Industrial steam generators

Industrial Steam for Assembly UOMJ8165. Giconmes industrial steam generators

Success stories

Industrial Steam for Assembly

Line Steam Installation for Shoe Production

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Original situation:

Challenges posed by Chiruca:

In a safety boot manufacturing line, the customer requires steam to heat the booties, making them softer and more manageable for the boot assembly process.

The assembly line consists of 12 individual stations where operators work on product assembly.

12 homemade tanks with respective resistors for water heating and subsequent steam generation.

  • Homemade installation that generated wet steam, making the manufacturing process difficult.
  • Frequent breakdowns and high maintenance costs.
  • Excessive electricity consumption with no ability to shut down unused stations.

Proposed solution:

Customized steam solution developed by Giconmes.

Proposed solution:

Customized Installation: Includes a steam generator operating only when needed, controlled by a programmable logic controller (PLC), and a condensate recovery system.

Technology used:

  • 60 kW electric generator.
  • Installation of ducts to deliver dry steam to each workstation.
  • PLC ensures the installation operates at the appropriate times.
  • Condensate recovery system to maximize system efficiency.
Industrial Steam for Assembly CTA 3. Giconmes industrial steam generators

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Industrial Steam for Assembly dot. Giconmes industrial steam generatorsFAQs

We understand that many questions may arise. Here are some of the most common ones.

There are no emissions other than those produced in the electricity production process. Therefore, they can be neutral depending on the electricity mix. Electric steam boilers are the present and the future.

Absolutely. In fact, it is recommended to achieve maximum efficiency. There is no problem with remote control as long as current regulations are followed.

A steam generator is a pressure vessel that, along with the pipe network it is connected to, is subject to regulatory control and complementary technical instructions, according to the regulations published in Royal Decree 809/2021, dated September 21st. Its maintenance is divided into a part that can be easily performed by the owner:

  1. Familiarize yourself with and apply the manufacturer’s instructions regarding the use, safety measures, and maintenance.
  2. Do not put the installation into operation or prevent the operation of pressure equipment if the requirements of the regulations are not met.
  3. It is necessary to have, at least, the following documentation of the pressure equipment while they are installed: Declaration of Conformity, if applicable, manufacturer’s instructions, and, if necessary, installation certificate, along with other supporting documentation (such as Installation Project, record of the last periodic inspection, certifications of equipment repairs or modifications, as well as any other documentation required by the corresponding complementary technical instruction (ITC) of this regulation). For detailed information, please refer to Annex IV of the regulation. This documentation should be made available to the competent authority of the autonomous community and to the companies that carry out maintenance, repairs, or periodic inspections.
  4. Use the pressure equipment within the intended operating limits specified by the manufacturer, and remove them from service if they no longer meet the necessary safety requirements.
  5. Perform maintenance on the installations, pressure equipment, safety accessories, and control devices in accordance with the operating conditions and manufacturer’s instructions, and conduct inspections at least once a year.
  6. Arrange for the necessary periodic inspections as stipulated in Article 6 of the regulation.
  7. Maintain an up-to-date record of pressure equipment belonging to categories I to IV, as defined in RD 709/2015, dated July 24th, or equipment deemed equivalent to these categories according to Article 3.2 of the regulation, as well as their installations.

It is known that by applying heat to water, it transforms into steam at its boiling point under atmospheric pressure. From this point onwards, depending on the desired level of steam saturation for its proper application, we may need to increase the pressure in order to achieve higher temperature. To change the temperature and saturation level of the steam, we always need to adjust the pressure.

It is a unit of pressure equivalent to 1 kg/cm2, 0.98 atmospheres, or 14.50 PSI.

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