Parallel Beam Load Cell The Structure Of The Horizontal Force

- Oct 17, 2017 -

When weighing the container or monitoring the fill state, Parallel Beam Load Cell the horizontal movement of the container and bracket resulting from the temperature change must be considered. Rigid mounting attachments prevent this movement, resulting in a horizontal lateral force resulting in measurement errors. Parallel Beam Load Cell This force sometimes causes the sensor to be damaged or even completely fractured. This may occur at load-loading points where eccentric or oblique loads may produce torsion and lateral forces, thus selecting a structure that avoids the horizontal forces caused by temperature distortions or other factors.

The use of mounting attachments to assemble sensors is a rule that eliminates many aspects of interference. Therefore, depending on the application, it is required to choose the specific installation attachment. Parallel Beam Load Cell In the final analysis, however, only design engineers with symmetrical weight technology can determine the interference in the measurement process. Therefore, for different sensor structures, Parallel Beam Load Cell there is not only a wide range of load-import methods, but also a variety of installation accessories selection.

The typical elastic supports are many overlapping plates and layers, which are interconnected through the vulcanization process. A small force also moves the upper and lower load guide planes parallel. Therefore, the top support plate can avoid lateral force, without attaching the support plate to the sensor. Parallel Beam Load Cell The horizontal translation between the container and the sensor is up to 15mm. At the same time, in the translation of the recovery force, so that the container back to the starting point, Parallel Beam Load Cell this force is not related to the load, but proportional to the translation distance, according to the elastic support model of the different models can reach 800 newtons, this support can balance the tilt up to 1.7 ° container.

In particular, the impact of the load vibration and other external-induced vibration, elastic support of the damping effect is advantageous. In addition, the elastic support body is designed to be well insulated, Parallel Beam Load Cell and its layered structure makes the heat conduction between the container and the sensor very small. To limit the side offset, set the endpoint offset protection without having to manipulate the part.

This is a sensor designed to return to the starting point independently of the weight-loaded eccentricity, which utilizes the physical characteristics of the stable balance. As the sensor of the swing body occupies the load guide surface, its curvature radius is larger than the sensor height. Parallel Beam Load Cell The swing of the initial bit causes the loading point to rise and the sensor to return to the self.

The maximum swing allowed in the technical parameter table, Parallel Beam Load Cell such as the c16/40t type, the maximum of 13 mm/5°, this value must not be allowed to exceed, because of the sway of the assembly damage sensor and load point, this problem can simply adjust the assembly structure of the blocker to the appropriate location to solve. For Low-cost, easy to install, the upper and lower one hbm pressure head is enough, Parallel Beam Load Cell the anti-rotating safety device can prevent axial rotation movement.

The standard beam sensor and the C-series sensor with swinging support and swing support seat can achieve the performance of the homing, which makes it possible to manufacture high-precision container scales. The structure form of the pendulum support can reach the deviation of 3 ° without obvious error, Parallel Beam Load Cell and the horizontal displacement of the support point can be limited to a certain range. Most ZPL-type pendulum support consists of two supporting seats and one piece of cylindrical support, Parallel Beam Load Cell which can meet the requirements of ZPS type Swing support only column support and EPO3 pressure head.


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