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Once I've more or less rounded the curve of the bilge with plates, I'll shift focus to working out the double bottom and tank top, and after that begin making frames for the rest of the hull. Note some of the roughness which still needs to be "ironed" out. It does, however, affect some areas to a degree, like the stem where the thinner plating is riveted to the stem bars. It's a fun detail that people would probably never notice, but's there. Since each plate has to be extruded one by one, it's virtually no extra time to quickly check the plating plan and enter the needed value when extruding. These thicknesses are reflected in the model. The real plating had varied thicknesses mostly ranging from 1 inch amidships to around 0.75 inch towards the ends of the ship, with some bottom plating being thicker still. One small tidbit: I'm actually extruding each plate to its thickness according to the 400-1 shell plating plan. Many plates along the upper hull will also need holes cut, but that's for a later time. Additional steps later will include fine adjustments once the surrounding plates are there, a final round of smoothing, and adding materials, along with other steps as needed, like UV mapping. Add additional smoothing/divisions and bevels to each plate. Extrude each segment to the thickness needed. Extrude some edges to account for overlaps with other plates. Separate the single strake segment into individual parts for each plate in that strake. Deleted extra vertices that resulted from earlier hull mesh smoothing. Add cuts along curved areas of plating/hull as needed. Adjust as needed to fit previous row of plates. The process for each plate is roughly: Separate section of hull mesh constituting a strake or row of plates. It's still not perfect and the plates I've extruded still need a tiny bit of work, but it's very satisfying to see the plating take shape like this.ĭon't mind the modern human, purely for scale purposes.
I've started with the innermost plates along the bottom, strake "B" to be exact. With the plating strakes plotted out and translated to the hull mesh, I've already begun to extrude the hull plates, one strake, one plate at a time. This is how all forward-most plates connect to the stem.
Note the nearest plate and how it sharply curves to connect to the steam bars which it overlaps. (This has worked for Demo 3, not confirmed for Demo 401) OR just turn disable your wifi/internet connection.
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(This method in particular could cause issues elsewhere in the Demo).įIX #4 - Open Windows Defender Firewall, click on Advanced Settings, go to outbound rules and create new outbound rules for the Demo files to disable their internet access.
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If your computer cannot handle the demo, we apologize).įIX #1 - Disable any hardware monitoring software (MSI Afterburner, Geforce Experience, Steam)įIX #2 - Run the Demo as an AdministratorįIX #3 - Create a shortcut for the Demo and add ' -dx11 ' (without quotes) to the end of the command string.
#Titanic honor and glory demo black for free
Recently we decided to optimize it and release it for free to the public, but only so much optimizing can be done. (Reminder that this demo was designed for developers only. But these have solved a lot of problems for other players. WARNING: While they may get the demo to run on your lower-spec computer, it may cause other parts of the Demo to not work correctly as some of these alter the Demo in other ways. If you still get Fatal Error messages, there have been a few fixes found by the fans that I will post here.
#Titanic honor and glory demo black update
Hello all! We are aware of the texture bugs and other issues with the demo and are working on updates as we speak! Be sure to download the newest version, download the Unreal Prerequisites that come with the demo and update your Graphic Drivers.