WO2022047825A1 - 一种新风机组的安装方法 - Google Patents

一种新风机组的安装方法 Download PDF

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Publication number
WO2022047825A1
WO2022047825A1 PCT/CN2020/115035 CN2020115035W WO2022047825A1 WO 2022047825 A1 WO2022047825 A1 WO 2022047825A1 CN 2020115035 W CN2020115035 W CN 2020115035W WO 2022047825 A1 WO2022047825 A1 WO 2022047825A1
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WO
WIPO (PCT)
Prior art keywords
fixed
cavity
clamping
host
screw
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PCT/CN2020/115035
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English (en)
French (fr)
Inventor
莫永祺
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浙江美臣环境科技有限公司
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Publication of WO2022047825A1 publication Critical patent/WO2022047825A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • F24F7/06Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/02Ducting arrangements
    • F24F13/0254Ducting arrangements characterised by their mounting means, e.g. supports
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/32Supports for air-conditioning, air-humidification or ventilation units

Definitions

  • the invention belongs to the technical field of fresh air units, in particular to an installation method of a fresh air unit.
  • a fresh air unit is an air conditioning device that provides fresh air. In terms of function, it can achieve constant temperature and humidity or simply provide fresh air according to the requirements of the use environment.
  • the working principle is to extract fresh air from the outside, and then send it to the room through the fan after dust removal, dehumidification or humidification, cooling or heating, etc., and replace the original indoor air when entering the indoor space.
  • our company has designed and developed an installation method for the fresh air unit, and made a special installation structure of the fresh air unit to solve the above technical problems.
  • the present invention proposes an installation method for a fresh air unit.
  • the present invention is mainly used to solve the problem that when the existing fresh air unit is installed, most of the fresh air unit is fixed to the wall by bolts. When the fresh air unit is repaired, it is necessary to remove the bolts frequently, which will easily lead to the loosening of the mounting holes on the wall and the bolts, which will affect the stability and firmness of the fresh air unit installation; at the same time, one side of the fresh air unit is fitted On the wall, it will affect the cooling effect of the fresh air unit.
  • an installation method of a fresh air unit according to the present invention comprises the following steps:
  • the fixing plate is provided with a plurality of installation holes, and the bottom end of the fixing plate is fixed with a hoisting rod; the bottom end of the hoisting rod is fixed with a fixed cage, and the two sides of the fixed cage are fixed with a drive box;
  • the inner bottom end of the fixed cage is provided with a guide chute, and the fixed cage is provided with a movable clamping mechanism; the two side walls of the fixed cage are symmetrically provided with a heat dissipation mechanism, and the heat dissipation mechanism is carried out by the movable clamping mechanism.
  • the installer when working, when the host of the fresh air unit needs to be installed, the installer first fixes the fixing plate to the wall through bolts, and the hoisting rod can support the fixed cage, and then the installer puts the host into the fixed net In the box, the host is located inside the moving clamping mechanism, and then the moving clamping mechanism can clamp and fix the host, and at the same time, the driving component of the moving clamping mechanism can drive the heat dissipation mechanism to work, so that the heat dissipation mechanism can be installed in the fixed cage.
  • the host performs heat dissipation operations, thereby increasing the service life of the host.
  • the moving clamping mechanism includes a bidirectional screw screw, a screw sliding sleeve, a sliding seat, a clamping screen and a drive motor; the bidirectional screw screw is rotated and inserted into the guide chute, and the bidirectional screw screw A screw sliding sleeve is symmetrically sleeved on the upper part; the top end of the sliding seat is fixed to the clamping screen plate, and the bottom end of the sliding seat slides into contact with the bottom end of the guide chute; a rotating cavity is opened in the sliding seat, And a screw sliding sleeve is inserted into the rotating cavity; the screw sliding sleeve is connected with the sliding seat through the clamping and grinding component;
  • the direction of the helix on the two-way screw screw is symmetrical and opposite to both ends along the center of the two-way screw screw; when the host is put into the installation cage, the installer controls the drive motor to rotate through the controller.
  • the drive motor will conduct the rotation of the bidirectional helical screw, and the sliding sleeve of the screw symmetrically sleeved on the bidirectional helical screw will move.
  • the clamping and grinding component will fix the sliding sleeve of the screw to the sliding seat, and then symmetrically.
  • the screw sliding sleeve will drive the clamping screen plate to move in opposite directions through the sliding seat.
  • the symmetrical clamping screen plate With the continuous opposite movement of the symmetrical clamping screen plate, it is clamped and attached to both sides of the host, which is convenient for clamping and fixing the host. Prevent the host from shaking in the installation cage.
  • the user controls the drive motor to rotate in the reverse direction through the controller.
  • the drive motor will drive the symmetrical screw sleeve to reverse through the bidirectional screw screw Move, so that the clamping screen plates symmetrically clamped on both sides of the host can be disengaged from both sides of the host, thereby facilitating the removal of the host for maintenance operations, and the host does not need to be bolted to the wall to prevent the host and the wall from sticking.
  • the shell of the main machine is rusted due to the damp of the wall; when the main machine is clamped by the clamping screen, the clamping wear component is released from the clamping of the screw sleeve, and the control sliding seat is fixed to the guide chute.
  • the drive of the drive motor will drive the heat dissipation mechanism to work through the bidirectional screw screw, thereby improving the heat dissipation effect of the host.
  • the clamping and grinding assembly includes an elastic opening snap ring, an inner grinding layer and an electromagnetic block;
  • the inner cavity wall of the rotating cavity is an annular snap cavity, and an elastic opening snap ring is fixed on the upper cavity wall of the annular snap cavity;
  • the inner ring wall of the elastic opening snap ring is fixed with an inner frosted layer, and the inner frosted layer is in contact with the outer wall of the screw sleeve;
  • the inner wall of the slot of the elastic split ring is provided with electromagnetic blocks, and a rubber spring is arranged between the electromagnetic blocks;
  • the bottom end of the sliding seat is provided with an electromagnetic block; during operation, when the screw sliding sleeve is required to be connected with the sliding seat At this time, the controller can control the electromagnetic block set on the slot of the elastic snap ring to be energized, so that the electromagnetic block can generate a magnetic adsorption force.
  • the rubber spring is compressed, so that the diameter of the elastic snap ring shrinks, and the elastic opening
  • the inner frosted layer will be closely attached to the sliding sleeve of the lead screw, so that the sliding sleeve of the lead screw and the sliding seat can be connected to each other, so that the two-way helical screw can drive the sliding seat to slide in the guide chute;
  • the controller controls the electromagnet block to lose power, and the elastic restoring force of the rubber spring will push the opening groove of the elastic snap ring to expand, so that the diameter of the elastic snap ring increases, thereby making The inner frosted layer on the inner side of the elastic snap ring can be released from the friction on the sliding sleeve of the lead screw.
