WO2023093552A1 - 一种双面叠合发热墙板及其生产工艺 - Google Patents

一种双面叠合发热墙板及其生产工艺 Download PDF

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Publication number
WO2023093552A1
WO2023093552A1 PCT/CN2022/131633 CN2022131633W WO2023093552A1 WO 2023093552 A1 WO2023093552 A1 WO 2023093552A1 CN 2022131633 W CN2022131633 W CN 2022131633W WO 2023093552 A1 WO2023093552 A1 WO 2023093552A1
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special
shaped
air bag
airbag
circular
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PCT/CN2022/131633
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English (en)
French (fr)
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王昕�
张仁寅
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浙江清焓科技有限公司
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Publication of WO2023093552A1 publication Critical patent/WO2023093552A1/zh

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C2/00Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
    • E04C2/30Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by the shape or structure
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/92Protection against other undesired influences or dangers
    • E04B1/94Protection against other undesired influences or dangers against fire
    • E04B1/941Building elements specially adapted therefor
    • E04B1/942Building elements specially adapted therefor slab-shaped
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C2/00Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
    • E04C2/02Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials
    • E04C2/26Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials composed of materials covered by two or more of groups E04C2/04, E04C2/08, E04C2/10 or of materials covered by one of these groups with a material not specified in one of the groups
    • E04C2/284Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials composed of materials covered by two or more of groups E04C2/04, E04C2/08, E04C2/10 or of materials covered by one of these groups with a material not specified in one of the groups at least one of the materials being insulating
    • E04C2/292Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials composed of materials covered by two or more of groups E04C2/04, E04C2/08, E04C2/10 or of materials covered by one of these groups with a material not specified in one of the groups at least one of the materials being insulating composed of insulating material and sheet metal
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]

Definitions

  • the invention relates to the technical field of heating wallboards, in particular to a double-sided laminated heating wallboard and its production process.
  • the current heating wallboard generally uses a heating plate or an electric heating plate made of carbon fiber material inside, so that it can be directly fabricated by clamping it on two layers of wallboards.
  • the surface temperature can reach 70-80°C, and the electrothermal conversion rate can reach over 99%, so the heating wallboard can be used in a wide range and the sales volume is high;
  • the object of the present invention is to provide a double-sided laminated heating wallboard and its production process, so as to solve the problems raised in the above-mentioned background technology.
  • a double-sided laminated heating wall panel including a rear panel, a metal frame and a front panel, the front end of the rear panel is fixedly connected to the metal frame, and the rear panel of the front panel end contact with the front end of the metal frame;
  • the rear end of the rear plate is fixedly mounted with a metal block, and the front end of the rear plate is provided with a special-shaped air bag and a circular air bag, and the special-shaped air bag and the circular air bag are located in the metal frame.
  • bolt holes are opened on the front of the front plate, and the bolt holes extend into the metal frame;
  • Both the front plate and the rear plate are metal, which can effectively transmit heat in the case of heat generation, and at the same time, it will not cause danger when the degree of heat is large;
  • the rear end of the back plate is provided with a number of circular grooves, and after the space inside the circular grooves is squeezed into the concrete, it can be squeezed with the concrete, showing a squeeze effect under atmospheric pressure to prevent heat generation Wall panels fell off.
  • the back end of the metal block is provided with an annular cavity
  • the rear end of the metal block forms a small cylinder through the annular cavity
  • an arc-shaped elastic rod is fixedly installed on the rear end of the metal block
  • the arc One end of the arc-shaped elastic rod crosses the annular cavity and is fixedly connected with the small cylinder
  • the other end of the arc-shaped elastic rod is fixedly connected with the rear end surface of the metal block, so as to increase the contact surface with the concrete on the wall, and at the same time, the concrete is extruded Into the annular cavity, it has a better adsorption effect, and at the same time isolates the air, effectively preventing the heating plate from falling.
  • arc-shaped elastic rods there are several arc-shaped elastic rods, and several arc-shaped elastic rods are distributed in a uniform circular array around the center of the metal block;
  • the arc-shaped elastic rod is arranged in an arc towards the rear end, and a long opening is opened on the arc surface of the arc-shaped elastic rod. Inside, all parts are in contact with the concrete, and there are long openings so that the concrete will not be blocked;
  • the arc-shaped elastic rod has an elastic setting, and the heating wallboard is knocked a few times to make the arc-shaped elastic rod recover under the action of the vibration force, and can be inserted deeper into the concrete.
