CN215438481U - Anti-sticking transfer device for mixing of admixture - Google Patents

Anti-sticking transfer device for mixing of admixture Download PDF

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Publication number
CN215438481U
CN215438481U CN202121685029.XU CN202121685029U CN215438481U CN 215438481 U CN215438481 U CN 215438481U CN 202121685029 U CN202121685029 U CN 202121685029U CN 215438481 U CN215438481 U CN 215438481U
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baffle
belt mechanism
conveyor belt
admixture
mixture
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CN202121685029.XU
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Chinese (zh)
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张梓颉
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Chongqing Yuhong Renewable Resources Co Ltd
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Chongqing Yuhong Renewable Resources Co Ltd
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Abstract

The utility model relates to a grain slag processing apparatus technical field especially relates to antiseized transfer device of doping material mixture. The granulating slag mixing device comprises a granulating slag discharging hopper, and further comprises a baffle mechanism, a mixing conveyor belt mechanism and a mixture conveyor belt mechanism, wherein the baffle mechanism comprises a fixed shaft and a baffle, the fixed shaft is fixedly connected with the discharging outlet side wall of the granulating slag discharging hopper, mounting holes are formed in two sides of the upper end of the baffle, the mounting holes are sleeved on two ends of the fixed shaft, the two ends of the fixed shaft limit the upper end of the baffle through nuts, the tail end of the mixing conveyor belt mechanism is located above the lower portion of the baffle, the head end of the mixture conveyor belt mechanism is located below the lower portion of the baffle, and the projection parts of the mixing conveyor belt mechanism and the mixture conveyor belt mechanism in the vertical direction are overlapped. This technical scheme is used for solving among the prior art when adulterant and grain slag mix, and the adulterant easily adheres on transporting the conveyer belt, leads to the problem of mixing effect variation.

