Showing posts with label Construction Sector. Show all posts
Showing posts with label Construction Sector. Show all posts

Tuesday, 14 April 2026

More sustainable plasterboard.

The manufacture of dry wall, also known as plasterboard, relies heavily on precise moisture control, so accurate temperature and humidity measurements during the drying process are essential. However, process conditions change significantly within a short period of time and this can be challenging for many sensors on the market. Looking for ways to enhance the efficiency and sustainability of this process, engineers at Saint-Gobain in France have worked closely with Vaisala to develop monitoring solutions that help optimise plasterboard quality, improve efficiency, save energy and improve sustainability.

Plasterboard manufacture

Background.
Many different industrial processes involve drying operations, and this is frequently the most energy-intensive stage of the process, so accurate monitoring and control of drying can represent significant potential for improvement.

Dry wall has had an enormous effect on the global construction industry since it was first developed in the early 1900s. Lightweight, simple to fit, moisture, fire and mould resistant, and with good insulation properties, plasterboard has become the world’s most commonly used construction material for internal walls and ceilings, after concrete.

Saint-Gobain is the worldwide leader in light and sustainable construction, with around 161,000 employees and over 1100 manufacturing facilities. As a signatory to numerous global sustainability initiatives, Saint-Gobain has committed to reach net-zero emissions by no later than 2050, and the company’s core purpose is to ‘Make the World a Better Home’.

The development of Saint-Gobain’s gypsum brands began with the acquisition of the British Plaster Board company in 2005. Today, the company is keenly focused on the improvement of plasterboard manufacturing – improving product quality and lowering carbon footprint.

Saint-Gobain has three controls during the drying process – temperature, air flow and air humidity. However, the accurate management of these controls depends on accurate measurements on the air inside the dryers.

The measurement challenge.
Plasterboard is manufactured by pouring gypsum slurry onto carton paper, drying the slurry and adding a second paper layer to form a ‘sandwich’ structure. The gypsum is cured and cut into panels before being passed through drying ovens to obtain the correct moisture content. The whole process can take less than one hour, during which the product can be exposed to temperatures as high as 300°C, depending on the process, and the moisture content of the air varies considerably during the process. “These conditions present a significant challenge for sensors,” explains Jérôme Cantonnet, Drying process Team Leader at Saint-Gobain. “We tried a number of different humidity and temperature sensor suppliers in the early days and found their products to be insufficiently accurate.

Saint-Gobain was one of the pioneers of dew point measurement in plasterboard drying. They chose dew point sensors because they provide an absolute measure of moisture in the air, unlike humidity which changes with temperature. Crucially, there are no similar dew point sensors on the market surviving high temperatures up to +350 °C. Saint-Gobain therefore established a relationship with Vaisala around 2010, working in partnership to adapt Vaisala’s dew point sensors for the specific requirements of their plasterboard application.

For Saint Gobain, it is critically important to be able to assess how reliable measurements are by accessing and monitoring sensor diagnostic data. Vaisala therefore developed a bespoke configuration for their DMP6 dew point, temperature and humidity probe to output these parameters.

Typically, a plasterboard factory needs four DMP6 probes – three to continuously monitor the drying ovens and a fourth for calibration and as a spare.

Advantages of Vaisala’s dew point sensors.
The Vaisala DMP6 overcomes many of the problems exhibited by the early trials with humidity sensors from alternative suppliers. This is primarily because of Vaisala’s DRYCAP® technology.

DRYCAP combines a capacitive thin-film polymer sensor with an auto-calibration function. The sensor’s thin-film polymer adsorbs or releases water vapor as the surrounding humidity increases or decreases. This causes a change in capacitance, which is converted into a humidity reading. The capacitive polymer sensor is bonded together with a temperature sensor, and dew point is calculated from the humidity and temperature readings.

The advantages of DRYCAP sensors are condensation resistance, due to the materials in the sensor, and an additional warming function which speeds up sensor drying in a condensing environment. DRYCAP also provides immunity to contamination from particulates, oil vapor and most chemicals. If the sensor does get wet, it dries rapidly and recovers its rapid response time. In low-humidity conditions, the sensor will auto-calibrate to ensure accurate, reliable, stable measurements.

“Vaisala’s DMP6 proved to be a very effective solution,” Jérôme explains. “It is able to maintain accuracy across a wide temperature range, with limited drift and a very low maintenance requirement. It measures directly inside the oven, so no sample line is necessary, and the response time is very quick.” 

Energy efficiency is the major driver for a high level of accuracy in the measurement of moisture inside the drying ovens. For example, Jérôme says: “A small drop in dew point accuracy, say ±2°C, could result in a loss of energy efficiency of up to 10%. This is hugely significant when you consider that our Paris facility has a power consumption of more than 30 MW.”

