Side-by-side mold temperature controller

By using sliding mounting components and fixtures in the mold temperature controller, and adjusting the spacing of the thermal circulation mechanism, the problem of low flexibility in existing mold temperature controllers is solved, enabling flexible temperature control and efficient space utilization for multiple molds.

CN223864133UActive Publication Date: 2026-02-03TAIDA PLASTIC TECH ZHONGSHAN CO LTD
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Patent Information

Application Number
CN202520348016.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-03
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

The existing side-by-side mold temperature controllers have low flexibility in their heat circulation mechanism, making it difficult to meet the temperature control requirements of different positions of multiple molds, and their space utilization is not flexible enough.

Method used

The system employs sliding mounting components and mounting parts, and adjustable first and second thermal circulation mechanisms. Through the sliding first and second mounting components, the base frame can be equipped with condensers of different specifications to meet different usage requirements.

Benefits of technology

It improves the flexibility of mold temperature controllers, allowing for the configuration of different specifications of heat circulation mechanisms as needed to meet the temperature control requirements of multiple molds and improve space utilization efficiency.

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Abstract

The utility model discloses a side-by-side mold temperature controller, which comprises a frame, a first heat circulation mechanism and a second heat circulation mechanism, the frame comprises a bottom frame, and the first heat circulation mechanism comprises a first condenser, a first heater and a first oil pump; the first thermal cycle mechanism comprises a second condenser, a second heater and a second oil pump; a first mounting assembly is slidably arranged on the bottom frame, the first mounting assembly comprises at least two first mounting parts capable of adjusting the distance, and the first condenser is connected to the first mounting parts; the bottom frame is provided with a second installation assembly in a sliding mode, the second installation assembly comprises at least two second installation pieces with the distance capable of being adjusted, the second condenser is connected to the second installation pieces, and the condensers of different specifications can be installed on the bottom frame through the first installation assembly and the second installation assembly which can slide. The mold temperature controller can be provided with two heat circulation mechanisms of different specifications according to needs, different use requirements are met, and the use flexibility is high.
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Description

Technical Field

[0001] This utility model relates to the field of peripheral equipment for injection molding machines / die casting machines, and in particular to a side-by-side mold temperature controller. Background Technology

[0002] A mold temperature controller, also known as a mold temperature control machine, is a type of equipment widely used in industrial manufacturing. It is mainly used to control the temperature of molds or equipment to ensure stability during the production process and product quality.

[0003] The working principle of a mold temperature controller is mainly based on the principle of circulating heat transfer. It uses heat transfer oil as the circulating medium and is generally equipped with a condenser, a heater, and an oil pump. The condenser can cool down the heat transfer oil sent out of the mold. The cooled heat transfer oil then enters the heater for precise heating to the set temperature, and is then sent out to the mold by the oil pump, thus forming a heat cycle.

[0004] Currently, mold temperature controllers are generally equipped with a single heat circulation mechanism to meet the cooling needs of a single mold. However, as mold structures become more complex, different parts of the mold require different temperature control, or two molds may share a single mold temperature controller to save space. This necessitates the configuration of two or more heat circulation mechanisms within the mold temperature controller. However, current side-by-side mold temperature controllers are mostly structures with the same heat circulation mechanisms directly aligned and arranged side by side, resulting in low flexibility and poor versatility. Utility Model Content

[0005] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a side-by-side mold temperature controller, which offers high flexibility in use.

[0006] A parallel mold temperature controller according to a first aspect of the present invention includes a frame, a first heat circulation mechanism, and a second heat circulation mechanism. The frame includes a base frame. The first heat circulation mechanism includes a first condenser disposed on the base frame and a first heater and a first oil pump disposed above the first condenser. The first heat circulation mechanism also includes a second condenser disposed on the base frame and a second heater and a second oil pump disposed above the second condenser. A first mounting assembly is slidably disposed on the base frame. The first mounting assembly includes at least two first mounting members with adjustable spacing, and the first condenser is connected to the first mounting member. A second mounting assembly is slidably disposed on the base frame. The second mounting assembly includes at least two second mounting members with adjustable spacing, and the second condenser is connected to the second mounting member.

