CN223128550U - A continuous feeding device for the production of basic copper chloride - Google Patents

A continuous feeding device for the production of basic copper chloride

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Publication number
CN223128550U
CN223128550U CN202422135159.6U CN202422135159U CN223128550U CN 223128550 U CN223128550 U CN 223128550U CN 202422135159 U CN202422135159 U CN 202422135159U CN 223128550 U CN223128550 U CN 223128550U
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China
Prior art keywords
box
plate
fixed
feeding device
continuous feeding
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CN202422135159.6U
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Chinese (zh)
Inventor
钟磊
段祥发
吴基秋
谢震
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Guangdong Zhongyao Environmental Technology Co ltd
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Guangdong Zhongyao Environmental Technology Co ltd
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Priority to CN202422135159.6U priority Critical patent/CN223128550U/en
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Abstract

本实用新型公开了一种碱式氯化铜生产用连续投料装置,包括:主体组件,所述主体组件包括出料箱、支撑架;打散组件,所述打散组件包括连接箱、出料口、连接孔、移动板;所述连接箱卡接于出料箱底端,出料口固定于连接箱底端,连接孔开设于连接箱两侧,移动板上方卡接于连接孔内部。以解决现有连续投料装置在使用时,是将原料投入料斗箱内,然后有料斗箱对原料进行震动筛分,随后在投入其他设备内,但在此过程中,料斗箱只能对原料进行大概得筛分,在输送时,原料内任有一些较小的结团,不利于原料的充分使用的问题。

The utility model discloses a continuous feeding device for basic copper chloride production, comprising: a main body component, the main body component comprises a discharge box and a support frame; a scattering component, the scattering component comprises a connection box, a discharge port, a connection hole, and a movable plate; the connection box is clamped at the bottom of the discharge box, the discharge port is fixed at the bottom of the connection box, the connection holes are opened on both sides of the connection box, and the upper part of the movable plate is clamped inside the connection hole. In order to solve the problem that the existing continuous feeding device, when in use, puts the raw materials into the hopper box, and then the hopper box vibrates and screens the raw materials, and then puts them into other equipment, but in this process, the hopper box can only roughly screen the raw materials, and when conveying, there are some small agglomerates in the raw materials, which is not conducive to the full use of the raw materials.

