WO2015131758A1 - 用于板式换热器的热交换板以及具有该热交换板的板式换热器 - Google Patents

用于板式换热器的热交换板以及具有该热交换板的板式换热器 Download PDF

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Publication number
WO2015131758A1
WO2015131758A1 PCT/CN2015/073007 CN2015073007W WO2015131758A1 WO 2015131758 A1 WO2015131758 A1 WO 2015131758A1 CN 2015073007 W CN2015073007 W CN 2015073007W WO 2015131758 A1 WO2015131758 A1 WO 2015131758A1
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Prior art keywords
plate
heat exchange
plane
heat exchanger
transition
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PCT/CN2015/073007
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English (en)
French (fr)
Inventor
魏文建
张志锋
李华
马文勇
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丹佛斯微通道换热器(嘉兴)有限公司
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Application filed by 丹佛斯微通道换热器(嘉兴)有限公司 filed Critical 丹佛斯微通道换热器(嘉兴)有限公司
Priority to US15/122,246 priority Critical patent/US20170067695A1/en
Priority to EP15758798.1A priority patent/EP3115731B1/en
Publication of WO2015131758A1 publication Critical patent/WO2015131758A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F3/00Plate-like or laminated elements; Assemblies of plate-like or laminated elements
    • F28F3/02Elements or assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with recesses, with corrugations
    • F28F3/04Elements or assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with recesses, with corrugations the means being integral with the element
    • F28F3/042Elements or assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with recesses, with corrugations the means being integral with the element in the form of local deformations of the element
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F3/00Plate-like or laminated elements; Assemblies of plate-like or laminated elements
    • F28F3/02Elements or assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with recesses, with corrugations
    • F28F3/025Elements or assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with recesses, with corrugations the means being corrugated, plate-like elements

Definitions

  • the present invention relates to a heat exchanger, particularly a heat exchange plate for a plate heat exchanger and a plate heat exchanger having the heat exchange plate.
  • the heat exchange plate of the plate heat exchanger has a narrow top portion of the elongated ribs, and the solder joint structure causes stress concentration, resulting in low heat exchanger strength.
  • An object of the present invention is to provide a heat exchange plate for a plate heat exchanger and a plate heat exchanger having the heat exchange plate, thereby increasing the size of the welded portion or the receiving portion, thereby increasing the plate heat exchanger The strength of the heat exchange plate.
  • Another object of the present invention is to provide a heat exchange plate for a plate heat exchanger and a plate heat exchanger having the same, thereby improving the strength of the heat exchange plate of the plate heat exchanger while improving the lateral direction of the fluid distribution.
  • a heat exchange plate for a plate heat exchanger, the heat exchange plate comprising: a heat exchange portion; at least one side of the heat exchange portion from a plate plane to a plate plane a plurality of protruding protrusions, the plurality of protrusions being arranged along the plurality of lines; and a transition portion between the adjacent protrusions arranged along one of the lines protruding toward the at least one side of the plane of the board, The size of the top of each of the protrusions in the direction perpendicular to the line is larger than the size of the top of the transition.
  • the distance of the top of the projection from the plane of the panel is greater than or equal to the distance of the top of the transition from the plane of the panel.
  • the top of the projection is substantially flat.
  • the transition portion has a step between the top of the transition portion and the plane of the plate when viewed in a direction perpendicular to the line.
  • the plurality of lines are substantially V-shaped, W-shaped or Waveform pattern setting.
  • the distance of the top of the protrusion from the plane of the plate is greater than the distance of the top of the transition from the plane of the plate, and the distance of the top of the protrusion from the top of the transition is less than or equal to the distance of the top of the transition from the plane of the plate distance.
  • the projections arranged along one of the lines and the projections in the transition are joined by respective transitions and together with the transition form an integral rib.
  • the top of the projection is substantially circular.
  • the projections arranged along one of the lines and the projections in the transition portion are connected by respective transition portions, and together with the transition portion form an integral ridge, which protrudes toward one side of the plane of the plate.
  • the strips are alternately arranged with the ridges projecting to the other side of the plane of the plate opposite the one side.
  • the protrusions in the ridges protruding toward one side of the plane of the plate and the protrusions in the ridges protruding from the other side of the adjacent plane of the plate are mutually in the longitudinal direction of the ridges Staggered.