Heating ovens at plasterboard factories are generally powered by natural gas with electric fans. The implementation of accurate monitoring and control means that the ovens do not have to be run at full capacity, and instead can be managed to optimize energy efficiency. In addition, in line with its decarbonization goals, Saint-Gobain has already fully electrified two of its plants.

And next?
The long-term partnership between Vaisala and Saint-Gobain has resulted in a measurement solution to meet the specific needs of plasterboard manufacture. This has been deployed in Saint Gobain by applying good practice in the utilization of sensors and in the promotion of the energy efficiency objective across the group’s global facilities.

“This is a good example of the ways in which we continuously search for solutions to environmental challenges,” explains Jérôme Cantonnet.

Vaisala’s Juhani Lehto says: “We are delighted to have established this relationship with Saint-Gobain. Not just because it has enabled us to further develop our products, but also because Saint-Gobain and Vaisala share common sustainability objectives. Our core purpose is defined as ‘Taking every measure for the planet’ so it is great to be able to play a role in helping Saint-Gobain on its path to carbon neutrality.”


@VaisalaGroup @saintgobain @_Enviro_News #PAuto #Construction #France


Monday, 6 September 2021

Interconnects, sensors, and antennas for IIoT.

A new eBook from Mouser Electronics in collaboration with Amphenol Corporation, highlights the many applications of the Industrial Internet of Things (IIoT) as well as the technical challenges in developing IIoT solutions. In Enabling the Industrial IoT Revolution, subject matter experts from Mouser and Amphenol offer detailed insights into topics including industrial data centres; heating, ventilation, and cooling (HVAC) systems; and indoor air quality systems as well as smart manufacturing, intelligent automation, construction, and mining.

This new eBook offers six in-depth articles exploring some of the most fascinating challenges facing IIoT design. Readers can enjoy extensive graphic resources, including a valuable infographic highlighting interconnect solutions from Amphenol RF ideal for smart construction and mining. The infographic showcases products such as IP-rated waterproof and ruggedised RF connectors that enable wireless connectivity in the harshest environments. In addition, Amphenol Industrial’s leading-edge power solutions, such as the RADSOK® Power-to-Board connectors, offer many options for high-current (up to 200 A), single-point connections in a compact footprint design that increase heat dissipation at the pin-and-socket interface, which lowers temperature rise and reduces potential failures.

The eBook also features other Amphenol IIoT solutions, such as the Amphenol ICC Minitek MicroSpace™ crimp-to-wire connector system, a vibration-tolerant product known for its high locking strength that supports a broad range of industrial applications, such as robotics, automated guided vehicles, navigation systems, and industrial cameras, as well as factory lighting and HVAC. Amphenol MCP’s PCB antennas feature an omnidirectional radiation pattern in a band range of 410 MHz to 5.85 GHz, making them an ideal choice for IIoT applications such as machine-to-machine communications, smart lighting, and smart meters.

Paramount to any IIoT system design is the need for sensors. Amphenol i2s’ Climate Control Pressure Transmitter (CCT) sensors are specifically designed to measure the pressure of many fluids, including refrigerant, process fluid, and hydronic fluid systems. The hermetically sealed sensors, with a high-quality stainless steel measurement element in a robust aluminium case, are designed to provide reliable long-term performance in many industrial and heating, ventilation, cooling, and refrigeration (HVACR) applications. Find a comprehensive collection of product information and technical insights on the Amphenol IIoT solutions page.

@MouserElecEU @amphenol @Publitek #IIoT #PAuto 

Wednesday, 5 February 2020

Force gauge with a lift!

The Centrax 2020 provides manufacturers and operators of elevators, safety guards and other powered door equipped machinery with a compact, portable and effective solution for door closing force and impact energy measurement. It is now available with full support from Ixthus Instrumentation. Manufactured by Centrax and developed with major lift manufacturers, the self-contained 2020 is an indispensable instrument for machinery protection tasks and is specifically designed to measure the forces and closing impact energy exerted by power operated doors.
Powered door closing force and impact energy gauge
The micro-powered 2020 has two main functions: As an applied force gauge with a range between 100 and 1000 N, measurements against a built-in spring resistance in the nose of the instrument are presented on a 4 digit display. If an initial impact with an energy value greater than 1.5 J is detected, the device automatically switches to its energy mode with a recording range up to 14 J. The maximum impact energy value is held in the display for approximately ten seconds before returning to the force mode. Separate blue LEDs on the instrument signal the measurement mode.

The Centrax 2020 is a compact hand-held instrument with an overall length of 340 mm and a diameter of 30 mm. The 12 V battery powered device has an automatic power-up mode, activated when the measurement nose is lightly touched, and power down if inactive for more than 10 minutes. A protective case is supplied that effectively closes the light source to maintain power-off when stored. Battery life is rated at around 1500 operations or two years – a service and re-calibration procedure includes battery replacement.

