Liquid storage tank driven by memory alloy to dissipate heat

文档序号:1554562 发布日期:2020-01-21 浏览:16次 中文

阅读说明:本技术 一种通过记忆合金驱动散热的储液箱 (Liquid storage tank driven by memory alloy to dissipate heat ) 是由 彭敬辉 袁立鹏 李鲁佳 李松晶 于 2019-10-28 设计创作,主要内容包括:一种通过记忆合金驱动散热的储液箱,涉及一种散热储液箱。箱体设有隔板分隔为吸液室和回液室,箱体安装有吸液管和回液管,注液口上下安装有空气滤清器和滤网,箱体的底板由中间向两侧倾斜,箱体底部封堵有放液螺栓,箱体的前后两侧箱壁对应设有中心孔,中心孔安装有密封轴承,转动轴转动安装在两个密封轴承之间,转动轴上固定有多个支架,支架等角度设有多个接头,叶片分为连接杆与拨片两部分,连接杆为细长条状的形状记忆合金并固定在接头末端,拨片固定在连接杆外端,叶片与支架构成热机,风扇间隔固定在转动轴上。利用形状记忆合金的记忆恢复效应,将热能转换为机械能进行散热,起到了能量回收和节能的效果。(A liquid storage tank driven by memory alloy to dissipate heat relates to a heat dissipation liquid storage tank. The box is equipped with the baffle and separates for imbibition room and liquid return room, the liquid suction pipe and liquid return pipe are installed to the box, install air cleaner and filter screen from top to bottom to annotate the liquid mouth, the bottom plate of box inclines to both sides by the centre, the bottom of the box shutoff has the tapping bolt, the both sides tank wall corresponds and is equipped with the centre bore around the box, sealing bearing is installed to the centre bore, the axis of rotation is rotated and is installed between two sealing bearing, be fixed with a plurality of supports in the axis of rotation, the support equidistance is equipped with a plurality of joints, the blade divide into connecting rod and plectrum two parts, the connecting rod is long and thin strip shape memory alloy and fixes at the joint end, the plectr. The memory recovery effect of the shape memory alloy is utilized to convert heat energy into mechanical energy for heat dissipation, and the effects of energy recovery and energy conservation are achieved.)

1. The utility model provides a through radiating liquid reserve tank of memory alloy drive, includes box (1), box (1) is water tank or oil tank, and its inside intermediate position is fixed to be equipped with baffle (7) and separates box (1) inside left and right sides for imbibition room and liquid return room, the upper cover of box (1) with imbibition room correspond the position respectively fixed mounting have pipette (2) and liquid return pipe (3), still be equipped with in the middle of the upper cover of box (1) and annotate the liquid mouth, annotate liquid mouth from top to bottom respectively fixed mounting have air cleaner (4) and filter screen (5), the bottom plate of box (1) sets up to the left and right sides slope by the centre, and the left and right sides tank wall bottom of box (1) is equipped with drain mouth and spiro union shutoff respectively has drain bolt (6), its characterized in that: the liquid reserve tank still includes shape memory alloy heat engine driven air cooling plant, shape memory alloy heat engine driven air cooling plant includes axis of rotation (11), a plurality of blade (8) and a plurality of fan (9), and the both sides tank wall is located the highest liquid level top in the case and is close to and return liquid pipe (3) position correspondence and be equipped with the centre bore, two around box (1) install sealed bearing (12) respectively in the centre bore, axis of rotation (11) rotate and install two between sealed bearing (12), the interval is fixed with a plurality of supports (10) on axis of rotation (11), support (10) are equipped with a plurality of joints along axis of rotation (11) circumferencial direction isogonism, every the joint is fixed with a blade (8), blade (8) divide into connecting rod (81) and plectrum (82) two parts, connecting rod (81) are long and thin banding shape memory alloy and radially pass through the fix with screw at corresponding joint end along axis of rotation (11) and connect terminal The poking sheet (82) is fixed at the outer end of the connecting rod (81) through a screw, the blades (8) and the bracket (10) form a heat engine, and the plurality of fans (9) are fixed on the rotating shaft (11) at intervals.

2. A reservoir for driving heat dissipation through memory alloy as defined in claim 1, wherein: the rotating shaft (11) is arranged at two ends of the rotating shaft in a stretching mode outside the box body (1), the fans (9) are divided into the fans (91) in the box body and the fans (92) outside the box body, the fans (91) in the box body and the heat engine are distributed in a staggered mode, and the fans (92) outside the box body are two in number and located at two ends of the rotating shaft (11).

3. A reservoir for driving heat dissipation through memory alloy according to claim 1 or 2, wherein: the connecting rod (81) is made of two-way memory alloy.

4. A reservoir for driving heat dissipation through memory alloy as defined in claim 3, wherein: the poking sheet (82) adopts a square poking sheet.

Technical Field

The invention relates to a heat-dissipation liquid storage tank, in particular to a liquid storage tank driven by memory alloy to dissipate heat.

