White Papers
Johansen’s yield model—a widely adopted design model for determining reference lateral design values for wood member connections in heavy timber and mass timber ...
White Papers
This White Paper is a supplement to a previously published White Paper, by referencing both monotonic and cyclic testing data obtained from Oregon State University (OSU) to ...
White Papers
This white paper addresses the challenges faced by engineers and designers in North American mass timber design in selecting efficient members, particularly in relation to ...
White Papers
Discover the secret to accurately calculating withdrawal resistance in mass timber connections with MTC’s ASSY self-tapping screws (STS). Our comprehensive technical ...
White Papers
This document offers project managers, designers, and purchasers easy-to-read tables to efficiently select and substitute the most cost-efficient beam hanger system between ...
White Papers
The significance of the response of mass timber connections to loading conditions such as seismic or high wind events grows over time with the increase in maximum height now ...
White Papers
This white paper explores the role of stiffness in designing a custom bearing beam hanger system for mass timber buildings and emphasizes on the importance of testing and ...
White Papers
This white paper reviews the results of recent lateral load testing of Assy screws used to fasten steel plates to CLT.
White Papers
This white paper discusses application of long self-tapping screws (STS) in near-edge applications.
White Papers
This Special Design Provision suggests adequate self-tapping screw replacements for given lag screw geometry that meet or exceed load-carrying capacities calculated for single ...
White Papers
This CLT Special Provisions contains reference design values derived from testing. With it, designers can increase cost efficiency for large projects.
White Papers
Design provisions for fire design of mass timber connection systems in North America compared against the results derived from full-scale testing.
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