WO2018137381A1 - 一种用于空调器的管压板以及空调器 - Google Patents
一种用于空调器的管压板以及空调器 Download PDFInfo
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- WO2018137381A1 WO2018137381A1 PCT/CN2017/109900 CN2017109900W WO2018137381A1 WO 2018137381 A1 WO2018137381 A1 WO 2018137381A1 CN 2017109900 W CN2017109900 W CN 2017109900W WO 2018137381 A1 WO2018137381 A1 WO 2018137381A1
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- Prior art keywords
- wire
- pressing plate
- air conditioner
- plate
- pipe pressing
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
Definitions
- the utility model relates to the technical field of air conditioner accessories, in particular to a pipe pressure plate for an air conditioner, and the utility model relates to an air conditioner.
- An air conditioner that is, an "air conditioner” refers to a device that regulates and controls parameters such as temperature, humidity, cleanliness, and speed of ambient air in a building/structure.
- the wiring is disorderly, and there is the possibility of interference between the load lines.
- the wiring is not fixed firmly, and the collision between the load line and the housing is easy to occur, resulting in noise easily in the whole machine; finally, final assembly production and later
- various load lines are arranged in a staggered manner. It is necessary to clarify the walking conditions of various load lines, and the workload is large, which is not conducive to the improvement of production efficiency, and at the same time, there is a hidden danger to the workers.
- the technical problem to be solved by the present invention is to overcome the irregularity of the prior art. Fan, an unreasonable defect, thus providing a tube pressure plate for an air conditioner.
- Another technical problem to be solved by the present invention is to overcome the irregularity and unreasonable defects of the prior art, thereby providing an air conditioner.
- the utility model provides a pipe pressure plate for an air conditioner, comprising a pipe pressure plate body, wherein the pipe pressure plate body is a plate-like structure, and a wire structure for restricting a load line direction is arranged.
- the routing structure includes a routing slot disposed along the load line design route and a routing buckle that limits the load line to the routing slot.
- the tube pressure plate is mounted on a top end of the motor pressure plate, and the motor pressure plate is used to limit the up and down movement of the heat exchanger connection tube in the motor plate fixing groove.
- the wire trough is a groove structure formed on the tube plate body.
- the routing structure includes a first side panel and a second side panel that are juxtaposed and have a set spacing, and the first side panel and the second side panel are between the first side panel and the second side panel.
- the top end of the first side panel is provided with a baffle extending toward the second side panel, and the baffle is the routing buckle.
- the wire trough includes an opposite first side and a second side, and the first side and/or the second side are disposed near the top end with a snap protrusion extending toward the other side.
- the buckle protrusion is the line buckle.
- the routing structure includes an L-shaped structure, one end of the L-shaped structure is mounted on the tube pressing plate body, and the wire clamping plate is formed with the pipe pressing plate body, and the other end of the L-shaped structure is disposed
- the load line is limited to the buckle protrusion of the cable trough, and the buckle protrusion is the line buckle.
- the tube pressure plate is mounted on a top end of the motor pressure plate, and is matched with the motor pressure plate.
- the routing structure is located on a side of the tube pressure plate facing away from the motor pressure plate.
- the pipe plate body is provided with the wire structure corresponding to the ground wire, the ambient temperature envelope wire, the wifi box wire, the display wire, and the cold plasma.
- the utility model also provides an air conditioner, comprising the pipe pressure plate for an air conditioner according to any one of the above items.
- the utility model provides a pipe pressure plate for an air conditioner, which is provided with a wire structure, the wire structure comprises a wire trough and a wire buckle, the wire trough is arranged along the load line design route, and the wire buckle is arranged. Used to limit the load line to the cable trough. So designed, the internal load line of the air conditioner is routed according to the designed routing structure, which makes the routing more standardized and rationalized. It avoids possible interference, greatly improves assembly efficiency and post-maintenance efficiency, and has higher safety for workers. In addition, the routing structure makes the load line dispersed and fixed, and the cooperation of the routing structure and the routing buckle makes the load line more firm, and avoids the noise problem caused by the collision of the load line with the housing.