Background

In the working process of the hydraulic system, the friction loss of the fluid, the pressure loss of a hydraulic pipeline and the mechanical and volume loss of hydraulic components are almost completely converted into heat, and the heat is partially dissipated into the air, so that the temperature of the fluid is increased mostly. The normal oil temperature range of the engineering machinery is generally 30-80 ℃, and when the oil temperature exceeds 60 ℃, the service life of the hydraulic oil is halved when the oil temperature is increased by 8 ℃. In addition, high oil temperatures (greater than 80 ℃) result in altered hydraulic oil performance and reduced sealing performance of hydraulic components. The operating range of the pure water is narrower (3-50 ℃), the pure water is easy to vaporize and boil due to temperature rise, cavitation, flow and pressure fluctuation are caused, and the working stability of the hydraulic system is seriously influenced. It can be seen that the heat dissipation problem of the hydraulic system will affect the working performance of the whole system.

The liquid storage tank is a main liquid storage and heat dissipation unit in the hydraulic system, and the inner side wall and the outer side wall of the liquid storage tank respectively dissipate heat through heat transfer and heat convection, so that the heat dissipation rate is very low. In order to improve the heat dissipation effect of the liquid storage tank, measures of increasing the volume of the liquid storage tank to enhance natural cooling or additionally arranging an external cooler to dissipate heat forcibly are commonly adopted at present. However, the large volume of the tank severely limits the miniaturization of the hydraulic system, and the introduction of the cooler increases the weight and energy consumption of the system. Considering that the main heat source of the liquid storage tank comes from the liquid return pipe to return liquid, if the heat energy of the liquid return can be converted into mechanical energy to drive the cooling device, the liquid storage tank can be rapidly cooled under the condition of not consuming external energy, so that the dual effects of cooling and energy saving are achieved.

As a new functional material, shape memory alloys have been widely used in many fields such as aerospace, biomedical, bridge construction, mechano-electronics, and automotive industries. The shape memory alloy has excellent shape memory effect through thermoelasticity, martensite phase transformation and inversion thereof, has double functions of sensing and driving, and has infinite application potential in the fields of micro and intelligent systems. Shape memory alloys are the core component of heat engines, which convert thermal energy into mechanical energy as the primary source of driving force for the heat engine. However, there is no liquid storage tank for driving the cooling device to dissipate heat by using the output force of the shape memory alloy heat engine.

Disclosure of Invention

The invention aims to provide a liquid storage tank driven by memory alloy to dissipate heat, which utilizes the memory recovery effect of shape memory alloy to convert heat energy into mechanical energy for heat dissipation, does not need to increase the volume or introduce an external source to drive a cooler, recycles the heat energy and plays roles in energy recovery and energy saving.

In order to achieve the purpose, the invention adopts the following technical scheme: a liquid storage tank driven by memory alloy to dissipate heat comprises a tank body and an air cooling device driven by a shape memory alloy heat engine, wherein the tank body is a water tank or an oil tank, the middle position in the tank body is fixedly provided with a partition plate which divides the left side and the right side in the tank body into a liquid suction chamber and a liquid return chamber, the upper cover of the tank body and the corresponding positions of the liquid suction chamber and the liquid return chamber are respectively and fixedly provided with a liquid suction pipe and a liquid return pipe, the middle of the upper cover of the tank body is also provided with a liquid injection port, the upper part and the lower part of the liquid injection port are respectively and fixedly provided with an air filter and a filter screen, the bottom plate of the tank body is obliquely arranged towards the left side and the right side from the middle, the bottom parts of the tank walls at the left side and the right side of the tank body are respectively provided with a liquid discharge port and are blocked by screw threads, two install sealed bearing in the centre bore respectively, the axis of rotation rotates to be installed two between the sealed bearing, the interval is fixed with a plurality of supports in the axis of rotation, the support is equipped with a plurality of joints along angles such as axis of rotation circumferencial direction, every the joint is fixed with a blade, the blade divide into connecting rod and plectrum two parts, the connecting rod is elongated shape memory alloy and follows the axis of rotation and radially pass through the fix with screw at the corresponding joint end, the plectrum passes through the fix with screw in the connecting rod outer end, and the blade constitutes the heat engine with the support, a plurality of fan intervals are fixed in the axis of rotation.

Compared with the prior art, the invention has the beneficial effects that: according to the invention, external power is not required for driving, the blades are impacted to start by virtue of liquid return power, the heat energy is converted into mechanical energy to drive the rotating shaft to rotate by utilizing the memory recovery effect of the shape memory alloy, so that the fan is driven to rotate to accelerate heat exchange of the liquid storage tank, the liquid storage tank is rapidly cooled by heat consumption of the heat energy and heat dissipation of the fan, the heat exchange effect can be improved on the premise of not increasing the volume of the liquid storage tank, and the miniaturization and light weight of the liquid storage tank are ensured. In addition, the heat energy is recycled, extra energy is not consumed to drive the fan, and the effects of energy recovery and energy conservation are achieved.

Drawings

FIG. 1 is a schematic structural diagram of a liquid storage tank driven by memory alloy to dissipate heat according to the present invention;

FIG. 2 is a left side view of the liquid storage tank driven by the memory alloy to dissipate heat according to the present invention;

fig. 3 is an isometric view of a heat engine of the present invention.

Detailed Description

The technical solutions in the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the invention, rather than all embodiments, and all other embodiments obtained by those skilled in the art without any creative work based on the embodiments of the present invention belong to the protection scope of the present invention.

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