  • the electromagnetic block at the bottom of the sliding seat will be electromagnetically adsorbed into the guide chute, which is convenient for clamping and fitting to the two sides of the host.
  • the mesh plate is clamped to fix it, so that the rotation of the two-way screw screw will not drive the sliding seat to slide in the guide chute through the screw sliding sleeve, and the screw sliding sleeve will only rotate in the rotating cavity, not from the rotating cavity. break away.
  • the heat dissipation mechanism includes a heat dissipation fan blade, a rotating shaft, a rotating conduit, a driven pulley, a driving pulley and a driving belt; a heat dissipation cavity is opened inside the clamping mesh plate, and the heat dissipation cavity is installed through the rotating shaft
  • a plurality of cooling fan blades the rotating shaft is rotatably connected to the side wall of the cooling cavity through the bearing;
  • the rotating guide pipe is rotatably installed on the two side walls of the fixed cage, and the rotating guide pipe is slidably inserted into the rotating pipe through the limit slide plate.
  • a driven pulley is fixed on the rotating guide tube; a driving pulley is fixed on both ends of the two-way helical screw, and the driving pulley is connected with the driven pulley through a driving belt; when working, when heat dissipation is required When the mechanism is working, the grinding component is clamped at this time so that the screw sleeve and the sliding seat are disconnected, and then the driving motor will drive the driving pulley to rotate through the bidirectional screw screw, and the active driving will drive the driven pulley to rotate through the driving belt.
  • the rotating duct Since the driven drive is installed on the rotating duct, the rotating duct will drive the rotating shaft to rotate, so that the plurality of cooling fan blades at the end of the rotating shaft can rotate in the heat dissipation cavity, which can further ventilate the host that clamps the mesh plate and fits. cooling effect.
  • the mesh plate acts as a sliding limit to prevent the upper part of the clamping mesh plate from tilting due to the frictional force generated by the guide chute on the sliding seat when the bottom end of the clamping mesh plate is in the guide chute. phenomenon or the phenomenon of swinging left and right, which in turn affects the clamping stability of the clamping screen to the host.
  • elastic cavity pockets are fixed on the upper and lower side walls of the heat dissipation cavity, and the elastic cavity pockets are filled with cooling liquid; the outer end walls of the elastic cavity pockets are in rotational and pressing contact with the cooling fan blades, and
  • the elastic cavity sacs are communicated through a catheter; the elastic cavity sac is made of elastic temperature-conducting material; during operation, when the rotating fan blade rotates in the heat dissipation cavity, the end of the rotating fan blade will rotate and squeeze to the On the elastic cavity bag, the cooling liquid in the elastic cavity bag fixed on the upper and lower walls of the heat dissipation cavity can flow through each other through the catheter, so that the cooling liquid in the elastic cavity bag can be dispersed into the heat dissipation cavity, and then pass through the heat dissipation cavity.
  • the inner rotating fan blades flow into the installation cage, further improving the efficient heat dissipation effect of the installation cage on the host.
  • an elastic corrugated ventilating plate is arranged between the inner sides of the symmetrical clamping mesh plates, and the elastic corrugated ventilating plate is provided with a conduit hole; the conduit hole is sleeved on the air outlet pipe of the main machine; during operation, when the symmetrical When the clamping mesh plates move in opposite directions, the elastic corrugated ventilating plate arranged between the clamping mesh plates will shrink, and then can be attached to the rear end of the host, which can play a role in positioning the host; at the same time, the elastic corrugated ventilating plate The shrinkage will reduce the diameter of the duct hole, and since the duct hole is located on the tuyere pipe, the reduction of the duct hole can clamp and seal the pipeline connected to the tuyere pipe, thereby improving the connection between the tuyere pipe and the pipeline. sealing effect.
  • the symmetrical clamping screen plates are continuously moved in opposite directions and clamped to both sides of the host, thereby facilitating the clamping and fixing of the host and preventing the host from being installed on the net.
  • the phenomenon of shaking in the box; it is not necessary to fix the host to the wall by bolts to prevent the host and the wall from sticking to the wall, and the shell of the host will be rusted due to the dampness of the wall; the driving motor will be driven by a bidirectional spiral wire.
  • the rod drives the heat dissipation mechanism to work, thereby improving the heat dissipation effect of the host.
  • the electromagnet arranged inside the elastic opening snap ring shrinks the diameter of the elastic opening snap ring when it is energized, and the shrinkage of the elastic opening snap ring will make the inner frosted layer closely fit.
  • the screw sliding sleeve and then the screw sliding sleeve and the sliding seat can be connected to each other; when the electromagnet loses power, the diameter of the elastic snap ring increases, and the screw sliding sleeve will be disconnected from the sliding seat.
  • the two-way screw screw can not only drive the clamping screen plate to be clamped on both sides of the host, but also drive the rotating fan blades to perform the rotation and heat dissipation operation of the host.
  • Fig. 1 is the method flow chart of the present invention
  • Fig. 2 is the assembly drawing of fixed cage of the present invention and moving clamping mechanism
  • Fig. 3 is the sectional view of Fig. 2 of the present invention.
  • Fig. 4 is the partial enlarged view of A in Fig. 3 of the present invention.
  • fixed plate 1 hoisting rod 2, fixed cage 3, guide chute 31, movable clamping mechanism 4, bidirectional screw screw 41, screw sliding sleeve 42, sliding seat 43, rotating cavity 431, annular clamping cavity 432, clamping mesh plate 44, heat dissipation cavity 441, drive motor 45, heat dissipation mechanism 5, heat dissipation fan blade 51, rotating shaft 52, rotating conduit 53, driven pulley 54, driving pulley 55, driving belt 56, limit
  • the sliding plate 57 the clamping frosting assembly 6 , the opening snap ring 61 , the inner frosting layer 62 , the electromagnetic block 63 , the elastic cavity bag 7 , the elastic corrugated air-permeable plate 8 , and the conduit hole 81 .
  • FIGS. 1 to 4 An installation method of a fresh air unit according to an embodiment of the present invention will be described below with reference to FIGS. 1 to 4 .
  • a method for installing a fresh air unit includes the following steps:
  • S2 Fix the fixed plate 1 to the wall, and the height of the fixed cage 3 can be adjusted through the retractable hoisting rod 2 at the bottom of the fixed plate 1; 3.
  • the internal mobile clamping mechanism 4 can clamp and fix the host, and the host can be fixed; the host can be installed into the fixed cage 3 through the mobile clamping mechanism 4 without the need for the installer to drill holes in the wall.
