Efficient cooling radiator for preparing polyether
By designing an efficient cooling radiator combining positioning ring, silicone strip and heat sink, the problem of water-cooled heat dissipation in the prior art is solved, and more efficient heat dissipation effect and a wider range of application are achieved.
Patent Information
- Application Number
- CN202421927432.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-09
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-09
AI Technical Summary
In the prior art, the commonly used water-cooled heat dissipation method in the preparation of polyether is limited by the water conduit, resulting in limited cooling effect and affecting the overall efficiency.
A highly efficient cooling radiator is designed. Through the combination of positioning ring, silicone strip and heat sink, the deformation characteristics of the silicone strip are used to closely adhere to the surface of the polyether conduit to improve the heat dissipation effect, and the stability and convenience of the radiator are improved through the stretching rod, balance pad and reinforcement mechanism.
It achieves a more efficient heat dissipation effect, expands the scope of application of the radiator, reduces the burden on polyether preparation equipment, and has a simple structure and low production cost.
Smart Images

Figure CN222993561U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of polyether preparation, in particular to an efficient cooling radiator for preparing polyether. Background Art
[0002] The common heat dissipation method in the process of preparing polyether is to use water cooling to cool down the polyether, that is, to directly attach the surface of the water circulation structure to the surface of the polyether conduit in the polyether equipment to dissipate heat. This heat dissipation method saves resources, but the heat dissipation structure is too single, and the water cooling method is limited by the water conduit, and the cooling effect on the polyether is limited. The polyether cooling process directly affects the overall efficiency of the polyether preparation work. Therefore, the common equipment for preparing polyether needs a radiator for external auxiliary heat dissipation work. Content of the Utility Model
[0003] The purpose of the utility model is to solve at least one of the technical problems existing in the prior art, and provide an efficient cooling radiator for preparing polyether. By improving the applicable range of the radiator with the characteristics of deformation and facilitating the attachment of the important components of the radiator to the surface of the polyether conduit, the applicable range of the radiator is improved, and at the same time, the effect of the radiator is improved. Moreover, the overall structure of the radiator is simple, the production cost is low, and at the same time, the load burden on the polyether transmission part of the polyether preparation equipment is reduced, and the practicability of the radiator is improved.
[0004] The utility model also provides an efficient cooling radiator for preparing polyether as described above, including: positioning rings. There are two positioning rings in total, and the two positioning rings are distributed relatively left and right. The positioning rings are of an openable structure. A plurality of silica gel strips are fixedly connected between the two positioning rings. Heat dissipation fins are fixedly connected to the surface of the silica gel strips, and the heat dissipation fins penetrate through the silica gel strips. When using the radiator, the silica gel strips, the heat dissipation fins are in close contact with the surface of the polyether transmission conduit. An installation block is fixedly connected to the side surface of the positioning ring, and a docking hole is arranged on the lower surface of the installation block. When using the radiator, a stretching rod is arranged in the docking hole, and one end of the stretching rod is in close contact with the surface of the placement location of the polyether preparation equipment.
[0005] According to the efficient cooling radiator for preparing polyether of the utility model, a storage hole is arranged on the surface of the positioning ring, and the storage hole penetrates through the positioning ring at the right end. When the radiator is not in use, the stretching rod is located inside the storage hole. It is convenient to store the stretching rod.
[0006] According to the efficient cooling radiator for preparing polyether of the utility model, a balance pad is arranged on the lower surface of the installation block, and one end of the stretching rod in contact with the placement location of the polyether equipment is clamped with the balance pad. The balance during the action of the stretching rod is improved.
[0007] An efficient cooling radiator for preparing polyether according to the present utility model, a reinforcing mechanism is provided between the stretching rod and the balance pad, and the reinforcing mechanism is composed of a docking sleeve and a card hole. The stability after the stretching rod and the balance pad are docked is improved.
[0008] An efficient cooling radiator for preparing polyether according to the present utility model, two reinforcing pads are fixedly connected to the opening and closing part of the positioning ring, and a mother and son magic tape is arranged on the opposite side of the two reinforcing pads. The stability when the positioning ring functions is improved.
[0009] An efficient cooling radiator for preparing polyether according to the present utility model, the reinforcing pad is made of rubber material, and the width and height of the reinforcing pad are both greater than the width and length of the positioning ring, and the upper, lower, and front three ends of the reinforcing pad protrude from the positioning ring. The convenience of using the reinforcing pad is improved.
[0010] An efficient cooling radiator for preparing polyether according to the present utility model, the balance pad, the mounting block, and the positioning ring are made of plastic material, rubber material, and silica gel material respectively. The overall weight of the radiator is reduced.
