A feed conditioner and method based on circumferential intermittent downfeed
By using a feed modulator with intermittent circumferential feeding and an intermittent feeding and adjustment mechanism, the problem of high load on the mixing blades and poor mixing effect in the existing technology is solved, and the uniform mixing of materials and the stirring effect are improved.
Patent Information
- Application Number
- CN202310824273.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-06
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2043-07-06
AI Technical Summary
In existing mixing processes, the addition of raw materials at one time results in high load on the mixing blades and poor mixing effect, affecting the uniformity and quality of the feed.
The feed modulator adopts intermittent circumferential feeding. Through the cooperation of the intermittent feeding mechanism and the drive component, the material in the storage tank is intermittently conveyed. The feeding amount and the angle of the mixing blades are adjusted by the adjustment mechanism to ensure the mixing effect.
It achieves uniform mixing of materials during the mixing process, improves the mixing effect and feed quality, reduces the load on the mixing blades, and enhances the uniformity of mixing.
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Figure CN116850837B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of feed processing, in particular to a feed conditioner based on circumferential intermittent feeding. BACKGROUND
[0002] Before granulation, the feed is conditioned by mixing various raw materials together in a certain proportion, adding some auxiliary materials such as swelling agent, bleaching agent, adhesive, etc., and processing through a series of process steps such as mixing, crushing, cleaning, frying, etc. to become uniform granular feed suitable for granulation.
[0003] The conditioning before granulation has an important influence on the quality of the feed after granulation, the forming rate, the particle hardness, the crush resistance and the taste of the feed, etc. In order to make the feed better meet the needs of animals for nutrition, certain processing and treatment are needed, such as cutting and mixing of coarse and fine materials, etc.
[0004] When conditioning the feed, the raw materials need to be added into the stirring barrel for stirring treatment. However, the existing stirring and mixing treatment is to add the raw materials into the stirring barrel at one time, which will make the load of the stirring blade always be in a high state, and the stirring effect is not good, resulting in poor mixing effect. SUMMARY
[0005] The present application aims to provide a feed conditioner based on circumferential intermittent feeding to solve the problems raised in the background.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme:
[0007] A feed conditioner based on circumferential intermittent feeding, comprising:
[0008] a processing barrel, a fixed plate being fixed to the side wall of the processing barrel;
[0009] a stirring blade, symmetrically arranged in the processing barrel, a driving assembly being arranged on the processing barrel and connected with the stirring blade, the driving assembly being capable of driving the stirring blade to stir the materials in the processing barrel;
[0010] characterized in that it further comprises:
[0011] a storage barrel, fixedly installed on the fixed plate, an intermittent feeding mechanism being arranged on the fixed plate and connected with the storage barrel, a triggering mechanism being arranged in the processing barrel and connected with the intermittent feeding mechanism and the driving assembly, the driving assembly being capable of driving the intermittent feeding mechanism to move through the triggering mechanism, so as to intermittently convey the materials in the storage barrel into the processing barrel;
[0012] An adjusting mechanism is arranged in the processing barrel and connected with the trigger mechanism, the adjusting mechanism can drive the trigger mechanism to move to adjust the discharging amount of the storage barrel through the intermittent discharging mechanism, and meanwhile, the adjusting mechanism can also drive the driving assembly to move through the trigger mechanism to adjust the angle of the stirring blade.
[0013] As a further scheme of the present application, the driving assembly comprises a motor fixedly installed on the processing barrel, a transmission rod connected with the output shaft of the motor is rotatably installed in the processing barrel, symmetrical support plates are fixed on the transmission rod, a rotating rod is rotatably installed on the support plates, the rotating rod is fixedly connected with the stirring blade and connected with the trigger mechanism.
[0014] As a further scheme of the present application, the intermittent discharging mechanism comprises a support sleeve fixedly installed at the bottom of the storage barrel, a material guide pipe penetrating through the storage barrel is movably installed in the support sleeve, a sealing gasket abutting against the storage barrel is fixed at the end of the material guide pipe away from the processing barrel, an elastic assembly connected with the material guide pipe is arranged on the storage barrel, and the elastic assembly is connected with the trigger mechanism.