  • a plate heat exchanger comprising: the above-described heat exchange plate for a plate heat exchanger.
  • the strength of the heat exchange plate of the plate heat exchanger is improved.
  • the present invention increases the welding area as compared with the herringbone pattern heat exchanger, and at the same time changes the transition between the solder joint and the bottom surface to achieve the purpose of increasing the strength. Furthermore, the present invention has transition grooves between the two rows of pads to facilitate lateral fluid distribution as compared to spot wave plates. According to the technical solution of the present invention, for the transition between the two solder joints, the distance between the top of the protrusion and the plane of the board is greater than the distance of the top of the transition portion from the plane of the board, and the transition portion is appropriately shortened, and the low pressure drop can be appropriately adjusted. .
  • the welded portion or the receiving portion is circular, and the two plates can be sufficiently welded or received, and the welded portion or the receiving portion of the herringbone pattern is diamond-shaped, which is disadvantageous for stress distribution.
  • FIG. 1 is a partially enlarged schematic perspective view of a heat exchange plate for a plate heat exchanger according to a first embodiment of the present invention
  • FIG. 2 is a partially enlarged schematic plan view of a heat exchange plate for a plate heat exchanger according to a first embodiment of the present invention
  • FIG. 3 is a line AA of FIG. 2 for a heat exchange plate for a plate heat exchanger according to a first embodiment of the present invention. a partial enlarged schematic cross-sectional view;
  • Figure 4 is a partially enlarged schematic cross-sectional view along line BB of Figure 2 of a heat exchange plate for a plate heat exchanger according to a first embodiment of the present invention
  • Figure 5 is a partially enlarged schematic perspective view of a heat exchange plate for a plate heat exchanger according to a second embodiment of the present invention.
  • Figure 6 is a partially enlarged plan view showing a heat exchange plate for a plate heat exchanger according to a second embodiment of the present invention.
  • Figure 7 is a partially enlarged schematic cross-sectional view along line AA of Figure 6 of a heat exchange plate for a plate heat exchanger according to a second embodiment of the present invention.
  • Figure 8 is a partially enlarged schematic cross-sectional view along line BB of Figure 6 of a heat exchange plate for a plate heat exchanger according to a second embodiment of the present invention
  • Figure 9 is a partially enlarged schematic perspective view of a heat exchange plate for a plate heat exchanger according to a third embodiment of the present invention.
  • Figure 10 is a partially enlarged plan view showing a heat exchange plate for a plate heat exchanger according to a third embodiment of the present invention.
  • Figure 11 is a partially enlarged schematic cross-sectional view along line AA of Figure 10 of a heat exchange plate for a plate heat exchanger according to a third embodiment of the present invention.
  • Figure 12 is a partially enlarged schematic cross-sectional view along line BB of Figure 10 of a heat exchange plate for a plate heat exchanger according to a third embodiment of the present invention.
  • Figure 13 is a partially enlarged schematic perspective view of a heat exchange plate for a plate heat exchanger according to a fourth embodiment of the present invention.
  • a plate heat exchanger includes: a heat exchange plate and an end plate that form a first fluid heat exchange passage and a second fluid heat exchange passage.
  • the end plates are disposed on the outer side of the heat exchange plates.
  • the plate heat exchanger further includes a fluid inlet and a fluid outlet.
  • the heat exchange plates are stacked together, thereby alternately forming the first fluid heat exchange passage and the second fluid heat exchange passage in the stacking direction. There is only one heat exchange plate between at least two adjacent fluid heat exchange channels.
  • the plate heat exchanger can be any known plate heat exchanger.
  • a heat exchange plate according to an embodiment of the present invention is specifically described below.
  • a heat exchange plate for a plate heat exchanger includes a heat exchange portion 10 which constitutes a heat exchange portion of a fluid of a plate heat exchanger.
  • the heat exchange plate further includes a plurality of protrusions 14 projecting from one side of the heat exchange portion 10 from the plate plane 12 toward the plate plane 12, the plurality of protrusions 14 being arranged along a plurality of lines, and a part of the plurality of protrusions 14 It can be used as a welded portion or a receiving portion for welding or receiving the heat exchange plate and the adjacent heat exchange plate.
  • the plurality of lines are disposed substantially in a V-shaped, W-shaped or wavy pattern or in other suitable patterns when viewed toward the plane of the plate.