  • the fixing plate 1 is provided with a plurality of installation holes, and the bottom end of the fixing plate 1 is fixed with a hoisting rod 2;
  • a drive box is fixed on the side;
  • a guide chute 31 is provided at the inner bottom end of the fixed net box 3, and
  • a movable clamping mechanism 4 is arranged on the fixed net box 3;
  • the two side walls of the fixed net box 3 are symmetrically provided with heat dissipation mechanisms 5, and the heat dissipation mechanism 5 is driven by the mobile clamping mechanism; when working, when the main engine of the fresh air unit needs to be installed, the installer first fixes the fixing plate 1 to the wall through bolts, and the hoisting rod 2 can be used for fixing.
  • the cage 3 is supported, and then the installer puts the host into the fixed cage 3, so that the host is located inside the mobile clamping mechanism 4, and then the mobile clamping mechanism 4 can clamp and fix the host, while moving the clamping mechanism 4
  • the driving assembly can drive the heat dissipation mechanism 5 to work, so that the heat dissipation mechanism 5 can perform heat dissipation operation on the host installed in the fixed cage 3, thereby improving the service life of the host.
  • the moving clamping mechanism 4 includes a bidirectional helical screw 41, a screw sliding sleeve 42, a sliding seat 43, a clamping screen 44 and a drive motor 45; the bidirectional helical screw 41 It is rotated and inserted into the guide chute 31, and the bidirectional helical screw rod 41 is symmetrically sleeved with the screw rod sliding sleeve 42; the top end of the sliding seat 43 is fixed to the clamping mesh plate 44, and the bottom end of the sliding seat 43 slides contact with the bottom end of the guide chute 31; a rotating cavity 431 is opened in the sliding seat 43, and a screw sliding sleeve 42 is inserted into the rotating cavity 431; The sliding seat 43 is connected;
  • the direction of the helix on the bidirectional helical screw 41 is arranged symmetrically and oppositely to both ends along the center of the bidirectional helical screw 41; when the host is put into the installation cage, the installer controls the drive motor through the controller.
  • the drive motor 45 When 45 rotates, the drive motor 45 will conduct electricity and the bidirectional helical screw 41 will rotate, and the screw sliding sleeve 42 symmetrically sleeved on the bidirectional helical screw 41 will move. Tighten it to the sliding seat 43, and then the symmetrical screw sliding sleeve 42 will drive the clamping screen plate 44 to move in opposite directions through the sliding seat 43, and with the continuous opposite movement of the symmetrical clamping screen plate 44, it is clamped and fitted to the host.
  • the user controls the driving motor 45 to rotate in the reverse direction through the controller, and the driving motor 45 will drive the symmetrical screw sliding sleeve 42 to move in the opposite direction through the bidirectional screw screw 41, so that the clamping mesh plates 44 symmetrically clamped on both sides of the host can be separated from both sides of the host, thereby facilitating the taking out of the host for maintenance operations. It is not necessary to fix the host to the wall with bolts to prevent the host from sticking to the wall.
  • the shell of the host is rusted due to the dampness of the wall; when the host is clamped by the clamping screen 44, the clamping wears
  • the assembly is released from the clamping of the screw sleeve 42, and at the same time, the control sliding seat 43 is fixed in the guide chute 31, and then the driving of the driving motor 45 will drive the heat dissipation mechanism 5 to work through the bidirectional screw screw 41, thereby improving the heat dissipation of the host. Effect.
  • the clamping and grinding assembly 6 includes an elastic opening snap ring 61, an inner grinding layer 62 and an electromagnetic block 63;
  • the inner cavity wall of the rotating cavity 431 has an annular clamping cavity 432, and the annular clamping cavity
  • the upper cavity wall of 432 is fixed with an elastic opening snap ring 61;
  • the inner ring wall of the elastic opening snap ring 61 is fixed with an inner frosted layer 62, and the inner frosted layer 62 is in active engagement with the outer wall of the screw sleeve 42;
  • the said The two side walls of the bottom end of the elastic snap ring 61 are arranged in non-contact with the annular cavity, and the inner wall of the snap groove of the elastic snap ring is provided with an electromagnetic block 63, and a rubber spring is arranged between the electromagnetic blocks 63;
  • the sliding seat 43 The bottom end is provided with an electromagnetic block 63; during operation, when the screw sliding sleeve 42 needs to be connected with the sliding seat 43, the controller can control the electromagnetic block
  • the block 63 can generate a magnetic adsorption force. At this time, the rubber spring is compressed, thereby causing the diameter of the elastic snap ring 61 to shrink. After the elastic snap ring 61 is contracted, the inner frosted layer 62 is closely attached to the screw sleeve 42.
  • the screw sliding sleeve 42 and the sliding seat 43 can be connected to each other, so that the bidirectional helical screw 41 can drive the sliding seat 43 to slide in the guide chute 31; when the screw sliding sleeve 42 and the sliding seat 43 are not required to be connected
  • the controller controls the electromagnetic block 63 to lose power the elastic restoring force of the rubber spring will push the opening groove of the elastic snap ring 61 to expand, so that the diameter of the elastic snap ring 61 increases, thereby making the inner side of the elastic snap ring 61 larger.
  • the frosted layer 62 can be released from the friction on the screw sleeve 42.
  • the electromagnetic block 63 at the bottom end of the sliding seat 43 will be electromagnetically adsorbed into the guide chute 31, which is convenient for clamping and fitting to both sides of the main machine.
  • the mesh plate 44 is fixed so that the rotation of the two-way screw screw 41 will not drive the sliding seat 43 to slide in the guide chute 31 through the screw sliding sleeve 42, and the screw sliding sleeve 42 will only rotate in the rotating cavity 431, and It will not be detached from the rotating cavity 431 .
