Portable spring ice making device
A portable, ice chamber technology, applied in the direction of ice making, ice storage/distribution, lighting and heating equipment, etc., can solve the problems of high cost, troublesome operation, inconvenient use, etc., to achieve convenient operation, cost saving, reduce area effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0028] like Figure 1-5 As shown, a portable spring ice-taking device includes an ice-making cylinder and an ice-scraping mechanism placed inside the ice-making cylinder. 2. There is a cylindrical hole at the top of the stretching chamber 1, a spring pull plate 4 is set inside the stretch chamber 1, a spring 8 is set at the lower end of the spring pull plate 4, the spring 8 leads into the ice making chamber 2, and a scraper is set at the lower end of the spring 8. The ice device 9 is provided with an ice outlet 6 at the bottom of the ice making chamber 2 , and a slant plate 13 is arranged around the ice outlet 6 .
[0029] There is also a fluid inlet 5 on the connecting ring edge of the ice-making chamber 2 and the stretching chamber 1. The bottom of the stretching chamber 1 is higher than the fluid inlet 5, and the fluid is transported into the ice-making chamber through the fluid inlet, so that the fluid passes through the fluid. The inlet is on the wall of the ice-making c...
Embodiment 2
[0040] like Figure 1-5 As shown, a portable spring ice-taking device includes an ice-making cylinder and an ice-scraping mechanism placed inside the ice-making cylinder. 2. There is a cylindrical hole at the top of the stretching chamber 1, a spring pull plate 4 is set inside the stretch chamber 1, a spring 8 is set at the lower end of the spring pull plate 4, the spring 8 leads into the ice making chamber 2, and a scraper is set at the lower end of the spring 8. The ice device 9 is provided with an ice outlet 6 at the bottom of the ice making chamber 2 , and a slant plate 13 is arranged around the ice outlet 6 .
[0041] There is also a fluid inlet 5 on the connecting ring edge of the ice-making chamber 2 and the stretching chamber 1. The bottom of the stretching chamber 1 is higher than the fluid inlet 5, and the fluid is transported into the ice-making chamber through the fluid inlet, so that the fluid passes through the fluid. The inlet is on the wall of the ice-making c...
Embodiment 3
[0052] When in use, the fluid enters the inside of the ice-making cylinder through the fluid inlet 5, and under the action of the external refrigerant of the ice-making cylinder, an ice layer is formed on the inner wall of the ice-making cylinder. Since the fluid inlet 5 is lower than the bottom of the stretching chamber 1, the fluid cannot Enter in the stretching chamber 1, when the ice scraper 9 is at the lowest position, utilize the pulling force of the spring 8 itself and the pulling force provided by the lifting motor to overcome the resistance of the ice layer and move upwards. The lifting motor drives the spring pull plate 4 to move in the stretching chamber 1 to form a tension on the spring 8; after the spring 8 drives the ice scraper 9 to reach the highest point, the spring pull plate 4 and the spring 8 are at the highest point of the stretching chamber 1, The spring 8 is in a compressed state. At this time, the lifting motor is used to drive the spring pull plate 4 to...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