[0015] As a further scheme of the present application, the elastic assembly comprises a material inlet slot formed in the material guide pipe, a limiting ring is fixed on the material guide pipe, an inclined plate is fixed on the limiting ring, a spring abutting against the limiting ring is sleeved on the support sleeve and the material guide pipe, and the inclined plate is connected with the trigger mechanism.
[0016] As a further scheme of the present application, the trigger mechanism comprises a rotating plate fixedly installed on the transmission rod, symmetrical sliding grooves are formed in the rotating plate, a sliding block is slidably installed in the sliding groove, a driven assembly connected with the sliding block is arranged in the processing barrel, and the sliding block is connected with the adjusting mechanism.
[0017] As a further scheme of the present application, the driven assembly comprises a limiting wheel fixedly installed on the side of the sliding block away from the support plate, a rack plate is fixed on the side of the sliding block facing the support plate, a gear meshing with the rack plate is fixed on the rotating rod, and the limiting wheel cooperates with the inclined plate.
[0018] As a further scheme of the present application, the adjusting mechanism comprises a lead screw rotatably installed in the processing barrel, a threaded sleeve movably installed on the lead screw and threadedly matched with the lead screw, a movable ring rotatably installed on the threaded sleeve, a guide assembly connected with the threaded sleeve is arranged in the processing barrel, and the guide assembly is connected with the sliding block.
[0019] As a further further scheme of the present application: the guide assembly comprises a guide plate fixedly installed on the threaded sleeve, the processing barrel is fixed with guide rods penetrating through the guide plate and arranged symmetrically, and the connecting rods are symmetrically arranged on the movable ring and hinged with the sliding blocks.
[0020] A mixing method of a feed mixer based on circumferential intermittent feeding, comprising the following steps:
[0021] Step one: place the raw materials required for mixing two kinds of feed in the storage barrels respectively;
[0022] Step two: drive the driving assembly to rotate the stirring blades to stir the materials in the processing barrel, and at the same time, drive the trigger mechanism to move to drive the intermittent feeding mechanism to move, thereby controlling the intermittent feeding of the raw materials in the storage barrel into the processing barrel;
[0023] Step three: when it is necessary to adjust the amount of raw materials fed by the storage barrel each time, adjust the adjusting mechanism to move and drive the trigger mechanism to move to adjust the amount of raw materials fed by the storage barrel each time through the intermittent feeding mechanism;
[0024] Step four: the adjusting mechanism can also drive the driving assembly to move through the trigger mechanism to change the angle of the stirring blades, so as to adjust the stirring intensity of the stirring blades according to the amount of feeding.
[0025] Compared with the prior art, the present application has the following advantages: when mixing feed, the present application can intermittently feed raw materials to ensure the stirring effect; when mixing feed, the driving assembly moves and stirs the materials in the processing barrel through the stirring blades; at the same time, the driving assembly also drives the intermittent feeding mechanism to move through the trigger mechanism to intermittently feed the materials in the storage barrel into the processing barrel; if it is necessary to adjust the amount of raw materials fed by the storage barrel each time, the adjusting mechanism moves and adjusts the movement stroke of the intermittent feeding mechanism through the trigger mechanism to change the amount of raw materials fed by the storage barrel; at the same time, the trigger mechanism also adjusts the angle of the stirring blades through the driving assembly to adjust the force of the stirring blades according to the change of the amount of feeding. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is a structural schematic view of an embodiment of the feed mixer based on circumferential intermittent feeding.
[0027] Figure 2 It is a structural schematic view of another angle in an embodiment of the feed mixer based on circumferential intermittent feeding.
[0028] Figure 3 It is Figure 2 It is an enlarged schematic view of the structure at A in the middle.
[0029] Figure 4The schematic diagram of the connection relationship of the trigger mechanism, the adjusting mechanism and the partial driving assembly in one embodiment of the feed conditioner based on the circumferential intermittent feeding.
[0030] Figure 5 The structural schematic diagram of the storage barrel and the intermittent feeding mechanism in one embodiment of the feed conditioner based on the circumferential intermittent feeding.