#BAS @mepaxIntPR @IxthusInst 

Thursday, 18 July 2019

Structural health monitoring.

New from Leine Linde and available with full support from Mclennan, the ESR strain sensor is measurement concept that offers a novel alternative to conventional strain gauges through improved accuracy, signal quality and especially durability. Particularly suited to large-scale machine structural health tasks where load or force needs to be reliably monitored, the ESR utilises Leine Linde’s robust optical encoder technology coupled to a mechanical measuring arm arrangement which is fixed to the structure’s strain-prone components.

With its integral EnDAT bi-directional digital interface, the ESR’s high resolution output of 0.025 μɛ (μm/m) can be connected to almost all available machine control systems and additionally can offer stored application-specific data that may be used for machine functions, for instance for safety or other operational tasks. Application areas for the ESR can include but are not restricted to structural monitoring on bridges, cranes and towers, wind turbine blades, large machine frames, construction equipment, bulk material conveying lines and more.

The strain sensor arm design features passive temperature compensation, and its stress-free measurement principle offers a practically unlimited operation life. Operational temperature can be designed for -40°C to +100°C and the measurement range covers ± 5 000 µɛ with a working range of ± 17 500 µɛ. The unit will fit into a volume envelope of approximately 340 x 80 x 85 mm (L x W x H). The ESR also boasts an impressive shock and vibration rating to ISO 60068-2-26, and its IP66 environmental rating offers trouble-free use in harsh environmental conditions.

For use as a temporary strain measurement tool or for permanent installation, the ESR’s measuring arm design and mechanical interface can be custom-adapted to the application with variant options and accessories available for adhesive, screw, or magnet installation. Other options include various measurement reports, quality control certifications or DAkkS calibration.

 #Mclennan #BAS @LeineLinde @mepaxIntPR

Monday, 21 November 2016

Outdoor noise and vibration monitoring station.

Svantek has launched its SV 258 PRO, an outdoor noise and vibration monitoring station with a more compact and lightweight design. Specially developed for construction site, tunnelling and blasting applications, this upgraded model weighs just 10kg and is available with 3G modem, solar panel support, advanced alarms and METEO.

Waterproof and portable, Svantek’s SV 258 PRO is battery powered and used for a wide range of outdoor industrial monitoring applications where measurements are required over a period of time, ranging from days to months, and where a hand-held sound level meter taking on the spot recordings would not be suitable. It can be set up to send email or SMS messages when threshold levels are exceeded.

The SV   258 PRO incorporates a SVAN 958A Class 1 four-channel sound and vibration analyser for applications that require simultaneous Class 1 sound and vibration assessment. Each of four input channels can be independently configured for sound or vibration detection with different filters and RMS detector time constants giving users significant measurement flexibility.

This station is protected by an IP 65-rated case containing a lead-acid battery and operating time can be easily extended by connecting an external battery or small solar panel. The intelligent charging unit enables use of a solar panel without expensive controllers and heavy batteries.

The case is fitted with very robust, waterproof connectors (military standard) and has an IP 65 external power supply. The system uses a low noise, hermetically sealed tri-axial piezoelectric accelerometer enabling the outdoor use without additional enclosures. The accelerometers’ signal ground is insulated from the mounting surface and outer case to prevent ground loops. All accessories fit conveniently into a second carrying case.

It provides broadband vibration results such as RMS and Peak or Peak-Peak. Optionally it can use FFT analysis for determination of dominant frequency used for comparison with the BS and DIN norm curves. The broadband noise results can be recorded simultaneously in three acoustic profiles, which enable measurements to be taken with three different filters (e.g. A, C, Z) as well as 3 different detector time constants (e.g. Fast, Slow, Impulse).

It can be easily removed from the case and used as hand-held vibration and sound level meter. The monitoring station uses the 3G modem for the remote communication with Internet.

The relay server, SvanNET, supports the connection between PC and station allowing the usage of all types of SIM cards with the system, regardless if they have public or private IP. The connection over SvanNET gives access to the status of the noise monitoring station via mobile phone or tablet.

Svantek’s SV 258 PRO is available with a range of optional functions including SvanPC++ remote communication software package and FFT for dominant frequency determination. In building / ground vibration mode, the 1/1 octave analysis is recorded as velocity RMS spectrum while the 1/3 octave analysis is available as an alternative to building / ground vibration mode.

@Svantek_UK #PAuto #Tunnelling #Mining @elhcomms 

Tuesday, 6 May 2014

Rugged vehicle computers!

JLT Mobile Computers has launched the VERSO+ 10 computer with QuickLock, a new class of rugged vehicle terminals. Equipped with an Intel® Core(tm) i5 processor, the VERSO+ 10 computer provides leading performance in the industry's smallest rugged form factor, making it a perfect choice for installations in tight cabins or other small areas.