  • the special-shaped airbag is fixedly mounted on the front end of the rear panel, the circular airbag is located in the middle of the special-shaped airbag, and the circular airbag is fixedly connected to the front end of the rear panel.
  • the special-shaped airbag is arranged in a circular ring, the thickness of the side wall of the special-shaped airbag near the outer ring is greater than that of the sidewall near the inner ring, and the special-shaped airbag is inflated;
  • the axis of the circular airbag and the axis of the special-shaped airbag are arranged to coincide.
  • the gas in the circular airbag and the special-shaped airbag is carbon dioxide. When they burst, oxygen can be effectively squeezed out, effectively preventing damage.
  • the outer wall of the circular airbag is arranged in an arc, and the outer wall of the circular airbag is arranged in folds, and spikes are fixedly installed on the outer wall of the circular airbag.
  • an annular groove is opened on the outer wall of the outer ring of the special-shaped airbag, and an elastic pull cord is clamped in the annular groove, and the elastic pull cord has an elastic setting;
  • One side of the elastic pull cord is fixedly connected with a tension spring, and one end of the tension spring is fixedly connected with the inner wall of the metal frame, and the tension spring is arranged tightly;
  • a section of the elastic pull cord is fixedly equipped with a backing plate, the said backing plate is located on the side opposite to the tension spring, and one side of the said backing plate is fixedly equipped with a tapered thorn;
  • the abutment plate is arranged to be attached to the outer wall of the special-shaped airbag, and the upper end of the abutment plate is set away from the special-shaped airbag.
  • the height of the thorns is lower than that of the circular air sac.
  • a production process of a double-sided laminated heating wallboard comprising the following steps:
  • Step 1 Die-cast a circular groove at the back end of the back plate, and weld the front end of the back plate with the metal frame;
  • Step 2 using a drill press to process threaded holes on the metal frame and the front end of the front plate, and the threaded holes on the front plate cooperate with the threaded holes on the metal frame;
  • Step 3 welding and milling the metal block of the annular cavity at the rear end of the back plate, and welding the arc-shaped elastic rod with a long opening to the rear end of the metal block;
  • Step 4 fix the special-shaped airbag and the round airbag to the front end of the rear panel with glue, and stick the spikes on the outer wall of the round airbag with glue;
  • Step 5 glue the backing board to the elastic drawstring with glue, and at the same time, glue the other side of the elastic drawstring to the stretch spring through glue;
  • Step 6 welding the conical thorn to the backing plate, and welding the other end of the tension spring to the inner wall of the metal frame at the same time;
  • Step 7 set the elastic pull cord in the annular groove, and at the same time fix the front plate with the metal frame through bolts.
  • the present invention sets special-shaped airbags and circular airbags, under long-term use, the internal circuit elements are in poor contact, and arcs are generated and heat is released sharply, so that the internal temperature is relatively high, and the temperature continues to rise
  • the gas in the special-shaped airbag and the circular airbag is continuously expanded, and the internal gas is carbon dioxide.
  • the spikes on the outer wall of the circular airbag touch the special-shaped airbag, so that the special-shaped airbag can be ruptured, and the carbon dioxide inside is released rapidly, making the The oxygen in the heating wallboard is reduced, and the electronic components will not generate open flames in the absence of oxygen, thereby achieving a better safety effect.
  • the present invention is by arranging tension spring, elastic stay cord and butt plate, and the elastic stay cord of special-shaped air bag outer end realizes rapid recovery under the situation of not being stressed, ejects at the outer end of circular air bag, receives simultaneously Under the tension of the tension spring, the support plate on the side opposite to the tension spring quickly contacts the circular airbag, causing the circular airbag to be squeezed by the conical thorns and rupture, releasing a large amount of carbon dioxide, making the internal If the carbon dioxide is further enriched, it will not be easy to produce an open flame.
  • the present invention arranges special-shaped air bag and round air bag, when special-shaped air bag and round air bag are broken, can produce the sound of breaking, so can remind the personnel in the room to pay attention, realize the maintenance of this heating wallboard.
  • Fig. 1 is a schematic diagram of the overall structure of the present invention
  • Fig. 2 is the rear view structure schematic diagram of the present invention.
  • Fig. 3 is the partial enlarged view of A in Fig. 2 of the present invention.
  • Fig. 4 is a schematic diagram of the internal structure of the present invention.
