Box Alarm fire in Harvard, 3-15-23

The Harvard Fire Department (FPD) responded to a house fire on Wednesday night, March 15, 2023, at 106 W. Thompson Street. The incident occurred around 10:30 PM, prompting emergency crews to rush to the scene. Residents in the area reported heavy smoke and flames coming from the structure, which led to immediate evacuations. Firefighters worked quickly to contain the blaze and prevent it from spreading to neighboring homes. Photos and videos captured the intensity of the situation, showing thick smoke rising from the building and emergency personnel working on the scene. Michael Paige, a local photographer, documented the event, providing valuable visual coverage for the community. His images highlight the efforts of first responders and the impact of the fire on the neighborhood. A video clip from the scene shows firefighters using high-pressure hoses to control the flames, while another footage captures the aftermath of the fire. Additional images include close-ups of the damaged property and the surrounding area. These visuals offer a real-time look at the emergency response and the ongoing recovery process. Residents are advised to stay alert and follow updates from local authorities. No injuries have been reported at this time, but the cause of the fire is still under investigation. The Harvard FPD continues to monitor the area and assist with any necessary follow-up actions. If you'd like to view more photos or watch the full video, you can access the slideshow by clicking the "Show slideshow" button below.

Tungsten Rod

Tungsten bar (English name: Tungsten Bar) is also called tungsten alloy bar. Tungsten alloy rod (WMoNiFe) and Anviloy 1150 are made of metal powder at a specific high temperature, using a special high-temperature powder metallurgy technology. In this way, the tungsten alloy rod material has low thermal expansion coefficient, good thermal conductivity and good material properties.
At high temperature, tungsten alloy rod is used as a material with high melting point and low thermal expansion coefficient. The addition of tungsten alloying elements improves machinability, toughness and weldability. The material's properties are built upon manufacturing tungsten alloy rods to eliminate the problems associated with heat treatment of other tool materials.

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