Building mixer that stirring is more even

文档序号:1715989 发布日期:2019-12-17 浏览:27次 中文

阅读说明:本技术 一种搅拌更均匀的建筑搅拌机 (Building mixer that stirring is more even ) 是由 张苏侠 于 2018-06-09 设计创作,主要内容包括:本发明适用于建筑机械技术领域,提供了一种搅拌更均匀的建筑搅拌机,包括搅拌桶组件和搅拌组件,所述搅拌桶组件包括底座、支架和滚筒,所述支架固定连接于所述底座,所述支架位于所述底座的上表面,所述滚筒搭接于所述支架,所述滚筒位于所述支架的上表面;所述第一电机顺时针转,带动整个所述滚筒正转从而使得内部的混凝土进行正转,并从最高处泻落到由所述第二电机带动反转的所述搅拌叶上,且反转的所述搅拌叶将堆积的底部的混凝土进行反转动,从而再从传递到所述滚筒的上端,所述滚筒的正转将上端的混凝土再次转移到下方,如此循环,不断的搅拌,使得内部的混凝土能够得到充分的搅拌,从而搅拌出的混凝土原料混合均匀。(The invention is suitable for the technical field of construction machinery, and provides a building stirrer capable of stirring more uniformly, which comprises a stirring barrel component and a stirring component, wherein the stirring barrel component comprises a base, a support and a roller; the first motor rotates clockwise to drive the whole roller to rotate positively, so that the concrete inside the roller rotates positively and falls from the highest position onto the stirring blade driven to rotate reversely by the second motor, the stirring blade rotates reversely to enable the concrete at the bottom to be accumulated, the concrete at the upper end is transferred to the lower part again through the rotation of the roller, and the rotation is circulated and continuously stirred, so that the concrete inside the roller can be fully stirred, and the stirred concrete raw materials are uniformly mixed.)

1. The utility model provides a stir more even building mixer which characterized in that: comprises a stirring barrel component (1) and a stirring component (2), wherein the stirring barrel component (1) comprises a base (11), a bracket (12) and a roller (13), the bracket (12) is fixedly connected with the base (11), the bracket (12) is positioned on the upper surface of the base (11), the roller (13) is lapped on the bracket (12), the roller (13) is positioned on the upper surface of the bracket (12), a feeding hole (14) is arranged on the outer side wall of the roller (13), a discharging hole (15) is arranged on the lower surface of the roller (13),

The stirring assembly (2) comprises a first motor (21), a bevel gear (22), a toothed plate (23), a second motor (24), a stirring shaft (25) and a stirring blade (26), wherein the first motor (21) is fixedly connected to the base (11), the first motor (21) is positioned on the upper surface of the base (11), the bevel gear (22) is rotatably connected to the first motor (21), the bevel gear (22) is positioned on the right side of the first motor (21), the toothed plate (23) is fixedly connected to the roller (13), the toothed plate (23) is positioned on the outer side wall of the roller (13), the second motor (24) is fixedly connected to the base (11) through a bracket, the second motor (24) and the base (11) are positioned at two ends of the bracket, and the stirring shaft (25) is fixedly connected to the second motor (24), the stirring shaft (25) is located at one end of the second motor (24), the stirring blade (26) is fixedly connected to the stirring shaft (25), the stirring blade (26) is located on the outer side wall of the stirring shaft (25), and the first motor (21) and the second motor (24) are electrically connected to an external power supply.

2. A building mixer as claimed in claim 1 in which the mixing is more uniform: the second motor (24), the stirring shaft (25) and the stirring blade (26) are eccentrically arranged and are close to the lower part inside the roller (13).

3. A building mixer as claimed in claim 1 in which the mixing is more uniform: the cylinder (13) is arranged in an inclined mode, the feed inlet (14) is arranged at the highest end of the cylinder (13), and the discharge outlet (15) is arranged at the lowest end of the cylinder (13).

4. A building mixer as claimed in claim 1 in which the mixing is more uniform: the bevel gear (22) is in meshed connection with the toothed plate (23), and the toothed plate (23) is arranged on the outer side wall of the roller (13) in a surrounding mode.

5. A building mixer as claimed in claim 1 in which the mixing is more uniform: the first motor (21) is arranged to rotate clockwise and the second motor (24) is arranged to rotate anticlockwise.

6. a building mixer as claimed in claim 1 in which the mixing is more uniform: the stirring blade (26) is arranged in a spiral shape, and the stirring blade (26) is tightly attached to the inner wall below the roller (13).

Technical Field

The invention belongs to the technical field of construction machinery, and particularly relates to a construction stirrer capable of stirring more uniformly.