  • Fig. 5 is the structure schematic diagram of special-shaped air bag and circular air bag of the present invention.
  • Fig. 6 is a schematic diagram of the half-section structure of the special-shaped airbag of the present invention.
  • Fig. 7 is a schematic diagram of the structure of the resisting plate of the present invention.
  • Fig. 8 is a block diagram of the process flow of the present invention.
  • the present invention is a double-sided laminated heating wall panel, including a rear panel 1, a metal frame 2 and a front panel 3, the front end of the rear panel 1 is fixedly connected to the metal frame 2, and the front panel 3 The rear end is set in contact with the front end of the metal frame 2;
  • the rear end of the back plate 1 is fixedly equipped with a metal block 4, and the front end of the back plate 1 is provided with a special-shaped air bag 5 and a circular air bag 6, and the special-shaped air bag 5 and the circular air bag 6 are located in the metal frame 2.
  • Bolt holes are opened on the front of the front plate 3, and the bolt holes extend into the metal frame 2;
  • Both the front plate 3 and the rear plate 1 are metal;
  • the rear end of the rear plate 1 is provided with several circular grooves 11 .
  • the rear end of the metal block 4 is provided with an annular cavity 41, and the rear end of the metal block 4 forms a small cylinder through the annular cavity 41.
  • the rear end of the metal block 4 is fixedly equipped with an arc-shaped elastic rod 42, and the arc-shaped elastic rod 42 crosses the One end of the annular cavity 41 is fixedly connected with the small cylinder, and the other end of the arc-shaped elastic rod 42 is fixedly connected with the rear end surface of the metal block 4 .
  • the arc elastic rod 42 is arranged in an arc towards the rear end, and the arc surface of the arc elastic rod 42 is provided with a strip opening 43, and the middle width of the strip opening 43 is greater than the width at both ends;
  • the arc-shaped elastic rod 42 has an elastic setting.
  • the special-shaped airbag 5 is fixedly mounted on the front end of the rear plate 1, and the circular airbag 6 is located in the middle of the special-shaped airbag 5, and the circular airbag 6 is fixedly connected with the front end of the rear plate 1 and arranged.
  • the special-shaped airbag 5 is arranged in a ring, and the thickness of the sidewall of the special-shaped airbag 5 near the outer ring is greater than that of the sidewall near the inner ring, and the special-shaped airbag 5 is inflated and arranged;
  • the axis of the circular air bag 6 coincides with the axis of the special-shaped air bag 5, and the gas in the circular air bag 6 and the special-shaped air bag 5 is carbon dioxide.
  • the outer wall of the circular airbag 6 is arranged in an arc, and the outer wall of the circular airbag 6 is arranged in folds, and the outer wall of the circular airbag 6 is fixed with spikes 61 .
  • the outer wall of the special-shaped airbag 5 outer ring is provided with an annular groove 51, and an elastic stay cord 52 is stuck in the annular groove 51, and the elastic stay cord 52 has an elastic setting;
  • One side of the elastic stay cord 52 is fixedly connected with a tension spring 7, and one end of the tension spring 7 is fixedly connected with the inner wall of the metal frame 2, and the tension spring 7 is arranged tightly;
  • One section of the elastic stay cord 52 is fixedly equipped with a backing plate 53, the backing plate 53 is located on the opposite side of the tension spring 7, and one side of the backing plate 53 is fixedly equipped with a tapered thorn 54;
  • Resisting plate 53 is to fit special-shaped air bag 5 outer wall settings, butt plate 53 upper end is to set away from special-shaped air bag 5, conical thorn 54 is positioned at the part of butting plate 53 far away from special-shaped air bag 5, and conical thorn 54 tip is toward special-shaped air bag 5, The height of the conical thorn 54 is lower than the height of the circular air bag 6 .
  • the heating element in the metal frame 2 is used to generate heat, and then the heat is conducted to make the heating wallboard generate heat, so as to achieve an effect of increasing the indoor temperature;
  • the internal circuit components are in poor contact, causing arcs and rapid heat release, which makes the internal temperature higher, so it is easy to cause open flames and smoke inside, and the temperature continues to rise.
