Showing posts with label Hardness. Show all posts
Showing posts with label Hardness. Show all posts

Tuesday, 8 September 2020

Water softner alarm.

If hard water is produced at the output of the softener instead of soft water expected, this may be due to the water softener tank. The concentration of salt or water may be too low or there may be other defects in the tank. A direct message may be monitored indicating that maintenance is required on the salt/brine tank of the softener.

The WLAN-enabled sensor SALIS, developed by Online Fluid Sensoric GmbH (OFS), enables alarms to be received by e-mail. The early identification of the problem allows quick measures to avoid unnecessary hard water damage. To get soft water for more security and at the same time to minimize the effort for controls and maintenance to the bare minimum.

Provided that a WLAN network is available at the location of the water softener and the salt / brine storage tank must be serviced. The operator then receives an e-mail message from the SALIS system, ideally directly on his smartphone. A reminder function can be activated, with which the evaluation unit of the sensor sends an e-mail as a reminder every 24 hours.

If there is no WLAN available at the location, a potential-free contact is available to forward the sensor's alarm by wire. Two LEDs on the device also indicate the status and any alarms on site. This means that you can always be sure of knowing when the maintenance of the water softener tank has to be carried out.

The sensor can be quickly installed in any salt / brine storage tank of the softener. The compact control is space-saving and easy to assemble. The high level of accuracy, quick responsiveness and stability help to quickly identify problems with the softener and to inform the operator.

It is optionally possible to connect and signal another external alarm of the softener. If there is a problem with the control of the water softener, the alarm is forwarded by e-mail or potential-free contact. If necessary, the alarm output time can be parameterized for the sensor and the external device.

SALIS can be used to identify problems with the water softener tank. The water in the tank dissolves part of the salt over a few hours, turning the water into brine. When the softener is exhausted, this brine is required to regenerate the softener. With each regeneration, the salt supply decreases. The humidity in the storage tank causes the salt to incrust and can clog the water pipe in the tank or block the salt in the upper part of the tank. Every water softener therefore requires continuous monitoring of the brine-salt storage system.

SALIS takes on this task of constantly checking the tank. This permanent control prevents water damage and reduces maintenance work to a necessary minimum.

@PresseBox #OFS #PAuto #WLAN #Water

Wednesday, 31 July 2019

Water hardness analysis.

The Liquiline System CA80HA hardness analyzer has been launched by Endress+Hauser. This instrument provides precise online analysis of water hardness in drinking water and process water. It helps optimize the control of water softening processes such as ion exchange or reverse osmosis, ensures quality of products influenced by water hardness, and analyzes feedwater used in boilers.

The CA80HA colorimetric analyzer uses the phthalein purple method, ensuring direct comparability to lab results. It measures calcium carbonate (CaCO3) over a range of 0 to 80 mg/l with accuracy of ±0.5 mg/l. The analyzer has up to two measuring channels and up to four digital inputs for optional Memosens sensors such as pH, ORP, conductivity, oxygen, chlorine, turbidity, etc.

With optional sensors, it can:
• Measure and calculate pH from two conductivity values according to VGB Standard 405 for boiler feedwater
• Measure the difference between two measured values from different sources to monitor membranes
• Calculate differential conductivity to monitor the efficiency of ion exchangers
• Calculate degassed conductivity for process controls in power plants
• Calculate rH from the measured values of a pH and an ORP sensor

Outputs from the CA80HA can be used to directly control water processes as the process variables in a control loop, be assigned as a measured variable to a limit contactor, trigger cleaning, be sent to a control system for further analysis, and/or be displayed on the local graphic readout. The local graphic display has 240 x 160-pixel resolution, a red display background for alarms and user-definable measuring menus.

Outputs include PROFIBUS DP (Profile 3.02), Modbus TCP, Modbus RS485, EtherNet/IP and up to four 4-20mA current outputs that can be used in parallel.

When Memosens sensors are installed in the system they are auto-recognized by the Liquiline electronics, making for plug & play operation and quick commissioning. Any changes to the electronics can be made by simply adding or subtracting I/O modules, making this plug & play as well. The analyzer is designed for automatic cleaning and calibration, eliminating the need for user intervention to perform these activities, reducing the overall operating cost.

