一种双螺旋锥形混合机
By adjusting the spacing of the spiral mixing rods, the problem of dead zones in the double spiral conical mixer was solved, achieving a more efficient material mixing effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEBEI CHENGTANG REFRACTORY MATERIAL CO LTD
- Filing Date
- 2025-08-06
- Publication Date
- 2026-07-17
AI Technical Summary
The fixed spacing between the screws in existing double-helix conical mixers results in dead zones within the mixing tank, leading to uneven material mixing and low efficiency.
The spacing of the spiral mixing rod is adjusted by using an electric telescopic rod to drive the adjusting frame and linkage components, thereby reducing dead zones in the mixing process and improving the uniformity of the material.
This improved the uniformity of material mixing within the mixing tank, thereby increasing mixing efficiency.
Smart Images

Figure CN224506800U_ABST
Abstract
Claims
1. A double-screw conical mixer characterized by comprising: The system includes a mixing tank (1), a discharge valve (2), a transmission component (3), and a spiral mixing rod (4). The discharge valve (2) is located on the lower side of the mixing tank (1). The transmission component (3) is located at the upper part of the mixing tank (1). The spiral mixing rod (4) is located at the lower end of the transmission component (3). The transmission component (3) includes a first linkage component (5). A first adjusting frame (6) is provided at the lower ends of both sides of the first linkage component (5). The first adjusting frame (6) has... An electric telescopic rod (7) is installed at the lower end. A second adjustment frame (8) is provided at the outer end of the electric telescopic rod (7). A second linkage component (9) is provided on the outer side of the second adjustment frame (8). A hexagonal sleeve rod (10) is provided at both ends of the first linkage component (5). A hexagonal inner rod (11) is provided inside the hexagonal sleeve rod (10). A guide rod (12) is provided at the upper inner end of the second adjustment frame (8). A drive motor (13) is installed on the upper side of the first linkage component (5).
2. A double helical ribbon mixer according to claim 1, wherein The first linkage member (5) includes a first housing (14), a second housing (15) is provided on the lower side of the first housing (14), a first linkage rod (16) is provided inside the first housing (14), a first bevel gear (17) is provided at the lower end of the first linkage rod (16) located inside the second housing (15), and a second linkage rod (18) is provided at both ends of the second housing (15), with the inner end of the second linkage rod (18) located outside the first bevel gear (17). The second bevel gear (19) includes a third housing (20), a fourth housing (21) is provided on one side of the third housing (20), a third linkage rod (22) is provided at the lower end of the third housing (20), a third bevel gear (23) is provided at the upper end of the third linkage rod (22), a fourth linkage rod (24) is provided at one end of the fourth housing (21), and a fourth bevel gear (25) is provided on one side of the fourth linkage rod (24) at the outer position of the third bevel gear (23).
3. A double helical ribbon mixer in accordance with claim 1 wherein, The lower end of the mixing tank (1) is connected to the input end of the discharge valve (2). The spiral mixing rod (4) rotates inside the mixing tank (1) via the transmission component (3). The upper end of the transmission component (3) is fixed inside the mixing tank (1).
4. A double helical ribbon mixer in accordance with claim 1 wherein, The outer end of the first linkage member (5) is fixed at the inner end of the hexagonal sleeve rod (10), one end of the hexagonal inner rod (11) slides at the outer end of the hexagonal sleeve rod (10), and the other end of the hexagonal inner rod (11) is fixed at one end of the second linkage member (9).
5. A double helical ribbon mixer in accordance with claim 1 wherein, The second adjusting frame (8) slides on the outside of the first adjusting frame (6) via the electric telescopic rod (7). The inner end of the guide rod (12) slides on the upper end of the first adjusting frame (6). The outer end of the guide rod (12) is fixed to one side of the second adjusting frame (8). The upper end of the spiral mixing rod (4) is fixed to the lower end of the second linkage member (9).
6. A double helical ribbon mixer in accordance with claim 2 wherein, The lower end of the first linkage rod (16) rotates to the lower end of the first housing (14), the outer end of the second linkage rod (18) rotates to the outer end of the second housing (15), the first linkage rod (16) rotates to the inner position of the first housing (14) via the transmission motor (13), and the outer side of the second linkage rod (18) is fixed to the inner position of the hexagonal sleeve rod (10).
7. A double helical ribbon mixer in accordance with claim 2 wherein, The lower end of the third linkage rod (22) rotates to the lower end of the third housing (20), the upper end of the spiral mixing rod (4) is fixed to the lower side of the third linkage rod (22), one end of the fourth linkage rod (24) rotates to the one end of the fourth housing (21), the outer side of the hexagonal inner rod (11) is fixed to the inner side of the fourth linkage rod (24), the upper end of the first adjusting frame (6) is fixed to the outer side of the second housing (15), and the upper end of the second adjusting frame (8) is fixed to the lower end of the third housing (20).