  • the plate plane 12 is the plane in which the heat exchange plates are located before the heat exchange plates are not stamped.
  • the heat exchange plate further includes a transition portion 16 projecting toward the one side of the plate plane 12 between adjacent protrusions 14 arranged along one of the lines, and
  • the size of the top of each of the projections 14 in the direction perpendicular to the line is larger than the size of the top of the transition portion 16.
  • the projections 14 arranged along one of said lines and the projections 14 in the transition portion 16 are joined by respective transitions 16 and together with the transitions form an integral rib.
  • the projections in one of the ribs and the projections in the adjacent ribs may be offset from each other in the longitudinal direction of the ribs.
  • the strength of the heat exchange plate of the plate heat exchanger is mentioned by increasing the size of the welded portion or the receiving portion.
  • the distance E of the top of the projection 14 from the plane of the panel 12 is greater than or equal to the distance e of the top of the transition portion 16 from the plane of the panel 12.
  • the top of the projection 14 can be substantially flat. For example, it can be circular.
  • the distance E of the top of the protrusion 14 from the plane 12 of the board is greater than the distance e of the top of the transition portion 16 from the plane 12 of the board, and the top of the protrusion 14 is separated from the transition portion.
  • the distance Ee at the top of the 16 is less than or equal to the distance E of the top of the transition 16 from the plane 12 of the plate.
  • Embodiment 2 according to the present invention is different from the above embodiment in that the transition portion 16 is provided with a stepped portion.
  • the transition portion 16 has a step 18 between the top of the transition portion 16 and the plate plane 12 when viewed in a direction perpendicular to the line.
  • the step 18 is disposed on both sides of the symmetry plane of the transition portion 16, such that the cross-sectional shape of the transition portion 16 is substantially "convex".
  • the distance E of the top of the projection 14 from the plane of the panel 12 is greater than or equal to the distance e2 of the top of the transition portion 16 from the plane of the panel 12.
  • the distance e1 of the top of the step 18 from the plate plane 12 is less than the distance e2 of the top of the transition portion 16 from the plate plane 12 and the distance E of the top of the projection 14 from the plate plane 12.
  • Embodiment 3 according to the present invention is different from Embodiment 2 described above in that the top of the transition portion and the top of the projection 14 are substantially in one plane.
  • the distance E of the top of the projection 14 from the plane of the plate 12 is equal to the distance e2 of the top of the transition portion 16 from the plane of the plate 12.
  • the distance e1 of the top of the step 18 from the plate plane 12 is less than the distance e2 of the top of the transition portion 16 from the plate plane 12 and the distance E of the top of the projection 14 from the plate plane 12.
  • the embodiment 4 according to the present invention is different from the above embodiment in that the projections 14 arranged along one of the lines and the projections 14 in the transition portion 16 are connected by the respective transition portions 16 and together with the transition portion 16 An integral ridge is formed, and the ridge protruding toward one side of the plane of the plate is alternately disposed with the ridge protruding toward the other side of the plane of the plate opposite to the one side.
  • the ridge protruding toward one side of the plane of the plate is alternately disposed with the ridge protruding toward the other side of the plane of the plate opposite to the one side.
  • the projections 14 in the ridges projecting to one side of the plane of the plate and the projections 14 in the ribs projecting from the other side of the adjacent plane of the plate are mutually displaceable in the longitudinal direction of the ridges.
  • the present invention provides a heat exchange plate for a plate heat exchanger comprising: a heat exchange portion; at least one side of the heat exchange portion from a plate plane to a plate plane (eg, one side or a plurality of protruding protrusions, the plurality of protrusions are arranged along the plurality of lines; and protruding between the adjacent protrusions arranged along one of the lines toward the at least one side of the plane of the board
  • the transition portion has a size of a top of each of the protrusions in a direction perpendicular to the line that is larger than a size of a top portion of the transition portion.
  • a V-shaped, W-shaped or wavy pattern is employed and the distance from the top of the convex portion to the plane of the plate is greater than or equal to the distance from the top of the transition portion to the plane of the plate, and the distance from the top of the convex portion to the top of the transition portion is less than Or equal to the distance of the top of the transition from the plane of the board.
