Plank soft mode forming device and method based on magnetorheological elastomers
A magnetorheological elastomer and elastomer technology, which is applied in the field of sheet-type soft mold forming devices, can solve problems such as inability to change rubber properties, and achieve the effects of improving the forming limit, optimizing the control of deformation flow, and improving the forming quality.
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specific Embodiment approach 1
[0021] Specific implementation mode one: combine figure 1 Describe this embodiment, this embodiment comprises plunger 1, coil 2, container frame 3, magnetorheological elastomer 4 and die 5, and the upper end surface of described die 5 is provided with die cavity 5-1, container frame 3 and the concave mold 5 are set up and down, the container frame 3 is set on the outside of the plunger 1, and the head of the plunger 1 is located in the inner cavity of the container frame 3, and the magnetorheological elastomer 4 is filled in the plunger 1 In the cavity formed by the lower surface and the inner wall of the container frame 3 , the coil 2 is set on the outer wall of the container frame 3 and the die 5 .
specific Embodiment approach 2
[0022] Specific implementation mode two: combination figure 1 To illustrate this embodiment, the plunger 1, the container frame 3 and the die 5 of this embodiment are all made of non-magnetic steel or austenitic stainless steel. Both non-magnetic steel and austenitic stainless steel can make the magnetic force line fully pass through the magnetorheological elastomer, so that the magnetic field distribution in the working area is more uniform. Other components and connections are the same as those in the first embodiment.
specific Embodiment approach 3
[0023] Specific implementation mode three: combination Figure 1 ~ Figure 4 Describe this implementation mode, this implementation mode is realized through the following steps:
[0024] Step 1. Place the plate 6 to be formed between the lower surface of the container frame 3 and the upper surface of the die 5, and clamp the plate 6 to be formed; the plate 6 to be formed can be clamped by means such as a lock or a hydraulic press ;
[0025] Step 2. Determine the magnetic field strength B in the working area according to the shape of the plate 6 to be formed and the elastic modulus of the magnetorheological elastomer 4 required at each stage of forming,
[0026] B≈μ 0 n
[0027] where μ 0 ——vacuum magnetic permeability, n——coil turns per unit length, I——current,
[0028] The magnetic field strength B cannot exceed the magnetic saturation strength of the magnetorheological elastomer;
[0029] Step 3: Connect the coil 2 to a DC power supply, and change the magnetic field str...
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