A movable cutout template positions labels during sewing, reducing manual alignment, visible defects, and production complexity.
Segmented elastic retaining member guides cap alignment, resolving center line misalignment in embroidery machine frames.
Resilient moveable blades compress fabric between arms and compression surfaces, preventing wrinkles and gaps during embroidery.
A displacement member shifts between open and closed positions to secure an embroidery frame via a connection pin.
Segmented side tension bars dynamically adjust to restore lateral tension after corrugation, preventing pattern shifts on sensitive fabrics.
A three-part embroidery frame arrangement clamps tubular textile structures to create flat single-layer sections for precise stitching.
Direct play-free connection between adjusting shaft and shuttle carriage sets width without locking mechanisms.
A carriage release member presses the embroidery frame to detach it from the transport device.
Lock release lever restricts and presses coupling portions to simplify embroidery frame mounting and removal.
A rotating inner frame adjusts its shape to hold sewing objects securely.
A positioning member with displaceable portions restricts horizontal movement of an attaching member to simplify frame mounting.
Elastic clamping portion presses cap against curved wall to reduce boundary distance and extend embroidery area on crown.
Engaging recessed and protruded portions in a single plane resists moment loads during twisting, preventing connector damage.
An embroidery frame uses a pivoting upper holding member to securely press sewing workpieces against a lower base.
Alignment markings on a clamp plate enable repeatable cap positioning, resolving insufficient design placement precision.
Segmented pressers with elastic webs pivot over holes and threads, preventing material damage during embroidery.
Segmented support feet with non-slip pads prevent template slipping without requiring user pressure.
Segmentation and dynamics principles resolve frame bending and change inefficiencies through adjustable X-Y slide mechanisms.
Lever mechanics pivot the presser member to overcome strong magnetic forces for easier removal.