Waste spinning feeding anti-blocking equipment
By designing a waste textile feeding anti-clogging device, and using a rotary motor to drive the equalizing roller and an electrically controlled telescopic rod, the clogging problem of waste textile alternative fuels during the feeding process was solved, achieving stable kiln conditions and cost reduction.
Patent Information
- Application Number
- CN202422855284.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Waste textile alternative fuels are prone to bridging and arching during the feeding, conveying and feeding process, which can lead to entanglement and blockage, increase the difficulty of manual clearing, affect the stability of kiln conditions and limit their utilization rate.
A waste textile feeding anti-clogging device was designed, including an annular base, an installation structure, a support structure, a feeding structure, a feeding mechanism, first and second feeding structures, and a pressing structure. It utilizes a rotary motor to drive a material distribution roller and an electrically controlled telescopic rod to achieve uniform material distribution and pressing, thus avoiding clogging.
It effectively prevents material entanglement and blockage, improves combustion rate and heat utilization, reduces fuel costs, stabilizes kiln conditions, and simplifies operation procedures.
Smart Images

Figure CN223606657U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to waste spinning feed field, concretely is a kind of waste spinning feed anti-blocking equipment. BACKGROUND
[0002] In the carbon emission generated in cement clinker production process, about 65% is carbonate decomposition, and about 35% is emission generated by fossil fuel combustion, and currently, it is temporarily difficult to have a major breakthrough in the economically viable alternative limestone raw material carbon reduction approach, so that carbon emission reduction pressure is becoming increasingly severe. Since the alternative fuel has a lower carbon emission factor than fossil fuel, the application of alternative fuel is one of the important measures for energy saving and carbon reduction in the coming years.
[0003] Waste spinning alternative fuel is an ideal alternative fuel in the coming years, but its shortcomings are also more prominent, that is, the bulk density is small and the size is large, which is easy to arch and arch in the process of feeding, conveying and feeding, and winding and blocking increase the difficulty of manual feeding and unblocking, and due to the interruption of feeding, it is easy to cause thermal fluctuation, affect the stability of kiln condition, and seriously restrict its use rate, so it is very necessary to design a waste spinning feed anti-blocking equipment to improve its use rate. SUMMARY
[0004] In view of the deficiencies of the prior art, the utility model provides a waste spinning feed anti-blocking equipment, which solves the problem that waste spinning alternative fuel is an ideal alternative fuel in the coming years, but its shortcomings are also more prominent, that is, the bulk density is small and the size is large, which is easy to arch and arch in the process of feeding, conveying and feeding, and winding and blocking increase the difficulty of manual feeding and unblocking, and due to the interruption of feeding, it is easy to cause thermal fluctuation, affect the stability of kiln condition, and seriously restrict its use rate.
[0005] To achieve the above purpose, the utility model realizes the following technical scheme: a waste spinning feed anti-blocking equipment, comprising:
[0006] Annular seat body;
[0007] Mounting structure, the mounting structure is installed on annular seat body, and the mounting structure is used for installation;
[0008] Supporting structure, the supporting structure is installed on annular seat body, and the supporting structure is used for supporting;
[0009] Inlet structure, the inlet structure is installed on supporting structure, and the inlet structure is used for inlet;
[0010] Feeding structure, the feeding structure is installed on inlet structure, and the feeding structure is used for feeding;
[0011] First inlet structure, the first inlet structure is installed on inlet structure, and the first inlet structure is used for inlet;
[0012] A second feeding structure is mounted on the feeding structure, and the second feeding structure is used for feeding;
[0013] A pressing structure is mounted on the supporting structure, and the pressing structure is used for pressing.
[0014] Preferably, the mounting structure comprises a ring-shaped mounting plate and a plurality of mounting bolts.
[0015] The ring-shaped mounting plate is mounted on the lower end of the side surface of the ring-shaped seat body, and the plurality of mounting bolts are movably mounted on the ring-shaped mounting plate.
[0016] Preferably, the supporting structure comprises a supporting frame.
[0017] The supporting frame is mounted on the upper surface of the ring-shaped seat body.
[0018] Preferably, the feeding structure comprises a feeding bin.
[0019] The feeding bin is mounted on the supporting frame.
[0020] Preferably, the feeding structure comprises a feeding shell.
[0021] The feeding bin is provided with a rectangular gap, and the feeding shell is mounted at the rectangular gap.
[0022] Preferably, the first feeding structure comprises a pair of first fixing frames, a pair of first rotary motors, a pair of first connecting heads, a first rotating round rod, and a first material uniformizing roller.
