Experimental device and experiment method for breaking rock by means of ultrasonic waves
An experimental device and rock crushing technology, which is applied in the cross field of ultrasonics and rock crushing, can solve the problems of low penetration rate, low drilling strength, wear and tear of equipment, etc., and achieve the effect of prolonging the service life
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2017-08-11
Smart Images

Figure 1 
Figure 2 
Figure 3
Abstract
Description
technical field
[0001] The invention belongs to the intersection field of ultrasonics and rock crushing, specifically a method of using ultrasonic waves to excite rocks to promote the development of cracks inside the rocks, damage and rupture, thereby reducing the strength of rocks to study the crushing effects of different types of rocks and ultrasonic power, frequency and rock mass. Experimental device and experimental method of inter-quantitative law. Background technique
[0002] Ultrasonic wave is a form of mechanical vibration state and energy transmission. During the transmission process, it will cause the medium particles to compress and stretch alternately, resulting in pressure changes between the media. This pressure change will cause mechanical effects between the media. Studies have shown that: the ultrasonic frequency is high and the wavelength is short, and when it acts on a solid medium, the vibration acceleration of the particle is very large, and the partic...
Examples
Embodiment Construction
[0030] A kind of experiment device that utilizes ultrasonic wave to excite broken rock of the present invention is made up of ultrasonic generator 6, vibrating system and cooling system three parts, and vibrating system comprises Lang Jiewen vibrator 1, connecting plate 2 and fixator 4, and cooling system comprises There are cooling cylinder 7, cooling liquid 9 and cooling tank 5.
[0031] The connecting piece 2 and the Langevin vibrator 1 are screwed together through the screws 8 on the connecting piece 2, and then the rock specimen 3 and the connecting piece 2 are tightly bonded together with superglue.
[0032] The ultrasonic transducer in the vibrator 1 is a composite piezoelectric ceramic transducer.
[0033] The connecting piece 2 is circular, and its diameter and thickness are determined according to the diameter of the experimental specimen.
[0034] Utilize the symmetrical "Y" type fixer 4 that is installed on the tank wall of the cooling tank to clamp the rock speci...