[0011] Beneficial effects
[0012] 1. Compared with the prior art, this efficient cooling radiator for preparing polyether, through the positioning ring, silica gel strip, and heat dissipation fins, utilizes the characteristics of easy deformation to improve the flexibility of the radiator, improve the heat dissipation effect of transferring the heat dissipation part of the radiator to the polyether part of the polyether equipment, expand the applicable range of the radiator, and the radiator has a simple structure, which not only saves production costs but also facilitates the use of the radiator.
[0013] 2. Compared with the prior art, this efficient cooling radiator for preparing polyether, through the docking hole, support rod, balance pad, reinforcing mechanism, and storage hole, improves the stability when the radiator functions, improves the convenience of storing the radiator, improves the stability of the radiator in the storage state, and improves the use comfort of the radiator. Brief description of the drawings
[0014] The following further illustrates the present utility model in conjunction with the drawings and embodiments;
[0015] Figure 1 It is the right-side top view structure diagram of an efficient cooling radiator for preparing polyether according to the present utility model;
[0016] Figure 2 It is the left-side top view structure diagram of an efficient cooling radiator for preparing polyether according to the present utility model;
[0017] Figure 3 It is the right-side bottom view structure diagram of an efficient cooling radiator for preparing polyether according to the present utility model;
[0018] Figure 4 This is the left-side upward view structure diagram of an efficient cooling radiator for preparing polyether in the present utility model.
[0019] Legend description:
[0020] 1. Positioning ring; 2. Silicone strip; 3. Heat sink fin; 4. Storage hole; 5. Reinforcement pad; 6. Tensile rod; 7. Installation block; 8. Balance pad; 9. Reinforcement mechanism; 10. Docking hole. Specific implementation manner
[0021] This part will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the drawings. The role of the drawings is to supplement the description of the text part of the specification, enabling people to intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but it cannot be understood as a limitation on the protection scope of the present utility model.
[0022] Refer to Figures 1-4 , an efficient cooling radiator for preparing polyether in an embodiment of the present utility model includes: two positioning rings 1. The two positioning rings 1 are distributed opposite to each other left and right, and the positioning ring 1 is an opening and closing structure. The positioning ring 1 conveniently adds the radiator to the surface of the conduit by its own opening and closing. Two reinforcement pads 5 are fixedly connected to the opening and closing part of the positioning ring 1, and a mother-and-son magic tape is arranged on the opposite side of the two reinforcement pads 5. The reinforcement pad 5 is made of rubber material, and the width and height of the reinforcement pad 5 are both greater than the width and length of the positioning ring 1, and the upper, lower, and front three ends of the reinforcement pad 5 protrude from the positioning ring 1. The reinforcement pad 5 improves the stability of the combined opening and closing part of the positioning ring 1, reduces the hidden danger of the positioning ring 1 detaching from the heat dissipation part of the polyether preparation equipment, and the self-structure of the reinforcement pad 5 improves the convenience of opening and closing the positioning ring 1.
[0023] A plurality of silicone strips 2 are fixedly connected between the two positioning rings 1, and heat sink fins 3 are fixedly connected to the surface of the silicone strips 2. The heat sink fins 3 penetrate through the silicone strips 2. When using the radiator, the silicone strips 2, the heat sink fins 3 are in close contact with the surface of the polyether conveying conduit. The silicone strips 2 and the heat sink fins 3 cooperate with each other to form a heat dissipation assembly by using the heat conduction characteristics of silicone. The deformation characteristics of the silicone strips 2 facilitate the heat dissipation assembly to closely adhere to the surface of the polyether conveying conduit, further improving the effect of the heat dissipation assembly.
[0024] The side surface of the positioning ring 1 is fixedly connected with a mounting block 7, and the lower surface of the mounting block 7 is provided with a docking hole 10. The existence of the docking hole 10 provides basic conditions for adding a support member to the positioning ring 1. When using a radiator, the docking hole 10 is provided with a stretching rod 6, and one end of the stretching rod 6 is in close contact with the surface of the polyether preparation equipment placement. The stretching rod 6 provides support force for the positioning ring 1, reduces the influence of the positioning ring 1 on the weight burden of the polyether catheter, and improves the stability of the polyether preparation equipment during use. The stretching structure of the stretching rod 6 is the same as the stretching structure of the fishing rod. A balance pad 8 is provided on the lower surface of the mounting block 7. The end of the stretching rod 6 that contacts the polyether equipment placement is clamped with the balance pad 8. The balance pad 8 increases the contact area between the stretching rod 6 and the polyether preparation equipment placement, and increases the balance and stability of the stretching rod 6 when it acts.