- the utility model provides a pipe pressure plate for an air conditioner, wherein a pipe pressure plate is installed at a top end of the motor pressure plate, and is used for matching the motor pressure plate to limit the up and down movement of the heat exchanger connection pipe in the fixing plate of the motor pressure plate.
- the tube pressure plate body and the motor pressure plate limit the movement of the inlet and outlet pipes, effectively avoiding the impact of the connection tube on the driving module, and ensuring that the position of the driving module is not affected by the connection tube and ensuring that the driving module drives the wind guide.
- the telescopic precision of the plate ensures the stability of the air deflector during operation. This design not only increases the function of the motor pressure plate itself, but also makes full use of the internal space of the air conditioner to improve the internal space occupancy of the air conditioner.
- FIG. 1 is a schematic structural view of a motor pressure plate provided by the present invention
- FIG. 2 is a schematic structural view of a pipe presser provided by the utility model
- FIG. 3 is a schematic structural view of a pipe clamp line provided by the utility model
- FIG. 4 is a schematic structural view of a susceptor trace provided by the present invention.
- FIG. 5 is a schematic structural view of a wiring structure at another position of the susceptor provided by the present invention.
- FIG. 1 is a schematic structural view of a motor pressure plate including a pressure plate body 1.
- the pressure plate body 1 has a matching structure with the motor toward the motor side, and the motor pressure plate and the motor support are fixedly coupled to realize the fixing of the motor.
- the first reinforcing wall 3 and the second reinforcing wall 4 are juxtaposed on the side of the pressure plate body 1 facing away from the motor.
- the first reinforcing wall 3 and the second reinforcing wall 4 extend in the same direction and have a spacing of a set distance, and the area between the two is a fixing groove 5.
- the connecting pipe of the heat exchanger is moved at the top of the motor pressure plate, and the pipe is taken from the fixing groove 5 between the first reinforcing wall 3 and the second reinforcing wall 4.
- the connecting pipe moves on the top of the motor pressure plate, optimizes the installation position of the internal parts of the air conditioner, and improves the space utilization inside the air conditioner.
- the setting of the fixing groove 5 can effectively prevent the connecting tube from colliding left and right, avoiding the positional displacement of the driving module caused by the collision of the driving module, and affecting the telescopic precision of the air guiding plate.
- the first reinforcing wall 3 is a water retaining structure for draining the condensed water on the heat exchanger to the water path on the bottom case, which facilitates water walking and acts as a drainage.
- the motor pressure plate and the motor support are integrally formed by an integrated process, such as casting molding and injection molding.
- the first reinforcing wall 3 not only serves as a water guiding function for draining the condensed water on the heat exchanger to the water path on the bottom case, but also functions to restrict the connecting pipe.
- the second reinforcing wall 4 not only functions to restrict the connecting pipe, but also functions as an anti-collision.
- the motor pressure plate in the present application not only has its own functions and functions, but also utilizes the internal space of the air conditioner, improves the internal space occupancy rate of the air conditioner, and is more suitable for the air conditioner module. Design requirements.
- the fixing groove includes a first fixing groove and a second fixing groove respectively corresponding to the connecting pipe. That is, the side of the pressure plate body 1 facing away from the motor is provided with three juxtaposed reinforcing walls, and a fixing groove is provided between the adjacent two reinforcing walls.
- the two fixing grooves respectively correspond to the connecting pipes for respectively restricting the left and right shaking of the connecting pipes. This setting ensures a good limit effect.
- the first reinforcing wall 3 and the second reinforcing wall 4 may be replaced by a simple convex structure or may be replaced with a common plate-like structure.
- the length of the projection structure or the plate-like structure constituting the fixing groove 5 should be designed to limit the left and right sway of the connecting pipe.
- the reinforcing wall, the convex structure, and the plate-like structure forming the fixing groove 5 are collectively referred to as a first protrusion and a second protrusion constituting the fixing groove 5.
- the pressure plate body 1 is provided with a pipe pressure plate corresponding to the top end of the fixing groove 5.
- the tube pressure plate is fixedly disposed on the pressure plate body 1 for limiting the upper and lower sides of the connecting tube, that is, limiting the range of movement of the connecting tube in the direction perpendicular to the direction of the connecting tube, thereby preventing the connecting tube from being detached from the top end of the fixing groove 5.