  • the heat dissipation mechanism 5 includes a heat dissipation fan blade 51, a rotating shaft 52, a rotating conduit 53, a driven pulley 54, a driving pulley 55 and a driving belt 56; the clamping mesh plate 44 A heat dissipation cavity 441 is opened inside, and a plurality of heat dissipation fan blades 51 are installed in the heat dissipation cavity 441 through the rotating shaft 52; the rotating shaft 52 is rotatably connected to the side wall of the heat dissipation cavity 441 through a bearing; The two side walls of the cage 3 are fixed, and the rotating shaft 52 is slidably inserted into the rotating guide 53 through the limit slide 57; the driven pulley 54 is fixed on the rotating guide 53; Both ends are fixed with a driving pulley 55, and the driving pulley 55 is connected with the driven pulley 54 through the driving belt 56; when working, when the cooling mechanism 5 is required to work, at this time, clamp the frosting assembly 6
  • the sleeve 42 is connected with the sliding seat 43, and then the driving motor 45 rotates in the opposite direction, and the sliding seat 43 will drive the clamping mesh plate 44 to detach from the side wall of the main machine, and the rotating shaft 52 that is rotatably connected on the clamping mesh plate 44 will rotate in the rotating conduit 53. It shrinks and slides inwardly, so as to play a sliding limit on the clamping mesh plate 44, preventing the guide chute 31 from engaging with the sliding seat 43 when the bottom end of the clamping mesh plate 44 is in the guide chute 31. The frictional force causes the top of the clamping screen plate 44 to tilt or swing left and right, thereby affecting the clamping stability of the clamping screen plate 44 to the host.
  • the upper and lower side walls of the heat dissipation cavity 441 are fixed with an elastic cavity bag 7 , and the elastic cavity bag 7 is filled with cooling liquid; the outer end wall of the elastic cavity bag 7 is It is in contact with the cooling fan blade 51 by rotating and squeezing, and the elastic cavity sacs 7 are connected through a liquid conduit; the elastic cavity sac 7 is made of elastic temperature-conducting material; during operation, when the rotating fan blade is in the cooling cavity 441 During the internal rotation, the end of the rotating fan blade will be rotated and squeezed onto the elastic cavity bag 7, so that the cooling liquid in the elastic cavity bag 7 fixed on the upper and lower walls of the heat dissipation cavity 441 can flow through each other through the catheter, thereby facilitating the elastic cavity.
  • the cooling liquid in the bladder 7 can be dispersed into the heat dissipation cavity 441, and then flows into the installation cage through the rotating fan blades in the heat dissipation cavity 441, thereby further improving the efficient heat dissipation effect of the installation cage on the host.
  • an elastic corrugated ventilating plate 8 is arranged between the inner sides of the symmetrical clamping mesh plates 44, and the elastic corrugated ventilating plate 8 is provided with a conduit hole 81; the conduit hole 81 is sleeved on the main machine