[0031] Figure 6 The exploded structural schematic diagram of the intermittent feeding mechanism in one embodiment of the feed conditioner based on the circumferential intermittent feeding.
[0032] Figure 7 The exploded structural schematic diagram of the adjusting mechanism and the partial trigger mechanism in one embodiment of the feed conditioner based on the circumferential intermittent feeding.
[0033] Figure 8 The schematic diagram of the connection relationship of the partial adjusting mechanism, the partial trigger mechanism, the rotating rod and the stirring blade in one embodiment of the feed conditioner based on the circumferential intermittent feeding.
[0034] In the figure: 1, processing barrel; 2, fixed plate; 3, storage barrel; 4, support sleeve; 5, guide pipe; 6, inlet chute; 7, sealing gasket; 8, spring; 9, limiting ring; 10, inclined plate; 11, motor; 12, transmission rod; 13, support plate; 14, rotating rod; 15, stirring blade; 16, rotating plate; 17, sliding groove; 18, screw rod; 19, threaded sleeve; 20, guide plate; 21, guide rod; 22, connecting rod; 23, sliding block; 24, limiting wheel; 25, rack plate; 26, gear; 27, movable ring. DETAILED DESCRIPTION
[0035] 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 work fall within the scope of protection of the present application.
[0036] In addition, the elements in the present application are referred to as "fixed to" or "provided on" another element, which can be directly on another element or can have a middle element. When an element is considered to be "connected" to another element, it can be directly connected to another element or can have a middle element. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and are not the only implementation.
[0037] Please refer to Figures 1-8The embodiment of the present application is a feed modulator based on circumferential intermittent discharging, comprising:
[0038] A processing barrel 1 is provided with symmetrically arranged fixing plates 2 on the sidewall thereof;
[0039] Please refer to Figure 1 、 Figure 2 、 Figure 4 、 Figure 8 Symmetrically arranged stirring blades 15 are arranged in the processing barrel 1, and a driving assembly connected with the stirring blades 15 is arranged on the processing barrel 1, the driving assembly can drive the stirring blades 15 to stir the materials in the processing barrel 1, the driving assembly comprises a motor 11 fixedly installed on the processing barrel 1, a transmission rod 12 connected with the output shaft of the motor 11 is rotatably installed in the processing barrel 1, symmetrically arranged support plates 13 are fixedly installed on the transmission rod 12, rotating rods 14 are rotatably installed on the support plates 13, the rotating rods 14 are fixedly connected with the stirring blades 15 and the trigger mechanism.
[0040] In detail, the processing barrel 1 is used for receiving materials required for modulating feed, when the feed needs to be modulated, at this time, the motor 11 works to drive the transmission rod 12 to rotate, thereby driving the support plates 13 to rotate, the support plates 13 further drive the rotating rods 14 to move, so that the stirring blades 15 move around the transmission rod 12, and the materials in the processing barrel 1 are stirred and treated under the action of the stirring blades 15.
[0041] characterized in that it further comprises:
[0042] Please refer to Figures 1-3 、 Figure 5 、 Figure 6 A storage barrel 3 is fixedly installed on the fixing plate 2, and an intermittent discharging mechanism connected with the storage barrel 3 is arranged on the fixing plate 2, the intermittent discharging mechanism comprises a support sleeve 4 fixedly installed at the bottom of the storage barrel 3, a material guide pipe 5 penetrating through the storage barrel 3 is movably installed in the support sleeve 4, a sealing gasket 7 abutting against the storage barrel 3 is fixed at the end of the material guide pipe 5 away from the processing barrel 1, an elastic assembly connected with the material guide pipe 5 is arranged on the storage barrel 3, and the elastic assembly is connected with the trigger mechanism, wherein the elastic assembly comprises an inlet slot 6 formed on the material guide pipe 5, a limiting ring 9 is fixed on the material guide pipe 5, an inclined plate 10 is fixed on the limiting ring 9, a spring 8 abutting against the limiting ring 9 is sleeved on the support sleeve 4 and the material guide pipe 5, and the inclined plate 10 is connected with the trigger mechanism.
