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    • 94. 发明申请
    • WHEEL LOAD ASSEMBLY FOR A DYNAMOMETER TEST BENCH AND DYNAMOMETER TEST BENCH
    • US20230135131A1
    • 2023-05-04
    • US17907728
    • 2021-03-16
    • BREMBO S.p.A.
    • Claudio BENINI
    • G01M17/04G01L5/28
    • A wheel load assembly (5) for a dynamometer test bench (1) comprises —a support structure (17) which can be assembled on a base (12), —a vertical load device (18) having a first application bracket (19) which is rigidly connectable to a bearing body (96), which in turn is couplable to the wheel suspension part (3), a first reaction support (20) connected to the support structure (17), a first force transmission connector (21) connected between the first reaction support (20) and the first application bracket (19), as well as a first load apparatus (22) operatively connected to the first force transmission connector (21) to load the first force transmission connector (21) in a first vertical load direction (23), —a longitudinal load device (24) having a second application bracket (25) which is rigidly connectable to the bearing body (96), which in turn is couplable to the wheel suspension part (3), a second reaction support (26) connected to the support structure (17), a second force transmission connector (27) connected between the second reaction support (26) and the second application bracket (25), as well as a second load apparatus (28) operatively connected to the second force transmission connector (27) to load the second force transmission connector (27) in a second longitudinal load direction (29) transverse to the first vertical load direction (23) and to a wheel rotation axis (40) of the wheel suspension part (3), —a lateral load device (30) having a third application bracket (31) which is rigidly connectable to the bearing body (96), which in turn is couplable to the wheel suspension part (3), a third reaction support (32) connected to the support structure (17), a third force transmission connector (33) connected between the third reaction support (32) and the third application bracket (31), as well as a third load apparatus (34) to load the third force transmission connector (33) in a third lateral load direction (35) parallel to the wheel rotation axis (40) and transverse to the first vertical load direction (23) and to the second longitudinal load direction (29), in which the vertical, longitudinal, and lateral load devices comprise respective adjustment devices for adjusting the position of the application points of the vertical, longitudinal, and lateral forces.
    • 100. 发明申请
    • COOKING APPLIANCE WITH AT LEAST ONE CARRYING PLATE AND METHOD FOR ASSEMBLING A VIBRATION SENSOR
    • US20230134848A1
    • 2023-05-04
    • US17912217
    • 2021-03-19
    • ELECTROLUX APPLIANCES AKTIEBOLAG
    • Lukasz WASINKIEWICZAlwin NEUKAMM
    • H05B6/12F24C15/08G01H17/00
    • The present invention relates to a cooking appliance with at least one carrying plate (3) adapted to receive cookware placed thereon, in particular a cooking hob (1) with a top plate or with a system comprising a top plate and at least one pan support. At least one sensing means for the detection of vibration is comprised. The vibration is generated when food to be cooked and/or cooking adjuvant inside of the cookware is heated up. The food to be cooked and/or cooking adjuvant may be a cooking liquid. A vibration sensor is attached to the carrying plate (3) by way of fixation means which prevent relative movement between the vibration sensor and the carrying plate (3), in particular in the direction towards and/or away from each other. Further, a method for assembling a vibration sensor to a carrying plate (3) of a cooking appliance, particularly to a top plate of a cooking hob (1), is disclosed. The carrying plate (3) transmits vibration movements from a cookware to the vibration sensor. The assembly comprises the assembling steps: - a first rigid frame part (23) is rigidly connected to the carrying plate (3), preferably in a first assembling step; and - the vibration sensor is connected to the first rigid frame part (23) in a way that prevents relative movement between vibration sensor and carrying plate (3), in particular in the direction towards and/or away from each other, preferably in a second assembling step.