Deflected feeding and activating feeder
By designing an skewed feeding activation feeder, and adopting a triangular structure and a hydraulically driven horizontal sliding push rod, the installation problem of the activation feeder when the center line is inconsistent was solved, realizing flexible installation and simplified modification of the equipment, and improving the adaptability and operating efficiency of the equipment.
Patent Information
- Application Number
- CN202423314098.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing activated feeder cannot be installed on a layout where the center lines of the upper and lower feed ports are not aligned, making it difficult to upgrade and modify the old equipment and hindering its widespread application.
Design a deflecting feeder with activation, which adopts a triangular deflecting activation cone and a hydraulically driven horizontal sliding push rod to achieve flexible installation and operation of the equipment and adapt to material conveying under different working conditions.
This technology enables the installation and operation of the activated feeder even when the center lines of the upper and lower feed ports are not aligned, simplifying the equipment modification process and improving the adaptability and flexibility of the equipment.
Smart Images

Figure CN223560336U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to mechanical equipment field especially relates to a skew feeding activation feeder. BACKGROUND
[0002] Activation feeder is a kind of efficient material handling equipment, and it has the dual functions of material activation and feeding, mainly designed to solve the problems of material blockage, arching and sticking in the silo, and to ensure that the material can flow out smoothly and evenly.Activation feeder has superior performance compared with traditional conveying equipment, and it is often the selected scheme for old equipment upgrading and modification of domestic enterprises.
[0003] In actual implementation, many traditional old-type feeding equipment such as belt feeder, plate feeder, screw feeder and impeller feeder are skew feeding, that is, the center of the upper discharge port and the center of the belt that accepts the material maintain a certain distance.This distance is determined by the characteristics of the old-type equipment, which is reflected in the basic structure of the upper silo and the center line of the lower belt conveyor.
[0004] The above two are difficult to change or modify, and ordinary activation feeder can only be arranged under the condition that the center lines are consistent, so it cannot be arranged without large project modification, and this feature affects the market of activation feeder as a new technology for upgrading and modification of old-type equipment.
[0005] There is no corresponding solution on the market, and if the user unit does not want to rebuild the basic hopper or adjust the belt line, the activation feeder cannot be installed on the old foundation, which affects the promotion of the equipment. SUMMARY
[0006] In order to overcome the shortcomings of the prior art, the utility model provides a skew feeding activation feeder, which can adapt to the arrangement foundation with inconsistent center lines of the upper feeding port and the lower feeding port through ingenious structure, and the installation and operation of the equipment are simple, and the operation mode of the equipment is consistent with that of ordinary activation feeder as much as possible.
[0007] To achieve the above object, the utility model discloses the following technical scheme: a skew feed activated feeder, the upper part of equipment is the storage hopper of incoming material, the lower part of equipment is the conveying belt of receiving material, and the equipment includes the feed hopper, activated feeder main body, skew activation cone, horizontal sliding push rod, discharge hopper, the symmetry center of activated feeder main body, the symmetry center of discharge hopper and the center line of the conveying belt of lower receiving material are consistent, and activated feeder main body and the conveying belt are connected through discharge hopper, the upper surface of skew activation cone is triangular structure, the cross section of this triangular structure is scalene triangle, the bottom surface of skew activation cone is rectangular plate, the lateral plate of activated feeder main body is equipped with lateral plate horizontal groove, and the rectangular plate both ends of skew activation cone passes through lateral plate horizontal groove and thereby is erected in activated feeder main body, and the horizontal sliding push rod is equipped on the both sides outside of activated feeder main body, and the driving end of horizontal sliding push rod is connected with the part of the rectangular plate convex activated feeder main body of corresponding side, the length of lateral plate horizontal groove is greater than the width of rectangular plate, and skew activation cone can slide under the drive of horizontal sliding push rod.
[0008] In the above technical scheme, the lateral plate horizontal groove around activated feeder main body is fixed with several pairs of arranged slide block groups, and the slide block group is the slide block that is distributed up and down, and the spacing of the upper and lower slide blocks is equal to the thickness of the rectangular plate.
[0009] In the above technical scheme, the triangular structure inside skew activation cone is equipped with several rib plates, which are fixed in its inside by welding.
[0010] In the above technical scheme, the horizontal sliding push adopts hydraulic pushing mode.
[0011] In the above technical scheme, the horizontal sliding push rod is electrically connected to the remote control center and the on-site cabinet.
[0012] The utility model discloses the effect is: the skew activation cone of unique design can divide the material into two curve grooves with different flow rates, and falls synchronously and symmetrically, so as to realize the translation of material conveying route. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the structural schematic diagram of the utility model.
[0014] Figure 2 It is the partial structural schematic diagram of the utility model.
[0015] Figure 3 It is the front cross-sectional view schematic diagram of the utility model.
[0016] Figure 4 It is the overhead view schematic diagram of the utility model after omitting the feed hopper.
[0017] Figure 5 For Figure 4 The structure diagram of the eccentric activation cone.
[0018] Wherein: 1, feed hopper, 2, activation feeder main body, 3, eccentric activation cone, 4, horizontal sliding push rod, 5, discharge hopper, 6, scalene triangle, 7, rectangular plate, 8, side plate, 9, side plate transverse groove, 10, slider group. DETAILED DESCRIPTION
[0019] The utility model will be further described below in combination with the drawings and specific embodiments.