  • the gas inside the special-shaped air bag 5 and the round air bag 6 is continuously expanded, and the gas inside is carbon dioxide, so that the spikes 61 on the outer wall of the round air bag 6 contact the special-shaped air bag 5, so that the special-shaped air bag 5 can Rupture, so as to rapidly release the carbon dioxide inside, so that the oxygen in the heating wallboard is reduced, so the electronic components will not produce open flames in the absence of oxygen;
  • the elastic stay cord 52 at the outer end of the same special-shaped airbag 5 realizes rapid recovery under the condition of no stress, and is ejected at the outer end of the circular airbag 6, and is simultaneously pulled by the tension spring 7 to make it contact with the tension spring 7.
  • the contact plate 53 on the opposite side quickly contacts the circular airbag 6, which causes the circular airbag 6 to be squeezed by the conical thorns 54 and ruptures, so that a large amount of carbon dioxide is released to further enrich the carbon dioxide inside. ;
  • the heating wallboard is squeezed and installed with the wall surface, the wall surface is covered with viscous concrete, and then the metal block 4 at the rear end of the heating wallboard is squeezed against it, so that the metal block 4 is squeezed Press it into the concrete, and at the same time, the concrete is stuck in the annular cavity 41, and the arc-shaped elastic rod 42 is also pre-buried in the concrete, so as to achieve full contact with the concrete and less gaps.
  • it needs Knock the heating wallboard a few times, so that the curved elastic rod 42 can be recovered under the action of the vibration force, so that the curved elastic rod 42 can be inserted deeper;
  • a production process for double-sided laminated heating wallboards includes the following steps:
  • Step 1 Die-cast a circular groove 11 at the rear end of the back plate 1, and weld the front end of the back plate 1 to the metal frame 2;