With a quick-mount feature, QuickLock, the computer can easily be attached and detached in a vehicle to simplify service, being moved between vehicles or prevent theft by removing it at the end of the working day. With a 10 inch sunlight readable XGA display and scratch resistant multi-point touch, the VERSO+ 10 computer becomes an extension of the heavy-duty JLT VERSO series that also includes 12 inch and 15 inch computers. It provides the same high reliability as the rest of the VERSO series when used within very tough environments such as mining, ports, yard-logistics, freezer storage, forestry, and agriculture.

The VERSO series launched in the first quarter of 2013 and has since ramped quickly and been adopted by customers around the world with high demand for performance, ruggedness and reliability. With the new VERSO+ 10 computer, with QuickLock feature and a smaller form factor, customers now have a more flexible and compact alternative, but with the same outstanding performance and ruggedness.

As with all JLT computers, the VERSO+ 10 computer is built from the ground up to deliver maximum reliability and function in very demanding environments. It comes with an Intel Core processor or an Intel dual-core Atom D2550 processor. Built-in features include a 9-36 VDC power supply, a backup battery to ensure uninterrupted operation during power drops, WLAN communication with built-in highly sensitive PIFA antennas, custom-made for reliable Wi-Fi connectivity in environments with poor coverage. New with the VERSO+ 10 computer are Bluetooth PIFA antennas with a resulting reliable communication with low-power hand carried peripherals, and the option of external antennas for both WLAN and Bluetooth for very demanding environments such as ports and other wide areas. The VERSO+ 10 can also be equipped with 3G WWAN communication. The VERSO+ 10 computer can be ordered with Windows 7 Pro or Windows Embedded Standard 7, Windows 8.1 and Windows Embedded 8 Standard operating systems.

"With the new VERSO+ 10 computer, we build on the success of the VERSO series of heavy-duty vehicle computers that, since its launch in January last year, is being selected by customers within mining, sawing mills, off-shore, ports and other demanding applications," said Per Holmberg, CEO at JLT. "With the VERSO+ 10 computer, we reinforce our leading position within the high-end of the market by providing the smallest form factor and greater flexibility with the same high performance."

More and more customers also go for the JLT:Care Service Level Agreement. With this "No-Questions-Asked" service added, customers are guaranteed a high support level and short repair times to maximize the up-time of the computer at predictable cost.

The VERSO+ 10 computer is available now with a dual-core Intel Atom processor D2550 and can be ordered from JLT Sales Partners. The Core processor option will start shipping in the second half of 2014.

Saturday, 14 May 2011

Remote load monitoring

Telemetry system enables remote data collection for the construction industry

Mantracourt has announced that its radio telemetry acquisition system for strain gauge and load cell data is at the heart of Groundforce’s new remote load monitoring technology.

British company Groundforce, a division of Vp plc, provides shoring, formwork and piling equipment and services to the construction industry. By incorporating Mantracourt’s wireless telemetry technology into pre-calibrated load pins, Groundforce now offer its clients an accurate means of remotely measuring the actual loads in heavy duty hydraulic struts used in construction pits, thereby providing their customers a cost effective early warning measurement service.

“Being able to use wireless telemetry technology for strain and load measurement is enabling many new applications" said Kelly Voysey of Mantracourt. “It’s proving ideal for applications within the construction and civil engineering industries, where access and cabling is limited or indeed, impossible.”

The T24-SA strain acquisition module provides high performance wireless measurement of strain gauge, pressure, load cell, linear displacement and other 4 wire bridge sensors. Providing direct mV/V input and 5V bridge excitation for up to 4 load cells. The miniature size allows for the option of embedding within the sensor housing and its low power modes provides ‘power down’ between transmissions or remote controlled power ‘on’ and ‘off’ giving exceptionally long battery life.

Data from the load pins within the struts can either be collected using a wireless hand held display onsite with range up to 200 metres or by using Mantracourt’s GPRS sampling device; a unit that automatically gathers on-site data from sensors at pre-set intervals and transfers this via the GPRS network to emails, mobile phones or remote servers. This provides users world wide access to data recording and monitoring.

“The Mantracourt system is proving to be a valuable addition to our product range, offering a progressive means of information gathering for construction companies,” said Tony Gould, Technical Director of Groundforce.


“We’ve found the Mantracourt equipment to be very robust and effective and the engineering team behind it very helpful and supportive.”

The Groundforce system has been deployed at sites for the Olympic Games for London 2012 and the high profile Tyne Tunnel 2 Crossing project in Newcastle (GB). It has also found its way as far a field as sites in Stockholm, Sweden and Trondheim in Norway.