Flow-dividing type spiral sliding groove
By installing diversion rods and electric telescopic rods in the spiral chute, the problem of disordered goods was solved, enabling sorting and classification by size, reducing manual labor intensity, and improving sorting efficiency and palletizing convenience.
Patent Information
- Application Number
- CN202520259433.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Existing spiral chutes cause goods to become disordered when transporting goods of different sizes, increasing the labor intensity of subsequent manual sorting and palletizing.
Design a divertable spiral chute. By setting diverting rods and electric telescopic rods, the goods can be diverted according to size, and the tilt angle of the hopper can be adjusted to match the weight of the goods to ensure the diversion effect.
This enables the sorting and classification of goods by size, reducing the labor intensity of subsequent workers and improving sorting efficiency and palletizing convenience.
Smart Images

Figure CN223751718U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to spiral chute technical field, concretely is a kind of shuntable spiral chute. BACKGROUND
[0002] Conveying equipment is the mechanical equipment that bulk goods and piece goods are conveyed along certain route from loading point to unloading point in continuous mode, spiral chute is one of conveying equipment, generally adopts single coil or spiral structure of multiple coils to transport object from upper end to lower end, spiral chute is usually combined by multiple blades by welding, has no running component itself, does not consume power, has the effect of small footprint, large processing capacity.
[0003] In prior art, different size goods are placed together in confusion when conveying by spiral chute, and it is not convenient for subsequent stacking, which increases the labor intensity of artificial classification.
[0004] Therefore, in view of the above, the existing structure and defects are improved, and a shuntable spiral chute is provided. UTILITY MODEL CONTENT
[0005] The utility model aims at providing a shuntable spiral chute to solve the problems in the above background.
[0006] To achieve the above object, the utility model provides the following technical scheme: a shuntable spiral chute, which comprises a main support and a shunt rod one, a spiral chute body one is wound outside the main support, a chute inlet one is arranged above the spiral chute body one, a vice support is arranged left of the spiral chute body one, a spiral chute body two is wound outside the vice support, a chute inlet two is arranged above the spiral chute body two, a supporting seat one is arranged at the top right side of the chute inlet one, a connecting shaft is arranged on the supporting seat one, a hopper is connected to the outside of the connecting shaft, a feeding port is formed in the left side of the hopper, the shunt rod one is arranged between the two sides inside the hopper, and a shunt rod two, a shunt rod three, a shunt rod four and a shunt rod five are further arranged between the two sides inside the hopper.
[0007] Further, the main support and the vice support are parallel to each other, and the chute inlet one and the chute inlet two are parallel to each other.
[0008] Further, the shunt rod one and the shunt rod five are symmetrically distributed about the shunt rod three, and the shunt rod two and the shunt rod four are symmetrically distributed about the shunt rod three.
[0009] Further, the hopper is placed above the chute inlet one and the chute inlet two, and a supporting seat two is fixed to the left side of the bottom of the hopper.
[0010] Further, the inside of the hopper is connected with the link plate between both sides, the link plate is arranged below the fifth shunt rod.
[0011] Further, the left side below the second chute entrance is fixed with the bracket, and the top of the bracket is provided with the third support seat.
[0012] Further, the top of the third support seat is rotationally provided with the electric telescopic rod, and the other end of the electric telescopic rod is rotationally connected with the second support seat, and the electric telescopic rod is provided with two.
[0013] The utility model provides a kind of shuntable spiral chute, with the following beneficial effects:
[0014] 1, the utility model discloses a shunt rod one, shunt rod two, shunt rod three, shunt rod four and shunt rod five are set, can make goods realize shunting in conveying process, even goods fall into chute entrance one or chute entrance two according to size, to facilitate classification and subsequent stacking.