- the pressure plate body 1 and the tube pressure plate cooperate to securely connect the connection tube to the fixing groove 5 of the motor pressure plate.
- the motor pressure plate and the pipe pressure plate function as a pipe and a pipe.
- the platen body 1 is provided with a first mounting hole 2.
- a corresponding first mounting hole 2 on the tube pressure plate is provided with a second mounting hole 8.
- the platen body 1 is provided with a third mounting hole 6 corresponding to the middle frame structure of the air conditioner. Platen body 1 and The middle frame structure is connected by a second threaded connection member that is disposed through the third mounting hole 6.
- the design of the motor pressure plate also functions as a fixed middle frame structure, and the functions are more diversified, and the reliability of the whole machine is higher.
- the fixing groove 5 includes opposite first side faces and second side faces, and the first side face and/or the second side face are provided with finite position convex portions corresponding to the top end positions.
- the limit protrusion extends in a direction perpendicular to the other side.
- the setting of the limiting projection is for restricting the movement of the connecting pipe in the up and down direction of the fixing groove 5.
- the top end of the fixing groove 5 is provided with an extension plate for restricting the movement of the connecting pipe in the up and down direction of the fixing groove 5.
- the tube pressure plate comprises a tube pressure plate body 7, and the tube pressure plate body 7 has a plate-like structure, and a wire structure is disposed on a side away from the motor pressure plate.
- the routing structure includes a cable trough and a cable snap.
- the cable trough extends according to the load line design route, and the cable snap is used to limit the load line to the cable trough.
- the load line of the air conditioner the ambient temperature envelope 154, the display line 152, the ground line 155, the wifi box line 151, and the cold plasma or mosquito repellent line 153 all need to pass the wire structure limit.
- the setting of the routing structure makes the load routing more standardized and rationalized, and improves the convenience of after-sales maintenance inspection.
- the routing structure on the tube pressing plate body 7 includes a first routing structure 12 , a second routing structure 10 , a third routing structure 11 , and a fourth routing structure 9 .
- the first routing structure 12 includes a first side panel and a second side panel which are juxtaposed and have a set distance gap.
- the first side plate and the second side plate extend in parallel, and are perpendicular to the tube pressing plate body 7.
- the first side panel is a continuous plate-like structure
- the second side panel includes a first sub-board and a second sub-board extending in a uniform direction, and the opening between the first sub-board and the second sub-board has a set distance.
- the top end of the first side panel is provided with a baffle extending toward the second side panel.
- the baffle is set corresponding to the opening position.
- the load line is routed along the area between the first side panel and the second side panel and is limited by the shutter.
- the area between the first side plate and the second side plate is a wire trough, and the baffle is a wire buckle.
- the second side panels may also all be continuous sheet-like structures.
- the second routing structure 10 includes a first side panel and a second side panel arranged side by side, and the first side panel and the second side panel extend in parallel, both perpendicular to the tube pressing plate body 7.
- the side of the first side plate facing the second side plate is provided with a buckle protrusion extending toward the second side plate, and the buckle protrusion is disposed near the top end of the first side plate.
- the load line is routed along the area between the first side panel and the second side panel, and is restrained by the snap protrusion. That is, the area between the first side plate and the second side plate is a wire trough, and the buckle protrusion is a wire buckle.
- first side panel and the second side panel may each be provided with a snap protrusion.
- the snap protrusions of the two can be opposite or offset.
- the third routing structure 11, the fourth routing structure 9, the fifth routing structure 13 and the sixth routing structure 14 are the same, both of which are L-shaped structures.
- One end of the L-shaped structure is fixedly connected to the tube pressing plate body 7, and cooperates with the tube pressing plate body 7 to form a wire groove for restricting the moving direction of the wire.
- the other end of the L-shaped structure is provided with a snap protrusion extending toward the tube platen body 7, and the snap protrusion is a wire buckle.
- the tube platen body 7 is an L-shaped structure mounting structure.
- the wire trough can also be a groove structure that is formed on the tube platen body 7.