  • the strength of the heat exchange plate is improved by using an enlarged welded portion or a receiving portion.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Abstract

一种用于板式换热器的热交换板,热交换板包括:热交换部分(10);在热交换部分(10)从板平面(12)向板平面(12)的至少一侧突出的多个凸起(14),多个凸起(14)沿多条线排列;以及在沿一条线排列的相邻的凸起(14)之间的、向板平面(12)的至少一侧突出的过渡部(16),在与线垂直的方向上每一个凸起(14)的顶部的尺寸大于过渡部(16)的顶部的尺寸。通过使焊接部或者承接部的尺寸加大,提高了板式换热器的热交换板的强度。

Description

用于板式换热器的热交换板以及具有该热交换板的板式换热器
本申请要求于2014年3月7日递交的、申请号为201410081940.8、发明名称为“用于板式换热器的热交换板以及具有该热交换板的板式换热器”的中国专利申请的优先权,其全部内容通过引用并入本申请中。
技术领域
本发明涉及一种换热器,特别是用于板式换热器的热交换板以及具有该热交换板的板式换热器。
背景技术
现有技术中,板式换热器的热交换板由于细长的凸条的顶部较窄,且焊点结构会导致应力集中,致使换热器强度低。
发明内容
本发明的一个目的是提供一种用于板式换热器的热交换板以及具有该热交换板的板式换热器,通过使焊接部或承接部的尺寸加大,由此提高板式换热器的热交换板的强度。
本发明的另一个目的是提供一种用于板式换热器的热交换板以及具有该热交换板的板式换热器,由此提高板式换热器的热交换板的强度同时改善流体的横向分配。
根据本发明的一方面,本发明提供了一种用于板式换热器的热交换板,该热交换板包括:热交换部分;在所述热交换部分从板平面向板平面的至少一侧突出的多个凸起,多个凸起沿多条线排列;以及在沿一条所述线排列的相邻的凸起之间的、向板平面的所述至少一侧突出的过渡部,在与所述线垂直的方向上每一个凸起的顶部的尺寸大于过渡部的顶部的尺寸。
根据本发明的一方面,凸起的顶部距离板平面的距离大于或等于过渡部的顶部距离板平面的距离。
根据本发明的一方面,凸起的顶部大致是平坦的。
根据本发明的一方面,在与所述线垂直的方向上观看时,过渡部具有在过渡部的顶部与板平面之间的台阶。
根据本发明的一方面,在朝向所述板平面观看时,多条线大致以V形、W形或 波形图案设置。
根据本发明的一方面,凸起的顶部距离板平面的距离大于过渡部的顶部距离板平面的距离,并且凸起的顶部距离过渡部的顶部的距离小于或等于过渡部的顶部距离板平面的距离。
根据本发明的一方面,沿一条所述线排列的凸起和过渡部中的凸起通过相应的过渡部连接,并与过渡部一起形成整体的凸条。
根据本发明的一方面,凸起的顶部大致是圆形的。
根据本发明的一方面,沿一条所述线排列的凸起和过渡部中的凸起通过相应的过渡部连接,并与过渡部一起形成整体的凸条,向板平面的一侧突出的凸条与向板平面的与所述一侧相对的另一侧突出的凸条交替设置。
根据本发明的一方面,向板平面的一侧突出的凸条中的凸起与相邻的向板平面的所述另一侧突出的凸条中的凸起在凸条的纵向方向上相互错开。
根据本发明的另一方面,本发明提供了一种板式换热器,该板式换热器包括:上述的用于板式换热器的热交换板。
通过使焊接部或者承接部的尺寸加大,由此提高了板式换热器的热交换板的强度。
此外,与人字形图案的换热器相比,本发明增大了焊接面积,同时改变焊点与底面之间的过渡,达到增加强度的目的。再者,与点波式板片相比,本发明在两排焊点之间具有过渡槽,以促进横向流体分配。根据本发明的技术方案,对于两个焊点之间的过渡部,凸起的顶部距离板平面的距离大于过渡部的顶部距离板平面的距离,过渡部适当减矮,可以适当调低压降。
此外,根据本发明的技术方案,焊接部或承接部是圆形的,两张板片之间可以充分焊接或承接,而人字图案的焊接部或承接部是菱形的,不利于应力分布。
附图说明
