A stable transformer
By combining the support platform, lower clamp, outer ring, pad, and upper clamp, along with anti-vibration and temperature control modules, the loosening problem caused by vibration during transformer operation is solved, achieving the effects of stability and temperature control.
Patent Information
- Application Number
- CN202411845937.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2044-12-16
AI Technical Summary
During operation, vibrations can cause various connection points to loosen, affecting the stability of the transformer.
The transformer employs a combined structure consisting of a support platform, lower clamp, outer ring, pad, and upper clamp, along with anti-vibration and temperature control modules. Through components such as elastic elements, linkage arms, and corrugated airbags, it achieves stability and temperature control of the transformer.
It effectively alleviates transformer vibration and temperature problems, improves transformer stability and the tightness of connection points, and prevents loosening.
Smart Images

Figure CN119650247B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of transformers, and particularly relates to a stable transformer. BACKGROUND
[0002] A transformer is a device for changing AC voltage by using the principle of electromagnetic induction, and main components are a primary coil, a secondary coil and a core (magnetic core); main functions are voltage transformation, current transformation, impedance transformation, isolation, voltage stabilization (magnetic saturation transformer) and the like;
[0003] However, the transformer will vibrate during operation, and the vibration will gradually increase as the operation time increases, at this time, the abutment positions on the transformer will also be affected by the vibration and become loose, thereby affecting the use stability of the transformer.
[0004] Therefore, the stable transformer is provided. SUMMARY
[0005] This section aims to summarize some aspects of the embodiments of the application and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract and title of the specification to avoid obscuring the purpose of this section, abstract and title, and such simplifications or omissions cannot be used to limit the scope of the application.
[0006] In view of the following technical problems in the prior art: however, the transformer will vibrate during operation, and the vibration will gradually increase as the operation time increases, at this time, the abutment positions on the transformer will also be affected by the vibration and become loose, thereby affecting the use stability of the transformer.
[0007] To solve the above technical problems, the application provides the following technical scheme: a stable transformer, comprising a bearing table, a lower clamping piece, an outer ring, a pad and an upper clamping piece.
[0008] The lower clamping piece is arranged below the outer ring, the pad is arranged above the outer ring, the upper clamping piece is arranged above the pad, the bearing table is arranged below the lower clamping piece, the corner of the bearing table is reserved with a positioning channel, the surface of the bearing table is arranged with a guide table, the guide table is located between the bearing table and the lower clamping piece, the bearing table is arranged with an anti-vibration module, and the outer ring is arranged with a temperature control module.
[0009] The anti-vibration module comprises a U frame, a linkage arm, a linkage pad and an L frame one, the U frame is arranged at the back of the lower clamping piece, the U frame is telescopically connected to the guide table, the guide table is reserved with a guide channel, the back of the U frame and the upper surface of the bearing table are arranged with an elastic piece one at the middle position, and the two ends of the elastic piece one are fixedly connected with the U frame and the surface of the bearing table.
[0010] The temperature control module comprises an inner hollow ring, a butt joint frame one and a transmission cylinder, the inner hollow ring is clamped on the outer ring, the butt joint frame one is arranged at the middle position of the inner hollow ring, the lower clamp is arranged with a corrugated air bag at the middle position of the guide table, the transmission cylinder is butt jointed on the corrugated air bag, the side position of the inner hollow ring is provided with fins, and the other side of the inner hollow ring is reserved with a flow guide channel;
[0011] The cushion block is butt jointed on the upper clamp through the screw stud, the end of the screw stud extending out of the upper clamp is provided with a nut, the upper position of the nut is hinged with a control cap, and a long slot is milled on the screw stud.
[0012] As a preferred technical scheme of a stable transformer, the linkage arm is hinged at the edge position of the U frame, the linkage pad is hinged at the other end of the linkage arm, the L frame one is horizontally telescopic butt jointed on the bearing table, the linkage pad is telescopic in the L frame one, and the edge position of the L frame one is provided with an L frame two.
[0013] As a preferred technical scheme of a stable transformer, the bearing table is reserved with a directional channel on the upper surface, the L frame two is telescopic in the directional channel, the bearing table is hinged with a bidirectional screw rod, the L frame two is screwed to the outer periphery of the bidirectional screw rod, the other end of the bidirectional screw rod extending out of the bearing table is provided with a linkage wheel, and the linkage wheel is reserved with a restraint tooth gap.
[0014] As a preferred technical scheme of a stable transformer, the edge side of the bearing table is provided with a restraint table, the L frame three is telescopic in the restraint table, the L frame three is embedded butt jointed with the restraint tooth gap, and the back of the L frame three is provided with a second elastic element at the middle position of the inner side of the restraint table.
[0015] As a preferred technical scheme of a stable transformer, the inner hollow ring is reserved with a butt joint channel near one side of the butt joint frame one, the butt joint frame two is fixedly connected at the two extreme positions of the butt joint frame one, the butt joint frame two is reserved with a recess at the edge, the recess is telescopic with an embedded seat one, the two edges of the embedded seat one are opposite slopes, the embedded seat one is provided with a flexible pad at the middle position of the recess, and the butt joint frame two is provided with a linkage rod at one side of the butt joint frame one.