Description

Continuous feeding device for producing basic copper chloride
Technical Field
The utility model relates to the technical field of basic copper chloride production, in particular to a continuous feeding device for basic copper chloride production.
Background
Basic cupric chloride is an inorganic compound and is usually used as a microelement supplement, a bactericide, an algaecide and the like in feed, and in the production process, a continuous feeding device is required to continuously feed and place raw materials.
However, the following drawbacks still exist in practical use:
when the existing continuous feeding device is used, raw materials are put into a hopper box, then the hopper box shakes and screens the raw materials, and then the raw materials are put into other equipment, but in the process, the hopper box can only roughly screen the raw materials, and when the raw materials are conveyed, any small agglomerates exist in the raw materials, so that the full use of the raw materials is not facilitated.
Disclosure of utility model
The utility model aims to provide a continuous feeding device for producing basic copper chloride, which aims to solve the problems that in the prior art, when the conventional continuous feeding device is used, raw materials are fed into a hopper box, then the hopper box shakes and screens the raw materials, and then the raw materials are fed into other equipment, but in the process, the hopper box only roughly screens the raw materials, and when the raw materials are conveyed, any small agglomerate exists in the raw materials, so that the full use of the raw materials is not facilitated.
In order to solve the technical problems, the utility model is realized by the following technical scheme:
The utility model relates to a continuous feeding device for producing basic copper chloride, which comprises the following components:
The main body assembly comprises a discharging box and a supporting frame;
The scattering assembly comprises a connecting box, a discharge hole, a connecting hole and a moving plate;
The bin is connected to the bottom of the bin in a clamping mode, the discharge hole is fixed to the bottom of the bin, the connecting holes are formed in two sides of the bin, and the upper portion of the movable plate is connected to the inside of the connecting holes in a clamping mode.
Further, a group of connecting rods are fixedly connected inside the support frame, the connecting rods are positioned at the bottom ends of the moving plates, and the top ends of the connecting rods are provided with sliding grooves;
A sliding block is clamped in the sliding groove, the bottom end of the moving plate is adsorbed on the top end of the sliding block.
Further, the brush is placed inside the connection box, two sides of the brush are fixedly connected with the movable plate, the filter plate is fixedly connected inside the connection box, and the filter plate is located below the brush.
Further, the device also comprises a connecting component;
the connecting component comprises a connecting plate, a fixed plate and a movable plate;
The connecting plate is fixed on the other two sides of the connecting box, the fixed plate is fixed on the two sides below the discharging box, and the movable plate is movably connected to the top end of the connecting plate.
Further, the top end of the connecting plate penetrates through the outer side end of the fixed plate, a fixed hole is formed in the connecting plate at a position corresponding to the fixed plate, and a movable shaft is movably connected to the outer side of the connecting position of the movable plate and the connecting plate;
bolts penetrate through the outer sides of the joints of the movable plate and the fixed plate.
Further, the main body assembly further comprises a hopper box and a feed inlet;
the hopper case is fixed in the discharging case top, and the feed inlet is fixed in the top center of hopper case, and the support frame is fixed in hopper case below periphery.
Compared with the prior art, the utility model has the advantages that:
according to the utility model, the bottom end of the discharging box is connected with the connecting box with the filter plate in a clamping manner, the brush is arranged in the connecting box, the left side and the right side of the brush are fixedly connected with the moving plate outside the connecting box, the moving plate moves through the sliding groove and the sliding block below, the sliding groove is arranged on the connecting rod, and the moving plate drives the brush to move, so that the moving brush moves and breaks up raw materials on the filter plate, and the broken raw materials enter other equipment from the discharging hole below, so that the agglomeration phenomenon during raw material output is reduced, and the subsequent raw materials are fully used.
Based on beneficial effect one, the connecting box front and back side all sets up the connecting plate, and the discharging box below front and back side sets up the fixed plate, and the fixed orifices has been seted up to the fixed plate outside end, and the connecting plate passes the fixed orifices, and connecting plate top swing joint has the fly leaf, fly leaf and the laminating of fixed plate top surface, simultaneously, sets up the junction that the bolt runs through fly leaf and fixed plate to only need dismantle the bolt, can take the connecting box.
Of course, it is not necessary for any one product to practice the utility model to achieve all of the advantages set forth above at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed for the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of the appearance structure of the present utility model;
FIG. 2 is a schematic view of a part of the components of the breaking assembly according to the present utility model;
FIG. 3 is a schematic view of the internal cross-sectional structure of FIG. 2 according to the present utility model;
Fig. 4 is a schematic structural view of a connecting assembly according to the present utility model.
In the drawings, the list of components represented by the various numbers is as follows:
11. Hopper box 12, feed inlet 13, discharge box 14, support frame 21, connection box 22, discharge hole 23, connection hole 24, moving plate 25, connecting rod 26, chute 27, slide block 28, brush 29, filter plate 31, connecting plate 32, fixed plate 321, fixed hole 33, movable plate 34, movable shaft 35 and bolt.
Detailed Description
In order that the above objects, features and advantages of the utility model will be readily understood, a more particular description of the utility model will be rendered by reference to the appended drawings.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model, but the present utility model may be practiced in other ways other than those described herein, and persons skilled in the art will readily appreciate that the present utility model is not limited to the specific embodiments disclosed below.
For the purpose of making the objects, technical solutions and advantages of the present utility model more apparent, embodiments of the present utility model will be described in further detail below with reference to the accompanying drawings.