图1为根据本发明第一实施例的用于板式换热器的热交换板的局部放大示意立体图;
图2为根据本发明第一实施例的用于板式换热器的热交换板的局部放大示意俯视图;
图3为根据本发明第一实施例的用于板式换热器的热交换板的沿图2中的线AA 的局部放大示意剖视图;
图4为根据本发明第一实施例的用于板式换热器的热交换板的沿图2中的线BB的局部放大示意剖视图;
图5为根据本发明第二实施例的用于板式换热器的热交换板的局部放大示意立体图;
图6为根据本发明第二实施例的用于板式换热器的热交换板的局部放大示意俯视图;
图7为根据本发明第二实施例的用于板式换热器的热交换板的沿图6中的线AA的局部放大示意剖视图;
图8为根据本发明第二实施例的用于板式换热器的热交换板的沿图6中的线BB的局部放大示意剖视图;
图9为根据本发明第三实施例的用于板式换热器的热交换板的局部放大示意立体图;
图10为根据本发明第三实施例的用于板式换热器的热交换板的局部放大示意俯视图;
图11为根据本发明第三实施例的用于板式换热器的热交换板的沿图10中的线AA的局部放大示意剖视图;
图12为根据本发明第三实施例的用于板式换热器的热交换板的沿图10中的线BB的局部放大示意剖视图;以及
图13为根据本发明第四实施例的用于板式换热器的热交换板的局部放大示意立体图。
具体实施方式
下面结合附图及具体实施方式对本发明做进一步说明。
根据本发明的实施例的板式换热器包括:形成第一流体换热通道和第二流体换热通道的热交换板和端板。端板设置在热交换板的外侧面上。板式换热器还包括:流体入口、流体出口。热交换板层叠在一起,由此在层叠方向上交替地形成第一流体换热通道和第二流体换热通道。至少两个相邻的流体换热通道之间只设有一张热交换板。板式换热器可以是任何已知的板式换热器。
下面具体描述根据本发明的实施例的热交换板。
实施例1
如图1至4所示,根据本发明实施例的用于板式换热器的热交换板包括热交换部分10,热交换部分10构成板式换热器的流体的热交换部分。热交换板还包括在所述热交换部分10从板平面12向板平面12的一侧突出的多个凸起14,多个凸起14沿多条线排列,并且多个凸起14的一部分可以作为所述热交换板与相邻热交换板焊接或承接的焊接部或者承接部。在朝向所述板平面观看时,多条线大致以V形、W形或波形图案设置或以其它合适的图案设置。板平面12是热交换板没有被冲压之前热交换板所在的平面。
如图1至4所示,热交换板还包括在沿一条所述线排列的相邻的凸起14之间的、向板平面12的所述一侧突出的过渡部16,在与所述线垂直的方向上每一个凸起14的顶部的尺寸大于过渡部16的顶部的尺寸。沿一条所述线排列的凸起14和过渡部16中的凸起14通过相应的过渡部16连接,并与过渡部一起形成整体的凸条。一个凸条中的凸起与相邻的凸条中的凸起在凸条的纵向方向上可以相互错开。通过使焊接部或者承接部的尺寸加大,由此提到了板式换热器的热交换板的强度。
如图4所示,凸起14的顶部距离板平面12的距离E大于或等于过渡部16的顶部距离板平面12的距离e。凸起14的顶部可以是大致平坦的。例如可以是圆形的。
如图4所示,根据本发明的一种实施方式,凸起14的顶部距离板平面12的距离E大于过渡部16的顶部距离板平面12的距离e,并且凸起14的顶部距离过渡部16的顶部的距离E-e小于或等于过渡部16的顶部距离板平面12的距离E。
实施例2
根据本发明的实施例2与上述实施例的不同之处是过渡部16设有台阶部分。
如图5至8所示,在与所述线垂直的方向上观看时,过渡部16具有在过渡部16的顶部与板平面12之间的台阶18。台阶18设置在过渡部16的对称面的两侧,使过渡部16的横截面形状大致呈“凸”字形。
如图7所示,凸起14的顶部距离板平面12的距离E大于或等于过渡部16的顶部距离板平面12的距离e2。台阶18的顶部距离板平面12的距离e1小于过渡部16的顶部距离板平面12的距离e2以及凸起14的顶部距离板平面12的距离E。
通过采用台阶18,可以进一步提高换热性能
实施例3
根据本发明的实施例3与上述实施例2的不同之处是过渡部的顶部与凸起14的顶部大致在一个平面中。