  • the elastic corrugated ventilating plates 8 arranged between the clamping mesh plates 44 will shrink, and then can be attached to the rear end of the main machine, which can At the same time, the contraction of the elastic corrugated ventilating plate 8 will reduce the diameter of the conduit hole 81, and since the conduit hole 81 is located on the tuyere pipe, the reduction of the conduit hole 81 can connect the pipe on the tuyere pipe. Clamping and sealing effect of the tuyere, thereby improving the sealing effect of the connection between the tuyere pipe and the pipeline.
  • the screw sliding sleeve 42 When the sleeve 42 rotates, the screw sliding sleeve 42 will drive the symmetrically arranged clamping mesh plates 44 in the fixed cage 3 to move in opposite directions through the moving seat, and the opposite movement of the clamping mesh plates 44 can clamp and fix the host; when the host is After fixing, the installer will connect the pipelines to the tuyere pipes of the host respectively.
  • the pipelines are required to be horizontal and vertical, and PVC glue is applied to each joint for bonding and sealing.

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  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
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  • General Engineering & Computer Science (AREA)
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Abstract

一种新风机组的安装方法;该方法包括如下步骤:S1:将主机从箱体内取出,准备好材料将主机电源线从开关盒中接出;S2:将固定板(1)固定到墙体上;然后将主机放入到固定网箱(3)内,通过固定网箱(3)内部设置的移动夹紧机构(4)可以对主机进行夹紧固定,将主机进行固定;S3:当需要移动夹紧机构(4)对主机进行夹紧时,通过控制按钮控制驱动电机(45)转动,驱动电机(45)通过双向螺旋丝杆(41)驱动丝杆滑套(42)转动,丝杆滑套(42)会通过移动座带动固定网箱(3)内的对称设置夹紧网板(44)对向移动,夹紧网板(44)的对向移动可以对主机进行夹紧固定;便于对主机进行夹紧固定作业,防止主机在安装网箱内产生晃动的现象。

Description

一种新风机组的安装方法 技术领域
本发明属于新风机组技术领域,具体的说是一种新风机组的安装方法。
背景技术
新风机组是提供新鲜空气的一种空气调节设备。功能上按使用环境的要求可以达到恒温恒湿或者单纯提供新鲜空气。工作原理是在室外抽取新鲜的空气经过除尘、除湿或加湿、降温或升温等处理后通过风机送到室内,在进入室内空间时替换室内原有的空气。
现有的新风机组在安装时,大多是将新风机组通过螺栓固定到墙体上,然后将管路连接到新风机组的风管口位置,当需要对新风机组进行维修时,需要频繁拆卸螺栓,进而容易导致墙体上的安装孔和螺栓之间配合产生松动的现象,进而影响新风机组安装的稳定性和牢固性;同时新风机组的一侧贴合到墙体上,会影响新风机组的散热效果。
鉴于此,为了克服上述技术问题,本公司设计研发了一种新风机组的安装方法,制作了特殊的新风机组安装结构,解决了上述技术问题。
发明内容
为了弥补现有技术的不足,本发明提出的一种新风机组的安装方法,本发明主要用于解决现有的新风机组在安装时,大多是将新风机组通过螺栓固定到墙体上,需要对新风机组进行维修时,需要频繁拆卸螺栓,进而容易导致墙体上的安装孔和螺栓之间配合产生松动的现象,进而影响新风机组安装的稳定性和牢固性;同时新风机组的一侧贴合到墙体上,会影响新风机组的散热效果。
本发明解决其技术问题所采用的技术方案是:本发明所述的一种新风机组的安装方法,该方法包括如下步骤:
S1:将主机从箱体内取出,准备好材料将主机电源线从开关盒中接出;电源线无特殊要求时采用1.5平方线路;
S2:将固定板固定到墙体上,通过固定板底端的可伸缩吊装杆可以对固定网箱的高度进行调整;然后将主机放入到固定网箱内,通过固定网箱内部设置的移动夹紧机构可以对主机进行夹紧固定,将主机进行固定;将主机通过移动夹紧机构安装到固定网箱内,不需要安装人员通过对墙体进行打孔,然后将主机通过螺栓固定到对应打孔的位置;当需要对主机进行维修时,维修人员只需将将主机从固定网箱内取下,便可以对主机进行快速维修 作业;可以防止现有的主机通过螺栓进行固定,螺栓在频繁从安装孔内拆卸,容易导致螺栓产生松动的现象,进而影响主机安装的稳定性;
S3:当需要移动夹紧机构对主机进行夹紧时,安装人员通过固定网箱上设置的控制按钮控制驱动电机转动,驱动电机通过双向螺旋丝杆驱动丝杆滑套转动,丝杆滑套会通过移动座带动固定网箱内的对称设置夹紧网板对向移动,夹紧网板的对向移动可以对主机进行夹紧固定;通过对向移动的夹紧网板,可以实现对不同长度的主机在固定网箱内进行固定夹紧作业,进而便于固定网箱能够对不同大小的主机进行安装固定作业;同时将主机固定安装到固定网箱内,可以使得主机能够进行良好的散热作业,防止主机一侧贴合安装到墙体上,影响主机的散热效果;
S4:当主机固定后,安装人员将管路分别连接到主机的风口管上,管路要求横平竖直,且每个接头处抹PVC胶水进行粘结密封;