[0015] 2, the utility model electric telescopic rod is stretched out when, its outer end can drive second support seat, hopper about connecting shaft rotates, to change the inclination angle of hopper, so that the sliding speed of goods on the first shunt rod, the second shunt rod, the third shunt rod, the fourth shunt rod and the fifth shunt rod is adjusted, avoid the weight of goods and the slope of hopper mismatch, cause the final shunt effect is poor. DRAWINGS
[0016] Figure 1 It is the overall overhead structure schematic diagram of the utility model one kind shuntable spiral chute;
[0017] Figure 2 It is the hopper front view structure schematic diagram of the utility model one kind shuntable spiral chute;
[0018] Figure 3 It is the hopper bottom view structure schematic diagram of the utility model one kind shuntable spiral chute;
[0019] Figure 4 It is the hopper three-dimensional structure schematic diagram of the utility model one kind shuntable spiral chute.
[0020] In the drawing: 1, main pillar;2, spiral groove one;3, chute entrance one;4, auxiliary pillar;5, spiral groove two;6, chute entrance two;7, support seat one;8, connecting shaft;9, hopper;10, inlet;11, first shunt rod;12, second shunt rod;13, third shunt rod;14, fourth shunt rod;15, fifth shunt rod;16, second support seat;17, electric telescopic rod;18, third support seat;19, bracket;20, link plate. CONCRETE EMBODIMENT
[0021] The embodiments of the present application will be further described in detail below with reference to the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0022] As shown in Figure 1 , Figure 3 and Figure 4 , a shuntable spiral chute includes a main support 1 and a shunt rod one 11, the outer side of the main support 1 is wound with a spiral groove body one 2, and the upper side of the spiral groove body one 2 is provided with a chute inlet one 3, the left side of the spiral groove body one 2 is provided with a vice support 4, and the outer side of the vice support 4 is wound with a spiral groove body two 5, and the upper side of the spiral groove body two 5 is provided with a chute inlet two 6, the main support 1 and the vice support 4 are parallel to each other, the chute inlet one 3 and the chute inlet two 6 are parallel to each other, the top right side of the chute inlet one 3 is provided with a support seat one 7, and the support seat one 7 is provided with a connecting shaft 8, the outer side of the connecting shaft 8 is connected with a hopper 9, and the left side of the hopper 9 is provided with an inlet 10, the shunt rod one 11 is arranged between the inner sides of the hopper 9, and the inner sides of the hopper 9 are further provided with a shunt rod two 12, a shunt rod three 13, a shunt rod four 14 and a shunt rod five 15, the shunt rod one 11 and the shunt rod five 15 are symmetrically distributed about the shunt rod three 13, and the shunt rod two 12 and the shunt rod four 14 are symmetrically distributed about the shunt rod three 13, the hopper 9 is placed above the chute inlet one 3 and the chute inlet two 6, and the bottom left side of the hopper 9 is fixed with a support seat two 16, the inner sides of the hopper 9 are connected with a connecting plate 20, and the connecting plate 20 is arranged below the shunt rod five 15.
[0023] The specific operation is as follows: by arranging the shunt rod one 11, the shunt rod two 12, the shunt rod three 13, the shunt rod four 14 and the shunt rod five 15, the goods can be shunted during conveying, that is, the goods fall into the chute inlet one 3 or the chute inlet two 6 according to the size, thereby facilitating classification and subsequent stacking.
[0024] As shown in Figure 2 , the left lower side of the chute inlet two 6 is fixed with a support seat 19, and the top of the support seat 19 is provided with a support seat three 18, and the top of the support seat three 18 is rotatably provided with an electric telescopic rod 17, and the other end of the electric telescopic rod 17 is rotatably connected with the support seat two 16, and the electric telescopic rod 17 is provided with two.
[0025] The specific operation is as follows: when the electric telescopic rod 17 extends outward, the outer end thereof can drive the support seat two 16 and the hopper 9 to rotate about the connecting shaft 8, thereby changing the inclination angle of the hopper 9, so that the sliding speed of the goods on the shunt rod one 11, the shunt rod two 12, the shunt rod three 13, the shunt rod four 14 and the shunt rod five 15 is adjusted, and the goods weight and the slope of the hopper 9 are matched, thereby avoiding poor final shunting effect.
