一种爆炸焊接炸药量控制机构
By designing an explosive welding explosive quantity control mechanism and utilizing a temporary storage quantitative release and differential metering calibration structure, the safe, rapid, and accurate proportioning of explosive quantity was achieved. This solved the problems of cumbersome explosive quantity control and safety hazards in existing technologies, and improved operational efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENYANG XIAOYING BLASTING ENG CO LTD
- Filing Date
- 2025-07-31
- Publication Date
- 2026-07-17
AI Technical Summary
In existing explosive welding technology, the process of controlling and proportioning the amount of explosives is cumbersome, which affects the efficiency of operation and poses safety hazards.
Design an explosive welding explosive quantity control mechanism, which adopts a temporary storage quantitative release structure and a differential metering calibration structure, combined with mechanical linkage and intelligent metering, to achieve safe storage, slow release and accurate weighing of explosives, and ensure the accuracy of explosive ratio through a dual verification mechanism.
The process of preparing explosives has been simplified, improving operational safety and efficiency, reducing safety hazards caused by weight deviations, and ensuring the stable implementation of the explosive welding process.
Smart Images

Figure CN224508692U_ABST
Abstract
Claims
1. An explosive welding charge control mechanism comprising: The device comprises a support base, several displacement pulleys, a connecting rod, and a handle. The several displacement pulleys are respectively mounted on the support base, the connecting rod is mounted on the support base, and the handle is mounted on the connecting rod. A temporary storage quantitative release structure and a differential metering calibration structure are also installed on the support base. The temporary storage quantitative release structure includes: an internal motor, an explosive pushing shell, a pushing power shaft, several pushing vortex blades, and a temporary safety storage compartment. The motor inside the seat is installed in the support bracket, the explosive pushing shell is inserted into the support bracket and connected to the motor inside the seat, the pushing power shaft is inserted into the explosive pushing shell, a plurality of pushing vortex blades are respectively mounted on the pushing power shaft, and the temporary safety storage compartment is installed on the explosive pushing shell.
2. The explosive welding explosive quantity control mechanism according to claim 1, characterized in that, The differential measurement calibration structure includes: a first measuring housing, several load-bearing buffer partition spring columns, a second measuring housing, a first display screen, a second display screen, and an explosive support tray; The first measuring housing is mounted on the bearing support, and the second measuring housing is connected to a plurality of bearing buffer separation spring columns. The plurality of bearing buffer separation spring columns are respectively mounted on the first measuring housing. The first display screen is mounted on the first measuring housing, and the second display screen is mounted on the second measuring housing. The second measuring housing has a tray placement slot. The explosive tray is movably connected to the second display screen through the tray placement slot, and the explosive tray is directly below the explosive pushing housing.
3. The explosive welding charge control mechanism according to claim 2, wherein The explosive tray is covered with a Teflon coating.
4. The explosive welding charge control mechanism according to claim 3, wherein The temporary insurance storage compartment is equipped with a sealed cover.
5. The explosive welding charge control mechanism according to claim 4, wherein A primary weight sensor is provided on the second measuring housing.
6. The explosive welding charge control mechanism of claim 5, wherein, The first measuring housing is equipped with a tare weight sensor.