Plate type heat exchanger

4915163
Add to folder: View Folders  
Keywords to Highlight:

full-text

print

pdf

permalink

Inventors

Matsunaga, Ken
Yamauchi, Yoshiyuki
Sudo, Masatoshi
Ohshita, Masami
Tsuchiya, Kiyomitsu

Application #

230030

Filed

Aug-9-1988

Published

Apr-10-1990

Current US Class

029/890.039
165/152
165/153
165/174
165/76
165/DIG466
228/183

International Classes

F28D 001/03

Field of Search

165/76 165/148 165/152 165/153 165/172 165/174 165/176 29/157.3 228/183 219/85

Assignee

Nippondenso Co., Ltd. (Kariya, JP)

Examiners

Schwadron; Martin P.

Attorney, Agent or Firm

Cushman, Darby & Cushman

US Patent References

4249597   Plate type heat exc...
4696342   Plate-type heat exc...
4723601   Multi-layer type he...
4800954   Laminated heat ex...

Referenced by:

View Backward References

Citation

Cite This Patent

More From Subclass 153

4258785   Heat exchanger int...
5431217   Heat exchanger ev...
5125452   Aluminum alloy cl...
5048602   Heat exchangers
5662164   Laminated heat ex...
6341649   Aluminum plate oil...
5033540   Consolidated duple...
5363910   Heat exchanger
6742577   Laminate type eva...
5180004   Integral heater-eva...
5645126   Laminated heat ex...
6340054   Plate heat exchanger
6478080   Fluid cooling device
4144933   Heat exchanger
5751414   Laminated heat ex...
5514248   Stack type evaporator
5529119   Stacked heat excha...
5052479   Tube for coolant co...
5617915   Laminated heat ex...
6419009   Radial flow heat ex...
5413169   Automotive evapor...
5052477   Pipe for coolant co...
4800954   Laminated heat ex...
4332293   Corrugated fin type...
6530423   Heat exchanger
5152337   Stack type evaporator
4331201   Clamped connection
6302197   Louvered plastic he...
5535819   Heat exchanger
5443116   Stacked heat excha...
4860823   Laminated heat ex...
6241011   Layered heat exch...
5172762   Heat exchanger
6431264   Heat exchanger wit...
4159034   Weldment heat exc...
6543528   Heat exchanger
6257325   Heat exchanger
5562157   Heat exchanger
5758718   Plate heat exchanger
5095972   Heat exchanger
5479985   Heat exchanger
6830100   Extruded manifold
5908070   Heat exchanger
6827129   Vehicle-mounted str...
5931221   Heat exchanger
6904965   Radiator with side f...
6814136   Perforated tube flo...
7040386   Heat exchanger
5240068   Heat exchanger
5653283   Laminated type he...
6260612   "Stacked" type heat...
6920916   Layered heat exch...
4217953   Parallel flow type e...
5947190   Heater core mounti...
6397938   Heat exchanger
5531268   Heat exchanger
5390733   Heat exchanger m...
5718284   Laminated heat ex...
5735343   Refrigerant evapor...
4712612   Horizontal stack typ...
4741394   Radiator for motor...
5669439   Laminated type he...
 

More From Class 165

4103192   Heat dissipating m...
4399656   Long-period therm...
4505124   Heat management...
4848445   Heat transfer appar...
5072783   Extraction system of...
4520862   Energy storage ap...
4574879   Mounting pad for s...
7017650   Earth loop energy s...
4519444   Multi-unit sample c...
7040545   Heat generator
4283925   System for cooling
3977197   Thermal energy sto...
 
Abstract
A plate type heat exchanger has a plurality of tube units and a plurality of corrugated fins. Each of the tube units is formed by a pair of plates, namely a pair of plates are connected to each other by a brazing material at a connecting portion at an outer periphery of the plate and a center rib at a center axis of the plate. The center rib has an enlarged portion at the top end thereof in order to gather the molten brazing material toward the enlarged portion. The brazing at the center rib is started from the enlarged portion. Therefore a brazing defect is prevented from occurring at the top end of the center rib. Since the tube unit is effectively connected by brazing, the tube unit of the present invention has enough anti-pressure strength.
 
Claims
What is claimed is:

1. A plate type heat exchanger comprising:

a plurality of tube units having an inlet tank portion, a passage portion and an outlet tank portion, with a plurality of corrugated fins provided between adjacent pairs of said tube units, wherein;

each of said tube units is formed by a pair of plates,

each of said plates has a connecting portion at a periphery thereof and an elongated center rib disposed along the center axis thereof so that said pair of plates are connected to each other by brazing material at said connecting portion said center rib having a bottom end contiguous with said connecting portion and a top end opposite said bottom end, wherein said center rib, and



Description
FIELD OF THE INVENTION

The present invention relates to a plate type heat exchanger which is useful for an evaporator of an automotive air conditioner.

BACKGROUND OF THE INVENTION

A plate type heat exchanger is formed by a plurality of tube units and a plurality of corrugated fins. The tube unit is also formed by a couple of plates such as shown in FIG. 1. Each plate is connected to a corresponding pair of plates at an outer peripheral portion 101, a center rib 102 and at a number of ribs 103. Namely, since the brazing material of aluminum alloy is clad on both the outer surface and the inner surface of the plate 100, the brazing material clad on the inner surface of the plate 100 is gathered at the connecting portions 101, 102 and 103 in order to connect a pair of plates 100 to each other. The brazing material clad on the outer surface of the plate 100 connects the corrugated fin to the tube unit.

Since the pressurized fluid is introduced into the tube unit, the tube unit should have enough sealing efficiency. According to the present inventor's study, several tube units did not have enough sealing efficiency. Eight heat exchangers has the leaking problem where the fluid within the tube unit leaked. It has been observed by the present inventors that the tube units which had a leaking problem did not connect with each other at the center rib 102. To solve this problem the present inventors have examined the relationship between the anti-pressure strength of the tube unit and the brazing area of the center rib 102.
 
  An evaporator (20) of the stacked plate, straight flow type achieves multi pass flow while locating the inlet (28) and outlet (30) adjacent to one another,...  A plate-type heat exchanger comprises a stack of flat fluid flow tubes each composed of a pair of confronting core plates joined to each other and defining...