其中,所述固定板上开设有多个安装孔,且固定板的底端固定有吊装杆;所述吊装杆的底端固定有固定网箱,且固定网箱的两侧固定有驱动箱;所述固定网箱内部底端开设有导向滑槽,且固定网箱上设置有移动夹紧机构;所述固定网箱两侧壁对称设置有散热机构,且散热机构是由移动夹紧机构进行驱动;工作时,当需要对新风机组的主机进行安装时,安装人员先通过螺栓将固定板固定到墙体上,吊装杆可以对固定网箱进行支撑,然后安装人员将主机放入到固定网箱内,使得主机位于移动夹紧机构内部,然后移动夹紧机构能够对主机进行夹紧固定,同时移动夹紧机构的驱动组件能够驱动散热机构工作,使得散热机构能够对固定网箱内安装的主机进行散热作业,进而提高主机的使用寿命。
优选的,所述移动夹紧机构包括双向螺旋丝杆、丝杆滑套、滑动座、夹紧网板和驱动电机;所述双向螺旋丝杆转动插入到导向滑槽内,且双向螺旋丝杆上对称套接有丝杆滑套;所述滑动座的顶端固定到夹紧网板上,且滑动座的底端滑动接触到导向滑槽的底端;所述滑动座内开设有转动腔,且转动腔内插接有丝杆滑套;所述丝杆滑套通过夹紧磨砂组件与滑动座连接;
工作时,该双向螺旋丝杆上的螺旋线旋向沿着双向螺旋丝杆的中心向两端对称相反设置;当主机放入到安装网箱内后,安装人员通过控制器控制驱动电机转动,驱动电机会导电双向螺旋丝杆转动,双向螺旋丝杆上对称套接的丝杆滑套会产生移动,此时夹紧磨砂组件会将丝杆滑套固定夹紧到滑动座上,进而对称的丝杆滑套会通过滑动座带动夹紧网板对向移动,随着对称的夹紧网板不断的对向移动夹紧贴合到主机的两侧,进而便于对主机进行夹紧固定作业,防止主机在安装网箱内产生晃动的现象,同时当需要对主机进行维修时, 使用人员通过控制器控制驱动电机反向转动,驱动电机会通过双向螺旋丝杆带动对称的丝杆滑套反向移动,进而使得对称夹紧在主机两侧的夹紧网板能够从主机两侧脱离,进而便于将主机取出维修作业,不需要将主机通过螺栓固定到墙体上,防止主机与墙体贴上,由于墙体的受潮导致主机外壳产生锈化的现象;当夹紧网板对主机进行夹紧后,夹紧磨损组件脱离对丝杆滑套的夹紧,同时控制滑动座固定到导向滑槽内,进而驱动电机的驱动会通过双向螺旋丝杆带动散热机构进行工作,进而提高主机的散热效果。
优选的,所述夹紧磨砂组件包括弹性开口卡环、内磨砂层和电磁块;所述转动腔的内腔壁环形卡腔,且环形卡腔的上腔壁固定有弹性开口卡环;所述弹性开口卡环内圈壁固定有内磨砂层,且内磨砂层与丝杆滑套的外壁活动卡合接触;所述弹性开口卡环的底端两侧壁与环形腔非接触设置,且弹性开口环的卡槽口的内壁设置有电磁块,且电磁块之间设置有橡胶弹簧;所述滑动座的底端设置有电磁块;工作时,当需要丝杆滑套与滑动座进行连接时,控制器可以控制弹性开口卡环的卡槽口上设置的电磁块得电,使得电磁块能够产生磁性吸附力,此时橡胶弹簧产生压缩,进而使得弹性开口卡环的直径产生收缩,弹性开口卡环收缩后会使得内磨砂层紧密贴合到丝杆滑套上,进而可以将丝杆滑套和滑动座进行相互连接,便于双向螺旋丝杆能够驱动滑动座在导向滑槽内滑动;当不需要丝杆滑套与滑动座进行连接时,控制器控制电磁块失电,橡胶弹簧的弹性恢复力会推动弹性开口卡环的开口槽扩张,使得弹性开口卡环的直径增大,进而使得弹性开口卡环内侧的内磨砂层能够脱离对丝杆滑套的摩擦,此时滑动座底端的电磁块会得电磁性吸附到导向滑槽内,进而便于对夹紧贴合到主机两侧的夹紧网板进行固定,进而双向螺旋丝杆的转动不会通过丝杆滑套带动滑动座在导向滑槽内滑动,同时丝杆滑套只会在转动腔内转动,而不会从转动腔脱离。
优选的,所述散热机构包括散热扇叶、转动轴、转动导管、从动带轮、主动带轮和驱动皮带;所述夹紧网板内部开设有散热腔,且散热腔内通过转动轴安装有多个散热扇叶;所述转动轴通过轴承转动连接到散热腔的侧壁;所述转动导管转动安装到固定网箱的两侧壁,且转动导管内通过限位滑板滑动插接有转动轴;所述转动导管上固定有从动带轮;所述双向螺旋丝杆的两端均固定有主动带轮,且主动带轮通过驱动皮带与从动带轮连接;工作时,当需要散热机构工作时,此时夹紧磨砂组件使得丝杆滑套和滑动座进行脱离连接,然后驱动电机会通过双向螺旋丝杆带动主动带轮转动,主动带动会通过驱动皮带带动从动带轮转动,由于从动带动安装到转动导管上,进而转动导管会带动转动轴转动,使得转动轴端部多个散热扇叶能够在散热腔内转动,进而可以对夹紧网板贴合的主机起到通风散热的效果。防止主机在长时间工作时,且主机的一面贴合到墙体上,进而影响主机的散热效 果;同时需要将安装网箱内的主机进行取下时,夹紧磨砂组件可以使得丝杆滑套和滑动座连接,然后驱动电机反向转动,滑动座会带动夹紧网板从主机侧壁脱离,同时夹紧网板上转动连接的转动轴会在转动导管内收缩滑动,进而可以对夹紧网板起到滑动限位的作用,防止由于夹紧网板底端在导向滑槽内时,由于导向滑槽对滑动座的产生卡合摩擦力,进而导致夹紧网板的上方产生倾斜的现象或左右摇摆的现象,进而影响夹紧网板对主机的夹紧稳定性。
优选的,所述散热腔的上下两侧壁固定有弹性空腔囊,且弹性空腔囊内填充有冷却液;所述弹性空腔囊的外端壁与散热扇叶转动挤压接触,且弹性空腔囊之间通过导液管连通;所述弹性空腔囊采用弹性导温材料制成;工作时,当转动扇叶在散热腔内转动时,转动扇叶的端部会转动挤压到弹性空腔囊上,使得散热腔上下壁固定的弹性空腔囊内冷却液能够通过导液管相互流动,进而便于弹性空腔囊内的冷却液能够散入到散热腔内,再通过散热腔内转动扇叶流动到安装网箱内,进一步提高安装网箱对主机的高效散热效果。
优选的,对称所述夹紧网板内侧之间设置有弹性波纹透气板,且弹性波纹透气板上开设有导管孔;所述导管孔套接在主机的风口管上;工作时,当对称的夹紧网板对向移动时,夹紧网板之间设置的弹性波纹透气板会产生收缩,进而可以贴合到主机的后端,可以对主机起到定位的作用;同时弹性波纹透气板的收缩会使得导管孔的直径产生缩小,且由于导管孔位于风口管上,进而导管孔的缩减可以将风口管上连接的管路进行夹紧密封作用,进而提高风口管与管路之间的连接密封效果。
本发明的有益效果如下:
1.本发明移动夹紧机构和散热机构的配合,对称的夹紧网板不断的对向移动夹紧贴合到主机的两侧,进而便于对主机进行夹紧固定作业,防止主机在安装网箱内产生晃动的现象;不需要将主机通过螺栓固定到墙体上,防止主机与墙体贴上,由于墙体的受潮导致主机外壳产生锈化的现象;驱动电机的驱动会通过双向螺旋丝杆带动散热机构进行工作,进而提高主机的散热效果。
2.本发明通过设置的夹紧磨砂组件,弹性开口卡环内侧设置的电磁铁在得电时,使得弹性开口卡环的直径产生收缩,弹性开口卡环收缩后会使得内磨砂层紧密贴合到丝杆滑套上,进而可以将丝杆滑套和滑动座进行相互连接;当电磁铁失电时,使得弹性开口卡环的直径增大,丝杆滑套会脱离与滑动座的连接,进而便于双向螺旋丝杆既能够驱动夹紧网板夹紧到主机的两侧,同时又能够带动转动扇叶对主机进行转动散热作业。
附图说明
下面结合附图对本发明作进一步说明。
图1是本发明的方法流程图;
图2是本发明的固定网箱和移动夹紧机构的装配图;
图3是本发明图2的剖视图;
图4是本发明图3中A处局部放大图;
图中:固定板1、吊装杆2、固定网箱3、导向滑槽31、移动夹紧机构4、双向螺旋丝杆41、丝杆滑套42、滑动座43、转动腔431、环形卡腔432、夹紧网板44、散热腔441、驱动电机45、散热机构5、散热扇叶51、转动轴52、转动导管53、从动带轮54、主动带轮55、驱动皮带56、限位滑板57、夹紧磨砂组件6、开口卡环61、内磨砂层62、电磁块63、弹性空腔囊7、弹性波纹透气板8、导管孔81。