[0026] In summary, the shuntable spiral chute, in use, first adjusts the slope of the hopper 9 according to the weight of the goods, that is, when the weight of the goods is lighter, the electric telescopic rod 17 is extended outward, the support base two 16 and the hopper 9 are driven to rotate about the connecting shaft 8 by the outer end of the electric telescopic rod 17, so as to increase the inclination angle of the hopper 9, so that the sliding speed of the goods on the shunt rod one 11, the shunt rod two 12, the shunt rod three 13, the shunt rod four 14 and the shunt rod five 15 is accelerated, and the mismatch between the weight of the goods and the slope of the hopper 9 is avoided, so as to cause poor final shunt effect;
[0027] On the contrary, when the weight of the goods is larger, the electric telescopic rod 17 is retracted inward, the support base two 16 and the hopper 9 are driven to rotate about the connecting shaft 8 by the outer end of the electric telescopic rod 17, so as to reduce the inclination angle of the hopper 9, so that the sliding speed of the goods on the shunt rod one 11, the shunt rod two 12, the shunt rod three 13, the shunt rod four 14 and the shunt rod five 15 is slowed down;
[0028] In actual application, the goods are conveyed to the inlet position 10, and then the shunt rod one 11, the shunt rod two 12, the shunt rod three 13, the shunt rod four 14 and the shunt rod five 15 with gradually increasing spacing from left to right gradually drop different sizes of goods into the chute inlet one 3 or the chute inlet two 6, and finally the goods are transported from top to bottom through the spiral groove body one 2 and the spiral groove body two 5, which facilitates classification and subsequent stacking and reduces the labor intensity of workers.
[0029] The embodiments of the present application are given for the purpose of illustration and description, and are not exhaustive or limit the present application to the disclosed form. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described for better illustrating the principles and practical applications of the present application, and enabling those of ordinary skill in the art to understand the present application so as to design various embodiments with various modifications suitable for specific purposes.
Claims
1. A diverging auger flight comprising a main leg (1) and a diverging bar (11), characterized in that, The outer side of the main support column (1) is wound with a spiral groove body one (2), and the upper side of the spiral groove body one (2) is provided with a chute inlet one (3), the left side of the spiral groove body one (2) is provided with a vice support column (4), and the outer side of the vice support column (4) is wound with a spiral groove body two (5), and the upper side of the spiral groove body two (5) is provided with a chute inlet two (6), the top right side of the chute inlet one (3) is provided with a supporting seat one (7), and the supporting seat one (7) is provided with a connecting shaft (8), the outer side of the connecting shaft (8) is connected with a hopper (9), and the left side of the hopper (9) is provided with an inlet (10), the inside of the hopper (9) is provided with a shunt rod one (11), a shunt rod two (12), a shunt rod three (13), a shunt rod four (14) and a shunt rod five (15) between the two sides.
2. A diverter auger according to claim 1, wherein, The main support column (1) and the vice support column (4) are parallel to each other, and the chute inlet one (3) and the chute inlet two (6) are parallel to each other.
3. The diverter auger of claim 1, wherein: The shunt rod one (11) and the shunt rod five (15) are symmetrically distributed about the shunt rod three (13), and the shunt rod two (12) and the shunt rod four (14) are symmetrically distributed about the shunt rod three (13).
4. The diverter auger of claim 1, wherein, The hopper (9) is placed above the chute inlet one (3) and the chute inlet two (6), and the bottom left side of the hopper (9) is fixed with a supporting seat two (16).
5. The diverter auger of claim 1, wherein, The inside of the hopper (9) is connected with a connecting plate (20), and the connecting plate (20) is arranged below the shunt rod five (15).
6. A diverter auger according to claim 4, wherein, The left side below the chute inlet two (6) is fixed with a supporting seat (19), and the top of the supporting seat (19) is provided with a supporting seat three (18).
7. A diverter auger according to claim 6, wherein, The top of the supporting seat three (18) is rotatably provided with an electric telescopic rod (17), and the other end of the electric telescopic rod (17) is rotatably connected with the supporting seat two (16), and the electric telescopic rod (17) is provided with two.