[0043] It needs explanation that the raw material needed for the modulated feed is contained in the storage barrel 3, in the initial state, the spring 8 is in the compressed state, so that the guide pipe 5 fixed with the limiting ring 9 is located at the end of the stroke towards the processing barrel 1, so that the sealing pad 7 abuts against the storage barrel 3, the inlet chute 6 is located outside the storage barrel 3, under the action of the sealing pad 7, so that the storage barrel 3 is in the blocking state, when the material needs to be transported, at this time, the transmission rod 12 rotates and drives the trigger mechanism to move, when the trigger mechanism moves to the cooperation position with the inclined plate 10, the inclined plate 10 is driven to move towards the direction away from the processing barrel 1, so as to drive the guide pipe 5 fixed with the limiting ring 9 to move towards the inside of the storage barrel 3, and the spring 8 is compressed, so that the sealing pad 7 is separated from the storage barrel 3, when the inlet chute 6 enters the storage barrel 3, the material in the storage barrel 3 will enter the guide pipe 5 through the inlet chute 6, so as to be transported to the processing barrel 1 through the guide pipe 5, when the trigger mechanism is separated from the inclined plate 10, the spring 8 is elastically released, and drives the guide pipe 5 to move towards the initial position, so that the sealing pad 7 moves to abut against the storage barrel 3 again, so that the inlet chute 6 is separated from the storage barrel 3, the above steps are repeated, so that the material in the storage barrel 3 is intermittently transported to the processing barrel 1.
[0044] Please refer to Figure 4 、 Figure 7 、 Figure 8 , the processing barrel 1 is provided with a trigger mechanism connected with the intermittent discharging mechanism and the driving assembly, the driving assembly can drive the intermittent discharging mechanism to move through the trigger mechanism, so as to intermittently transport the material in the storage barrel 3 to the processing barrel 1, the trigger mechanism comprises a rotating plate 16 fixedly installed on the transmission rod 12, the rotating plate 16 is provided with symmetrical sliding grooves 17, the sliding block 23 is slidably installed in the sliding groove 17, the processing barrel 1 is provided with a driven assembly connected with the sliding block 23, the sliding block 23 is connected with the adjusting mechanism, wherein the driven assembly comprises a limiting wheel 24 fixedly installed on the side of the sliding block 23 away from the supporting plate 13, the side of the sliding block 23 towards the supporting plate 13 is fixed with a rack plate 25, the rotating rod 14 is fixed with a gear 26 engaged with the rack plate 25, the limiting wheel 24 cooperates with the inclined plate 10.
[0045] Further, in order to ensure more uniform stirring when the feed is modulated, the material in the storage barrel 3 needs to be intermittently conveyed into the processing barrel 1, and in the initial state, the two sliding blocks 23 are located at the end of the stroke in the direction of approaching each other under the action of the adjusting mechanism, when the discharging is needed, at this time, the transmission rod 12 rotates to drive the rotating plate 16 to rotate, thereby driving the sliding block 23 placed in the sliding groove 17 to move around the transmission rod 12, the sliding block 23 also drives the limit wheel 24 to move, when the limit wheel 24 moves to abut against the inclined surface of the inclined plate 10, the inclined plate 10 is driven to move towards the storage barrel 3, so that the guide pipe 5 opened on the feeding chute 6 enters the storage barrel 3, so that the material in the storage barrel 3 is conveyed into the processing barrel 1, the sliding block 23 also drives the rack plate 25 to move, because the rotating rod 14 and the rotating plate 16 rotate synchronously, the gear 26 remains in a fixed state, so that the angle of the stirring blade 15 does not change when it rotates.
[0046] Preferably, if it is needed to increase the discharging amount of the storage barrel 3 each time, at this time, the adjusting mechanism moves, so that the sliding block 23 moves towards the direction of moving away from each other, to drive the limit wheel 24 to move, thereby changing the contact position of the limit wheel 24 and the inclined plate 10, thereby adjusting the rising height of the inclined plate 10, at the same time, the sliding block 23 also drives the rack plate 25 to move, so that the gear 26 rotates, thereby adjusting the angle of the stirring blade 15 through the rotating rod 14, so that the acting surface of the stirring blade 15 on the material in the processing barrel 1 increases, thereby strengthening the stirring intensity of the material.