[0007] The side-by-side mold temperature controller according to the present utility model has at least the following beneficial effects: the sliding first mounting component and the second mounting component enable the base frame to install condensers of different specifications, so that the mold temperature controller can be configured with two heat circulation mechanisms of different specifications as needed to meet different usage requirements and has high flexibility of use.

[0008] According to some embodiments of the present invention, the base frame includes a first longitudinal beam, a second longitudinal beam, and a third longitudinal beam that are spaced apart and parallel to each other. A first slide rail is formed between the first longitudinal beam and the second longitudinal beam that can slidably engage with the first mounting member. A second slide rail is formed between the second longitudinal beam and the third longitudinal beam that can slidably engage with the second mounting member. The first mounting member is connected to the first longitudinal beam and the second longitudinal beam through a first connecting mechanism. The second mounting member is connected to the second longitudinal beam and the third longitudinal beam through a second connecting mechanism.

[0009] According to some embodiments of this utility model, the cross-sections of the first longitudinal beam, the second longitudinal beam, and the third longitudinal beam are inverted U-shaped structures, and the lower ends of the first longitudinal beam, the second longitudinal beam, and the third longitudinal beam are respectively provided with support portions extending outward on both sides to support the first mounting member or the second mounting member. The support portions are provided with a plurality of mounting holes spaced apart along the sliding direction of the first mounting member or the second mounting member. The first mounting member and the second mounting member are respectively provided with connecting holes corresponding to the mounting holes. The first connecting mechanism and the second connecting mechanism are screw mechanisms or bolt mechanisms connected between the mounting holes and the connecting holes.

[0010] According to some embodiments of the present invention, the mounting hole is an elongated hole extending along the sliding direction of the first mounting member or the second mounting member.

[0011] According to some embodiments of the present invention, the cross-sections of the first mounting member and the second mounting member are inverted U-shaped, and the lower ends of the first mounting member and the second mounting member are respectively provided with connecting portions extending outward from both sides, and the mounting hole is provided in the connecting portion.

[0012] According to some embodiments of the present invention, the first mounting member and the second mounting member are respectively provided with external mounting holes, wherein the external mounting holes are elongated holes extending laterally along the sliding direction of the first mounting member or the second mounting member, or the external mounting holes are elongated holes extending along the sliding direction of the first mounting member or the second mounting member.

[0013] According to some embodiments of the present invention, the first mounting component and the second mounting component are misaligned.

[0014] According to some embodiments of the present invention, the first condenser is configured with a first support feet connected to the first mounting member, and the first mounting assembly includes b first mounting members, where a≥2 and b≥a+1. When the first condenser is installed and fixed to the base frame, at least one first mounting member is located between adjacent first support feet and connects the first longitudinal beam and the second longitudinal beam.

[0015] According to some embodiments of the present invention, the second condenser is configured with c second support feet connected to the second mounting member, and the second mounting assembly includes d second mounting members, where c≥2 and d≥c+1. When the second condenser is installed and fixed to the base frame, at least one second mounting member is located between adjacent second support feet and connects the second longitudinal beam and the third longitudinal beam.

[0016] According to some embodiments of the present invention, the side-by-side mold temperature controller further includes a tray, the frame is placed on the tray, and a set of rollers is provided at the bottom of the tray. Attached Figure Description

[0017] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0018] Figure 1 This is a schematic diagram of the side-by-side mold temperature controller according to an embodiment of the present invention;

[0019] Figure 2 This is an exploded view of a side-by-side mold temperature controller according to an embodiment of the present utility model;

[0020] Figure 3 This is a schematic diagram of the base frame of an embodiment of the present utility model;

[0021] Figure 4 This is a top view of the base frame of an embodiment of the present utility model;

[0022] Figure 5 This is an exploded view of the base frame according to an embodiment of the present utility model;

[0023] Figure 6 This is a schematic diagram illustrating the working principle of the first and second heat circulation mechanisms in an embodiment of the present invention.