Description

Anti-sticking transfer device for mixing of admixture
Technical Field
The utility model relates to a grain slag processing apparatus technical field especially relates to antiseized transfer device of doping material mixture.
Background
The granulated slag is formed by rapidly cooling the blast furnace slag in a molten state in water, and mainly comprises two modes of slag pool water quenching and stokehole water quenching. The water granulated slag is used as building material for producing cement and concrete, and can be used as high-quality cement raw material under the action of excitant such as cement clinker, lime and gypsum, etc. to prepare slag portland cement, gypsum slag cement, lime slag cement, slag brick, slag concrete, etc. and also can be used as a raw material for producing environment-friendly cement brick.
The materials such as the cement clinker, lime and gypsum mentioned above are called admixture in the grain slag treatment industry, and the in-process that admixture and grain slag mix is carried out because the grain slag has certain water content, if directly carry admixture and grain slag to the transfer conveyer belt according to certain proportion simultaneously, then admixture and transfer conveyer belt direct contact will adhere on the transfer conveyer belt, both lead to the subsequent mixed effect of admixture and grain slag to reduce, and the admixture that adheres on the transfer conveyer belt is difficult to clear up simultaneously.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects of the technology, the utility model aims to provide an anti-sticking transfer device for admixture mixing, which is used for solving the problem that the admixture is easy to adhere to a transfer conveyor belt when the admixture and water slag are mixed in the prior art, so that the mixing effect is poor.
In order to achieve the purpose, the technical scheme adopted by the utility model is as follows:
mix antiseized transfer device of material mixture goes out the hopper including the grain slag, still includes baffle mechanism, mixes material conveyer belt mechanism and mixture conveyer belt mechanism, baffle mechanism includes fixed axle and baffle, the discharge gate lateral wall fixed connection that fixed axle and grain slag go out the hopper, the mounting hole has been seted up to the upper end both sides of baffle, the mounting hole cup joints with the fixed axle on the both ends, and the both ends of fixed axle carry on spacingly through setting up the nut to the upper end of baffle, the tail end that mixes material conveyer belt mechanism is located the top of baffle lower part, the head end of mixture conveyer belt mechanism is located the below of baffle lower part, mix material conveyer belt mechanism and the coincidence of the projection part of mixture conveyer belt mechanism in vertical side, just the baffle lower extreme is located between the tail end of mixing material conveyer belt mechanism and the head end of mixture conveyer belt mechanism.
The principle of the technical scheme is as follows:
the granulating slag falls to the baffle plate from the granulating slag discharging hopper, the granulating slag slides on the baffle plate, the admixture falls from the admixture conveyor belt mechanism, the mixture is formed by covering the granulating slag, and the mixture falls to the mixture conveyor belt structure from the lower end of the baffle plate and is conveyed to a specified position.
The material conveying device is characterized in that the material conveying device comprises a fixed shaft, a nut, a limiting frame and a material conveying belt mechanism, wherein the nut is used for transversely limiting the upper end of the baffle, the mounting hole in the upper end of the baffle is rotatably connected with the fixed shaft, the limiting frame is arranged on the material conveying belt mechanism, and the lower portion of the baffle is placed on the limiting frame.
Further inject, be equipped with the damping spring that the equipartition set up between the lower part of spacing and baffle, damping spring's one end and the lower part back fixed connection of baffle, damping spring's the other end and the upper end fixed connection of spacing, its beneficial part lies in, and damping spring can cushion the pressure that the baffle received, and when granulating slag and baffle contact, the vibration can appear in the baffle simultaneously, and the effect of vibration lies in, and granulating slag and adulterant drop to the mixture conveyer belt mechanism on the baffle of being convenient for.
The number of the damping springs is at least 2, and the damping device has the advantages that the two damping springs are symmetrically distributed, so that the baffle is stressed uniformly.
Further inject, the through-hole of a plurality of equipartitions is seted up to the both sides of spacing, the pinhole has been seted up to the both sides of mixture conveyor belt mechanism, spacing passes through pin joint in mixture conveyor belt mechanism, and its useful part lies in, and spacing and mixture conveyor belt mechanism's side is through pin joint, and is relatively convenient and easy in installation and dismantlement, and the fixed position of through-hole on the spacing is adjusted to the accessible simultaneously, can adjust the mounting height of spacing, can adjust the gradient of baffle, and then the granule size of accessible water sediment adjusts the gradient of baffle in real time, guarantees the whereabouts effect of water sediment and doping.
Further limit, the cross-section of baffle width direction is the U-shaped, and its advantage is that the U-shaped is convenient for to gather water sediment and admixture, avoids falling from the side.
Further inject, be equipped with sealed lid on the discharge gate of grain sediment play hopper lower extreme, sealed lid and grain sediment play hopper lower extreme rotate to be connected, its beneficial part lies in, can adjust the ejection of compact speed of grain sediment in real time through rotatory sealed lid.
Further, the upper end of the baffle plate is obliquely fixed on the fixed shaft through the nut, and the baffle plate fixing device has the advantages of being simpler in structure and lower in cost.
The technical effect of the technical scheme is as follows:
through setting up the baffle, make the grain slag slide on the baffle, then through the tail end setting with admixture conveyer belt mechanism in the top of baffle, the gliding in-process of grain slag on the baffle promptly, its upper surface covers the one deck and admixes and form the mixture, has so both strengthened the mixed effect of admixture and grain slag, has still avoided grain slag and mixture conveyer belt mechanism direct contact simultaneously, causes the admixture to meet the problem of water bonding on the conveyer belt of mixture conveyer belt structure.
Drawings
Fig. 1 is a schematic perspective view of the admixture mixing anti-sticking transfer device in this embodiment.
Fig. 2 is a rear view schematically illustrating the admixture mixing anti-sticking transfer device according to the present embodiment.
Fig. 3 is a right side view schematically illustrating the admixture mixing anti-sticking transfer device in this embodiment.
Fig. 4 is a partially enlarged schematic view of fig. 2A in the present embodiment.
Reference numerals
The device comprises a blending conveyor belt mechanism 1, a longitudinal beam 1.1, a mixture conveyor belt mechanism 2, a granulating slag discharging hopper 3, a sealing cover 4, a baffle plate 5, a fixed shaft 6, a limiting frame 7, a through hole 7.1, a pin 7.2 and a damping spring 8.
Detailed Description
The following is further detailed by way of specific embodiments:
example 1
As shown in fig. 1 to 3, the anti-sticking transfer device for admixture mixing comprises a granulated slag discharge hopper 3, a baffle 5 mechanism, an admixture conveyor belt mechanism 1 and a mixture conveyor belt mechanism 2, wherein the tail end of the admixture conveyor belt mechanism 1 is positioned above the lower part of the baffle 5, the head end of the mixture conveyor belt mechanism 2 is positioned below the lower part of the baffle 5, the projection parts of the admixture conveyor belt mechanism 1 and the mixture conveyor belt mechanism 2 in the vertical direction are superposed, in the embodiment, the admixture conveyor belt mechanism 1 and the mixture conveyor belt mechanism 2 both comprise a mounting frame, a carrier roller, a conveyor belt and a driving mechanism, the mounting frame comprises a cross beam and a longitudinal beam 1.1 which form a rectangular frame, a plurality of support legs for supporting are arranged on the longitudinal beam 1.1, the two ends of the carrier roller are rotatably connected to the end part of the longitudinal beam 1.1 through bearings, a plurality of auxiliary carrier rollers are further arranged between the longitudinal beams 1.1 on the two sides, and the driving mechanism is connected with the carrier roller at one end, and simultaneously, the conveying belt is driven to rotate by rotating with the driving carrier roller.
The baffle 5 mechanism comprises a fixed shaft 6 and a baffle 5, the cross section of the baffle 5 in the width direction is U-shaped, and the U-shaped structure is convenient for collecting the water granulated slag and the admixture and avoids falling from the side surface. Fixed axle 6 goes out discharge gate lateral wall fixed connection of hopper 3 with the granulating slag, the mounting hole has been seted up to the upper end both sides of baffle 5, the mounting hole cup joints on the both ends with fixed axle 6, and the both ends of fixed axle 6 carry on spacingly through setting up the nut to the upper end of baffle 5, the nut carries out horizontal spacing to the upper end of baffle 5, and the mounting hole of baffle 5 upper end rotates with fixed axle 6 to be connected, be equipped with spacing 7 on the mixture conveyor belt mechanism 2, the lower part of baffle 5 is placed on spacing 7, the both ends atress of baffle 5, can not cause the connecting portion of baffle 5 upper end and fixed axle 6 the condition that fatigue damage appears, and the projection of baffle 5 lower extreme in vertical side lies in the projection coincidence portion of mixing conveyor belt mechanism 1 and mixture conveyor belt mechanism 2 in vertical side, just so can make the adulterant fall into on the granulating slag in baffle 5.
Preferably, be equipped with damping spring 8 that the equipartition set up between the lower part of spacing 7 and baffle 5, damping spring 8's quantity is 2 at least, damping spring 8's quantity is 2 in this embodiment, damping spring 8's one end and baffle 5's lower part back fixed connection, damping spring 8's the other end and spacing 7's upper end fixed connection, damping spring 8 can cushion the pressure that baffle 5 received, simultaneously when the contact of grain slag and baffle 5, the vibration can appear in baffle 5, the effect of vibration lies in, be convenient for on baffle 5 the grain slag and the doping drop to mixture conveyor belt mechanism 2 on.
As shown in fig. 4, the shape of spacing 7 is the shape of portal frame in this embodiment, through-hole 7.1 of a plurality of equipartitions has been seted up in the both sides of spacing 7, the pinhole has been seted up to the both sides of mixture conveyor belt mechanism 2, spacing 7 is connected on mixture conveyor belt mechanism 2 through pin 7.2, spacing 7 and mixture conveyor belt mechanism 2's side is connected through pin 7.2, it is relatively convenient and easy in installation and dismantlement, the fixed position of through-hole 7.1 on spacing 7 is adjusted to the accessible simultaneously, can adjust the mounting height of spacing 7, can adjust the gradient of baffle 5, then the granule size of accessible water sediment adjusts the gradient of baffle 5 in real time, guarantee the whereabouts effect of water sediment and adulterant.
Preferably, be equipped with sealed lid 4 on the discharge gate of grain sediment play hopper 3 lower extreme, sealed lid 4 rotates with the grain sediment play hopper 3 lower extreme to be connected, can adjust the discharge rate of grain sediment in real time through rotatory sealed lid 4.
Example 2
Embodiment 2 is different from embodiment 1 in the installation form of the baffle 5, and in embodiment 2, the upper end of the baffle 5 is directly fixed on the fixed shaft 6 in an inclined way by the nut, so that the structure is simpler and the cost is lower.
It should be noted that, unless otherwise explicitly stated or limited, the terms "mounted," "connected," "fixed," and the like are used broadly in the present invention, and may be, for example, fixedly connected, detachably connected, or integrally connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
The foregoing is merely an example of the present invention and common general knowledge of known specific structures and features of the embodiments is not described herein in any greater detail. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several changes and modifications can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (8)