[0023] The pair of first fixing frames are mounted on the side surface of the feeding bin, each first rotary motor is mounted on the corresponding first fixing frame, each first connecting head is mounted on the rotating end of the corresponding first rotary motor, and the pair of first connecting heads are located in the feeding bin, the first rotating round rod is mounted on the pair of first connecting heads, and the first material uniformizing roller is mounted on the first rotating round rod.
[0024] Preferably, the second feeding structure comprises a pair of second fixing frames, a pair of second rotary motors, a pair of second connecting heads, a second rotating round rod, and a second material uniformizing roller.
[0025] The pair of second fixing frames are mounted on the side surface of the feeding bin, each second rotary motor is mounted on the corresponding second fixing frame, each second connecting head is mounted on the rotating end of the corresponding second rotary motor, and the pair of second connecting heads are located in the feeding bin, the second rotating round rod is mounted on the pair of second connecting heads, and the second material uniformizing roller is mounted on the second rotating round rod.
[0026] Preferably, the pressing structure comprises a door-shaped support frame, two pairs of third fixing frames, two pairs of electric control telescopic rods and a pressing plate.
[0027] The door-shaped support frame is installed on the feeding bin, the two pairs of third fixing frames are installed on the door-shaped support frame, each electric control telescopic rod is installed on the corresponding third fixing frame, and the pressing plate is installed on the two pairs of electric control telescopic rods.
[0028] Preferably, the first material uniformizing roller comprises a first roller and a plurality of first material discharging rods.
[0029] The plurality of first material discharging rods are installed on the first roller.
[0030] The second material uniformizing roller comprises a second roller and a plurality of second material discharging rods.
[0031] The plurality of second material discharging rods are installed on the second roller.
[0032] Preferably, the annular seat body is provided with a power supply interface, and the annular seat body is provided with a controller. Beneficial effects
[0033] The utility model provides a kind of waste spinning feeding anti-blocking equipment.It has the following beneficial effects: the waste spinning feeding anti-blocking equipment is forced to discharge by rotating the upper material evenly pulling down, free falling into bottom, avoid the material directly pressed into bin cone portion after forklift loading in hopper interior, cause arching blockage, improve combustion rate, shorten burnout time, improve heat utilization rate, reduce fuel cost, exempt from winding and blocking, leading to feeding interruption, reduce the influence on kiln condition, relatively simple structure, convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0034] Figure 1 It is the structure diagram of the waste spinning feeding anti-blocking equipment of the utility model.
[0035] Figure 2 It is the front view structure diagram of the waste spinning feeding anti-blocking equipment of the utility model.
[0036] Figure 3 It is the front view of the waste spinning feeding anti-blocking equipment of the utility model.
[0037] Figure 4 It is the plan view of the waste spinning feeding anti-blocking equipment of the utility model.
[0038] In the drawing:
[0039] Annular seat body 10, mounting structure 20, support structure 30, feeding structure 40, feeding structure 50, first feeding structure 60, second feeding structure 70, pressing structure 80, power supply interface 90, controller 100;
[0040] annular mounting plate 21, mounting bolt 22;
[0041] support frame 31;
[0042] feeding bin 41;
[0043] feeding shell 51;
[0044] first fixed frame 61, first rotary motor 62, first connecting head 63, first rotating round rod 64, first material uniformizing roller 65;
[0045] second fixed frame 71, second rotary motor 72, second connecting head 73, second rotating round rod 74, second material uniformizing roller 75;
[0046] gate-shaped support frame 81, third fixed frame 82, electric control telescopic rod 83, pressing plate 84;
[0047] first roller 651, first discharging rod 652;
[0048] second roller 751, second discharging rod 752. DETAILED DESCRIPTION
[0049] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0050] Please refer to Figures 1-4 The present application provides a technical solution: a waste spinning feeding anti-blocking device, comprising: an annular seat body 10, a mounting structure 20, the mounting structure 20 being mounted on the annular seat body 10 and being used for mounting, a support structure 30, the support structure 30 being mounted on the annular seat body 10 and being used for supporting, a feeding structure 40, the feeding structure 40 being mounted on the support structure 30 and being used for feeding, a feeding structure 50, the feeding structure 50 being mounted on the feeding structure 40 and being used for feeding, a first feeding structure 60, the first feeding structure 60 being mounted on the feeding structure 40 and being used for feeding, a second feeding structure 70, the second feeding structure 70 being mounted on the feeding structure 40 and being used for feeding, and a pressing structure 80, the pressing structure 80 being mounted on the support structure 30 and being used for pressing.
