In the field of heat exchangers for automotive vehicles, it is known to use heat exchangers comprising stack of plates for the circulation of two fluids alternately between the adjacent pairs of plates. Such heat exchangers are used for example as oil coolers for the oil of the engine. The oil and coolant circulate along respective sides of each intermediate plate of the stack of plates.
The heat exchanger may also comprise a fixation plate for fixation of the stack of plates into the automotive vehicle. The stack of plates is for example soldered to the fixation plate which is itself fastened to the vehicle, for example with screws.
A reinforcement plate between the fixation plate and the stack of plates is also known from US2007084809-A and EP2267390-A.
However, these designs are costly and may still be improved in terms of mechanical resistance.
An aspect of the invention relates to a heat exchanger comprising a stack of plates comprising a lower plate onto which the other plates are stacked, and the heat exchanger also comprises a fixation plate and a reinforcement plate between the fixation plate and the lower plate, wherein the fixation plate has reinforcing elements obtained from a cut and fold of the reinforcement plate material.
The reinforcing elements thus obtained bring reinforcement while still allowing flexibility. Also, the process allows controlled position and shape of the reinforcing elements, with a reasonable cost.
It was also found that having reinforcing elements around only two corners is optimal.
In particular embodiments, the heat exchanger may comprise one, several or any combination of the following technical features:
Another aspect of the invention relates to a process for making a heat exchanger comprising a stack of plates comprising a lower plate onto which the other plates are stacked, the heat exchanger also comprising a fixation plate, and a reinforcement plate between the fixation plate and the lower plate, the fixation plate having reinforcing elements and wherein the process comprises actions of cutting and folding the reinforcing elements from the material of the reinforcement plate.
In particular embodiments, the process may comprise one, several or any combination of the following characteristics:
Embodiments of the invention will now be described, by way of example, with reference to the following drawings, in which:
The heat exchanger comprises a coolant inlet 10 and coolant outlet 12 going through the top end plate 14 of the stack of plates. The coolant is for example a water and glycol based liquid commonly used for engine cooling. On
The stack of plates 4 of the heat exchanger is designed so that the two fluids circulate alternately between the adjacent pairs of plates. That is to say, each fluid circulates along respective sides of each intermediate plate 22 (also called “base plates”) of the stack of plates 4. The base plates 22 have holes for the circulation of the two fluids through each plate.
This type of stack of plates 4 is commonly used and known to the person skilled in the art.
The reinforcement plate 8 shown more specifically on
As show on
The height h of the reinforcing element 24, measured from the top planar surface 34 of the fixation plate 6 is preferably at least half the height h′ of the peripheral edge 32 of the lower plate 20, measured from the top main planar surface 36 of the reinforcement plate 8.
The cutting and folding of a reinforcing element 24 are made preferably in a single movement of a cutting dye or any other adapted tool. Alternatively though, it is possible to make it in two steps with two different tools/apparatus. All reinforcing elements 24 of the reinforcement plate 8 made by cutting and folding are preferably made in a single step.
Preferably, there are reinforcing elements 24 around only two corners 26 of the lower plate 20, as can be seen on the figures. Alternatively, there could be four reinforcing elements 24 around each corner 26 of the lower plate 20 but this is a less preferred solution.
Preferably also, the reinforcing elements 24 are in one part (or “continuous”) around their respective corners 26. That is to say that each corner 26 is reinforced by only one reinforcing element. It was found a more reliable reinforcement compared to having several reinforcing elements around a specific corner.
Preferably again, the reinforced corners are the one at proximity of the holes for fluid communication 16 and 18 for oil. If the inlet and outlet of water and glycol based coolant were also designed through the reinforcement plate 8 and fixation plate 6, which is also a possible alternative, then the reinforcing elements would be at proximity of the inlet & outlet for oil, and there would be no reinforcing elements at proximity of the inlet & outlet for water & glycol based coolant.
The reinforcement plate 8 has fixation holes 38 in regards of corresponding fixation holes of the fixation plate 6, in order to receive for example fixation screws intended to fasten the heat exchanger into the automotive vehicle. Alternatively, the reinforcement plate has no fixation hole and the fixation plate 6 is fastened to the automotive by holes that are external to the reinforcement plate.
The reinforcement plate 8 also has positioning protrusions 42, or more generally positioning elements, that cooperate with corresponding positioning elements 42 of the lower plate 20. In this specific example, the positioning elements 42 of the lower plate 20, the reinforcement plate 8 and the fixation plate 6, are protruding plots, the protruding plots of each of the plates 20, 6 and 8 being respectively identical.
The fixation plate 6 shown on
The fixation plate 6 has a top planar surface 34 (
The fixation plate 6 has a peripheral edge 48 around the reinforcement plate 8 for reinforcement of the fixation plate 6.
Preferably, the peripheral edge 48 extends along substantially the whole contour of the reinforcement plate 6. In the figures, there are only two regions 52 where the peripheral edge 48 is not present, but the peripheral edge 48 is still present around at least 50% of the contour of the reinforcement plate 6.
At last, the stack of plates 4 is made of identical base plates, an upper plate (not shown) and of the top end plate 14, as commonly known.
As shown on
The lower plate 20 also has holes 58 & 60 for the circulation of oil.
The base plates 22 are all identical. They have holes 62 for the circulation of oil and holes 64 for the circulation of coolant.
Also, each base plate is turned 180 degrees in respect of the adjacent base plates. In this way, it is not necessary to make two different kinds of plates, as commonly known.
A first group of base plates are intended for the circulation of oil above the base plates 22. The holes 62 for the circulation of oil are in the same plane as the main planar surfaces of these plates and the holes 66 for the circulation of coolant are elevated so that they make a tight contact with the bottom planar surface of the base plate above, which is turned 180 degrees.
The second half of the base plates 22 of the stack of plates have holes 64 for coolant in the plane of the main planar surfaces of these base plates 22 and the holes for the circulation of oil 62 are elevated so that they make a tight contact with the bottom surface of the plates above. Coolant will circulate on the top side of this second type of base plate.
Importantly, each base plate 22 of the stack of plates 4, the lower plate 22 and the upper plate (not shown) having a peripheral edge 32 of an identical shape. The peripheral edge 32 of each plate receives the external surface of the peripheral edge 32 of the plate above in a tight manner. This design is also called a “tub” design wherein each tub plate receives the tub plate above in a tight manner along the peripheral edges 32.
The top end plate only has holes 66 & 68 for receiving the inlet & outlet of coolant. Alternatively, as explained above, the inlet & outlet of coolant could also be on the side of the fixation plate 6, in which case, there would be not circulation holes in the top end plate 14.
| Number | Date | Country | Kind |
|---|---|---|---|
| 18184518.1 | Jul 2018 | EP | regional |
| Filing Document | Filing Date | Country | Kind |
|---|---|---|---|
| PCT/EP2019/068841 | 7/12/2019 | WO | 00 |