1. The blending material mixing anti-sticking transfer device comprises a grain slag discharge hopper and is characterized by also comprising a baffle mechanism, a blending material conveying belt mechanism and a mixture conveying belt mechanism, the baffle plate mechanism comprises a fixed shaft and a baffle plate, the fixed shaft is fixedly connected with the side wall of the discharge hole of the granulated slag discharge hopper, mounting holes are arranged on two sides of the upper end of the baffle plate and are sleeved on two ends of the fixed shaft, the two ends of the fixed shaft limit the upper end of the baffle plate through nuts, the tail end of the admixture conveyor belt mechanism is positioned above the lower part of the baffle plate, the head end of the mixture conveyor belt mechanism is positioned below the lower part of the baffle, the projection parts of the admixture conveyor belt mechanism and the mixture conveyor belt mechanism in the vertical direction are overlapped, and the lower end of the baffle is positioned between the tail end of the admixture conveyor belt mechanism and the head end of the mixture conveyor belt mechanism.
2. The anti-sticking transfer device for admixture mixing according to claim 1, wherein the nut laterally limits the upper end of the baffle, the mounting hole in the upper end of the baffle is rotatably connected with the fixed shaft, the mixture conveyor belt mechanism is provided with a limiting frame, and the lower part of the baffle is placed on the limiting frame.
3. The anti-sticking transfer device is mixed to adulteration material according to claim 2, wherein damping springs are uniformly distributed between the lower portions of the limiting frame and the baffle, one end of each damping spring is fixedly connected with the back of the lower portion of the baffle, and the other end of each damping spring is fixedly connected with the upper end of the limiting frame.
4. The admixture mixing anti-sticking transfer device of claim 3, wherein the number of damping springs is at least 2.
5. The anti-sticking transfer device for admixture mixing according to claim 2, wherein a plurality of uniformly distributed through holes are formed in two sides of the limiting frame, pin holes are formed in two sides of the mixture conveying belt mechanism, and the limiting frame is connected to the mixture conveying belt mechanism through pins.
6. The admixture mixing anti-sticking transfer device of claim 1, wherein the cross-section of the baffle in the width direction is U-shaped.
7. The admixture mixing anti-sticking transfer device as claimed in claim 1, wherein a sealing cover is provided on the discharge port at the lower end of the granulated slag discharge hopper, and the sealing cover is rotatably connected with the lower end of the granulated slag discharge hopper.
8. The admixture mixing anti-sticking transfer device of claim 1, wherein the nut fixes the upper end of the baffle plate to the fixed shaft obliquely.
CN202121685029.XU 2021-07-23 2021-07-23 Anti-sticking transfer device for mixing of admixture Active CN215438481U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121685029.XU CN215438481U (en) 2021-07-23 2021-07-23 Anti-sticking transfer device for mixing of admixture

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121685029.XU CN215438481U (en) 2021-07-23 2021-07-23 Anti-sticking transfer device for mixing of admixture

Publications (1)

Publication Number Publication Date
CN215438481U true CN215438481U (en) 2022-01-07

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ID=79683898

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121685029.XU Active CN215438481U (en) 2021-07-23 2021-07-23 Anti-sticking transfer device for mixing of admixture

Country Status (1)

Country Link
CN (1) CN215438481U (en)

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