A tin-extracting method of an electric soldering iron capable of precisely controlling the amount of tin to be produced
A technology of precise control and electric soldering iron, which is used in manufacturing tools, tin feeding devices, metal processing equipment, etc., can solve the problems that electric soldering iron cannot accurately control the amount of tin produced, and tin cannot be effectively processed, and achieves ingenious structural design and cost. The effect of low and high transmission efficiency
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0042] combine figure 1 and image 3, an electric soldering iron that can accurately control the amount of tin produced in this embodiment includes a handle 1, a cavity 2 and a conical head 3, the handle 1 communicates with the cavity 2, and one end of the cavity 2 is fixedly connected to the conical head 3 , the end away from the conical head 3 is a detachable cavity, the tin coil 14 is placed in the detachable cavity, one end of the tin bar 13 is wound on the tin coil 14, and the other end extends into the conical head 3; when the tin coil When the tin bar 13 on the 14 is about to run out, it can be replaced in time, so that the electric soldering iron can continue to work. The handle 1 and the cavity 2 are provided with a tin feeding assembly and a clutch assembly, and the two cooperate with each other to feed the tin bar 13 into the conical head 3 to achieve the purpose of tin feeding, which is convenient and quick to use, and the cost is low .
[0043] The clutch assem...
Embodiment 2
[0046] combine figure 1 and figure 2 , an electric soldering iron that can precisely control the amount of tin produced in this embodiment is basically the same as in Embodiment 1, except that: the handle 1 and cavity 2 of this embodiment are also provided with an air intake assembly and an exhaust assembly . The air intake assembly includes an intake handle 15, an intake piston 19 and an intake cylinder 20, wherein the outlet end of the intake cylinder 20 is inserted into the conical head 3, and by pressing the intake handle 15, the intake handle 15 drives the intake air The piston 19 and the air intake cylinder 20 move relative to each other, and the gas will enter the conical head 3 through the gas outlet; the exhaust assembly includes an exhaust handle 21, an exhaust piston 23 and an exhaust cylinder 24, and the exhaust cylinder 24 The air outlet end is inserted into the conical head 3, and by pressing the exhaust handle 21, the exhaust handle 21 drives the exhaust pist...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