[0024] Figure label:

[0025] First support foot 101, first condenser 110, first water inlet 111, first water inlet pipe 111a, first water outlet 112, first water outlet pipe 112a, first oil inlet 113, first oil inlet pipe 113a, first oil outlet 114, first oil outlet pipe 114a, first heater 120, first oil pump 130, connecting water pipe 131, connecting oil pipe 140, first switch valve 151, second switch valve 152, third switch valve 153;

[0026] Second support foot 201, second condenser 210, second water inlet 211, second water inlet pipe 211a, second water outlet 212, second water outlet pipe 212a, second oil inlet 213, second oil inlet pipe 213a, second oil outlet 214, second oil outlet pipe 214a, second heater 220, second oil pump 230;

[0027] First mounting component 310, external mounting hole 311, connecting part 320;

[0028] Second mounting component 410;

[0029] Frame 900, base frame 910, first longitudinal beam 911, second longitudinal beam 912, third longitudinal beam 913, support part 914, mounting hole 915, connecting hole 916, pallet 920, roller assembly 930. Detailed Implementation

[0030] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0031] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0032] In the description of this utility model, the use of "first" and "second" is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance or implicitly indicating the number of technical features or the order of the technical features.

[0033] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0034] The following is for reference. Figures 1 to 6 This invention describes a side-by-side mold temperature controller according to an embodiment of the present invention.

[0035] like Figure 1 , Figure 2 As shown, the side-by-side mold temperature controller according to an embodiment of the present invention includes a frame 900, a first heat circulation mechanism, and a second heat circulation mechanism. The frame 900 includes a base frame 910. The first heat circulation mechanism includes a first condenser 110 disposed on the base frame 910, a first heater 120 disposed above the first condenser 110, and a first oil pump 130. The first heat circulation mechanism also includes a second condenser 210 disposed on the base frame 910, a second heater 220 disposed above the second condenser 210, and a second oil pump 230.

[0036] The base frame 910 is slidably provided with a first mounting component, which includes at least two first mounting members 310 with adjustable spacing, and the first condenser 110 is connected to the first mounting member 310.

[0037] The base frame 910 is slidably provided with a second mounting assembly, which includes at least two second mounting members 410 with adjustable spacing, and the second condenser 210 is connected to the second mounting members 410.

[0038] The sliding first and second mounting components allow the base frame 910 to mount condensers 110 of different specifications, enabling the mold temperature controller to be configured with two different heat circulation mechanisms as needed to meet different usage requirements and provide high flexibility in use.

[0039] Specifically, in the heat circulation mechanism, the condenser 110 is a long and large component. The heater and oil pump are generally fixedly installed above the condenser 110. By adjusting the spacing and position of the mounting components, condensers of different specifications can be installed and used, thereby meeting the installation and use requirements of heat circulation mechanisms of different specifications.

[0040] like Figure 3 , Figure 4 , Figure 5As shown, in some embodiments of this utility model, the base frame 910 includes a first longitudinal beam 911, a second longitudinal beam 912, and a third longitudinal beam 913 that are spaced apart and parallel to each other. A first slide rail is formed between the first longitudinal beam 911 and the second longitudinal beam 912 to slidably engage with the first mounting member 310. A second slide rail is formed between the second longitudinal beam 912 and the third longitudinal beam 913 to slidably engage with the second mounting member 410. The first mounting member 310 is connected to the first longitudinal beam 911 and the second longitudinal beam 912 through a first connecting mechanism. The second mounting member 410 is connected to the second longitudinal beam 912 and the third longitudinal beam 913 through a second connecting mechanism. This enables the first mounting member 310 and the second mounting member 410 to be slidably arranged and can fix the positions of the first mounting member 310 and the second mounting member 410.

