Automobile seat vertical loading testing machine
A vertical loading and car seat technology, which is applied in vehicle testing, machine/structural component testing, measuring devices, etc. It can solve the problem of inability to accurately simulate the impact of external loads on the seat and the inability to complete push-pull follow-up vertical loading , Inability to accurately evaluate the quality of the seat and other issues, to achieve the effect of low noise, improved test accuracy, and good softness
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specific Embodiment approach 1
[0012] Specific implementation mode one: combine Figure 1 to Figure 2 Describe this embodiment, a kind of car seat vertical loading test machine, it comprises base 1, gantry frame 2 and beam 3, a kind of car seat vertical load test machine described in this embodiment also includes servo hydraulic actuator 4, The X-direction servo motor drive mechanism 6, the X-axis servo motor rotation mechanism 7 and the Z-direction servo motor drive mechanism 8, the base 1 is set horizontally, the gantry frame 2 is vertically set on the upper end surface of the base 1, and the beam 3 is vertically set on the gantry Between the two columns 2-1 of the frame 2, a set of X-direction slide rails 6-1 is arranged on the beam 3 along the length direction, and an X-direction slide block 6-2 is slidably connected to the X-direction slide rails 6-1. The actuator 4 is vertically fixed on the X-direction slider 6-2, the X-direction servo motor drive mechanism 6 is arranged on the beam 3 and connected w...
specific Embodiment approach 2
[0015] Specific implementation mode two: combination Figure 1 to Figure 2 Describe this embodiment, a car seat vertical loading testing machine described in this embodiment also includes a transition connection feedback device 5 and an inclination sensor 9, the transition connection feedback device 5 is arranged on the front end of the servo hydraulic actuator 4 and is respectively connected to the X-axis The servo motor rotation mechanism 7 is connected to the Z-direction servo motor drive mechanism 8 , and the inclination sensor 9 is arranged at the front end of the servo hydraulic actuator 4 and connected to the transition connection feedback device 5 . Other compositions and connection methods are the same as those in Embodiment 1.
specific Embodiment approach 3
[0016] Specific implementation mode three: combination Figure 1 to Figure 2 Describe this embodiment, the X-axis servo motor rotation mechanism 7 in this embodiment includes a rotary motor, a large gear and a pinion, the rotary motor is connected to the pinion, the pinion is arranged on one end surface of the beam 3, and the large gear is arranged on the corresponding On the end face adjacent to the Z-direction slide block 8-2, the large gear meshes with the small gear. Other compositions and connection modes are the same as those in Embodiment 1 or 2.
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