Referring to fig. 1-3, the present embodiment is a continuous feeding device for producing basic copper chloride, including:
the main body assembly comprises a discharging box 13 and a supporting frame 14;
the discharging box 13 is used for outputting raw materials, and the supporting frame 14 is used for supporting other components;
The scattering component comprises a connecting box 21, a discharge hole 22, a connecting hole 23 and a moving plate 24;
The connecting box 21 is clamped at the bottom end of the discharging box 13, the discharging hole 22 is fixed at the bottom end of the connecting box 21, the connecting holes 23 are formed in two sides of the connecting box 21, and the upper part of the moving plate 24 is clamped inside the connecting holes 23;
The connecting box 21 is used for placing raw materials during output, the discharge hole 22 is used for outputting scattered raw materials, the connecting holes 23 are formed in the left side and the right side of the connecting box 21, and the moving plate 24 is used for connecting other components;
A group of connecting rods 25 are fixedly connected in the support frame 14, the connecting rods 25 are positioned at the bottom end of the movable plate 24, and a sliding groove 26 is formed in the top end of the connecting rods 25;
a sliding block 27 is clamped in the sliding groove 26, and the bottom end of the moving plate 24 is adsorbed on the top end of the sliding block 27;
The two connecting rods 25 are used for placing the bottom end of the moving plate 24, the bottom end of the moving plate 24 is magnetic, so that the bottom end of the moving plate 24 is adsorbed to the sliding block 27, and meanwhile, the sliding block 27 is electrically connected with the device, so that the sliding block 27 drives the moving plate 24 to move when moving in the sliding groove 26;
A brush 28 is arranged in the connecting box 21, two sides of the brush 28 are fixedly connected with the movable plate 24, a filter plate 29 is fixedly connected in the connecting box 21, and the filter plate 29 is positioned below the brush 28;
The movable plate 24 is fixedly connected with the hairbrush 28, when the movable plate 24 moves, the hairbrush 28 can be driven to move in the connecting box 21, and the filter plate 29 is arranged in the connecting box 21, so that agglomerated powder in the process of outputting raw materials is conveniently left on the filter plate 29, and the subsequent treatment is conveniently carried out;
Working principle:
When the assembly is used, the connecting box 21 is clamped with the bottom end of the discharging box 13, the device is started, raw materials in the hopper box 11 enter the discharging box 13 and then enter the connecting box 21, and meanwhile, the filter plate 29 is fixedly connected in the connecting box 21, so that agglomerated powder during raw material output is left on the filter plate 29;
At this time, the sliding block 27 is electrically connected with the device, so that the sliding block 27 is electrically driven, the sliding block 27 moves in the sliding groove 26, the sliding block 27 drives the moving plate 24 to move, so that the moving plate 24 drives the brush 28 in the connecting box 21 to move, the moving brush 28 moves and breaks up agglomerated powder on the filter plate 29, and broken raw materials enter other equipment from the discharge hole 22 below, so that the agglomeration phenomenon during raw material output is reduced;
In the above steps, the agglomerated powder on the filter plate 29 can be scattered by the interaction between the moving plate 24 and the brush 28.
Referring to fig. 1-2 and fig. 4, this embodiment is based on embodiment 1, and further includes:
A connection assembly;
the connecting assembly comprises a connecting plate 31, a fixed plate 32 and a movable plate 33;
The connecting plate 31 is fixed on the other two sides of the connecting box 21, the fixed plate 32 is fixed on the two sides below the discharging box 13, and the movable plate 33 is movably connected to the top end of the connecting plate 31;
The connecting plate 31 is fixed on the front and rear sides of the connecting box 21, the connecting plate 31 is used for being connected with the fixed plate 32, the fixed plate 32 is fixed on the front and rear sides of the discharging box 13, and the movable plate 33 is used for limiting the connecting plate 31 and the connecting box 21;
The top end of the connecting plate 31 penetrates through the outer side end of the fixed plate 32, a fixed hole 321 is formed in the connecting plate 31 at a corresponding position of the fixed plate 32, and a movable shaft 34 is movably connected to the outer side of the joint of the movable plate 33 and the connecting plate 31;
Bolts 35 penetrate through the outer side of the joint of the movable plate 33 and the fixed plate 32;
The fixed hole 321 is used for placing the connecting plate 31, the movable plate 33 moves through the movable shaft 34, and the set bolt 35 is used for limiting the movable plate 33 and the connecting plate 31;
the main body assembly also comprises a hopper box 11 and a feed inlet 12;
The hopper box 11 is fixed at the top end of the discharge box 13, the feed inlet 12 is fixed at the center of the top end of the hopper box 11, and the supporting frame 14 is fixed at the periphery below the hopper box 11;
the hopper box 11 is used for placing raw materials, and the feed inlet 12 is used for inputting the raw materials;
Working principle:
When the assembly is used, the movable plate 33 is rotated by hand, the movable plate 33 is rotated upwards through the movable shaft 34, so that the movable plate 33 is flush with the connecting plate 31, then the movable plate 33 passes through the fixed hole 321, after the movable plate 33 completely passes through the fixed hole 321, the movable plate 33 is rotated by hand, so that the movable plate 33 is attached to the fixed plate 32, then the bolt 35 is held by hand, the bolt 35 penetrates through the joint of the movable plate 33 and the fixed plate 32, at the moment, the bottom end of the discharging box 13 is clamped with the top end of the connecting box 21, the bottom end of the movable plate 24 is adsorbed with the sliding block 27, so that the bolt 35 limits the movable plate 33, and then the connecting box 21 is connected with the bottom end of the discharging box 13;
The above steps can promote the functionality of the device.
In the description of the present utility model, it should also be noted that, unless explicitly specified and limited otherwise, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected through an intermediary, or in communication between two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
It should be noted that the above-mentioned embodiments are merely preferred embodiments of the present utility model, and the present utility model is not limited thereto, but may be modified or substituted for some of the technical features thereof by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.