[0051] The mounting structure 20 on the annular seat body 10 is used for mounting, the supporting structure 30 on the annular seat body 10 is used for supporting, the feeding structure 40 on the supporting structure 30 is used for feeding, the feeding structure 50 on the feeding structure 40 is used for feeding, the first feeding structure 60 on the feeding structure 40 is used for feeding, the second feeding structure 70 on the feeding structure 40 is used for feeding, and the pressing structure 80 on the supporting structure 30 is used for pressing.
[0052] The mounting structure 20 comprises an annular mounting plate 21 and a plurality of mounting bolts 22, the annular mounting plate 21 is mounted on the lower end of the side surface of the annular seat body 10, and the plurality of mounting bolts 22 are movably mounted on the annular mounting plate 21.
[0053] The waste spinning feeding anti-blocking equipment is mounted to a suitable position through the mounting bolts 22 on the annular mounting plate 21.
[0054] The supporting structure 30 comprises a supporting frame 31, and the supporting frame 31 is mounted on the upper surface of the annular seat body 10.
[0055] The supporting structure 30 is supported through the supporting frame 31 on the upper surface of the annular seat body 10.
[0056] The feeding structure 40 comprises a feeding bin 41, and the feeding bin 41 is mounted on the supporting frame 31.
[0057] The waste spinning is fed through the feeding bin 41.
[0058] The feeding structure 50 comprises a feeding shell 51, a rectangular gap is arranged on the feeding bin 41, and the feeding shell 51 is mounted at the rectangular gap.
[0059] The waste spinning is sent into the feeding bin 41 through the feeding shell 51.
[0060] The first feeding structure 60 comprises a pair of first fixing frames 61, a pair of first rotary motors 62, a pair of first connecting heads 63, a first rotating round rod 64, and a first uniform material roller 65, the pair of first fixing frames 61 are mounted on the side surface of the feeding bin 41, each first rotary motor 62 is mounted on the corresponding first fixing frame 61, each first connecting head 63 is mounted on the rotating end of the corresponding first rotary motor 62, and the pair of first connecting heads 63 are located in the feeding bin 41, the first rotating round rod 64 is mounted on the pair of first connecting heads 63, and the first uniform material roller 65 is mounted on the first rotating round rod 64.
[0061] The second feeding structure 70 comprises a pair of second fixed frames 71, a pair of second rotary motors 72, a pair of second connecting heads, a second rotating round rod 74 and a second material uniformizing roller 75. The pair of second fixed frames 71 are installed on the side surface of the feeding bin 41. Each second rotary motor 72 is installed on the corresponding second fixed frame 71. Each second connecting head 73 is installed on the rotating end of the corresponding second rotary motor 72, and the pair of second connecting heads 73 are located in the feeding bin 41. The second rotating round rod 74 is installed on the pair of second connecting heads 73. The second material uniformizing roller 75 is installed on the second rotating round rod 74.
[0062] The first rotary motor 62 on the first fixed frame 61 and the second rotary motor 72 on the second fixed frame 71 are controlled by the controller 100 on the annular base 10 to drive the first material uniformizing roller 65 on the first rotating round rod 64 and the second material uniformizing roller 75 on the second rotating round rod 74 to uniformly distribute the material. The first feeding rod 652 and the second feeding rod 752 pull the waste yarn to ensure that the waste yarn does not entangle and block.
[0063] The pressing structure 80 comprises a door-shaped support frame 81, two pairs of third fixed frames 82, two pairs of electric control telescopic rods 83 and a pressing plate 84. The door-shaped support frame 81 is installed on the feeding bin 41. The two pairs of third fixed frames 82 are installed on the door-shaped support frame 81. Each electric control telescopic rod 83 is installed on the corresponding third fixed frame 82. The pressing plate 84 is installed on the two pairs of electric control telescopic rods 83.
[0064] The electric control telescopic rod 83 on the third fixed frame 82 is controlled by the controller 100 on the annular base 10 to lower the pressing plate 84, so that the waste yarn is in close contact with the first material uniformizing roller 65 and the second material uniformizing roller 75.
[0065] The first material uniformizing roller 65 comprises a first roller 651 and a plurality of first feeding rods 652. The plurality of first feeding rods 652 are installed on the first roller 651.
[0066] The second material uniformizing roller 75 comprises a second roller 751 and a plurality of second feeding rods 752. The plurality of second feeding rods 752 are installed on the second roller 751.
[0067] The annular base 10 is provided with a power supply interface 90. The annular base 10 is provided with a controller 100.
[0068] The power supply is connected through the power supply interface 90 on the annular base 10. The controller 100 on the annular base 10 is controlled.