Background

A stirrer for building engineering is a machine with blades for stirring cement, sand and stone, or dry mortar, and features that its shaft with blades rotates in cylinder or tank to mix raw materials into a mixture or a proper consistency.

At present, concrete on the market is prepared from a plurality of raw materials, and the raw materials need to be proportioned when the concrete is prepared, and then the obtained concrete is introduced into a concrete mixer for mixing, so that the raw materials are fully mixed to prepare the concrete.

Disclosure of Invention

The invention provides a building mixer capable of mixing more uniformly, and aims to solve the problem that the concrete raw materials are not sufficiently mixed due to the phenomenon of non-uniform mixing in the mixing process of a concrete mixer, so that the hardness of concrete is influenced, and the concrete is easy to loosen and insufficient in hardness.

The invention is realized in such a way, the building stirrer with more uniform stirring comprises a stirring barrel component and a stirring component, wherein the stirring barrel component comprises a base, a support and a roller, the support is fixedly connected with the base, the support is positioned on the upper surface of the base, the roller is lapped on the support, the roller is positioned on the upper surface of the support, the outer side wall of the roller is provided with a feed inlet, the lower surface of the roller is provided with a discharge outlet, the stirring component comprises a first motor, a conical gear, a toothed plate, a second motor, a stirring shaft and stirring blades, the first motor is fixedly connected with the base, the first motor is positioned on the upper surface of the base, the conical gear is rotatably connected with the first motor, the conical gear is positioned on the right side of the first motor, and the toothed plate is fixedly connected with the roller, the pinion rack is located the lateral wall of cylinder, the second motor pass through support fixed connection in the base, the second motor with the base is located the both ends of support, (mixing) shaft fixed connection in the second motor, the (mixing) shaft is located the one end of second motor, stirring leaf fixed connection in the (mixing) shaft, the stirring leaf is located the (mixing) shaft lateral wall, first motor with the equal electric connection of second motor in external power source.

Preferably, the second motor, the stirring shaft and the stirring blade are eccentrically arranged and are close to the lower part inside the roller.

Preferably, the roller is arranged in an inclined mode, the feed inlet is arranged at the highest end of the roller, and the discharge outlet is arranged at the lowest end of the roller.

Preferably, the bevel gear is engaged with the toothed plate, and the toothed plate is arranged around the outer side wall of the drum.

Preferably, the first motor is configured to rotate clockwise, and the second motor is configured to rotate counterclockwise.

Preferably, the stirring blade is arranged in a spiral shape and clings to the inner wall below the roller.

Compared with the prior art, the invention has the beneficial effects that: according to the building mixer capable of stirring more uniformly, the first motor is arranged to rotate clockwise to drive the whole drum to rotate forward, so that the concrete in the drum rotates forward, and falls onto the stirring blades driven by the second motor to rotate backward from the highest position, the stirring blades rotating backward rotate the accumulated concrete at the bottom in a reverse mode, so that the accumulated concrete is transferred to the upper end of the drum, the concrete at the upper end is transferred to the lower part again through the forward rotation of the drum, and the stirring is circulated and continuously stirred, so that the concrete in the drum can be sufficiently stirred, and the stirred concrete raw materials are uniformly mixed, the quality is good, and the use is convenient.

Drawings

FIG. 1 is a schematic view of the overall structure of the present invention;

FIG. 2 is a schematic view of the internal structure of the stirring assembly of the present invention;

FIG. 3 is a schematic side view of the present invention;

In the figure: 1-a stirring barrel component, 11-a base, 12-a support, 13-a roller, 14-a feed inlet, 15-a discharge outlet, 2-a stirring component, 21-a first motor, 22-a conical gear, 23-a toothed plate, 24-a second motor, 25-a stirring shaft and 26-a stirring blade.

Detailed Description

In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

Referring to fig. 1-3, the present invention provides a technical solution: a building stirrer capable of stirring more uniformly comprises a stirring barrel component 1 and a stirring component 2, wherein the stirring barrel component 1 comprises a base 11, a support 12 and a roller 13, the support 12 is fixedly connected to the base 11, the support 12 is positioned on the upper surface of the base 11, the roller 13 is lapped on the support 12, the roller 13 is positioned on the upper surface of the support 12, a feed inlet 14 is formed in the outer side wall of the roller 13, a discharge outlet 15 is formed in the lower surface of the roller 13, the stirring component 2 comprises a first motor 21, a bevel gear 22, a toothed plate 23, a second motor 24, a stirring shaft 25 and a stirring blade 26, the first motor 21 is fixedly connected to the base 11, the first motor 21 is positioned on the upper surface of the base 11, the bevel gear 22 is rotatably connected to the first motor 21, the bevel gear 22 is positioned on the right side of the first motor 21, the toothed plate 23 is fixedly connected to the roller 13, the toothed plate 23 is positioned on the, second motor 24 and base 11 are located the both ends of support, (mixing) shaft 25 fixed connection in second motor 24, (mixing) shaft 25 is located the one end of second motor 24, (mixing) shaft 26 fixed connection in (mixing) shaft 25, and (mixing) shaft 25 lateral wall is located to mixing (mixing) shaft 26, and first motor 21 and second motor 24 all electric connection are in external power source.