[0020] As Figures 1 to 5 As shown in a kind of eccentric feeding activation feeder, the storage hopper of incoming material is in the upper part of activation feeder, and the material receiving conveying belt is in the lower part of activation feeder, and activation feeder includes feed hopper 1, activation feeder main body 2, eccentric activation cone 3, horizontal sliding push rod 4, discharge hopper 5, the symmetry center of activation feeder main body 2, the symmetry center of discharge hopper 5 and the center line of lower material receiving conveying belt are consistent, and activation feeder main body 2 and conveying belt are connected by discharge hopper 5, the upper surface of eccentric activation cone 3 is triangular structure, the cross section of this triangular structure is scalene triangle with the longest side below, that is, in cross section structure, the longest side is below, and the other two shorter sides are in upper, and its length is not equal, to form the eccentric structure of the utility model, the bottom surface of eccentric activation cone 3 is rectangular plate 7, side plate transverse groove 9 is equipped on the side plate 8 of activation feeder main body 2, and the rectangular plate 7 of eccentric activation cone 3 is arranged in activation feeder main body 2 by passing through side plate transverse groove 9 at both ends, and horizontal sliding push rod 4 is arranged outside the both sides of activation feeder main body 2, the driving end of horizontal sliding push rod 4 is connected with the part of rectangular plate 7 protruding from activation feeder main body 2 in corresponding side, the length of side plate transverse groove 9 is greater than the width of rectangular plate 7, so that eccentric activation cone 3 can slide under the drive of horizontal sliding push rod 4.
[0021] The utility model in working, need to carry out heavy load debugging, i.e. when material attribute and material quantity are all fixed, by remote / just in place adjustment horizontal sliding push rod 4, adjust to the material on the lower part of belt machine to be not eccentric in centering, then lock the oil cylinder pressure and fix the position of eccentric activation cone 3, as normal activation feeder is used. When material attribute and material quantity change, horizontal sliding push rod 4 needs to be adjusted again, after adjusting to the material on the lower part of belt machine to be not eccentric in centering, the oil cylinder pressure is locked again to fix the position of eccentric activation cone 3.
[0022] In the above technical scheme, the side plate transverse groove 9 of the activation feeder body 2 is fixed with several pairs of sliding block groups 10 arranged in pairs, the sliding block groups are upper and lower distributed sliding blocks, the spacing of the upper and lower sliding blocks is equal to the thickness of the rectangular plate 7. The height position of the deflection activation cone 3 is limited by the sliding block group 10, and the material pressure above the deflection activation cone 3 is also assisted to be borne.
[0023] In the above technical scheme, the triangular structure of the deflection activation cone 3 is internally provided with several rib plates which are fixed in the interior by welding. The strength is enhanced to bear the pressure and impact of the incoming material.
[0024] In the above technical scheme, the horizontal sliding push rod 4 adopts hydraulic pushing mode, so that the pushing of the horizontal sliding push rod 4 is stable and has strong overload capacity.
[0025] In the above technical scheme, the horizontal sliding push rod 4 is electrically connected to the remote control center and the on-site cabinet, so that the horizontal sliding push rod 4 has two adjustment modes of remote control and on-site control. The two operation modes meet the needs of operators to adjust at different stations.
[0026] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A skewed feeding activation feeder, wherein the upper part of the equipment is a storage hopper for incoming materials, and the lower part of the equipment is a conveyor belt for receiving materials, characterized in that: the equipment... The device includes a feed hopper, an activation feeder body, an inclined activation cone, a horizontal sliding push rod, and a discharge hopper. The center of symmetry of the activation feeder body, the center of symmetry of the discharge hopper, and the center line of the conveyor belt at the lower receiving point are aligned. The activation feeder body and the conveyor belt are connected by the discharge hopper. The upper part of the inclined activation cone is a triangular structure with an unequal-sided triangle cross-section. The base of the inclined activation cone is a rectangular plate. The sides of the activation feeder body are provided with side plate transverse grooves. The two ends of the rectangular plate of the inclined activation cone pass through the side plate transverse grooves and are thus mounted inside the activation feeder body. Horizontal sliding push rods are provided on the outer sides of both sides of the activation feeder body. The driving end of the horizontal sliding push rod is connected to the part of the rectangular plate protruding from the activation feeder body on the corresponding side. The length of the side plate transverse groove is greater than the width of the rectangular plate, so that the inclined activation cone can slide under the drive of the horizontal sliding push rod.
2. The skewed feeder for activating feeders according to claim 1, characterized in that: The side plate of the activated feeder body is fixed with several pairs of slider groups around the transverse groove. The slider groups are distributed in an upper and lower manner, and the distance between the upper and lower sliders is equal to the thickness of the rectangular plate.
3. The skewed feeder for activating feeders according to claim 1, characterized in that: The triangular structure of the deflection activation cone is equipped with CNC stiffeners, which are fixed inside by welding.
4. The skewed feeder for activating feeders according to claim 1, characterized in that: The horizontal sliding pusher is hydraulically driven.
5. The skewed feeder for activating feeders according to claim 1, characterized in that: The horizontal sliding push rod is electrically connected to a remote control center and a local cabinet.