- the pedestal 16 is also provided with a routing structure, which also includes a wire trough and a cable snap. As shown in FIG. 4, the pedestal 16 includes a seventh routing structure and an eighth routing structure for limiting the driving module line 156 and the ambient temperature sensing envelope 154.
- the specific structure may be the same as the routing structure on the tube pressing plate. No longer.
- FIG. 5 is a schematic structural view of a wiring structure at another position on the susceptor 16.
- the pedestal 16 includes a ninth trace structure 17. It is used to limit the internal and external machine connection line 173, the signal line 174, and the power line 175.
- the nine-wire structure 17 includes a wire trough and a card board 172 that is fastened to the wire trough.
- the card wire plate 172 is a plate-like structure extending along the extending direction of the wire groove.
- the extension length of the wire board 172 is set according to actual needs, and the width of the plate structure should cover the wire groove.
- a card slot is disposed on both sides of the cable trough, and the card board 172 is latched in the card slot to fix the load line disposed in the cable trough.
- the cable plate 172 is the wire buckle of the wire trough.
- a wire buckle 171 for fixing the card board 172 is provided at the top end of the wire trough.
- the cable tie 171 can also be used with the cable slot.
- the ambient temperature envelope 154 is first taken out from the hub 15 and placed in the eighth routing structure of the susceptor 16; the driver module line 156 is taken out from the hub 15 and then inserted into the seventh In the routing structure, the power line 175, the internal and external connecting lines 173 and the signal line 174 are latched in the ninth routing structure 17, and the routing on the pedestal 16 is completed.
