Combined new energy TPC water tank heat exchanger structure
By designing a modular structure and locking mechanism, the problem of easy wear and tear on TPC water tank heat exchangers during high-frequency operation is solved, achieving stable fin connection and convenient assembly, simplifying the maintenance process and reducing resource waste.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-03-20
AI Technical Summary
Existing TPC water tank heat exchangers are prone to wear and tear during high-frequency operation, and their complex structure makes maintenance difficult and wasteful of resources.
The design employs a modular structure, using a locking mechanism to fix the fins and connecting the rigid tube via threaded countersunk holes and limiting flanges, thereby achieving stable fixation and convenient assembly of the fins.
It improves the stability and convenience of fins, simplifies the maintenance process, and reduces resource waste.
Smart Images

Figure CN224018887U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to heat exchanger technical field especially relates to a combined new energy TPC water tank heat exchanger structure. BACKGROUND
[0002] TPC water tank heat exchanger belongs to the heat transfer of partition, that is, a high-temperature heat medium medium and another low-temperature medium heat transfer through the wall of heat exchange pipe, the low-temperature medium is heated to the predetermined temperature. The low-temperature cold water enters the equipment cylinder from the bottom of the equipment, and becomes hot water after being heated, and flows out from the outlet at the top of the equipment.
[0003] The existing water tank heat exchanger such as the heat exchanger with horizontal water tank disclosed in the announcement number CN221195187U is transported into the water cooling assembly through the hose and the multi-way pipe, and is sprayed out from the multiple mist spray heads on the front of the fixed shell, the water mist is sprayed on the fin plate on the heat conduction plate, and the fan blows the fin plate of the heat conduction plate, the wind force blows the water mist on the fin plate, and the heat on the fin plate is accelerated. But the multiple connecting ports and channels between the collecting pipe and the fin make the water flow movement very complex, and in the high-frequency movement process, the heat exchanger is easily damaged, and the debris caused by grinding consumption is easily deposited in the heat exchanger. The fixed structure increases the operation difficulty of internal structure maintenance protection, and the heat exchanger is easily replaced as a whole because of the structure damage of individual parts, which easily causes resource waste. UTILITY MODEL CONTENTS
[0004] The utility model aims at solving the problem of inconvenient use of the integrated TPC water tank heat exchanger in the prior art, and provides a combined new energy TPC water tank heat exchanger structure.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] A combined new energy TPC water tank heat exchanger structure, comprising a first collecting pipe and a second collecting pipe, a plurality of fins are arranged between the first collecting pipe and the second collecting pipe, and a locking mechanism for fixing the two end parts of the fins is arranged on the first collecting pipe and the second collecting pipe, two groups of assembling pipes are arranged on the second collecting pipe, and the second collecting pipe is connected with an inlet pipe and an outlet pipe through the assembling pipes.
[0007] Preferably, the first collecting pipe and the second collecting pipe are arranged symmetrically left and right, and the six fins are linearly and equidistantly distributed between the first collecting pipe and the second collecting pipe.
[0008] Preferably, the locking mechanism includes a sleeve interface formed in the first and second manifold pipes, and a sealing port communicating with the sleeve interface is formed at the top of the first and second manifold pipes. A bayonet is formed at both ends of the fin, and a sealing plate extending into the sleeve interface is fixedly installed in the sealing port. A corresponding bayonet is integrally connected to the sealing plate.
[0009] Preferably, the bayonet is formed at both ends of the fin extending into the sleeve interface.
[0010] Preferably, the assembly pipe includes a threaded countersunk hole in the second manifold, the second manifold is movably fitted with a connecting rigid pipe through the threaded countersunk hole, a threaded cover is rotatably fitted on the connecting rigid pipe, a limiting flange is integrally fitted on the connecting rigid pipe, an extension lug is integrally connected on the threaded cover, and limiting through holes for installing bolts are correspondingly opened in the limiting flange and the extension lug.
[0011] Preferably, the threaded cover is located on one end of the connecting rigid pipe near the second manifold, and the limiting flange is located on the other end of the connecting rigid pipe away from the second manifold.