  • Step 2 use a drilling machine to process threaded holes on the front end of the metal frame 2 and the front plate 3, and the threaded holes on the front plate 3 cooperate with the threaded holes on the metal frame 2;
  • Step 3 welding and milling the metal block 4 of the annular cavity 41 at the rear end of the rear plate 1, and welding the arc-shaped elastic rod 42 provided with the elongated opening 43 to the rear end of the metal block 4;
  • Step 4 fixing the special-shaped airbag 5 and the round airbag 6 on the front end of the back plate 1 through glue, and sticking the spikes 61 on the outer wall of the round airbag 6 with glue;
  • Step 5 sticking the backing plate 53 to the elastic stay cord 52 with glue, and at the same time, the other side of the elastic stay cord 52 is glued to the tension spring 7 through glue;
  • Step 6 welding the conical thorn 54 on the abutment plate 53, and welding the other end of the tension spring 7 to the inner wall of the metal frame 2;
  • Step 7 set the elastic pull cord 52 in the annular groove 51, and at the same time fix the front plate 3 and the metal frame 2 through bolts.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Finishing Walls (AREA)
  • Building Environments (AREA)

Abstract

本发明涉及发热墙板技术领域,且公开了一种双面叠合发热墙板及其生产工艺,包括后板、金属框架及前板,所述后板的前端与金属框架固定连接,所述前板的后端与金属框架的前端接触设置,所述后板的后端固定安装有金属抵块,所述后板的前端设有异形气囊和圆形气囊,所述异形气囊和圆形气囊位于金属框架内。本发明能够使异形气囊能够破裂,将内部的二氧化碳急剧的放出,使该发热墙板内的氧气减少,在不具有氧气的情况下电子元件不会产生明火,异形气囊及圆形气囊受到破裂时,会产生破裂的声响,那么能够提醒室内的人员注意,后端的圆形凹槽内部的空隙挤压进混泥土后,在大气压下呈现一个挤压的效果,那么有效的防止刚粘附的发热墙板掉落。

Description

一种双面叠合发热墙板及其生产工艺 技术领域
本发明涉及发热墙板技术领域,具体为一种双面叠合发热墙板及其生产工艺。
背景技术
目前的发热墙板一般内部采用发热板或者采用用碳纤维材料制作的电热板,使其夹持在两层墙板直接就能够制作完成,同时发热墙板大面积平面发热、升温快、效率高,表面温度可达70-80℃,电热转换率达99%以上,因此发热墙板使用的范围较广,销售量高;
但是在发热墙板在安装完成后,长时间的不更换以及缺少维护,使发热墙板内部的电路元件接触不良,产生电弧而急剧放热,使内部电路元件温度较高,容易产生明火及烟雾,具有一定产生危险的可能性,那么在此提出一种双面叠合发热墙板及其生产工艺。
发明内容
本发明的目的在于提供一种双面叠合发热墙板及其生产工艺,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种双面叠合发热墙板,包括后板、金属框架及前板,所述后板的前端与金属框架固定连接,所述前板的后端与金属框架的前端接触设置;
所述后板的后端固定安装有金属抵块,所述后板的前端设有异形气囊和圆形气囊,所述异形气囊和圆形气囊位于金属框架内。
优选的,所述前板的正面开设有螺栓孔,所述螺栓孔延伸至金属框架内;