如图9至12所示,凸起14的顶部距离板平面12的距离E等于过渡部16的顶部距离板平面12的距离e2。台阶18的顶部距离板平面12的距离e1小于过渡部16的顶部距离板平面12的距离e2以及凸起14的顶部距离板平面12的距离E。
实施例4
根据本发明的实施例4与上述实施例的不同之处是:沿一条所述线排列的凸起14和过渡部16中的凸起14通过相应的过渡部16连接,并与过渡部16一起形成整体的凸条,向板平面的一侧突出的凸条与向板平面的与所述一侧相对的另一侧突出的凸条交替设置。向板平面的一侧突出的凸条与向板平面的与所述一侧相对的另一侧突出的凸条交替设置。向板平面的一侧突出的凸条中的凸起14与相邻的向板平面的所述另一侧突出的凸条中的凸起14在凸条的纵向方向上可相互错开。
需要说明的是,上述实施例1-3中的技术特征和方案可以应用于实施例4。
因此,本发明提供了一种用于板式换热器的热交换板,该热交换板包括:热交换部分;在所述热交换部分从板平面向板平面的至少一侧(例如一侧或相对的两侧)突出的多个凸起,多个凸起沿多条线排列;以及在沿一条所述线排列的相邻的凸起之间的、向板平面的所述至少一侧突出的过渡部,在与所述线垂直的方向上每一个凸起的顶部的尺寸大于过渡部的顶部的尺寸。
本发明中采用了V形、W形或波形图案并采用凸起的顶部距离板平面的距离大于或等于过渡部的顶部距离板平面的距离,以及凸起的顶部距离过渡部的顶部的距离小于或等于过渡部的顶部距离板平面的距离。由此提高了热交换板的强度并改善了流体的扩散能力,由此节省了材料成本,提到了换热性能。
此外,通过采用增大的焊接部或者承接部,提高了热交换板的强度。

Claims (11)

  1. 一种用于板式换热器的热交换板,包括:
    热交换部分;
    在所述热交换部分从板平面向板平面的至少一侧突出的多个凸起,多个凸起沿多条线排列;以及
    在沿一条所述线排列的相邻的凸起之间的、向板平面的所述至少一侧突出的过渡部,在与所述线垂直的方向上每一个凸起的顶部的尺寸大于过渡部的顶部的尺寸。
  2. 如权利要求1所述的用于板式换热器的热交换板,其中
    凸起的顶部距离板平面的距离大于或等于过渡部的顶部距离板平面的距离。
  3. 如权利要求1或2所述的用于板式换热器的热交换板,其中
    凸起的顶部大致是平坦的。
  4. 如权利要求1或2所述的用于板式换热器的热交换板,其中
    在与所述线垂直的方向上观看时,过渡部具有在过渡部的顶部与板平面之间的台阶。
  5. 如权利要求1或2所述的用于板式换热器的热交换板,其中
    在朝向所述板平面观看时,多条线大致以V形、W形或波形图案设置。
  6. 如权利要求1所述的用于板式换热器的热交换板,其中
    凸起的顶部距离板平面的距离大于过渡部的顶部距离板平面的距离,并且凸起的顶部距离过渡部的顶部的距离小于或等于过渡部的顶部距离板平面的距离。
  7. 如权利要求1所述的用于板式换热器的热交换板,其中
    沿一条所述线排列的凸起和过渡部中的凸起通过相应的过渡部连接,并与过渡部一起形成整体的凸条。
  8. 如权利要求3所述的用于板式换热器的热交换板,其中
    凸起的顶部大致是圆形的。
  9. 如权利要求1或2所述的用于板式换热器的热交换板,其中
    沿一条所述线排列的凸起和过渡部中的凸起通过相应的过渡部连接,并与过渡部一起形成整体的凸条,
    向板平面的一侧突出的凸条与向板平面的与所述一侧相对的另一侧突出的凸条交替设置。
  10. 如权利要求9所述的用于板式换热器的热交换板,其中
    向板平面的一侧突出的凸条中的凸起与相邻的向板平面的所述另一侧突出的凸条中的凸起在凸条的纵向方向上相互错开。
  11. 一种板式换热器,包括:
    权利要求1所述的用于板式换热器的热交换板。
PCT/CN2015/073007 2014-03-07 2015-02-13 用于板式换热器的热交换板以及具有该热交换板的板式换热器 WO2015131758A1 (zh)

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