[0047] Please refer to Figures 2-4 , Figure 7 , the adjusting mechanism is arranged in the processing barrel 1 and connected with the trigger mechanism, the adjusting mechanism can drive the trigger mechanism to move, so as to adjust the discharging amount of the storage barrel 3 through the intermittent discharging mechanism, at the same time, the adjusting mechanism can also drive the driving assembly to move through the trigger mechanism, so as to adjust the angle of the stirring blade 15, the adjusting mechanism comprises a lead screw 18 rotatably installed in the processing barrel 1, a threaded sleeve 19 movably installed on the lead screw 18 and threadedly matched with the lead screw 18, and an activity ring 27 rotatably installed on the threaded sleeve 19, the processing barrel 1 is provided with a guide assembly connected with the threaded sleeve 19, the guide assembly is connected with the sliding block 23, wherein the guide assembly comprises a guide plate 20 fixedly installed on the threaded sleeve 19, the processing barrel 1 is fixedly provided with guide rods 21 penetrating through the guide plate 20 and symmetrically arranged, and the activity ring 27 is hingedly connected with connecting rods 22 symmetrically arranged and hingedly connected with the sliding block 23.
[0048] Further, when the amount of material to be discharged and the angle of the stirring blade 15 need to be adjusted, at this time, the screw rod 18 rotates, driving the threaded sleeve 19 to move, thereby driving the guide plate 20 to move along the length direction of the guide rod 21, under the action of the guide rod 21 and the guide plate 20, the threaded sleeve 19 moves along the length direction of the screw rod 18 and does not rotate with the screw rod 18, the threaded sleeve 19 also drives the movable ring 27 to move, and drives the sliding block 23 to move along the length direction of the sliding groove 17 through the connecting rod 22, so as to change the position of the limiting wheel 24, so that the lifting height of the inclined plate 10 changes, the sliding block 23 also drives the gear 26 to rotate through the rack plate 25, so as to change the angle of the stirring blade 15.
[0049] A method for modulating a feed modulator based on circumferential intermittent discharging, comprising the following steps:
[0050] Step one: place the raw materials required for the modulation of two kinds of feed in the storage barrels 3 respectively;
[0051] Step two: drive the assembly to work, and drive the stirring blade 15 to rotate, so as to stir the material in the processing barrel 1, at the same time, the assembly also drives the trigger mechanism to move, so as to drive the intermittent discharging mechanism to move, thereby controlling the intermittent conveying of the raw materials in the storage barrels 3 to the processing barrel 1;
[0052] Step three: when the amount of raw material to be conveyed by the storage barrel 3 each time needs to be adjusted, the adjusting mechanism moves and drives the trigger mechanism to move, so as to adjust the amount of material to be discharged by the storage barrel 3 each time through the intermittent discharging mechanism;
[0053] Step four: the adjusting mechanism can also drive the assembly to move through the trigger mechanism, so as to change the angle of the stirring blade 15, thereby adjusting the stirring intensity of the stirring blade 15 according to the amount of material to be discharged.
[0054] It is apparent for those skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the present application being defined by the appended claims rather than the above description, and it is intended to embrace all changes and modifications that fall within the meaning and scope of equivalents of the claims. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.
[0055] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be properly combined to form other embodiments that those skilled in the art can understand.