- the cold plasma or driver line is first taken out from the hub 15 and sequentially snapped into the first trace structure 12 and the third trace structure 11; the ambient temperature envelope 154 and the ground line 155 are removed from The hub 15 is led out, and sequentially snaps into the first trace structure 12, the second trace structure 10 and the fourth trace structure 9; the display line 152 is taken out from the hub 15 and is stuck on the pressure tube board through the fifth trace structure 13 The display is placed on the panel; the wifi box line 151 is taken out from the hub 15, and the sixth line structure 14 is stuck on the tube pressure plate, and the wifi box is placed on the panel or the panel body.
- the specific structure of the routing structure is different according to the type of the load line.
- the appropriate routing structure described in the technical solution can be selected according to actual conditions.
- different wires can choose the same wire structure.
- the arrangement of the wiring structure makes the internal wires of the air conditioner follow the designed design of the wiring structure.
- the line makes the line more standardized and rationalized. It avoids possible interference, greatly improves assembly efficiency and post-maintenance efficiency, and has higher safety for workers.
- the wire structure makes the wires dispersed and fixed, and the matching of the wire structure and the wire buckle makes the wire more firm, and avoids the noise problem caused by the wire colliding with the casing.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)
Abstract
一种用于空调器的管压板以及空调器,其中管压板包括管压板本体(7),管压板本体(7)为板状结构,设置有限制负载线走向的走线结构。走线结构使得空调器的内部负载线按照既定设计的走线结构走线,使得走线更加规范化、合理化,避免了可能产生的干扰和碰撞,提高了总装效率和后期维护效率。
Description
本实用新型涉及空调器配件技术领域,具体涉及一种用于空调器的管压板,本实用新型同时涉及一种空调器。
空调器,即“空气调节器”,是指对建筑/构筑物内环境空气的温度、湿度、洁净度、速度等参数进行调节和控制的装置。随着生活水平的提高和技术的进步,家用空调器已逐渐成为人们日常生活中不可或缺的家用电器,并且人们对空调器的要求也越来越高。
为了实现空调器设计功能,空调器内部设置有多根、多种功能的负载线。现有技术中,空调器的内部走线仅仅是简单地用线扎把负载线捆扎在一起,然后固定在空调器内部的某一个位置。走线不规范,不合理。具体具有如下缺陷:
首先,走线杂乱无章,各负载线之间有产生干扰的可能性;其次,走线固定不牢靠,易发生负载线与壳体之间碰撞,导致整机易出现噪音;最后,总装生产以及后期维修检测时,各种负载线交错排布,需要理清各种负载线的走路情况,工作量大,不利于生产效率的提高,同时对工作人员存在着不安全性的隐患。
实用新型内容
因此,本实用新型要解决的技术问题在于克服现有技术中的走线不规
范,不合理的缺陷,从而提供一种用于空调器的管压板。
本实用新型要解决的另一个技术问题在于克服现有技术中的走线不规范,不合理的缺陷,从而提供一种空调器。
本实用新型提供的一种用于空调器的管压板,包括管压板本体,所述管压板本体为板状结构,设置有限制负载线走向的走线结构。
可选的,所述走线结构包括沿所述负载线设计路线设置的走线槽和将所述负载线限制于所述走线槽中的走线卡扣。
可选的,所述管压板安装于所述电机压板的顶端,配合所述电机压板限制换热器连接管在所述电机压板固定槽中的上下运动。
可选的,所述走线槽为开设于所述管压板本体的凹槽结构。