[0041] Specifically, crossbeams are provided at both ends of the first longitudinal beam 911, the second longitudinal beam 912, and the third longitudinal beam 913, so that the base frame 910 has an overall frame structure. The first slide rail and the second slide rail formed by the first longitudinal beam 911, the second longitudinal beam 912, and the third longitudinal beam 913 are parallel to each other. The first mounting part 310 and the second mounting part 410 slide and adjust in the same direction, which facilitates the installation of the first condenser 110 and the second condenser 210 in the same direction, and facilitates the parallel installation of the first heat circulation mechanism and the second heat circulation mechanism, so that the internal layout of the mold temperature controller is reasonable and maintenance is convenient.

[0042] The first and second slides are rectangular structures. The lengths of the first mounting member 310 and the second mounting member 410 match the width of the rectangular slides, so that the first mounting member 310 and the second mounting member 410 can slide within the corresponding slides.

[0043] It is understood that in some embodiments of this utility model, the first mounting member 310 and the second mounting member 410 can also be slidably mounted to the base frame 910 through a slide rail mechanism, a guide shaft mechanism, etc., which will not be described in detail here.

[0044] like Figure 3 , Figure 4 , Figure 5As shown, in some embodiments of this utility model, the cross-sections of the first longitudinal beam 911, the second longitudinal beam 912, and the third longitudinal beam 913 are inverted U-shaped structures, and the lower ends of the first longitudinal beam 911, the second longitudinal beam 912, and the third longitudinal beam 913 are respectively provided with support portions 914 extending outward from both sides to support the first mounting member 310 or the second mounting member 410. The support portions 914 are provided with a plurality of mounting holes 915 spaced apart along the sliding direction of the first mounting member 310 or the second mounting member 410. The first mounting member 310 and the second mounting member 410 are respectively provided with connecting holes 916 corresponding to the mounting holes 915. The first connecting mechanism and the second connecting mechanism are screw mechanisms or bolt mechanisms connected between the mounting holes 915 and the connecting holes 916. By making the connecting holes 916 cooperate with different mounting holes 915, the first mounting member 310 or the second mounting member 410 can be fixed in a set position, thereby realizing the position adjustment of the first mounting member 310 and the second mounting member 410.

[0045] Specifically, the support portion 914 is located inside the first slide and the second slide respectively, and extends along the length of the first slide and the second slide. The two ends of the first mounting member 310 and the second mounting member 410 are located above the support portion 914, thereby using the support portion 914 to support the first mounting member 310 and the second mounting member 410.

[0046] Furthermore, the cross-sections of the first longitudinal beam 911, the second longitudinal beam 912, and the third longitudinal beam 913 are inverted U-shaped structures. Supporting parts 914 extend outward from both sides of the lower ends of the first longitudinal beam 911, the second longitudinal beam 912, and the third longitudinal beam 913, so that the first longitudinal beam 911, the second longitudinal beam 912, and the third longitudinal beam 913 can be formed as a whole by sheet metal stamping or roll forming, directly forming an integral structure with high structural strength, convenient production and processing, and low cost.

[0047] It is understood that in some embodiments of this utility model, the first longitudinal beam 911, the second longitudinal beam 912 and the third longitudinal beam 913 may also be solid beams, which will not be described in detail here.

[0048] It is conceivable that in some embodiments of this utility model, the first connecting mechanism and the second connecting mechanism may also be a pin mechanism, a buckle mechanism, etc., which will not be described in detail here.

[0049] like Figure 3 , Figure 4 , Figure 5 As shown, in some embodiments of this utility model, the mounting hole 915 is an elongated hole extending along the sliding direction of the first mounting member 310 or the second mounting member 410, so as to facilitate fine adjustment of the mounting position of the first mounting member 310 or the second mounting member 410.

[0050] like Figure 5As shown, in some embodiments of this utility model, the cross-section of the first mounting member 310 and the second mounting member 410 is an inverted U-shaped structure. The two sides of the lower end of the first mounting member 310 and the second mounting member 410 are respectively provided with connecting portions 320 extending outward. The mounting hole 915 is provided in the connecting portion 320. The structure is simple and has high stability.

