COPV Cluster 2 was designed so that it is constrained and held in place by the internal stringers of the Nose Cone (see pic below – note the highlighted stringers). Therefore, it isn’t required to permanently glue the COPV Cluster 2 to the Nose Cone Section

  6. STEP 16f: Install the Header Tanks, and the Header Tank Downcomer pipes into the Nose Cone Section

    IMPORTANT: Ensure that the Header Tanks and and their Downcomer pipes are correctly oriented inside the Nose Cone Section (see pic below)

  7. STEP 16g: Stack Nose Cone Section to Sub-Assembly from STEP 15

STEP 17: Install Flaps

Parts required (refer to the photos below)

  • 1x Sub-Assembly from STEP 16 (a)
  • 1x Upper Flap_LH (b)
  • 1x Upper Flap_RH (c)
  • 1x Lower Flap_LH (d)
  • 1x Lower Flap_RH (e)
  • 1x Upper Flap Heat Shield_LH (f)
  • 1x Upper Flap Heat Shield_RH (g)
  • 1x Lower Flap Heat Shield_LH (h)
  • 1x Lower Flap Heat Shield_RH (i)
  • 1x Lower Flap Test Heat Shield_LH (j)
  • 1x Lower Flap Test Heat Shield_RH (k)
  • 1.75mm dia filament strands

Assembly process

  1. STEP 17a: Glue the correct Flaps and Heat Shields together
  2. STEP 17b: Cut 4x strands of filament (1.75mm dia) to the right length and use them to install all four Flaps to the Sub-Assembly from STEP 16

    IMPORTANT: Always start with a long strand of filament (with plenty of contingency) to install each flap. Once fully installed, then trim the filament strand to the correct length

    For the Upper Flaps: As they don’t need to be detachable from the Nose Cone Section, once the filament strand is fully inserted through the Flaps, you can trim the strand completely flush with the bottom face of the Upper Flaps

    For the Lower Flaps: As they need to remain detachable so that the Skirt/Thrust Dome Section, and LOX Tank Section can be disassembled/ reassembled when required, you MUST NOT trim the filament strand completely flush with the bottom face of the Lower Flaps (as doing so will prevent the Lower Flaps from being removed ever again). Instead, you should leave 0.5-1mm filament protruding out of the bottom face of the Flaps, this would allow you to grab the bottom end of the stand and pull it out easily.

STEP 18: Install PEZ Dispenser

Parts required (refer to the photos below)

  • 20x Satellite (a)
  • 1x PEZ Dispenser (b)
  • 1x PEZ Dispenser Retainer (c)
  • Payload Section from STEP 18 (d)
  • 28x Magnet (5mm dia x 3mm thick) (highlighted in RED)

Assembly process

  1. STEP 19a: Glue 1x magnet (5mm dia x 3mm thick) into the magnet hole on each of the Satellite.

    IMPORTANT: Ensure that you invert the magnet poles from one Satellite to the next so they can be stacked together!

  2. STEP 19b: Stack all 20x Satellites into 2 stacks on 10 each
  3. STEP 19c: Glue 6x magnet (5mm dia x 3mm thick) into the magnet holes on the top & bottom faces of the PEZ Dispenser
  4. STEP 19d: Glue 2x magnet (5mm dia x 3mm thick) into the magnet holes on the bottom faces of the PEZ Dispenser Retainer
  5. STEP 19e: Load all 20x Satellites into the PEZ Dispenser, and secure them by placing the PEZ Dispenser Retainer on top
  6. STEP 19f: Install the whole PEZ Dispenser Assembly into the Payload Section
  7. STEP 19g: Open the Payload Door and test the Satellite deployment – all 20x Satellites can be deployed manually one by one using any small metal tool you can find in your house.

And that’s it! Congratulations, you have completed your 1:96 SPACESHIP-S10 model!

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