可选的,所述走线结构包括并列设置且具有设定间距的第一侧板和第二侧板,所述第一侧板和所述第二侧板之间为走线槽。
可选的,所述第一侧板顶端设置有朝向所述第二侧板延伸的挡板,所述挡板为所述走线卡扣。
可选的,所述走线槽包括相对的第一侧面和第二侧面,所述第一侧面和/或所述第二侧面靠近顶端位置设置有朝向另一侧面延伸的卡扣凸起,所述卡扣凸起为所述走线卡扣。
可选的,所述走线结构包括L型结构,所述L型结构一端安装于所述管压板本体,与所述管压板本体形成所述走线槽,所述L型结构另一端设置有将所述负载线限制于所述走线槽的卡扣凸起,所述卡扣凸起为所述走线卡扣。
可选的,所述管压板安装于电机压板的顶端,配合所述电机压板限制
换热器连接管在垂直于所述换热器连接管走管方向上的运动。
可选的,所述走线结构位于所述管压板背离电机压板的一侧。
可选的,所述管压板本体对应地线、环境感温包线、wifi盒线、显示器线以及冷等离子设置有所述走线结构。
本实用新型同时提供了一种空调器,包括上述任一项所述的用于空调器的管压板。
本实用新型技术方案,具有如下优点:
1.本实用新型提供的一种用于空调器的管压板,设置有走线结构,走线结构包括走线槽和走线卡扣,走线槽沿负载线设计路线设置,走线卡扣用于将负载线限制于走线槽中。如此设计,使得空调器的内部负载线按照既定设计的走线结构走线,使得走线更加规范化、合理化。避免了可能产生的干扰,大大提高总装效率和后期维护效率,对工作人员的人体安全性更高。另外,走线结构使得负载线分散固定,走线结构和走线卡扣的配合使负载线更加牢固,避免了负载线与壳体发生碰撞产生噪音问题。
2.本实用新型提供的一种用于空调器的管压板,其管压板安装于电机压板的顶端,用于配合电机压板限制换热器连接管在电机压板固定槽中的上下运动。本技术方案中,管压板本体配合电机压板限制了进出液管的运动,有效避免了连接管对驱动模块撞击,同时保证了驱动模块的位置不受连接管影响和保证了驱动模块在驱动导风板时的伸缩精度,进而保证了导风板运行时的稳定性。如此设计不仅使电机压板本身的功能增加,也充分利用了空调器内部空间,提高了空调器内部空间占用率。
为了更清楚地说明本实用新型具体实施方式或现有技术中的技术方案,下面将对具体实施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本实用新型的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本实用新型提供的一种电机压板的结构示意图;
图2是本实用新型提供的一种管压板的结构示意图;
图3是本实用新型提供的管压板走线的结构示意图;
图4是本实用新型提供的基座走线的结构示意图;
图5是本实用新型提供的基座另一位置走线结构的结构示意图。
附图标记说明:
1、压板本体;2、第一安装孔;3、第一加强壁;4、第二加强壁;5、固定槽;6、第三安装孔;7、管压板本体;8、第二安装孔;9、第四走线结构;10、第二走线结构;11、第三走线结构;12、第一走线结构;13、第五走线结构;14、第六走线结构;15、集线器;151、wifi盒线;152、显示器线;153、驱蚊器线;154、环境感温包线;155、地线;156、驱动模块线;16、基座;17、第九走线结构;171、卡线扣;172、卡线板;173、内外机连接线;174、信号线;175、电源线。
下面将结合附图对本实用新型的技术方案进行清楚、完整地描述,显然,所描述的实施例是本实用新型一部分实施例,而不是全部的实施例。
基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。
图1为电机压板的结构示意图,电机压板包括压板本体1。压板本体1朝向电机一侧具有与电机配合的配合结构,电机压板与电机支座固定配合实现对电机的固定。压板本体1背向电机的一侧并列设置有第一加强壁3和第二加强壁4。第一加强壁3和第二加强壁4延伸方向相同,具有设定距离的间隔,两者之间区域为固定槽5。换热器的连接管在电机压板顶部走位,从第一加强壁3和第二加强壁4之间的固定槽5中走管。
连接管在电机压板顶部走位,优化了空调器内部零件安装位置,提高了空调器内部的空间利用率。固定槽5的设置可有效防止连接管左右碰撞,避免对驱动模块的碰撞造成驱动模块位置错位,而影响导风板伸缩精度。
换热器在工作过程中表面会产生冷凝水。第一加强壁3为挡水结构,用于将换热器上的冷凝水引流至底壳上的水路,方便走水,起到了引流作用。
电机压板与电机支座分别通过一体工艺一体成型,例如铸造成型、注塑成型。
根据上述描述可知,第一加强壁3不仅起到了把换热器上的冷凝水引流到底壳上的水路里的引水作用,而且也起到了限制连接管的作用。第二加强壁4不仅起到了限制连接管的作用,而且还可以起到防撞作用。在运输或进行跌落实验时,换热器的连接管会左右晃动。第二加强壁4限制了其左右晃动。
相对于现有技术中的电机压板,本申请中的电机压板不但本身的功能增加,功能多样化,也充分利用了空调器内部空间,提高了空调器内部空间占用率,更加适应了空调器模块化设计的要求。