[0051] Specifically, the first mounting component 310 and the second mounting component 410 can be directly formed by sheet metal stamping or roll forming to directly form an integrated structure with a main body and connecting part 320, which has high structural stability, high structural strength, convenient production and processing, and low cost.

[0052] It is understood that in some embodiments of this utility model, the first mounting member 310 and the second mounting member 410 may also be solid elongated members, which will not be described in detail here.

[0053] like Figure 3 , Figure 4 , Figure 5 As shown, in some embodiments of this utility model, the first mounting member 310 and the second mounting member 410 are respectively provided with external mounting holes 311 for mounting the condenser. The external mounting hole 311 is an elongated hole extending laterally along the sliding direction of the first mounting member 310 or the second mounting member 410, so as to facilitate fine adjustment of the position of the condenser.

[0054] Specifically, the condenser's support feet are connected to the external mounting hole 311 by screws or bolts. After the positions of the first mounting part 310 and the second mounting part 410 are fixed, the screws or bolts of the condenser's support feet can be loosened, and the position of the condenser can be finely adjusted along the length of the external mounting hole 311, which facilitates the installation of the condenser and the connection of the pipes.

[0055] In some embodiments of this utility model, the first mounting member 310 and the second mounting member 410 are staggered to avoid stress concentration and improve the structural stability of the frame 900.

[0056] Specifically, when adjusting the positions of the first mounting component 310 and the second mounting component 410, the first mounting component 310 and the second mounting component 410 should be adjusted to not be on the same straight line. This is to avoid the load being concentrated at the set position of the first longitudinal beam 911, the second longitudinal beam 912 or the third longitudinal beam 913 after the first mounting component 310 and the second mounting component 410 support the condenser, which would cause stress concentration and affect the reliability of the base frame 910.

[0057] In some embodiments of this utility model, the first condenser 110 is provided with a first support feet 101 connected to the first mounting member 310, and the first mounting assembly includes b first mounting members 310, where a≥2 and b≥a+1. When the first condenser 110 is installed and fixed to the base frame 910, at least one first mounting member 310 is located between adjacent first support feet 101 and connects the first longitudinal beam 911 and the second longitudinal beam 912, so that at least one first mounting member 310 connects the first longitudinal beam 911 and the second longitudinal beam 912 between adjacent first support feet 101, thereby reducing the occurrence of deformation of the first longitudinal beam 911 and the second longitudinal beam 912 and improving the structural strength of the base frame 910.

[0058] In some embodiments of this utility model, the second condenser 210 is configured with c second support feet 201 connected to the second mounting member 410, and the second mounting assembly includes d second mounting members 410, where c ≥ 2 and d ≥ c + 1. When the second condenser 210 is installed and fixed to the base frame 910, at least one second mounting member 410 is located between adjacent second support feet 201 and connects the second longitudinal beam 912 and the third longitudinal beam 913, so that at least one second mounting member 410 connects the second longitudinal beam 912 and the third longitudinal beam 913 between adjacent second support feet 201, thereby reducing the occurrence of deformation of the second longitudinal beam 912 and the third longitudinal beam 913 and improving the structural strength of the base frame 910.

[0059] like Figure 1 , Figure 2 As shown, in some embodiments of this utility model, the side-by-side mold temperature controller also includes a tray 920, a frame 900 placed on the tray 920, and a set of rollers 930 provided at the bottom of the tray 920 to facilitate the movement of the mold temperature controller.

[0060] Specifically, the frame 900 can be installed on the tray 920 or placed directly on the tray 920 via quick-release mechanisms such as screw mechanisms or snap-fit ​​mechanisms, so as to facilitate the movement and use of the mold temperature controller or to remove it from the tray 920 for fixed installation.

[0061] like Figure 6 As shown, in some embodiments of this utility model, the first condenser 110 is provided with a first water inlet 111, a first water outlet 112, a first oil inlet 113, and a first oil outlet 114. The first water inlet 111 is connected to the first water inlet pipe 111a, the first water outlet 112 is connected to the first water outlet pipe 112a, the first oil inlet 113 is connected to the first oil inlet pipe 113a, and the first oil outlet 114 is connected to the first heater 120 through the first oil outlet pipe 114a.