[0012] Compared with the prior art, the present invention has the following advantages:
[0013] 1. This utility model features a symmetrically arranged hollow first and second flow collecting pipes. A locking mechanism is used between the first and second flow collecting pipes to double-fix and fit the six fins together, preventing the fins from coming loose from the first and second flow collecting pipes and ensuring the stability and convenience of the fin connection between the first and second flow collecting pipes.
[0014] 2. The present invention provides a threaded countersunk hole on the second manifold to facilitate the fitting of a rigid pipe. A threaded cover with a fixed angular position by a limiting flange is provided on the connecting rigid pipe to facilitate the assembly of the inlet pipe and the outlet pipe using the assembly pipe. Attached Figure Description
[0015] Figure 1 This is a structural schematic diagram of a combined new energy TPC water tank heat exchanger proposed in this utility model;
[0016] Figure 2 This is a bottom view of a combined new energy TPC water tank heat exchanger structure proposed in this utility model;
[0017] Figure 3 This is a cross-sectional view of a combined new energy TPC water tank heat exchanger structure proposed in this utility model;
[0018] Figure 4The utility model provides a kind of combined new energy TPC water tank heat exchanger structure's import pipe sectional view of pipe fitting;
[0019] Figure 5 The utility model provides a kind of combined new energy TPC water tank heat exchanger structure's import pipe and outlet pipe structure schematic view.
[0020] In the drawing:
[0021] 1, first manifold; 2, second manifold; 3, fin;
[0022] 4, locking mechanism; 41, socket; 42, sealing mouth; 43, bayonet; 44, sealing plate; 45, clamping plate;
[0023] 5, assembled pipe; 51, threaded hole; 52, hard pipe; 53, threaded cover; 54, limiting flange; 55, extension lug; 56, limiting through hole;
[0024] 6, import pipe; 7, outlet pipe. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all.
[0026] Refer to Figures 1-5 A kind of combined new energy TPC water tank heat exchanger structure, including first manifold 1 and second manifold 2, six number of fins 3 are provided between first manifold 1 and second manifold 2, it needs to be explained that, multiple microchannels are set in fin 3, to facilitate the cooling water flow to be shunted and transported.
[0027] Locking mechanism 4 for fixing the both end parts of sleeve fin 3 is arranged on first manifold 1 and second manifold 2, specifically referring to the description of the drawings Figure 1 and the drawings Figure 3 Locking mechanism 4 includes socket 41 set in first manifold 1 and second manifold 2, and the top end position of first manifold 1 and second manifold 2 is provided with the sealing mouth 42 that communicates socket 41, bayonet 43 is set in both ends of fin 3, sealing plate 44 extending into socket 41 is fixedly installed in sealing mouth 42, it needs to be explained that, fin 3 and sealing plate 44 are all provided with rubber gasket, to guarantee sleeve sealing property, sealing plate 44 is integrally connected with the clamping plate 45 corresponding to bayonet 43, clamping plate 45 adopts the structure of and is correspondingly clamped with bayonet 43 on fin 3 in socket 41, to facilitate the fin 3 being sleeved in socket 41 to be limited and fixed.
[0028] Two groups of assembling pipes 5 are arranged on the second collecting pipe 2, and the second collecting pipe 2 is connected with an inlet pipe 6 and an outlet pipe 7 through the assembling pipes 5, and the specific reference is made to the description of the drawings Figure 2 With the attached Figure 4 The assembling pipe 5 comprises a threaded hole 51 arranged in the second collecting pipe 2, the threaded hole 51 is arranged with an internal thread, the second collecting pipe 2 is movably sleeved with a connecting hard pipe 52 through the threaded hole 51, the connecting hard pipe 52 is rotatably sleeved with a threaded cover 53, the threaded cover 53 is arranged with an external thread, the connecting hard pipe 52 is integrally sleeved with a limiting flange 54, the threaded cover 53 is integrally connected with an extension lug 55, the limiting flange 54 and the extension lug 55 are correspondingly arranged with limiting through holes 56 for mounting bolts, the connecting hard pipe 52 is extended into the threaded hole 51, and a sealing ring is sleeved on the connecting hard pipe 52, so that the sealing property of the connecting hard pipe 52 connected with the second collecting pipe 2 is ensured.