作为可变换实施例,固定槽包括分别对应连接管设置的第一固定槽和第二固定槽。即,压板本体1背向电机的一侧设置有三个并列的加强壁,相邻两个加强壁之间为一个固定槽。两个固定槽分别对应连接管,用于分别限制连接管的左右晃动。如此设置,可保证较好的限位效果。
作为可变换实施例,第一加强壁3和第二加强壁4可替换为简单的凸起结构,也可替换为普通板状结构。组成固定槽5的凸起结构或板状结构的延伸长度应以能够限制连接管的左右晃动为设计标准。形成固定槽5的加强壁、凸起结构和板状结构统称为组成固定槽5的第一凸起和第二凸起。
压板本体1对应固定槽5的顶端扣设有管压板。管压板固定设置于压板本体1,用于连接管在上下方向的限位,即限制连接管在垂直于连接管走管方向上的运动范围,从而防止连接管从固定槽5顶端脱离。压板本体1与管压板相互配合将连接管牢靠地限制在电机压板的固定槽5内。电机压板和管压板起到了走管、限管的作用。
从图1和图2中可以看出,压板本体1设置有第一安装孔2。管压板上对应的第一安装孔2设置有第二安装孔8。压板本体1与管压板安装时,第一安装孔2和第二安装孔8相对,两者穿设有第一螺纹连接件。通过第一螺纹连接件实现管压板和压板本体1固定配合。
压板本体1对应空调器的中框结构设置有第三安装孔6。压板本体1和
中框结构通过穿设于第三安装孔6的第二螺纹连接件相连。如此设计电机压板还起到了固定中框结构的作用,功能更加多样化,整机可靠性更高。
为了限制连接管在固定槽5上下方向的运动,作为可替换的实施方式,固定槽5包括相对的第一侧面和第二侧面,第一侧面和/或第二侧面对应顶端位置设置有限位凸起,限位凸起延伸方向垂直于另一侧面。限位凸起的设置用于限制连接管在固定槽5上下方向的运动。
作为可变换实施例,固定槽5顶端设置延伸板,延伸板用于限制连接管在固定槽5上下方向的运动。
请参考图3,管压板包括管压板本体7,管压板本体7为板状结构,其背离电机压板一侧设置有走线结构。走线结构包括走线槽和走线卡扣。走线槽根据负载线设计路线延伸,走线卡扣用于将负载线限制在走线槽中。空调器的负载线:环境感温包线154、显示器线152、地线155、wifi盒线151以及冷等离子或驱蚊器线153,均需要经过走线结构限位。走线结构的设置使其负载走线更加规范合理化,提高了售后维修检测便利性。
请参考图2和图3,本实施例中,管压板本体7上走线结构包括第一走线结构12、第二走线结构10、第三走线结构11、第四走线结构9、第五走线结构13和第六走线结构14。其中,第一走线结构12包括并列设置且具有设定距离间隙的第一侧板和第二侧板。第一侧板和第二侧板延伸方向平行,均垂直于管压板本体7。第一侧板为连续的板状结构,第二侧板包括延伸方向一致的第一子板和第二子板,第一子板和第二子板之间具有设定距离的开口。第一侧板顶端设置有朝向第二侧板延伸的挡板。为了便于装卸
负载线,该挡板对应开口位置设置。负载线沿第一侧板和第二侧板之间的区域走线,通过挡板限制。第一侧板和第二侧板之间的区域即为走线槽,挡板即为走线卡扣。第二侧板也可均为连续的板状结构。
第二走线结构10包括并列设置的第一侧板和第二侧板,第一侧板和第二侧板延伸方向平行,均垂直于管压板本体7。第一侧板朝向第二侧板的侧面设置有朝向第二侧板延伸的卡扣凸起,卡扣凸起靠近第一侧板顶端设置。负载线沿第一侧板和第二侧板之间的区域走线,通过卡扣凸起限制。即,第一侧板和第二侧板之间的区域为走线槽,卡扣凸起为走线卡扣。
显而易见地,第一侧板和第二侧板上可均设置有卡扣凸起。两者的卡扣凸起可相对,也可错开。
第三走线结构11、第四走线结构9、第五走线结构13和第六走线结构14相同,均为L型结构。该L型结构一端与管压板本体7固定相连,与管压板本体7配合形成限制导线运动方向的走线槽。L型结构另一端设置有朝向管压板本体7延伸的卡扣凸起,该卡扣凸起为走线卡扣。管压板本体7即为L型结构的安装结构。
走线槽也可为开设于管压板本体7上的凹槽结构。
基座16上还设置有走线结构,同样包括走线槽和走线卡扣。如图4所示,基座16包括第七走线结构和第八走线结构,用于限制驱动模块线156和环境感温包线154,具体结构可与管压板上的走线结构相同,不再赘述。
图5是基座16上另一位置走线结构的结构示意图。基座16包括第九走线结构17。用于限制内外机连接线173、信号线174和电源线175。该第
九走线结构17包括走线槽和扣设于走线槽的卡线板172。其中卡线板172为沿走线槽延伸方向延伸设定长度的板状结构。卡线板172的延伸长度根据实际需求设定,板状结构的宽度应覆盖走线槽。走线槽两侧设置有卡板槽,卡线板172卡设在该卡板槽中,实现对设置在走线槽中的负载线的固定。卡线板172即该走线槽的走线卡扣。
作为可变换实施例,走线槽顶端设置有用于固定卡线板172的卡线扣171。卡线扣171也可配合卡线槽使用。
在生产总装线上进行安装时,首先把环境感温包线154从集线器15引出后,放进基座16的第八走线结构;把驱动模块线156从集线器15内引出后卡进第七走线结构中;把电源线175、内外机连接线173和信号线174卡设在第九走线结构17中,完成基座16上走线排布。