In this embodiment, drive conical gear 22 corotation through setting up first motor 21 clockwise rotation, thereby the lateral wall encircles the cylinder 13 that is provided with pinion rack 23, carry out clockwise rotation, thereby make inside concrete move down, the anticlockwise rotation of second motor 24 drives (mixing) shaft 25 and stirring leaf 26 through the output shaft and carries out the antiport in cylinder 13 inside, thereby drive inside concrete and move to the upper end, and then carry out a lot of circulation stirring, until the stirring.

in the embodiment, by arranging the lower position of the stirring shaft 25 and the stirring blade 26 in the drum 13 and the spiral stirring blade 26 clings to the inner wall of the drum 13, the concrete driven by the forward rotation drum 13 falls below and is accumulated, so that the accumulated concrete is stirred and transported, and the stirred concrete can be circulated for multiple times, when in use, an external power supply is successfully connected, firstly, the first motor 21 is started to adjust the position of the drum 13, so that the feed inlet 14 is above, then, the first motor 21 is stopped, the concrete is completely injected into the drum 13, then, the first motor 21 and the second motor 24 are started, the first motor 21 drives the drum 13 with the toothed plate 23 on the outer side wall to rotate forward through the bevel gear 22, the second motor 24 drives the stirring blade 26 to rotate backward through the stirring shaft 25, so that the concrete driven by the drum 13 to rotate forward, transfer to the upper end while stirring, so carry out the circulation many times, the staff observes the result of stirring, waits that the stirring can close first motor 21 and second motor 24, follow the discharge gate 15 with the concrete afterwards put down can, unlimited manifold cycles makes the concrete can be stirred very even, has made things convenient for staff's use.

further, the second motor 24, the stirring shaft 25 and the stirring blade 26 are eccentrically arranged and are close to the lower part of the inner part of the roller 13; the stirring blade 26 is provided in a spiral shape, and the stirring blade 26 is closely attached to the inner wall below the drum 13.

In this embodiment, by providing eccentric stirring shaft 25 and stirring blade 26 at the position inside drum 13 that is on the lower side, helical stirring blade 26 is attached to the inner wall below drum 13, so that the concrete driven by forward rotation drum 13 falls and is accumulated below, and the accumulated concrete is stirred and transported, and the stirred concrete can be circulated for many times.

Further, the roller 13 is arranged in an inclined manner, the feed inlet 14 is arranged at the highest end of the roller 13, and the discharge outlet 15 is arranged at the lowest end of the roller 13.

In this embodiment, through setting up the cylinder 13 of slope and making things convenient for loading and unloading of concrete for the concrete that is located the feed inlet 14 of the top and pours into can directly flow into the middle part of cylinder 13, under the stall's the condition, the concrete can slide down to discharge gate 15, carries out individual and unloads, has made things convenient for the loading and unloading of concrete.

Further, the bevel gear 22 is engaged with a toothed plate 23, and the toothed plate 23 is disposed around an outer side wall of the drum 13.

In this embodiment, through setting up bevel gear 22 meshing pinion rack 23, first motor 21 drives just can drive cylinder 13 and carry out clockwise corotation to carry out stirring on a large scale with inside concrete, carry out preliminary stirring to the concrete.

Further, the first motor 21 is configured to rotate clockwise, and the second motor 24 is configured to rotate counterclockwise.

In the present embodiment, the first motor 21 and the second motor 24 are arranged to rotate in opposite directions, so that the concrete inside can rotate in different directions, and the concrete can be stirred circularly and uniformly.

the working principle and the using process of the invention are as follows: after the concrete mixer is installed, the equipment is connected to an external power supply, the first motor 21 is started to adjust the position of the roller 13, so that the feeding hole 14 is located above, then the first motor 21 is stopped, concrete is completely injected into the roller 13, then the first motor 21 and the second motor 24 are started, the first motor 21 drives the roller 13 with the toothed plate 23 on the outer side wall to rotate forwards through the bevel gear 22, the second motor 24 drives the stirring blade 26 to rotate backwards through the stirring shaft 25, so that the concrete carried by the roller 13 rotating forwards is transferred to the upper end while being stirred, circulation is performed for multiple times, a worker observes the stirring result, the first motor 21 and the second motor 24 can be closed after uniform stirring, and then the concrete is placed from the discharging hole 15.

The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.

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