所述前板及后板均为金属设置,在发热的情况下,有效的进行传动热量,同时受热程度大的情况下也会不会产生危险;
所述后板的后端设有若干个圆形凹槽,圆形凹槽内部的空隙挤压进混泥土后,实现与混泥土进行挤压,在大气压下呈现一个挤压的效果,防止发热墙板掉落。
优选的,所述金属抵块的后端开设有环形腔,所述金属抵块的后端通过环形腔形成一个小圆柱,所述金属抵块后端固定安装有弧形弹性杆,所述弧形弹性杆越过环形腔一端与小圆柱固定连接,所述弧形弹性杆的另一端与金属抵块的后端面固定连接,实现与墙面上的混泥土的接触面接增加,同时混泥土挤压进环形腔内,具有一个较好的吸附效果,同时隔绝空气,有效的防止发热板掉落。
优选的,所述弧形弹性杆设有若干个,若干所述弧形弹性杆围绕金属抵块的圆心呈均匀的圆周阵列分布;
所述弧形弹性杆呈朝后端的圆弧设置,所述弧形弹性杆的圆弧面上开设有长条开口,所述长条开口的中间宽度大于两端的宽度,能够粘附在混泥土内,各个部位均与混泥土进行接触,而设有长条开口能够不会对混泥土进行阻挡;
所述弧形弹性杆具有弹性设置,发热墙板进行敲击几下,使弧形弹性杆在震动力的作用下恢复,能够更深的插设在混泥土内。
优选的,所述异形气囊固定安装在后板的前端,所述圆形气囊位于异形气囊的中间,所述圆形气囊与后板的前端固定连接设置。
优选的,所述异形气囊呈圆环设置,所述异形气囊靠近外环的侧壁厚度大于靠近内环的侧壁,所述异形气囊呈膨胀设置;
所述圆形气囊的轴线与异形气囊的轴线重合设置,所述圆形气囊和异形气囊内的气体均为二氧化碳,破裂时,能够有效的将氧气挤压出去,有效防止产生危害。
优选的,所述圆形气囊的外壁呈圆弧设置,且圆形气囊的外壁呈褶皱设置,所述圆形气囊的外壁上固定安装有尖刺。
优选的,所述异形气囊外圈的外壁上开设有环形槽,所述环形槽内卡设有弹性拉绳,所述弹性拉绳具有弹性设置;
所述弹性拉绳的一侧固定连接有拉伸弹簧,所述拉伸弹簧的一端与金属框架的内壁固定连接,所述拉伸弹簧呈绷紧设置;
所述弹性拉绳一段上固定安装有抵板,所述抵板位于拉伸弹簧相对的一侧,所述抵板的一侧固定安装有锥形刺;
所述抵板呈贴合异形气囊外壁设置,所述抵板上端呈远离异形气囊设置,所述锥形刺位于抵板远离异形气囊的部分上,且锥形刺尖端朝向异形气囊,所述锥形刺的高度低于圆形气囊的高度。
一种双面叠合发热墙板的生产工艺,包括如下步骤:
步骤一,将后板后端压铸出圆形凹槽,并且在后板前端与金属框架进行焊接;
步骤二,使用钻床将金属框架及前板的前端进行加工出螺纹孔,且前板上的螺纹孔与金属框架上的螺纹孔相互配合;
步骤三,在后板的后端焊接铣出环形腔的金属抵块,并且将设有长条开口的弧形弹性杆焊接在金属抵块后端;
步骤四,将异形气囊及圆形气囊通过胶水固定安装在后板的前端,同时圆形气囊的外壁上通过胶水将尖刺进行粘黏住;
步骤五,将抵板通过胶水粘黏在弹性拉绳上,同时弹性拉绳的另一侧通过胶水与拉伸弹簧进行粘连;
步骤六,将锥形刺焊接在抵板上,同时将拉伸弹簧的另一端与金属框架的内壁进行焊接;
步骤七,将弹性拉绳套设在环形槽内,同时将前板通过螺栓与金属框架进行固定。
与现有技术相比,本发明的有益效果是:
(1)、本发明通过设置异形气囊及圆形气囊,在长时间的使用状态下,内部的电路元件接触不良,产生电弧而急剧放热,使内部温度较高,在温度不断升高的情况下使异形气囊及圆形气囊内部的气体不断的膨胀,内部的气体为二氧化碳,圆形气囊外壁上的尖刺接触到异形气囊,那么使异形气囊能够破裂,将内部的二氧化碳急剧的放出,使该发热墙板内的氧气减少,在不具有氧气的情况下电子元件不会产生明火,达到一个较好的安全效果。
(2)、本发明通过设置拉伸弹簧、弹性拉绳及抵板,异形气囊外端的弹性拉绳在不受力的情况下,实现迅速的恢复,弹射在圆形气囊的外端,同时受到拉伸弹簧的拉力下,与拉伸弹簧相对的一侧的抵板迅速的接触圆形气囊,导致圆形气囊受到锥形刺的挤压,而产生破裂,将大量的二氧化碳放出,使内部的二氧化碳进一步的浓郁吗,那么使明火不容易产生。
(3)、本发明通过设置异形气囊及圆形气囊,在异形气囊及圆形气囊受到破裂时,会产生破裂的声响,那么能够提醒室内的人员注意,实现对该发热墙板的维修。
(4)、本发明通过设置金属抵块,发热墙板进行与墙面挤压安装时,墙面上涂满粘稠的混泥土,发热墙板后端的金属抵块与其进行挤压,金属抵块挤压到混泥土内,混泥土卡设在环形腔内,弧形弹性杆也预埋在混泥土内,较少空隙,贴设完成之后需要将该发热墙板进行敲击几下,使弧形弹性杆在震动力的作用下恢复,使弧形弹性杆能够插设的更深,达到安装更加牢固的效果。
(5)、本发明通过设置圆形凹槽,后端的圆形凹槽内部的空隙挤压进混泥土后,会实现与混泥土进行挤压,达到将混泥土进行贴合,在大气压下呈现一个挤压的效果,那么有效的防止刚粘附的发热墙板掉落,在混泥土还未干的情况下,防止掉落。
附图说明
图1为本发明整体结构示意图;
图2为本发明后视结构示意图;
图3为本发明图2中A的局部放大图;