[0062] The second condenser 210 is provided with a second water inlet 211, a second water outlet 212, a second oil inlet 213, and a second oil outlet 214. The second water inlet 211 is connected to the second water inlet pipe 211a, the second water outlet 212 is connected to the second water outlet pipe 212a, the second oil inlet 213 is connected to the second oil inlet pipe 213a, and the second oil outlet 214 is connected to the second heater 220 through the second oil outlet pipe 214a.

[0063] The first water outlet 112 is connected to the second water inlet 211 via a water pipe 131, the first oil inlet 113 is connected to the second oil outlet 214 via an oil pipe 140, the first oil inlet 113a is equipped with a first switch valve 151, the water pipe 131 is equipped with a second switch valve 152, and the oil pipe 140 is equipped with a third switch valve 153.

[0064] The side-by-side mold temperature controller has a first working mode and a second working mode.

[0065] When the parallel mold temperature controller is in the first working mode, the first switch valve 151 is open, the second switch valve 152 and the third switch valve 153 are closed, and the first heat circulation mechanism and the second heat circulation mechanism work independently.

[0066] When the parallel mold temperature controller is in its second operating mode, the first switch valve 151 is closed, and the second switch valve 152 and the third switch valve 153 are open. The first condenser 110 and the second condenser 210 are connected in series, and only one heat circulation system of the parallel mold temperature controller is working. At this time, the heat transfer oil enters the second oil inlet 213 of the second condenser 210 from the second oil inlet pipe 213a. After being cooled by the second condenser 210, it is connected to the first oil inlet 113 of the first condenser 110 through the second oil outlet 214 and the connecting oil pipe 140. After being cooled by the condenser 110, the oil is connected to the first heater 120 for heating through the first oil outlet 114 and the first oil outlet pipe 114a, and finally sent to the mold through the first oil pump 130. Cooling water enters the first condenser 110 from the first water inlet pipe 111a and the first water inlet 111, enters the second condenser 210 through the first water outlet 112, the connecting water pipe 131, the second water inlet pipe 211a, and the second water inlet 211, and finally is sent out from the second water outlet 212 and the second water outlet pipe 212a of the second condenser 210.

[0067] The second working mode is mainly applicable to molds for high-temperature injection molding or die casting. When the heat transfer oil is heated to a high temperature by the mold, it enters the condenser with a lower water temperature. The large temperature difference can easily cause pressure or stress changes that can damage the pipeline and cause leakage accidents.

[0068] In this invention, in the second working mode, the water in the second condenser 210 is the external drainage of the first condenser 110 and has a certain residual temperature. The heat transfer oil entering the mold temperature controller first enters the second condenser 210. Since the water temperature in the second condenser 210 is relatively high, the temperature difference between the water and the heat transfer oil in the second condenser 210 will not be too large. After the heat transfer oil is cooled to a certain temperature by the second condenser 210, it enters the first condenser 110 and is cooled a second time by the lower temperature cooling water, thereby ensuring the cooling effect and improving safety.

[0069] Of course, this invention is not limited to the above-described embodiments. Those skilled in the art can make equivalent modifications or substitutions without departing from the spirit of this invention. All such equivalent modifications or substitutions are included within the scope defined by the claims of this application.

Claims

1. A side-by-side mold temperature controller, characterized in that, include: A frame (900), said frame (900) including a base frame (910); The first heat circulation mechanism includes a first condenser (110) disposed on the base frame (910), a first heater (120) disposed above the first condenser (110), and a first oil pump (130). The second heat circulation mechanism, the first heat circulation mechanism includes a second condenser (210) disposed on the base frame (910) and a second heater (220) and a second oil pump (230) disposed above the second condenser (210); The base frame (910) is slidably provided with a first mounting assembly, the first mounting assembly including at least two first mounting members (310) with adjustable spacing, and the first condenser (110) is connected to the first mounting member (310). The base frame (910) is slidably provided with a second mounting assembly, the second mounting assembly including at least two second mounting members (410) with adjustable spacing, and the second condenser (210) is connected to the second mounting members (410).