在生产总装线上进行安装时,首先把冷等离子或驱动器线从集线器15引出,依次卡入第一走线结构12和第三走线结构11;把环境感温包线154和地线155从集线器15引出,依次卡入第一走线结构12、第二走线结构10和第四走线结构9;把显示器线152从集线器15引出,通过第五走线结构13卡在压管板上,显示器放在面板上;把wifi盒线151从集线器15引出,通过第六走线结构14卡在管压板上,把wifi盒放在面板或面板体上。
本实施例中,走线结构具体结构对应负载线类型不同,显而易见地,可根据实际情况,选择本技术方案中记载的合适的走线结构。并且不同导线可选择同一走线结构。
走线结构的设置使得空调器的内部导线按照既定设计的走线结构走
线,使得走线更加规范化、合理化。避免了可能产生的干扰,大大提高总装效率和后期维护效率,对工作人员的人体安全性更高。另外,走线结构使得导线分散固定,走线结构和走线卡扣的配合使导线更加牢固,避免了导线与壳体发生碰撞产生噪音问题。
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引伸出的显而易见的变化或变动仍处于本实用新型创造的保护范围之中。
Claims (11)
- 一种用于空调器的管压板,其特征在于:包括管压板本体(7),所述管压板本体(7)为板状结构,所述管压板本体(7)设置有限制负载线走向的走线结构。
- 根据权利要求1所述的用于空调器的管压板,其特征在于:所述走线结构包括沿所述负载线设计路线设置的走线槽和将所述负载线限制于所述走线槽中的走线卡扣。
- 根据权利要求2所述的管压板,其特征在于:所述走线槽为开设于所述管压板本体(7)的凹槽结构。
- 根据权利要求2所述的管压板,其特征在于:所述走线结构包括并列设置且具有设定间距的第一侧板和第二侧板,所述第一侧板和所述第二侧板之间为走线槽。
- 根据权利要求4所述的管压板,其特征在于:所述第一侧板顶端设置有朝向所述第二侧板延伸的挡板,所述挡板为所述走线卡扣。
- 根据权利要求3或4所述的管压板,其特征在于:所述走线槽包括相对的第一侧面和第二侧面,所述第一侧面和/或所述第二侧面靠近顶端位置设置有朝向另一侧面延伸的卡扣凸起,所述卡扣凸起为所述走线卡扣。
- 根据权利要求2所述的管压板,其特征在于:所述走线结构包括L型结构,所述L型结构一端安装于所述管压板本体(7),与所述管压板本体(7)形成所述走线槽,所述L型结构另一端设置有将所述负载线限制于所述走线槽的卡扣凸起,所述卡扣凸起为所述走线卡扣。
- 根据权利要求1所述的用于空调器的管压板,其特征在于:所述管压板安装于电机压板的顶端,配合所述电机压板限制换热器连接管在垂直于所述换热器连接管走管方向上的运动。
- 根据权利要求8所述的管压板,其特征在于:所述走线结构位于所述管压板背离电机压板的一侧。
- 根据权利要求1所述的管压板,其特征在于:所述管压板本体(7)对应地线(155)、环境感温包线(154)、wifi盒线(151)、显示器线(152)以及冷等离子设置有所述走线结构。
- 一种空调器,其特征在于:包括权利要求1-8任一项所述的用于空调器的管压板。
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| CN202581710U (zh) * | 2012-05-16 | 2012-12-05 | 珠海格力电器股份有限公司 | 走线装置及空调器 |
| CN202613698U (zh) * | 2012-05-25 | 2012-12-19 | 广东美的电器股份有限公司 | 空调器室内机配管压板装置 |
| JP2015010731A (ja) * | 2013-06-27 | 2015-01-19 | パナソニック株式会社 | 空気調和機 |
| CN205191852U (zh) * | 2015-10-23 | 2016-04-27 | 珠海格力电器股份有限公司 | 空调器及其空调连接管压板、空调连接管压板安装结构 |
| CN205372979U (zh) * | 2016-01-15 | 2016-07-06 | 美的集团武汉制冷设备有限公司 | 空调器 |
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| CN202581710U (zh) * | 2012-05-16 | 2012-12-05 | 珠海格力电器股份有限公司 | 走线装置及空调器 |
| CN202613698U (zh) * | 2012-05-25 | 2012-12-19 | 广东美的电器股份有限公司 | 空调器室内机配管压板装置 |
| JP2015010731A (ja) * | 2013-06-27 | 2015-01-19 | パナソニック株式会社 | 空気調和機 |
| CN205191852U (zh) * | 2015-10-23 | 2016-04-27 | 珠海格力电器股份有限公司 | 空调器及其空调连接管压板、空调连接管压板安装结构 |
| CN205372979U (zh) * | 2016-01-15 | 2016-07-06 | 美的集团武汉制冷设备有限公司 | 空调器 |
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