图4为本发明内部结构示意图;
图5为本发明异形气囊及圆形气囊结构示意图;
图6为本发明异形气囊半剖结构示意图;
图7为本发明抵板结构示意图;
图8为本发明工艺流程框图。
图中:1、后板;11、圆形凹槽;2、金属框架;3、前板;4、金属抵块;41、环形腔;42、弧形弹性杆;43、长条开口;5、异形气囊;51、环形槽;52、弹性拉绳;53、抵板;54、锥形刺;6、圆形气囊;61、尖刺;7、拉伸弹簧。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,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,都属于本发明保护的范围。
实施例一:
如图1-7所示,本发明为一种双面叠合发热墙板,包括后板1、金属框架2及前板3,后板1的前端与金属框架2固定连接,前板3的后端与金属框架2的前端接触设置;
后板1的后端固定安装有金属抵块4,后板1的前端设有异形气囊5和圆形气囊6,异形气囊5和圆形气囊6位于金属框架2内。
前板3的正面开设有螺栓孔,螺栓孔延伸至金属框架2内;
前板3及后板1均为金属设置;
后板1的后端设有若干个圆形凹槽11。
金属抵块4的后端开设有环形腔41,金属抵块4的后端通过环形腔41形成一个小圆柱,金属抵块4后端固定安装有弧形弹性杆42,弧形弹性杆42越过环形腔41一端与小圆柱固定连接,弧形弹性杆42的另一端与金属抵块4的后端面固定连接。
弧形弹性杆42设有若干个,若干弧形弹性杆42围绕金属抵块4的圆心呈均匀的圆周阵列分布;
弧形弹性杆42呈朝后端的圆弧设置,弧形弹性杆42的圆弧面上开设有长条开口43,长条开口43的中间宽度大于两端的宽度;
弧形弹性杆42具有弹性设置。
异形气囊5固定安装在后板1的前端,圆形气囊6位于异形气囊5的中间,圆形气囊6与后板1的前端固定连接设置。
异形气囊5呈圆环设置,异形气囊5靠近外环的侧壁厚度大于靠近内环的侧壁,异形气囊5呈膨胀设置;
圆形气囊6的轴线与异形气囊5的轴线重合设置,圆形气囊6和异形气囊5内的气体均为二氧化碳。
圆形气囊6的外壁呈圆弧设置,且圆形气囊6的外壁呈褶皱设置,圆形气囊6的外壁上固定安装有尖刺61。
异形气囊5外圈的外壁上开设有环形槽51,环形槽51内卡设有弹性拉绳52,弹性拉绳52具有弹性设置;
弹性拉绳52的一侧固定连接有拉伸弹簧7,拉伸弹簧7的一端与金属框架2的内壁固定连接,拉伸弹簧7呈绷紧设置;
弹性拉绳52一段上固定安装有抵板53,抵板53位于拉伸弹簧7相对的一侧,抵板53的一侧固定安装有锥形刺54;
抵板53呈贴合异形气囊5外壁设置,抵板53上端呈远离异形气囊5设置,锥形刺54位于抵板53远离异形气囊5的部分上,且锥形刺54尖端朝向异形气囊5,锥形刺54的高度低于圆形气囊6的高度。
在使用的过程中,通过金属框架2内的发热元件进行发热,那么将热量进行传导,使发热墙板进行发热,那么达到一个提高室内温度的效果;
同时在长时间的使用状态下,内部的电路元件接触不良,产生电弧而急剧放热,使内部温度较高,那么容易使内部的产生明火及烟雾,同时温度不断的升高,那么在温度不断升高的情况下使异形气囊5及圆形气囊6内部的气体不断的膨胀,内部的气体为二氧化碳,使圆形气囊6外壁上的尖刺61接触到异形气囊5,那么使异形气囊5能够破裂,达到将内部的二氧化碳急剧的放出,使该发热墙板内的氧气减少,那么在不具有氧气的情况下电子元件不会产生明火;
相同异形气囊5外端的弹性拉绳52在不受力的情况下,实现迅速的恢复,将弹射在圆形气囊6的外端,同时受到拉伸弹簧7的拉力下,使与拉伸弹簧7相对的一侧的抵板53迅速的接触圆形气囊6,那么导致圆形气囊6受到锥形刺54的挤压,而产生破裂,那么相同将大量的二氧化碳放出,使内部的二氧化碳进一步的浓郁;
同时在异形气囊5及圆形气囊6受到破裂时,会产生破裂的声响,那么能够提醒室内的人员注意;
最后在该发热墙板进行与墙面挤压安装时,将墙面上涂满粘稠的混泥土,然后将该发热墙板后端的金属抵块4与其进行挤压,使金属抵块4挤压到混泥土内,同时混泥土卡设在环形腔41内,而弧形弹性杆42也预埋在混泥土内,那么实现与混泥土的充分接触,较少空隙,在贴设完成之后需要将该发热墙板进行敲击几下,那么能够使弧形弹性杆42在震动力的作用下恢复,使弧形弹性杆42能够插设的更深;
同时后端的圆形凹槽11内部的空隙挤压进混泥土后,会实现与混泥土进行挤压,达到将混泥土进行贴合,在大气压下呈现一个挤压的效果,那么有效的防止刚粘附的发热墙板掉落。
实施例二:
如图8所示,一种双面叠合发热墙板的生产工艺,包括如下步骤:
步骤一,将后板1后端压铸出圆形凹槽11,并且在后板1前端与金属框架2进行焊接;
步骤二,使用钻床将金属框架2及前板3的前端进行加工出螺纹孔,且前板3上的螺纹孔与金属框架2上的螺纹孔相互配合;
