Ipsen Launches “Ipsen Connect,” to Streamline Customers’ Operations

Ipsen, Cherry Valley, IL, announced a new digital gateway, Ipsen Connect. The customer service portal simplifies access to essential resources, including order history, service requests, and furnace documentation.

Key features of Ipsen Connect include:

  • Convenient part management: Request or reorder parts, view order history, and access furnace documentation seamlessly.
  • Streamlined service requests: Schedule maintenance, troubleshooting, or calibration appointments in just a few clicks.
  • Best practices and expert insights: Access troubleshooting guides, online training videos, and answers to frequently asked questions.
  • Real-time updates: Keep your operations informed and on track with live updates, including order status, active quotes, planned maintenance, and scheduled service appointments.

https://ipsenglobal.com/knowledge-center/ipsen-launches-a-cutting-edge-digital-platform-ipsen-connect-to-streamline-customers-operations/

One Minute Mentor: High performance line with hydrogen quenching

For stainless martensitic grades and carbon steel up to certain thickness, the two-stage molten metal quenching is successfully converted into hydrogen quenching with big advantages in quality, including oxide-free and lead-free surfaces. Cooling gradients of up to 300 K/s are possible. Martensitic chromium steels with 13% Cr and 0.2 to 0.4% C are used to manufacture various stainless steel components, knives, and tools, as well as parts for the cutlery industry.

 

A special application for producing high-quality heavy-duty strapping band in bainitic condition is a line with high throughput and low-energy consumption. The steel grade AISI 1536/DIN EN 36Mn5 is usually preheated to approximately 400 °C (750 °F) in a compact two–stage molten metal quench, acting as the secondary winding of the transformer fed. The strip is raised to austenitizing temperature at 900 °C (1650 °F) and then quenched in the molten lead/bismuth. The thermal energy dissipated during quenching is used to preheat the incoming strip.

 

For more information, click on the link below (subscription required). Then scroll to Figure 12. R Schneider; R. Mesquita; W Schützenhöfer, Distortion in Tool Steels, ASM International, 2014  https://doi.org/10.31399/asm.hb.v04d.a0005958

One Minute Mentor: Salt Bath Furnaces

The salt bath method of hardening is predominant with high-speed steel tools. With correct operating conditions, tools can be heat treated without carburization, decarburization, and scaling. The surface will be fully hard with a minimum of distortion. The four types of salt baths generally used are preheating baths, high-temperature baths, quenching baths, and tempering baths.

Molten salts of various compositions are well adapted to all operations in the heat treatment of tool steels. For tools that cannot be ground after hardening or for tools that require an excellent surface condition and the maintenance of sharp edges, salt bath heating provides excellent results. These salt baths contain different compositions of BaCl2, NaCl2, and KCl as well as additional additives to avoid decarburization. The higher the working temperature, the higher the content of BaCl2 usually is. Higher additions of CaCl2 are typically used in salt baths for the quenching step.

For more information, click on the link below (subscription required). Then scroll to Figure 2.

R Schneider; R. Mesquita; W Schützenhöfer, Distortion in Tool Steels, ASM International, 2014, https://doi.org/10.31399/asm.hb.v04d.a0005958

Lindberg ships full muffle mesh belt conveyor furnace to manufacturing industry

Lindberg/MPH, Mich,  a leading manufacturer of heat treat furnaces, announced the shipment of a continuous full muffle mesh belt conveyor furnace to an industrial manufacturer.

This conveyor furnace is designed for applications with a nitrogen atmosphere and a maximum temperature of 1,100°C. Additionally, the furnace has a hydrogen flow meter and combustible gas system so the customer can run a hydrogen atmosphere when needed. The combustible gas system provides a timed nitrogen gas purge of the muffle before process gas can be introduced into the furnace muffle. The conveyor furnace has overall dimensions of 128” L x 22” W 41.5” H. There are tables at both ends of the furnace for loading and unloading of the product. The unit is designed with four (4) temperature zones and a water-cooling section that parts travel through prior to exiting the chamber.

Read further here

Wisconsin oven completes spray quench aluminum solution furnace for the defense industry

Wisconsin Oven, East Troy, Wis. announced the completion of a Horizontal Spray Quench Furnace for C/A Design located in Dover, NH. This furnace will be used for the solution treatment of aluminum. The system is designed to soak the product load at temperature in the furnace and then a pusher mechanism rapidly moves the load into the spray quench. The spray quench offers reduced distortion in comparison to submersion quenching.

The maximum temperature for this system is 1,150°F and it has sufficient capacity to heat a 200 pound aluminum load plus the work grid and product fixture. A temperature uniformity survey was documented for +/-10°F at 985°F to verify the furnace has the capability to meet AMS 2750G, Class 2 furnace and Instrumentation Type D requirements.

The spray quench is located in front of the oven and has vertical-lift, pneumatically operated doors on each end. The spray quench system utilizes fifty (50) fine mist nozzles located above, below, and on each side of the quench chamber to rapidly cool the product from all sides. Each nozzle is independently selectable from the touchscreen HMI and a variable frequency drive allows the pump speed to be adjusted to maintain a constant pressure to each spray nozzle. 

Read further here.

Johnson Matthey signs agreement for hydrogen investment in China

Johnson Matthey, Beijing, China, has signed an investment agreement with the Jiading District in Shanghai to help accelerate the hydrogen economy in China.

At a signing ceremony in Sonning, UK, JM and the Shanghai Jiading District announced plans to build a new catalyst coated membrane (CCM) production facility, providing CCM production capability for multiple proton exchange membrane (PEM) fuel cell applications and PEM electrolysers.

The facility, which will have an initial capacity of up to 5GW, will occupy 22,000m2 in the Jiading district of Shanghai, in a designated Hydrogen industrial zone and is due to be operational in 2025. It will have potential to expand further in line with customer demand.  

The investment, which is backed by customer demand, is part of JM’s £1.1 billion global stated capital expernditure for the three years to 2024/25 and will include government support and incentives. 

The new production facility will enable Johnson Matthey to supply existing Chinese and international customers with locally produced CCMs, and in addition there is a strong pipeline of further customer interest across both fuel cell and renewable (green) hydrogen technologies.

Read  further here.