Claims
1. A feed conditioner based on circumferential intermittent discharging, comprising: a processing barrel (1), a fixed plate (2) is fixed on the side wall of the processing barrel (1); a stirring blade (15) is symmetrically arranged in the processing barrel (1), a driving assembly is arranged on the processing barrel (1) and connected with the stirring blade (15), and the driving assembly can drive the stirring blade (15) to stir the material in the processing barrel (1); characterized in that it further comprises: a storage barrel (3) is fixedly installed on the fixed plate (2), an intermittent discharging mechanism is arranged on the fixed plate (2) and connected with the storage barrel (3), a trigger mechanism is arranged in the processing barrel (1) and connected with the intermittent discharging mechanism and the driving assembly, the driving assembly can drive the intermittent discharging mechanism to move through the trigger mechanism to intermittently convey the material in the storage barrel (3) into the processing barrel (1); an adjusting mechanism is arranged in the processing barrel (1) and connected with the trigger mechanism, the adjusting mechanism can drive the trigger mechanism to move to adjust the discharging amount of the storage barrel (3) through the intermittent discharging mechanism, and the adjusting mechanism can also drive the driving assembly to move through the trigger mechanism to adjust the angle of the stirring blade (15); the driving assembly comprises a motor (11) fixedly installed on the processing barrel (1), a transmission rod (12) rotatably installed in the processing barrel (1) and connected with the output shaft of the motor (11), symmetrically arranged support plates (13) fixed on the transmission rod (12), rotating rods (14) rotatably installed on the support plates (13), the rotating rods (14) are fixedly connected with the stirring blade (15) and connected with the trigger mechanism; the intermittent discharging mechanism comprises a support sleeve (4) fixedly installed at the bottom of the storage barrel (3), a material guide pipe (5) movably installed in the support sleeve (4) and penetrating through the storage barrel (3), a sealing gasket (7) fixed at the end of the material guide pipe (5) away from the processing barrel (1) and abutting against the storage barrel (3), an elastic assembly arranged on the storage barrel (3) and connected with the material guide pipe (5), and the elastic assembly is connected with the trigger mechanism; the elastic assembly comprises an inlet slot (6) formed on the material guide pipe (5), a limiting ring (9) fixed on the material guide pipe (5), an inclined plate (10) fixed on the limiting ring (9), springs (8) sleeved on the support sleeve (4) and the material guide pipe (5) and abutting against the limiting ring (9), and the inclined plate (10) is connected with the trigger mechanism; the trigger mechanism comprises a rotating plate (16) fixedly installed on the transmission rod (12), symmetrically arranged sliding grooves (17) formed on the rotating plate (16), a sliding block (23) slidably installed in the sliding grooves (17), a driven assembly arranged in the processing barrel (1) and connected with the sliding block (23), and the sliding block (23) is connected with the adjusting mechanism. The driven assembly comprises a limiting wheel (24) fixedly installed on the sliding block (23) away from the support plate (13), the sliding block (23) is fixed with a rack plate (25) on the side facing the support plate (13), the rotating rod (14) is fixed with a gear (26) engaged with the rack plate (25), and the limiting wheel (24) cooperates with the inclined plate (10); The adjusting mechanism comprises a screw rod (18) rotatably installed in the processing barrel (1), the screw rod (18) is movably installed with a threaded sleeve (19) threadedly matched with the screw rod (18), the threaded sleeve (19) is rotatably installed with a movable ring (27), the processing barrel (1) is provided with a guide assembly connected with the threaded sleeve (19), and the guide assembly is connected with the sliding block (23); The guide assembly comprises a guide plate (20) fixedly installed on the threaded sleeve (19), the processing barrel (1) is fixed with guide rods (21) penetrating through the guide plate (20) and symmetrically arranged, and the movable ring (27) is hingedly connected with connecting rods (22) symmetrically arranged and hingedly connected with the sliding block (23).
2. A method of modulating a feed modulator based on circumferential intermittent feed discharge, using the feed modulator based on circumferential intermittent feed discharge according to claim 1, characterized by, The method comprises the following steps: Step one: place the raw materials required for mixing two kinds of feed in the storage barrels (3) respectively; Step two: drive the driving assembly to rotate the stirring blades (15) to stir the materials in the processing barrel (1), and at the same time, drive the trigger mechanism to move to drive the intermittent discharging mechanism to move, so as to control the intermittent conveying of the raw materials in the storage barrels (3) into the processing barrel (1); Step three: when it is necessary to adjust the amount of raw materials conveyed by the storage barrels (3) each time, the adjusting mechanism moves and drives the trigger mechanism to move to adjust the amount of raw materials discharged by the storage barrels (3) each time through the intermittent discharging mechanism; Step four: the adjusting mechanism can also drive the driving assembly to move through the trigger mechanism to change the angle of the stirring blades (15), so as to adjust the stirring intensity of the stirring blades (15) according to the amount of discharging.
Citation Information
Patent Citations
Mixing machine for dynamically configuring main components of float glass according to ratio
CN115722140A