具体实施方式
使用图1-图4对本发明一实施方式的一种新风机组的安装方法进行如下说明。
如图1-图4所示,本发明所述的一种新风机组的安装方法,该方法包括如下步骤:
S1:将主机从箱体内取出,准备好材料将主机电源线从开关盒中接出;电源线无特殊要求时采用1.5平方线路;
S2:将固定板1固定到墙体上,通过固定板1底端的可伸缩吊装杆2可以对固定网箱3的高度进行调整;然后将主机放入到固定网箱3内,通过固定网箱3内部设置的移动夹紧机构4可以对主机进行夹紧固定,将主机进行固定;将主机通过移动夹紧机构4安装到固定网箱3内,不需要安装人员通过对墙体进行打孔,然后将主机通过螺栓固定到对应打孔的位置;当需要对主机进行维修时,维修人员只需将将主机从固定网箱3内取下,便可以对主机进行快速维修作业;可以防止现有的主机通过螺栓进行固定,螺栓在频繁从安装孔内拆卸,容易导致螺栓产生松动的现象,进而影响主机安装的稳定性;
S3:当需要移动夹紧机构4对主机进行夹紧时,安装人员通过固定网箱3上设置的控制按钮控制驱动电机45转动,驱动电机45通过双向螺旋丝杆41驱动丝杆滑套42转动,丝杆滑套42会通过移动座带动固定网箱3内的对称设置夹紧网板44对向移动,夹紧网板44的对向移动可以对主机进行夹紧固定;通过对向移动的夹紧网板44,可以实现对不同长度的主机在固定网箱3内进行固定夹紧作业,进而便于固定网箱3能够对不同大小的主机进行安装固定作业;同时将主机固定安装到固定网箱3内,可以使得主机能够进行良好的散热作业,防止主机一侧贴合安装到墙体上,影响主机的散热效果;
S4:当主机固定后,安装人员将管路分别连接到主机的风口管上,管路要求横平竖直,且每个接头处抹PVC胶水进行粘结密封;
其中,所述固定板1上开设有多个安装孔,且固定板1的底端固定有吊装杆2;所述吊装杆2的底端固定有固定网箱3,且固定网箱3的两侧固定有驱动箱;所述固定网箱3内部底端开设有导向滑槽31,且固定网箱3上设置有移动夹紧机构4;所述固定网箱3两侧壁对称设置有散热机构5,且散热机构5是由移动夹紧机构进行驱动;工作时,当需要对新风机组的主机进行安装时,安装人员先通过螺栓将固定板1固定到墙体上,吊装杆2可以对固定网箱3进行支撑,然后安装人员将主机放入到固定网箱3内,使得主机位于移动夹紧机构4内部,然后移动夹紧机构4能够对主机进行夹紧固定,同时移动夹紧机构4的驱动组件能够驱动散热机构5工作,使得散热机构5能够对固定网箱3内安装的主机进行散热作业,进而提高主机的使用寿命。
作为本发明的一种实施方式,所述移动夹紧机构4包括双向螺旋丝杆41、丝杆滑套42、滑动座43、夹紧网板44和驱动电机45;所述双向螺旋丝杆41转动插入到导向滑槽31内,且双向螺旋丝杆41上对称套接有丝杆滑套42;所述滑动座43的顶端固定到夹紧网板44上,且滑动座43的底端滑动接触到导向滑槽31的底端;所述滑动座43内开设有转动腔431,且转动腔431内插接有丝杆滑套42;所述丝杆滑套42通过夹紧磨砂组件6与滑动座43连接;
工作时,该双向螺旋丝杆41上的螺旋线旋向沿着双向螺旋丝杆41的中心向两端对称相反设置;当主机放入到安装网箱内后,安装人员通过控制器控制驱动电机45转动,驱动电机45会导电双向螺旋丝杆41转动,双向螺旋丝杆41上对称套接的丝杆滑套42会产生移动,此时夹紧磨砂组件6会将丝杆滑套42固定夹紧到滑动座43上,进而对称的丝杆滑套42会通过滑动座43带动夹紧网板44对向移动,随着对称的夹紧网板44不断的对向移动夹紧贴合到主机的两侧,进而便于对主机进行夹紧固定作业,防止主机在安装网箱内产生晃动的现象,同时当需要对主机进行维修时,使用人员通过控制器控制驱动电机45反向转动,驱动电机45会通过双向螺旋丝杆41带动对称的丝杆滑套42反向移动,进而使得对称夹紧在主机两侧的夹紧网板44能够从主机两侧脱离,进而便于将主机取出维修作业,不需要将主机通过螺栓固定到墙体上,防止主机与墙体贴上,由于墙体的受潮导致主机外壳产生锈化的现象;当夹紧网板44对主机进行夹紧后,夹紧磨损组件脱离对丝杆滑套42的夹紧,同时控制滑动座43固定到导向滑槽31内,进而驱动电机45的驱动会通过双向螺旋丝杆41带动散热机构5进行工作,进而提高主机的散热效果。
作为本发明的一种实施方式,所述夹紧磨砂组件6包括弹性开口卡环61、内磨砂层62和电磁块63;所述转动腔431的内腔壁环形卡腔432,且环形卡腔432的上腔壁固定有弹性开口卡环61;所述弹性开口卡环61内圈壁固定有内磨砂层62,且内磨砂层62与丝杆滑套42的外壁活动卡合接触;所述弹性开口卡环61的底端两侧壁与环形腔非接触设置,且弹性开口环的卡槽口的内壁设置有电磁块63,且电磁块63之间设置有橡胶弹簧;所述滑动座43的底端设置有电磁块63;工作时,当需要丝杆滑套42与滑动座43进行连接时,控制器可以控制弹性开口卡环61的卡槽口上设置的电磁块63得电,使得电磁块63能够产生磁性吸附力,此时橡胶弹簧产生压缩,进而使得弹性开口卡环61的直径产生收缩,弹性开口卡环61收缩后会使得内磨砂层62紧密贴合到丝杆滑套42上,进而可以将丝杆滑套42和滑动座43进行相互连接,便于双向螺旋丝杆41能够驱动滑动座43在导向滑槽31内滑动;当不需要丝杆滑套42与滑动座43进行连接时,控制器控制电磁块63失电,橡胶弹簧的弹性恢复力会推动弹性开口卡环61的开口槽扩张,使得弹性开口卡环61的直径增大,进而使得弹性开口卡环61内侧的内磨砂层62能够脱离对丝杆滑套42的摩擦,此时滑动座43底端的电磁块63会得电磁性吸附到导向滑槽31内,进而便于对夹紧贴合到主机两侧的夹紧网板44进行固定,进而双向螺旋丝杆41的转动不会通过丝杆滑套42带动滑动座43在导向滑槽31内滑动,同时丝杆滑套42只会在转动腔431内转动,而不会从转动腔431脱离。
作为本发明的一种实施方式,所述散热机构5包括散热扇叶51、转动轴52、转动导管53、从动带轮54、主动带轮55和驱动皮带56;所述夹紧网板44内部开设有散热腔441,且散热腔441内通过转动轴52安装有多个散热扇叶51;所述转动轴52通过轴承转动连接到散热腔441的侧壁;所述转动导管53转动安装到固定网箱3的两侧壁,且转动导管53内通过限位滑板57滑动插接有转动轴52;所述转动导管53上固定有从动带轮54;所述双向螺旋丝杆41的两端均固定有主动带轮55,且主动带轮55通过驱动皮带56与从动带轮54连接;工作时,当需要散热机构5工作时,此时夹紧磨砂组件6使得丝杆滑套42和滑动座43进行脱离连接,然后驱动电机45会通过双向螺旋丝杆41带动主动带轮55转动,主动带动会通过驱动皮带56带动从动带轮54转动,由于从动带动安装到转动导管53上,进而转动导管53会带动转动轴52转动,使得转动轴52端部多个散热扇叶51能够在散热腔441内转动,进而可以对夹紧网板44贴合的主机起到通风散热的效果。防止主机在长时间工作时,且主机的一面贴合到墙体上,进而影响主机的散热效果;同时需要将安装网箱内的主机进行取下时,夹紧磨砂组件6可以使得丝杆滑套42和滑动座43连接,然后驱 动电机45反向转动,滑动座43会带动夹紧网板44从主机侧壁脱离,同时夹紧网板44上转动连接的转动轴52会在转动导管53内收缩滑动,进而可以对夹紧网板44起到滑动限位的作用,防止由于夹紧网板44底端在导向滑槽31内时,由于导向滑槽31对滑动座43的产生卡合摩擦力,进而导致夹紧网板44的上方产生倾斜的现象或左右摇摆的现象,进而影响夹紧网板44对主机的夹紧稳定性。
