F41B13/02

DETERMINING FENCING BLADE QUALITY USING DYNAMIC MAGNETIC FIELD MEASUREMENTS
20190275400 · 2019-09-12 ·

An apparatus may determine the quality of a fencing blade. The apparatus may include an electrical current source; a fencing blade to be tested for quality; two electrical cables, each connected between the electrical current source and the fencing blade so as to cause current from the current source to travel through at least a portion of the fencing blade; and a magnetic field sensor in sufficient proximity to the fencing blade so as to enable the magnetic field sensor to detect a magnetic field generated by the fencing blade when the current passes through the fencing blade.

DETERMINING FENCING BLADE QUALITY USING DYNAMIC MAGNETIC FIELD MEASUREMENTS
20190275400 · 2019-09-12 ·

An apparatus may determine the quality of a fencing blade. The apparatus may include an electrical current source; a fencing blade to be tested for quality; two electrical cables, each connected between the electrical current source and the fencing blade so as to cause current from the current source to travel through at least a portion of the fencing blade; and a magnetic field sensor in sufficient proximity to the fencing blade so as to enable the magnetic field sensor to detect a magnetic field generated by the fencing blade when the current passes through the fencing blade.

Knife with automatic blade retraction
10112312 · 2018-10-30 · ·

A knife (1) with automatic blade retraction including a housing (2), a moveable actuating device (4), a rotatable blade unit (30), and a retraction element (34) which always applies a retraction force to the blade unit (30) in the direction of the retracted position. The rotatable blade unit (30) can be brought into engagement with the actuating device (4) and is moveable by means of the actuating device (4) from a position retracted in the housing (2) into a position extended from the housing (2). The blade unit (30) is also rotatable by the action of a cutting force in an extended position from an engagement position in which the blade unit (30) is in engagement with the actuating device (4) into a release position in which the blade unit (30) is not in engagement with the actuating device (4).

Fencing Sport Safety Blade
20180094899 · 2018-04-05 ·

Creating a beveled edge on a traditionally manufactured sport fencing bladeespecially on a sabre blade tipchanges the structure of such a blade's angle of incidence, thereby resulting in a safer blade that is less apt to cause injury by piercing a fencer's protective uniform.

Fencing Sport Safety Blade
20180094899 · 2018-04-05 ·

Creating a beveled edge on a traditionally manufactured sport fencing bladeespecially on a sabre blade tipchanges the structure of such a blade's angle of incidence, thereby resulting in a safer blade that is less apt to cause injury by piercing a fencer's protective uniform.

SYSTEMS AND METHODS FOR USING A GYROSCOPE TO CHANGE THE RESISTANCE OF MOVING A VIRTUAL WEAPON
20170203225 · 2017-07-20 ·

This disclosure relates to systems and methods for using a gyroscope to change the resistance of moving a virtual weapon to simulate a feel of moving the virtual weapon. A feel of moving a virtual weapon may be simulated by determining a position and/or an orientation of a virtual blade of the virtual weapon, determining controls for a gyroscope based on the position and/or the orientation of the virtual blade, and operating the gyroscope in accordance with the controls for the gyroscope to provide resistance to changing the orientation of the hilt, wherein the resistance to changing the orientation of the hilt simulates the feel of moving the virtual weapon.

SYSTEMS AND METHODS FOR USING A GYROSCOPE TO CHANGE THE RESISTANCE OF MOVING A VIRTUAL WEAPON
20170203225 · 2017-07-20 ·

This disclosure relates to systems and methods for using a gyroscope to change the resistance of moving a virtual weapon to simulate a feel of moving the virtual weapon. A feel of moving a virtual weapon may be simulated by determining a position and/or an orientation of a virtual blade of the virtual weapon, determining controls for a gyroscope based on the position and/or the orientation of the virtual blade, and operating the gyroscope in accordance with the controls for the gyroscope to provide resistance to changing the orientation of the hilt, wherein the resistance to changing the orientation of the hilt simulates the feel of moving the virtual weapon.

Safety cutter apparatus

A cutter apparatus includes a housing, multiple tools mechanically coupled to the housing, at least one of the tools including a cutting device, and a slider and lock wheel mechanically coupled to the housing and configured to selectively release only one of the tools at a time from being secured within the housing.