How To Make Soft Tubing Look Good? Full Procedure
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The soft tubing is usually made of PVC or polyvinyl chloride, and it is soft and, further significantly, convenient to use as compared to the other alternative. Do you know How To Make Soft Tubing Look Good? Don’t worry if don’t know anything about this then you will know everything about soft tubing looks good in this article.
Soft tubing is commonly recommended for those designing their first customized loop because it is said to be simple to work with. It’s also called “vinyl tubing” that comes in solid colors, translucent colors, and UV-reactive colors.
How To Make Soft Tubing Look Good?
First, you need to have the required size of the tube, then place it in water blocks, then you have to use the appropriate fan and case for soft tubing. That’s how you make your soft tubing look good.

It allows you to easily work with the installation and prevents you from running into any issues. There is a myth that soft tubing is not better looking than hard tubing. Many people out there want to make their soft tubing look better so here is the guideline for Making Soft Tubing Look Good.
Benefits of Soft Tubing
- It allows you to easily work with the installation and prevents you from running into any issues.
- It’s a good thing for beginners who are establishing their first custom loop then the use of soft tubing is unquestionably the best option for them. Users can get some incredibly clean results if they design the loop correctly and don’t use too much tubing.
- Often, when you choose soft tubing over hard tubing, you are essentially saving money because soft tubing is much less expensive.

Before directly moving to the process of making looks of your soft tubing good you must have too aware of some of the terms to understand the process better.
GPU Water Block
The water-cooling version of a power supply is a water block. It is a form of heat exchanger that can be used on a variety of computer components, including the central processing unit (CPU), graphics processing unit (GPU), processor processing unit (PPU), and the motherboard’s Northbridge chipset.
Noctua NF-F12 PWM
The NF-F12 uses Noctua’s novel, custom-designed NE-FD1 PWM IC with Smooth Commutation Drive (SCD) technology to support completely automatic PWM speed regulation. SCD reduces PWM switching noises by offering smoother torque impulses, making the fan quieter at lower speeds.
Steps For Making Soft Tubing Look Good
Choose the Perfect Size for Tube
Keep the tubes between fittings as short as possible; long tubes appear to sack and don’t look as good.
Placement of a Water Block
Place the GPU Bridge block upside down to make the GPU loop, which uses the radiator in the basement, easier to the layout without making excess tubes run around the main body of the case. Furthermore, since it is a parallel block, the orientation is irrelevant. This is taken from the FC Terminals EK datasheet.
Use an Appropriate Cooling Fan
Choose the Noctua NF-F12 PWM with low noise adapters for fans and dual loops because of their ability to properly maintain CPU or GPU loops without having to shut down the whole machine. A GPU loop upgrade in the form of an Intel 750 800GB or 1.2TB with an EKWB is being considered.
The CPU loop has a maximum power draw of 150W, allowing for quiet fans and cool temperatures. The GPU loop has a peak power of 500W and is push/pull, with slow fans powered by a temperature sensor. Since the case is so large, putting a single reservoir where I already had two seemed strange and barren.
Use Proper Case for Soft Tubing
Choose the Enthoo Elite case because the CaseLabs case which is the firmest competitor of the Enthoo Elite lacks tempered glass doors and integrated RGB that works with both Asus Aura and MSI Mystic Light. The CaseLabs SMA8 also doesn’t support dual systems like the Enthoo Elite, which can accommodate both an E-ATX and an ITX system.
It also doesn’t support GPUs with brackets mounted vertically in parallel planes with the motherboard and hardware for 2-way SLI mounted vertically in parallel planes with the motherboard. The SMA8 lacks USB 3.1 type-C on the front wall, as well as PWM fan splitters and two pump mounts behind the motherboard in the basement.
Soft Tubing Vs Hard Tubing
Soft tubing is flexible and easier to install, but it’s harder to shape and make systems that look clean. Harder tubing is harder to get right, but the results can be stunning. Soft tubing is a common way to connect everything in the loop because it’s easy to work with, and we recommend it if you’re starting. Before you buy, make sure that the inside diameter and outside diameter (ID and OD) of the tube match the sizes of your fittings and vice versa.
Conclusion
Hard tubing is best in looks as compared to soft tubing. Although soft tubing is much better than hard tubing in several ways so many people don’t want to replace soft tubing with hard tubing for water cooling. It is not an impossible thing to change the look of your soft tubing. There are many ways to change but these are the most common I was able to research so far. This article is the best for those who want to know How To Make Soft Tubing Look Good?
Frequent Asked Questions
For water cooling, what size tubing should I use?
It’s critical to understand that using thicker tubing and larger fittings would not result in further flow. As previously stated, the G1/4 thread is used on the vast majority of fittings and connections on water-cooling parts.
What exactly does G1 4 thread imply?
A pipe thread specification is G1/4 BSP (British Standard Pipe). The G1/4 thread can be found on almost every water-cooling component. Generally speaking, 3/8″ denotes the fitting diameter, whereas G1/4 denotes the thread pitch of the fittings and ports.
What is meant by the G thread and R thread?
According to EN-ISO 228-1, G-threads have a parallel shape. The threads are defined as G1/8 or R1/8 in the case of a thread size of 1/8”. British Standard Pipe Tapered (BSPT) “R” Thread ISO 7-1/ British Standard Pipe Tapered. The pressure tightness of “R” threads is achieved by using the threads (wedging) to create a pressure-tight seal.