Sound insulation glass
A sound-proof glass and sound-proof granule technology, which is applied in the field of sound-proof glass, can solve problems such as heat dissipation and adverse effects of lighting, and achieve the effect of improving the sound-proof function
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Embodiment 1
[0011] A soundproof glass comprises the following raw materials in parts by weight: 50 parts of silicon dioxide, 2 parts of aluminum oxide, 2 parts of magnesium oxide, 5 parts of calcium oxide, 2 parts of zinc oxide, 2.25 parts of quartz sand, and 0.75 parts of vitrified microbeads.
[0012] Measure by adjusting the sound level of the loudspeaker. The sound level of the loudspeaker is adjusted to be 100dB for the outgoing sound and 90 dB for the reflected sound. When testing ordinary glass, the outgoing sound is 82dB and the reflected sound is 90 dB. When testing the glass of the present invention , the transmitted sound is 70dB, and the reflected sound is 90dB.
Embodiment 2
[0014] A soundproof glass comprises the following raw materials in parts by weight: 60 parts of silicon dioxide, 5 parts of aluminum oxide, 5 parts of magnesium oxide, 5 parts of calcium oxide, 2 parts of zinc oxide, 6 parts of quartz sand, and 2 parts of vitrified microspheres.
[0015] Measure by adjusting the sound level of the loudspeaker. The sound level of the loudspeaker is adjusted to be 100dB for the outgoing sound and 90 dB for the reflected sound. When testing ordinary glass, the outgoing sound is 82dB and the reflected sound is 90 dB. When testing the glass of the present invention , the transmitted sound is 66dB, and the reflected sound is 90 dB.
Embodiment 3
[0017] A soundproof glass comprises the following raw materials in parts by weight: 55 parts of silicon dioxide, 3 parts of aluminum oxide, 3 parts of magnesium oxide, 7 parts of calcium oxide, 3 parts of zinc oxide, 3.75 parts of quartz sand, and 1.25 parts of vitrified microbeads.
[0018] Measure by adjusting the sound level of the loudspeaker. The sound level of the loudspeaker is adjusted to be 100dB for the outgoing sound and 90 dB for the reflected sound. When testing ordinary glass, the outgoing sound is 82dB and the reflected sound is 90 dB. When testing the glass of the present invention , the transmitted sound is 60dB, and the reflected sound is 90 dB.
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