作为本发明的一种实施方式,所述散热腔441的上下两侧壁固定有弹性空腔囊7,且弹性空腔囊7内填充有冷却液;所述弹性空腔囊7的外端壁与散热扇叶51转动挤压接触,且弹性空腔囊7之间通过导液管连通;所述弹性空腔囊7采用弹性导温材料制成;工作时,当转动扇叶在散热腔441内转动时,转动扇叶的端部会转动挤压到弹性空腔囊7上,使得散热腔441上下壁固定的弹性空腔囊7内冷却液能够通过导液管相互流动,进而便于弹性空腔囊7内的冷却液能够散入到散热腔441内,再通过散热腔441内转动扇叶流动到安装网箱内,进一步提高安装网箱对主机的高效散热效果。
作为本发明的一种实施方式,对称所述夹紧网板44内侧之间设置有弹性波纹透气板8,且弹性波纹透气板8上开设有导管孔81;所述导管孔81套接在主机的风口管上;工作时,当对称的夹紧网板44对向移动时,夹紧网板44之间设置的弹性波纹透气板8会产生收缩,进而可以贴合到主机的后端,可以对主机起到定位的作用;同时弹性波纹透气板8的收缩会使得导管孔81的直径产生缩小,且由于导管孔81位于风口管上,进而导管孔81的缩减可以将风口管上连接的管路进行夹紧密封作用,进而提高风口管与管路之间的连接密封效果。
具体工作流程如下:
工作时,将主机从箱体内取出,准备好材料将主机电源线从开关盒中接出;电源线无特殊要求时采用1.5平方线路;将固定板1固定到墙体上,通过固定板1底端的可伸缩吊装杆2可以对固定网箱3的高度进行调整;然后将主机放入到固定网箱3内,通过固定网箱3内部设置的移动夹紧机构4可以对主机进行夹紧固定,将主机进行固定;当需要移动夹紧机构4对主机进行夹紧时,安装人员通过固定网箱3上设置的控制按钮控制驱动电机45转动,驱动电机45通过双向螺旋丝杆41驱动丝杆滑套42转动,丝杆滑套42会通过移动座带动固定网箱3内的对称设置夹紧网板44对向移动,夹紧网板44的对向移动可以对主机进行夹紧固定;当主机固定后,安装人员将管路分别连接到主机的风口管上,管路要求横平竖直,且每个接头处抹PVC胶水进行粘结密封。
在本发明的描述中,需要理解的是,术语“中心”、“前”、“后”、“竖直”、“水 平”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明保护范围的限制。
虽然本发明是通过具体实施例进行说明的,本领域技术人员应当明白,在不脱离本发明范围的情况下,还可以对本发明进行各种变换及等同替代。另外,针对特定情形或材料,可以对本发明做各种修改,而不脱离本发明的范围。因此,本发明不局限于所公开的具体实施例,而应当包括落入本发明权利要求范围内的全部实施方式。

Claims (6)

  1. 一种新风机组的安装方法,其特征在于:该方法包括如下步骤:
    S1:将主机从箱体内取出,准备好材料将主机电源线从开关盒中接出;电源线无特殊要求时采用1.5平方线路;
    S2:将固定板(1)固定到墙体上,通过固定板(1)底端的可伸缩吊装杆(2)可以对固定网箱(3)的高度进行调整;然后将主机放入到固定网箱(3)内,通过固定网箱(3)内部设置的移动夹紧机构(4)可以对主机进行夹紧固定,将主机进行固定;
    S3:当需要移动夹紧机构(4)对主机进行夹紧时,安装人员通过固定网箱(3)上设置的控制按钮控制驱动电机(45)转动,驱动电机(45)通过双向螺旋丝杆(41)驱动丝杆滑套(42)转动,丝杆滑套(42)会通过移动座带动固定网箱(3)内的对称设置夹紧网板(44)对向移动,夹紧网板(44)的对向移动可以对主机进行夹紧固定;
    S4:当主机固定后,安装人员将管路分别连接到主机的风口管上,管路要求横平竖直,且每个接头处抹PVC胶水进行粘结密封;
    其中,所述固定板(1)上开设有多个安装孔,且固定板(1)的底端固定有吊装杆(2);所述吊装杆(2)的底端固定有固定网箱(3),且固定网箱(3)的两侧固定有驱动箱;所述固定网箱(3)内部底端开设有导向滑槽(31),且固定网箱(3)上设置有移动夹紧机构(4);所述固定网箱(3)两侧壁对称设置有散热机构(5),且散热机构(5)是由挤压夹紧机构进行驱动。
  2. 根据权利要求1所述的一种新风机组的安装方法,其特征在于:所述移动夹紧机构(4)包括双向螺旋丝杆(41)、丝杆滑套(42)、滑动座(43)、夹紧网板(44)和驱动电机(45);所述双向螺旋丝杆(41)转动插入到导向滑槽(31)内,且双向螺旋丝杆(41)上对称套接有丝杆滑套(42);所述滑动座(43)的顶端固定到夹紧网板(44)上,且滑动座(43)的底端滑动接触到导向滑槽(31)的底端;所述滑动座(43)内开设有转动腔(431),且转动腔(431)内插接有丝杆滑套(42);所述丝杆滑套(42)通过夹紧磨砂组件(6)与滑动座(43)连接。
  3. 根据权利要求2所述的一种新风机组的安装方法,其特征在于:所述夹紧磨砂组件(6)包括弹性开口卡环(61)、内磨砂层(62)和电磁块(63);所述转动腔(431)的内腔壁环形卡腔(432),且环形卡腔(432)的上腔壁固定有弹性开口卡环(61);所述弹性开口卡环(61)内圈壁固定有内磨砂层(62),且内磨砂层(62)与丝杆滑套(42)的外壁活动卡合接触;所述弹性开口卡环(61)的底端两侧壁与环形腔非接触设置,且弹性开口环的卡槽口的内壁设置有电磁块(63),且电磁块(63)之间设置有橡胶弹簧;所述滑动座(43)的底端设置有电磁块(63)。
  4. 根据权利要求4所述的一种新风机组的安装方法,其特征在于:所述散热机构(5)包括散热扇叶(51)、转动轴(52)、转动导管(53)、从动带轮(54)、主动带轮(55)和驱动皮带(56);所述夹紧网板(44)内部开设有散热腔(441),且散热腔(441)内通过转动轴(52)安装有多个散热扇叶(51);所述转动轴(52)通过轴承转动连接到散热腔(441)的侧壁;所述转动导管(53)转动安装到固定网箱(3)的两侧壁,且转动导管(53)内通过限位滑板(57)滑动插接有转动轴(52);所述转动导管(53)上固定有从动带轮(54);所述双向螺旋丝杆(41)的两端均固定有主动带轮(55),且主动带轮(55)通过驱动皮带(56)与从动带轮(54)连接。
  5. 根据权利要求4所述的一种新风机组的安装方法,其特征在于:所述散热腔(441)的上下两侧壁固定有弹性空腔囊(7),且弹性空腔囊(7)内填充有冷却液;所述弹性空腔囊(7)的外端壁与散热扇叶(51)转动挤压接触,且弹性空腔囊(7)之间通过导液管连通;所述弹性空腔囊(7)采用弹性导温材料制成。
  6. 根据权利要求5所述的一种新风机组的安装方法,其特征在于:对称所述夹紧网板(44)内侧之间设置有弹性波纹透气板(8),且弹性波纹透气板(8)上开设有导管孔(81);所述导管孔(81)套接在主机的风口管上。
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