Claims (6)

1. Continuous feeding device is used in basic cupric chloride production, characterized in that includes:
The main body assembly comprises a discharging box (13) and a supporting frame (14);
The scattering assembly comprises a connecting box (21), a discharge hole (22), a connecting hole (23) and a moving plate (24);
The connecting box (21) is clamped at the bottom end of the discharging box (13), the discharging hole (22) is fixed at the bottom end of the connecting box (21), the connecting holes (23) are formed in two sides of the connecting box (21), and the upper part of the moving plate (24) is clamped inside the connecting holes (23).
2. The continuous feeding device for producing basic copper chloride according to claim 1, wherein a group of connecting rods (25) are fixedly connected inside the supporting frame (14), the connecting rods (25) are positioned at the bottom ends of the moving plates (24), and sliding grooves (26) are formed in the top ends of the connecting rods (25);
The sliding groove (26) is internally clamped with a sliding block (27), and the bottom end of the moving plate (24) is adsorbed at the top end of the sliding block (27).
3. The continuous feeding device for producing basic copper chloride according to claim 1, wherein a brush (28) is arranged in the connecting box (21), two sides of the brush (28) are fixedly connected with the movable plate (24), a filter plate (29) is fixedly connected in the connecting box (21), and the filter plate (29) is arranged below the brush (28).
4. The continuous feeding device for producing basic copper chloride according to claim 1, further comprising a connecting component;
The connecting assembly comprises a connecting plate (31), a fixed plate (32) and a movable plate (33);
The connecting plate (31) is fixed on the other two sides of the connecting box (21), the fixed plate (32) is fixed on the two sides below the discharging box (13), and the movable plate (33) is movably connected to the top end of the connecting plate (31).
5. The continuous feeding device for producing basic copper chloride according to claim 4, wherein the top end of the connecting plate (31) penetrates through the outer side end of the fixed plate (32), the connecting plate (31) is provided with a fixed hole (321) at a corresponding position of the fixed plate (32), and a movable shaft (34) is movably connected to the outer side of the joint of the movable plate (33) and the connecting plate (31);
Bolts (35) penetrate through the outer sides of the connecting parts of the movable plate (33) and the fixed plate (32).
6. The continuous feeding device for producing basic copper chloride according to claim 1, wherein the main body assembly further comprises a hopper box (11) and a feed inlet (12);
The hopper box (11) is fixed on the top end of the discharge box (13), the feed inlet (12) is fixed on the center of the top end of the hopper box (11), and the supporting frame (14) is fixed on the periphery below the hopper box (11).
CN202422135159.6U 2024-09-02 2024-09-02 A continuous feeding device for the production of basic copper chloride Active CN223128550U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422135159.6U CN223128550U (en) 2024-09-02 2024-09-02 A continuous feeding device for the production of basic copper chloride

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422135159.6U CN223128550U (en) 2024-09-02 2024-09-02 A continuous feeding device for the production of basic copper chloride

Publications (1)

Publication Number Publication Date
CN223128550U true CN223128550U (en) 2025-07-22

Family

ID=96421315

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422135159.6U Active CN223128550U (en) 2024-09-02 2024-09-02 A continuous feeding device for the production of basic copper chloride

Country Status (1)

Country Link
CN (1) CN223128550U (en)

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