步骤三,在后板1的后端焊接铣出环形腔41的金属抵块4,并且将设有长条开口43的弧形弹性杆42焊接在金属抵块4后端;
步骤四,将异形气囊5及圆形气囊6通过胶水固定安装在后板1的前端,同时圆形气囊6的外壁上通过胶水将尖刺61进行粘黏住;
步骤五,将抵板53通过胶水粘黏在弹性拉绳52上,同时弹性拉绳52的另一侧通过胶水与拉伸弹簧7进行粘连;
步骤六,将锥形刺54焊接在抵板53上,同时将拉伸弹簧7的另一端与金属框架2的内壁进行焊接;
步骤七,将弹性拉绳52套设在环形槽51内,同时将前板3通过螺栓与金属框架2进行固定。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (2)

  1. 一种双面叠合发热墙板,包括后板(1)、金属框架(2)及前板(3),其特征在于:所述后板(1)的前端与金属框架(2)固定连接,所述前板(3)的后端与金属框架(2)的前端接触设置;
    所述后板(1)的后端固定安装有金属抵块(4),所述后板(1)的前端设有异形气囊(5)和圆形气囊(6),所述异形气囊(5)和圆形气囊(6)位于金属框架(2)内;
    所述前板(3)的正面开设有螺栓孔,所述螺栓孔延伸至金属框架(2)内;
    所述前板(3)及后板(1)均为金属设置;
    所述后板(1)的后端设有若干个圆形凹槽(11);
    所述金属抵块(4)的后端开设有环形腔(41),所述金属抵块(4)的后端通过环形腔(41)形成一个小圆柱,所述金属抵块(4)后端固定安装有弧形弹性杆(42),所述弧形弹性杆(42)越过环形腔(41)一端与小圆柱固定连接,所述弧形弹性杆(42)的另一端与金属抵块(4)的后端面固定连接;
    所述弧形弹性杆(42)设有若干个,若干所述弧形弹性杆(42)围绕金属抵块(4)的圆心呈均匀的圆周阵列分布;
    所述弧形弹性杆(42)呈朝后端的圆弧设置,所述弧形弹性杆(42)的圆弧面上开设有长条开口(43),所述长条开口(43)的中间宽度大于两端的宽度;
    所述弧形弹性杆(42)具有弹性设置;
    所述异形气囊(5)固定安装在后板(1)的前端,所述圆形气囊(6)位于异形气囊(5)的中间,所述圆形气囊(6)与后板(1)的前端固定连接设置;
    所述异形气囊(5)呈圆环设置,所述异形气囊(5)靠近外环的侧壁厚度大于靠近内环的侧壁,所述异形气囊(5)呈膨胀设置;
    所述圆形气囊(6)的轴线与异形气囊(5)的轴线重合设置,所述圆形气囊(6)和异形气囊(5)内的气体均为二氧化碳;
    所述圆形气囊(6)的外壁呈圆弧设置,且圆形气囊(6)的外壁呈褶皱设置,所述圆形气囊(6)的外壁上固定安装有尖刺(61);
    所述异形气囊(5)外圈的外壁上开设有环形槽(51),所述环形槽(51)内卡设有弹性拉绳(52),所述弹性拉绳(52)具有弹性设置;
    所述弹性拉绳(52)的一侧固定连接有拉伸弹簧(7),所述拉伸弹簧(7)的一端与金属框架(2)的内壁固定连接,所述拉伸弹簧(7)呈绷紧设置;
    所述弹性拉绳(52)一段上固定安装有抵板(53),所述抵板(53)位于拉伸弹簧(7)相对的一侧,所述抵板(53)的一侧固定安装有锥形刺(54);
    所述抵板(53)呈贴合异形气囊(5)外壁设置,所述抵板(53)上端呈远离异形气囊(5)设置,所述锥形刺(54)位于抵板(53)远离异形气囊(5)的部分上,且锥形刺(54)尖端朝向异形气囊(5),所述锥形刺(54)的高度低于圆形气囊(6)的高度。
  2. 一种双面叠合发热墙板的生产工艺,其特征在于,应用于如权利要求1所述的一种双面叠合发热墙板中,包括如下步骤:
    步骤一,将后板(1)后端压铸出圆形凹槽(11),并且在后板(1)前端与金属框架(2)进行焊接;
    步骤二,使用钻床将金属框架(2)及前板(3)的前端进行加工出螺纹孔,且前板(3)上的螺纹孔与金属框架(2)上的螺纹孔相互配合;
    步骤三,在后板(1)的后端焊接铣出环形腔(41)的金属抵块(4),并且将设有长条开口(43)的弧形弹性杆(42)焊接在金属抵块(4)后端;
    步骤四,将异形气囊(5)及圆形气囊(6)通过胶水固定安装在后板(1)的前端,同时圆形气囊(6)的外壁上通过胶水将尖刺(61)进行粘黏住;
    步骤五,将抵板(53)通过胶水粘黏在弹性拉绳(52)上,同时弹性拉绳(52)的另一侧通过胶水与拉伸弹簧(7)进行粘连;
    步骤六,将锥形刺(54)焊接在抵板(53)上,同时将拉伸弹簧(7)的另一端与金属框架(2)的内壁进行焊接;
    步骤七,将弹性拉绳(52)套设在环形槽(51)内,同时将前板(3)通过螺栓与金属框架(2)进行固定。
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