Performance Characteristics

SUM Guard covers are carefully engineered products, always made to measure and tailored to the needs and requirements of the user. SUM Poland products are used across all industrial sectors and are supplied to customers worldwide. Only proven, top-quality raw materials imported from Germany, the Netherlands, and North America are used in production.

SUM Guard covers guarantee:

  • easy access to equipment thanks to quick, tool-free removal of the insulation and its reinstallation
  • the ability to insulate complex geometries
  • no size limitations
  • self-supporting construction – no ribs, brackets, or other auxiliary mounting elements are required
  • wide operating temperature range (from -40°C to 1250°C)
  • resistance to impact, vibration, and dents – does not deform
  • no sharp edges and easy installation in difficult, confined spaces
  • resistance to weather conditions, aggressive chemical substances, and UV radiation (depending on the materials used)
  • installation time reduced several times
  • no waste and no on-site prefabrication work required

Energy Savings

Energy losses significantly increase production costs. Generated energy must be paid for one way or another. If energy is not performing its intended work, you are effectively overpaying. How much are you overpaying?
Let’s look at a few examples.

Energy losses are closely related to the surface area of the valve assembly. It is the same principle as with a radiator—the larger it is, the more efficiently it emits heat to the surrounding environment. Uninsulated valve components effectively act as such radiators. Heat is emitted by everything—the body, actuator, counter flanges, and even bolts and nuts. In total, this results in a very large surface area.

Shut-off valve
Surface area of the complete valve assembly [m²]
DN50
0,38
DN200
1,49

The second important factor is operating temperature. Combining these two parameters shows how significantly the lack of insulation impacts processes.

Shut-off valve
Energy losses [kW]
T medium = 100°C
T medium = 150°C
T medium = 250°C
DN50
0,37
0,72
1,75
DN200
1.46
2.84
6.84

A DN200 valve can act as a radiator with a power output of nearly 7 kW.

Let these valves operate for 8,000 hours and see what can be achieved with SUM Guard thermal insulation covers.

Annual energy losses for a DN50 valve

Temperature [°C]

Ilość energii [GJ]

Annual energy losses for a DN200 valve

Temperature [°C]

Ilość energii [GJ]

An uninsulated DN50 valve operating at 150°C generates an energy loss of 21 GJ.

To better illustrate this, let’s convert this value into liters of heating oil:

21 GJ = approx. 597 liters of heating oil

After properly insulating this valve, nearly 557 liters of heating oil would be saved annually, and this refers to just one relatively small valve!

The situation is even more interesting for a DN200 valve. The use of SUM Guard thermal insulation allows annual savings of over 2166 liters.

Modernity of Solutions

The tailored cover technology is one of the most universal and versatile insulation methods. SUM’s many years of experience, combined with implemented CAD/CAM digital technologies, enable us to meet virtually any challenge.

If you have digital models of your installation (e.g. .step files), we can design the insulation remotely. You can even receive ready-made insulation covers for an installation that does not yet exist physically.

Need thermal insulation for a large and older piece of equipment, such as a power plant turbine? Perform a digital scan, and we will prepare the design based on it.

We have developed our own measurement system, enabling industry-leading precision and fit. To maintain accuracy, measurements and drawings are processed in a CAD environment. The covers are manufactured using modern CNC plotters.

During production, the covers undergo a two-stage quality control process.

All resources and production stations are integrated into a computerized production management and monitoring system.

Each cover is assigned a unique serial number, and its design is stored indefinitely in the SUM database. The nameplate can also include any user-required information (location, GPS position is not a problem for us!).

Project Execution Stages

We insulate responsibly, as the many years of experience of SUM Poland employees are a guarantee of safe and effective execution of insulation projects for valves, installations, and industrial equipment using thermal insulation covers.

Advantage through expertise

STAGE 1
PROCESS CONDITIONS
The project begins with a detailed analysis of the technological process in which the insulated equipment operates, gathering information about its function and operating conditions.
STAGE 1
STAGE 2
Measurement
The equipment is measured either directly on site or based on technical documentation (paper-based or CAD). Detailed data is collected regarding dimensions, geometry, spatial constraints, and operating temperatures of the equipment.
STAGE 2
STAGE 3
Technical Design Development
The material composition and construction of the insulation cover must be carefully designed to ensure the highest technical and functional quality, while guaranteeing safe and maintenance-free operation for many years. Equally important is the ergonomics of use — beyond being tailored to the technological process, the cover must also be convenient to handle. Each individual cover design is digitized with the support of CAD software.
STAGE 3
STAGE 4
PRODUCTION
A modern machine park, the exclusive use of certified materials from leading global manufacturers, and highly qualified personnel ensure the high technical quality of the thermal insulation covers.
STAGE 4
STAGE 5
Quality Control
Each individual cover produced by SUM Poland undergoes a detailed two-stage quality control process.
STAGE 5
STAGE 6
INSTALLATION
The finished covers are installed either by SUM Poland employees or by the client’s own personnel.
STAGE 6
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