[0025] A reinforcement mechanism 9 is arranged between the stretching rod 6 and the balancing pad 8. The reinforcement mechanism 9 is composed of a docking sleeve and a clamping hole. The reinforcement mechanism 9 improves the stability of the stretching rod 6 and the balancing pad 8 when they interact. The balancing pad 8, the mounting block 7 and the positioning ring 1 are respectively made of plastic, rubber and silicone. The materials of the three reduce the influence of the radiator on the load-bearing burden of the polyether preparation equipment. A storage hole 4 is arranged on the surface of the positioning ring 1. The storage hole 4 passes through the positioning ring 1 at the right end. When the radiator is not in use, the stretching rod 6 is located inside the storage hole 4. The storage hole 4 is convenient for storing the stretching rod 6. The bending stress of the radiator in the storage state is increased by the stretching rod 6 located inside the storage hole 4, thereby reducing the hidden danger of damage to the radiator due to bending.
[0026] Working principle: When preparing polyether, first take out the stretching rod 6 from the storage hole 4, and open the two positioning rings 1, and use the positioning ring 1 to add the radiator to the surface of the polyether transfer conduit. When the diameter of the conduit is small, the silicone strip 2 can be pressed by a cable tie to assist the silicone strip 2 to fit the surface of the conduit. When the diameter of the conduit is large, the silicone strip 2 is deformed and stretched by the conduit. The deformation characteristics of the silicone strip 2 are used to make the heat dissipation mechanism close to the surface of the conduit. At this time, the cable tie can be used to assist the merging of the positioning ring 1 to ensure the stability of the positioning ring 1 on the conduit surface, so as to cooperate with the heat dissipation components of the polyether preparation equipment itself to improve the cooling and heat dissipation efficiency of the finished polyether during the polyether preparation process. At the same time, a hair dryer can be used to face the heat sink 3, so as to use the wind force of the hair dryer to improve the surrounding efficiency of the heat sink 3, so as to improve the heat dissipation efficiency of the heat sink 3. After the radiator is added, the stretching rod 6 is used to provide support for the positioning ring 1, so as to reduce the load burden of the positioning ring 1 on the polyether transfer conduit and improve the stability of the components of the polyether preparation equipment itself during use.
[0027] The embodiments of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge scope of ordinary technicians in the relevant technical field without departing from the purpose of the present invention.
Claims
1. A high-efficiency cooling radiator for preparing polyether, characterized in that: include: A positioning ring (1), wherein there are two positioning rings (1), the two positioning rings (1) are relatively distributed on the left and right, and the positioning rings (1) are of an open-close structure, a plurality of silicone strips (2) are fixedly connected between the two positioning rings (1), a heat sink (3) is fixedly connected to the surface of the silicone strip (2), and the heat sink (3) penetrates the silicone strip (2), and when the radiator is used, the silicone strip (2) and the heat sink (3) are in close contact with the surface of the polyether conveying conduit; The side surface of the positioning ring (1) is fixedly connected to a mounting block (7), and the lower surface of the mounting block (7) is provided with a docking hole (10). When the radiator is used, the docking hole (10) is provided with a stretching rod (6), and one end of the stretching rod (6) is in close contact with the surface where the polyether preparation equipment is placed.
2. A high-efficiency cooling radiator for preparing polyether according to claim 1, characterized in that: The surface of the positioning ring (1) is provided with a receiving hole (4), the receiving hole (4) passes through the positioning ring (1) at the right end, and when the radiator is not in use, the stretching rod (6) is located inside the receiving hole (4).
3. The high-efficiency cooling radiator for preparing polyether according to claim 1, characterized in that: A balancing pad (8) is provided on the lower surface of the mounting block (7), and one end of the stretching rod (6) in contact with the location where the polyether equipment is placed is clamped with the balancing pad (8).
4. The high-efficiency cooling radiator for preparing polyether according to claim 1, characterized in that: A reinforcement mechanism (9) is provided between the stretching rod (6) and the balancing pad (8), and the reinforcement mechanism (9) is composed of a docking sleeve and a clamping hole.
5. The high-efficiency cooling radiator for preparing polyether according to claim 1, characterized in that: Two reinforcement pads (5) are fixedly connected to the opening and closing portion of the positioning ring (1), and the two reinforcement pads (5) are provided with Velcro on opposite sides.
6. A high-efficiency cooling radiator for preparing polyether according to claim 5, characterized in that: The reinforcing pad (5) is made of rubber, and the width and height of the reinforcing pad (5) are both greater than the width and length of the positioning ring (1), and the upper, lower and front ends of the reinforcing pad (5) all protrude from the positioning ring (1).
7. The high-efficiency cooling radiator for preparing polyether according to claim 4, characterized in that: The balancing pad (8), the mounting block (7) and the positioning ring (1) are respectively made of plastic material, rubber material and silicone material.