[0069] It is to be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises a... " does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.
[0070] While embodiments of the present application have been shown and described with reference to the figures, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and alterations can be made thereto without departing from the spirit and scope of the present application, which should be limited only by the scope of the appended claims and the equivalents thereof.
Claims
1. A waste spinning feed anti-blocking apparatus, characterized by, The utility model relates to a kind of material feeding device, including: Annular seat body (10); Mounting structure (20) is mounted on annular seat body (10), and the mounting structure (20) is used for installation; Support structure (30) is mounted on annular seat body (10), and the support structure (30) is used for support; Material feeding structure (40) is mounted on support structure (30), and the material feeding structure (40) is used for material feeding; Feed structure (50) is mounted on material feeding structure (40), and the feed structure (50) is used for feed; First material feeding structure (60) is mounted on material feeding structure (40), and the first material feeding structure (60) is used for material feeding; Second material feeding structure (70) is mounted on material feeding structure (40), and the second material feeding structure (70) is used for material feeding; Pressing structure (80) is mounted on support structure (30), and the pressing structure (80) is used for pressing.
2. A waste yarn feeding anti-blocking device according to claim 1, characterized in that, The mounting structure (20) includes: annular mounting plate (21) and several mounting bolts (22); The annular mounting plate (21) is mounted on the lower end of the side surface of the annular seat body (10), and the several mounting bolts (22) are movably mounted on the annular mounting plate (21).
3. A waste feed anti-jamming device according to claim 1, wherein The support structure (30) includes: support frame (31); The support frame (31) is mounted on the upper surface of the annular seat body (10).
4. A waste feed anti-jamming device according to claim 3, wherein, The material feeding structure (40) includes: material feeding bin (41); The material feeding bin (41) is mounted on the support frame (31).
5. A waste spinning feed anti-jamming device according to claim 4, characterized in that, The feed structure (50) includes: feed housing (51); The material feeding bin (41) is provided with a rectangular gap, and the feed housing (51) is mounted at the rectangular gap.
6. A non-blocking device for feeding a waste spinning machine according to claim 4, characterized in that, The first material feeding structure (60) includes: a pair of first fixed frames (61), a pair of first rotary motors (62), a pair of first connecting heads (63), a first rotating round rod (64) and a first uniform material roller (65); A pair of the first fixed frames (61) are mounted on the side surface of the material feeding bin (41), each first rotary motor (62) is mounted on the corresponding first fixed frame (61), each first connecting head (63) is mounted on the rotating end of the corresponding first rotary motor (62), and a pair of first connecting heads (63) are located in the material feeding bin (41), the first rotating round rod (64) is mounted on a pair of first connecting heads (63), and the first uniform material roller (65) is mounted on the first rotating round rod (64).
7. A waste spinning feed anti-jamming device according to claim 6, characterized in that, The second material feeding structure (70) includes: a pair of second fixed frames (71), a pair of second rotary motors (72), a pair of second connecting heads (73), a second rotating round rod (74) and a second uniform material roller (75); A pair of the second fixed frames (71) are installed on the side surface of the feeding bin (41), each of the second rotary motors (72) is installed on the corresponding second fixed frame (71), each of the second connecting heads (73) is installed on the rotary end of the corresponding second rotary motor (72), and a pair of the second connecting heads (73) are located in the feeding bin (41), the second rotating round rod (74) is installed on the pair of the second connecting heads (73), and the second material uniformizing roller (75) is installed on the second rotating round rod (74).
8. A feed anti-jamming device for open-end spinning according to claim 4, characterized in that, The pressing structure (80) comprises a door-shaped support frame (81), two pairs of third fixed frames (82), two pairs of electric control telescopic rods (83) and a pressing plate (84). The door-shaped support frame (81) is installed on the feeding bin (41), two pairs of the third fixed frames (82) are installed on the door-shaped support frame (81), each of the electric control telescopic rods (83) is installed on the corresponding third fixed frame (82), and the pressing plate (84) is installed on the two pairs of the electric control telescopic rods (83).
9. A waste feed anti-jamming device according to claim 7, wherein, The first material uniformizing roller (65) comprises a first roller (651) and a plurality of first discharging rods (652). The second material uniformizing roller (75) comprises a second roller (751) and a plurality of second discharging rods (752). The second material uniformizing roller (75) comprises a second roller (751) and a plurality of second discharging rods (752).
10. A waste feed anti-jamming device according to claim 1, wherein, The ring-shaped seat body (10) is provided with a power supply interface (90), and the ring-shaped seat body (10) is provided with a controller (100).