2. The side-by-side mold temperature controller according to claim 1, characterized in that, The base frame (910) includes a first longitudinal beam (911), a second longitudinal beam (912), and a third longitudinal beam (913) that are spaced apart and parallel to each other. A first slide rail is formed between the first longitudinal beam (911) and the second longitudinal beam (912) to slidably engage with the first mounting member (310). A second slide rail is formed between the second longitudinal beam (912) and the third longitudinal beam (913) to slidably engage with the second mounting member (410). The first mounting member (310) is connected to the first longitudinal beam (911) and the second longitudinal beam (912) through a first connecting mechanism. The second mounting member (410) is connected to the second longitudinal beam (912) and the third longitudinal beam (913) through a second connecting mechanism.

3. The side-by-side mold temperature controller according to claim 2, characterized in that, The cross-sections of the first longitudinal beam (911), the second longitudinal beam (912), and the third longitudinal beam (913) are inverted U-shaped. The lower ends of the first longitudinal beam (911), the second longitudinal beam (912), and the third longitudinal beam (913) are respectively provided with support portions (914) that can support the first mounting member (310) or the second mounting member (410). The support portions (914) are provided with a plurality of mounting holes (915) that are spaced apart along the sliding direction of the first mounting member (310) or the second mounting member (410). The first mounting member (310) and the second mounting member (410) are respectively provided with connecting holes (916) corresponding to the mounting holes (915). The first connecting mechanism and the second connecting mechanism are connected by screw mechanisms or bolt mechanisms located between the mounting holes (915) and the connecting holes (916).

4. The side-by-side mold temperature controller according to claim 3, characterized in that, The mounting hole (915) is an elongated hole extending along the sliding direction of the first mounting member (310) or the second mounting member (410).

5. The side-by-side mold temperature controller according to claim 3, characterized in that, The first mounting member (310) and the second mounting member (410) have an inverted U-shaped cross section. The lower ends of the first mounting member (310) and the second mounting member (410) are respectively provided with connecting parts (320) extending outward from both sides. The mounting hole (915) is provided in the connecting part (320).

6. The side-by-side mold temperature controller according to claim 3, characterized in that, The first mounting member (310) and the second mounting member (410) are respectively provided with an external mounting hole (311). The external mounting hole (311) is an elongated hole extending laterally along the sliding direction of the first mounting member (310) or the second mounting member (410), or the external mounting hole (311) is an elongated hole extending along the sliding direction of the first mounting member (310) or the second mounting member (410).

7. The side-by-side mold temperature controller according to claim 2, characterized in that, The first mounting component (310) and the second mounting component (410) are misaligned.

8. The side-by-side mold temperature controller according to claim 2, characterized in that, The first condenser (110) is provided with a first support foot (101) connected to the first mounting member (310). The first mounting assembly includes b first mounting members (310), where a ≥ 2 and b ≥ a + 1. When the first condenser (110) is installed and fixed to the base frame (910), at least one first mounting member (310) is located between adjacent first support feet (101) and connects the first longitudinal beam (911) and the second longitudinal beam (912).

9. The side-by-side mold temperature controller according to claim 2, characterized in that, The second condenser (210) is provided with c second support feet (201) connected to the second mounting member (410). The second mounting assembly includes d second mounting members (410), where c ≥ 2 and d ≥ c + 1. When the second condenser (210) is installed and fixed to the base frame (910), at least one second mounting member (410) is located between adjacent second support feet (201) and connects the second longitudinal beam (912) and the third longitudinal beam (913).

10. The side-by-side mold temperature controller according to claim 1, characterized in that, The side-by-side mold temperature controller also includes a tray (920), the frame (900) is placed on the tray (920), and a set of rollers (930) is provided at the bottom of the tray (920).