[0029] The first collecting pipe 1 and the second collecting pipe 2 are arranged in left-right symmetry, and six fins 3 are linearly and equidistantly distributed between the first collecting pipe 1 and the second collecting pipe 2.
[0030] The clamping holes 43 are arranged on both ends of the fin 3 extending into the sleeve joint 41, so as to limit and fix both ends of the fin 3 in the first collecting pipe 1 and the second collecting pipe 2.
[0031] The threaded cover 53 is located on one end of the connecting hard pipe 52 close to the second collecting pipe 2, and the limiting flange 54 is located on the other end of the connecting hard pipe 52 away from the second collecting pipe 2, the threaded cover 53 is strengthened and limited by the limiting flange 54, so as to avoid loosening of the threaded cover 53.
[0032] It should be noted that the specific model and specification of the first collecting pipe 1, the second collecting pipe 2 and the fin 3 are selected and determined according to the actual specification of the device, and the specific selection calculation method adopts the existing technology in the art, so it is not described here.
[0033] The function principle of the utility model can be described by the following operation mode:
[0034] The both ends of the fin 3 are respectively extended and sleeved in the sleeve joint 41, and the sealing plate 44 is fixed at the position of the sealing port 42, so that the clamping plate 45 on the sealing plate 44 is connected with the clamping hole 43.
[0035] The connecting hard pipe 52 is extended into the threaded hole 51, the threaded cover 53 is spirally pushed into the threaded hole 51 until the threaded connection is fixed, and the screw is mounted through the limiting through hole 56, so as to connect and limit the connecting hard pipe 52 and the threaded cover 53.
[0036] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A combined new energy TPC water tank heat exchanger structure, comprising a first manifold (1) and a second manifold (2), characterized in that, A total of six fins (3) are provided between the first collection pipe (1) and the second collection pipe (2), and locking mechanisms (4) for fixing the two ends of the fins (3) are provided on the first collection pipe (1) and the second collection pipe (2). Two sets of assembly pipes (5) are provided on the second collection pipe (2), and the second collection pipe (2) is connected to the inlet pipe (6) and the outlet pipe (7) through the assembly pipes (5).
2. The combined new energy TPC water tank heat exchanger structure according to claim 1, characterized in that, The first and second collection pipes (1) are arranged symmetrically on the left and right, and six fins (3) are distributed equidistantly in a straight line between the first and second collection pipes (1) and the second collection pipe (2).
3. The combined new energy TPC water tank heat exchanger structure according to claim 1, characterized in that, The locking mechanism (4) includes a sleeve (41) opened in the first collection pipe (1) and the second collection pipe (2), and a sealing port (42) communicating with the sleeve (41) is opened at the top of the first collection pipe (1) and the second collection pipe (2). A bayonet (43) is opened at both ends of the fin (3). A sealing plate (44) extending into the sleeve (41) is fixedly installed in the sealing port (42). A card plate (45) corresponding to the bayonet (43) is integrally connected to the sealing plate (44).
4. The combined new energy TPC water tank heat exchanger structure according to claim 3, characterized in that, The bayonet (43) is located at both ends of the fin (3) extending into the sleeve (41).
5. The combined new energy TPC water tank heat exchanger structure according to claim 1, characterized in that, The assembly pipe (5) includes a threaded countersunk hole (51) opened in the second manifold (2). The second manifold (2) is movably fitted with a connecting rigid pipe (52) through the threaded countersunk hole (51). A threaded cover (53) is rotatably fitted on the connecting rigid pipe (52). A limiting flange (54) is integrally fitted on the connecting rigid pipe (52). An extension lug (55) is integrally connected on the threaded cover (53). A limiting through hole (56) for installing bolts is correspondingly opened in the limiting flange (54) and the extension lug (55).
6. The combined new energy TPC water tank heat exchanger structure according to claim 5, characterized in that, The threaded cover (53) is located on one end of the connecting hard pipe (52) near the second manifold (2), and the limiting flange (54) is located on the other end of the connecting hard pipe (52) away from the second manifold (2).
Citation Information
Patent Citations
Heat exchanger with horizontal water tank
CN221195187U