The CA80HA meets the requirements of harmonized European standards and Canada and USA standards: CAN/CSAC22.2 No. 61010-1-12 UL Std. No. 61010-1 (3rd Edition).

@Endress_Hauser #PAuto #Water @Endress_US

Friday, 23 March 2012

Automatic hardness testing facility

Maintaining its policy of continuous investment in technology and facilities, Keighley Laboratories has added a Zwick Roell ZHV-10 automatic micro and macro hardness tester to its Test House resources. Featuring fully automatic Vickers indentation measurement and dedicated hardness testing software, the new equipment will bring about measurable improvements in accuracy, repeatability and productivity, to the benefit of the company’s internal Heat Treatment division and clients of its Technical Services department. Used for the precise measurement of surface hardness and case depth of metallic materials, with test loads between 100g and 10Kg, it will introduce considerable time savings over previously manual routines, freeing up highly skilled operators for other analytical duties.

The new equipment was supplied by Indentec, part of Zwick Roell AG and a worldwide centre of excellence for hardness testing machines, which has a business relationship with Keighley Labs that dates back many years. A UKAS accredited calibration laboratory, Indentec has been additionally contracted to service and recalibrate this and other hardness testing equipment on a long term basis, which will be carried out on site by trained engineers to ISO 6508-2 and ASTM E384 standards.

Such is the sizeable footprint of the new hardness tester, Keighley Labs also took the opportunity to enlarge its existing Test House microscope room, creating a spacious new optical suite. This also houses the advanced zoom stereo metallurgical microscope acquired previously and allows for the installation of further state-of-the-art equipment.

Part of Keighley Labs’ comprehensive mechanical testing and metallography services, the hardness of a material is determined by its resistance to indentation by a hardened ball or diamond indenter, then measuring the size of the permanent impression produced. With loads, pressures and temperatures constantly increasing in modern machinery, metallic parts are subject to increasingly arduous operating conditions and hardness testing is often the best way of establishing that components will survive such stresses, becoming a critical part of the quality control process. Keighley Labs employs this physical testing method as quality assurance for its in-house Heat Treatment division, handling up to a dozen test samples daily, as well as undertaking case depth and surface hardness evaluation of materials and components for external clients.

Vickers testing, using a pyramid-shaped diamond indenter, is suitable for all types of materials and surface treatments and Keighley Labs’ new Zwick Roell ZHV-10 machine is equipped for micro and macro Vickers testing to ISO 6507, although it can be fitted with an alternative Knoop indenter. It features a built-in measuring microscope with four objective lenses, a motorised turret with 1.3 megapixel USB camera, an automatic motorised XY table with 150mm x 50mm travel, for precise positioning of samples, with automatic focus providing an additional motorised Z axis for bringing the test surface into sharp resolution without operator involvement. It also includes a high definition 24” LCD monitor, a microprocessor running Windows XP, flatbed scanner and Indentec ZHµ HD automatic indentation software, with sample scanning facility and a report generator for outputting data to spreadsheet programs, enabling further statistical analysis.

Employing this configuration, Keighley Labs’ technicians can either view and measure test impressions manually, by focusing with the joystick and clicking on indentations with the mouse, or allow the machine itself to intelligently follow predefined patterns, indent the sample, then measure and generate test results, all entirely automatically. They can also set up templates of indentation points, for performing hardness tests on routine samples, and program straight line and transverse patterns for automating case hardness routines and testing welded seams.

Apart from freeing up technicians for other tasks, this ‘click and walk away’ functionality ensures precise sample positioning and imaging, enhanced accuracy, an extremely high level of repeatability and overall increased productivity, reducing standard testing procedures from more than an hour manually, to less than twenty minutes automatically. It also eliminates operator-related errors caused by eye strain, fatigue and inevitable inconsistencies, which can be a common problem in microhardness testing especially.

“The time savings made possible by this automatic hardness tester will enable us to offer faster turnaround times and deliver even more accurate, repeatable and reproducible data,” says Keighley Labs’ Test House Manager, Matthew Mellor. “We chose Indentec because the company has an excellent reputation, with its own service and calibration engineers, and its equipment offers the highest image resolution on the market.”