[0016] As a preferred technical scheme of a stable transformer, the linkage rod is butt jointed with a transmission frame at one end, a pair of transmission wheels are arranged at the middle position of the transmission frame, the transmission wheel is provided with a semicircular seat on the peripheral surface, a rotating rod is arranged at the center position of the transmission wheel, the rotating rod is butt jointed with an operation wheel at one end extending into the transmission cylinder, and the peripheral surface of the operation wheel is milled with a restraint gap.
[0017] As a preferred technical scheme of the stable transformer, the circumferential surface of the transmission cylinder is provided with a circular hoop, the circular hoop is movably provided with a second embedding seat, the second embedding seat is in embedded and abutting connection with the constraint gap, the circular hoop is hingedly provided with a transmission shaft, the transmission shaft is in abutting connection with the second embedding seat, and one end of the transmission shaft extending out of the circular hoop is fixedly connected with an operation cap.
[0018] As a preferred technical scheme of the stable transformer, the nut is provided with a receiving cavity, the receiving cavity is movably provided with an embedding platform, and the embedding platform and the receiving cavity are provided with an elastic member.
[0019] As a preferred technical scheme of the stable transformer, the inner edge of the receiving cavity is milled to form a storage cavity, the storage cavity is movably provided with an L-shaped seat, and the L-shaped seat is in abutting connection with the control cap.
[0020] As a preferred technical scheme of the stable transformer, the embedding platform is provided with a gentle flattening opening, and the gentle flattening opening is milled to form a bevel towards the opening of the storage cavity.
[0021] The beneficial effects of the present application are as follows:
[0022] 1、When the transformer is running in the outer ring, the U-shaped frame will move in the guide channel, at this time, the elastic member will be blocked to a certain extent, so as to alleviate the shaking of the outer ring, at the same time, the linkage arm will be deflected, so that the linkage pad moves in the L-shaped frame one in a transverse manner, at this time, the L-shaped frame one and the bearing table form two obstacles to the linkage pad in the movement position of the linkage pad, so as to alleviate the shaking of the outer ring, and under the action of the linkage wheel and the L-shaped frame two, the effect of the L-shaped frame one on the linkage pad can be further controlled, so as to control the alleviation effect of the shaking;
[0023] 2、The transformer is provided with fins and a hollow inner ring, at this time, the temperature of the outer ring during operation is accelerated to be released, and the temperature is released from the position of the fins, the lower clamping piece presses the corrugated air bag, at this time, the corrugated air bag will block the lower clamping piece, further improving the effect of alleviating the shaking of the outer ring, at the same time, the gas in the corrugated air bag enters the transmission cylinder and reaches the abutting frame one, and reaches the inner ring in the abutting frame two and the abutting channel, and finally is guided out at the position of the flow guide channel, when the normal gas passes through the inner ring, the temperature in the inner ring can be controlled, and the gas guided out from the flow guide channel can accelerate the flow of the gas around the outer ring, so that the temperature of the outer ring can be optimally controlled;
[0024] 3, The transformer is connected to the outer ring through the inner hollow hoop, and under the action of the butt joint frame two and the butt joint channel, the butt joint frame one and the inner hollow hoop are butt jointed, the embedding seat one is retracted under the shape characteristics, and after extending into the inner hollow ring, the embedding seat one is blocked at the back position of the butt joint channel under the action of the flexible pad, at this time, the inner hollow ring and the butt joint frame one can be assembled, the operating cap is twisted, the hinge relationship between the transmission shaft and the embedding seat two, and the telescopic movement relationship of the embedding seat two in the circular hoop, so that the embedding seat two can be separated from the constraint gap, and the operating wheel is operated, at this time, the transmission wheel linkage semicircular seat is pressed against the transmission frame, the linkage rod is directly acted on the embedding seat one, and the embedding seat one can be telescopic, at this time, the butt joint frame two can be separated from the butt joint channel;
[0025] 4, The transformer is connected to the outer ring through the inner hollow hoop, and under the action of the butt joint frame two and the butt joint channel, the butt joint frame one and the inner hollow hoop are butt jointed, the embedding seat one is retracted under the shape characteristics, and after extending into the inner hollow ring, the embedding seat one is blocked at the back position of the butt joint channel under the action of the flexible pad, at this time, the inner hollow ring and the butt joint frame one can be assembled, the operating cap is twisted, the hinge relationship between the transmission shaft and the embedding seat two, and the telescopic movement relationship of the embedding seat two in the circular hoop, so that the embedding seat two can be separated from the constraint gap, and the operating wheel is operated, at this time, the transmission wheel linkage semicircular seat is pressed against the transmission frame, the linkage rod is directly acted on the embedding seat one, and the embedding seat one can be telescopic, at this time, the butt joint frame two can be separated from the butt joint channel;
[0026] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art from the description, or can be learned by practice of the present application. The objects and other advantages of the present application can be achieved and obtained by the structure particularly pointed out in the specification and drawings. BRIEF DESCRIPTION OF DRAWINGS
[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor. Among them:
[0028] Figure 1 It is the overall structure diagram of the present application.
[0029] Figure 2 It is the bottom structure diagram of the present application.
[0030] Figure 3 It is the cutaway diagram of the bearing table of the present application Figure 1 .
[0031] Figure 4Cutaway view of the bearing table of the present application Figure 2 .
[0032] Figure 5 Cutaway view of the bearing table of the present application
[0033] Figure 6 Cutaway view of the bearing table of the present application
[0034] Figure 7 Cutaway view of the bearing table of the present application
[0035] Figure 8 Cutaway view of the bearing table of the present application
[0036] Figure 9 Cutaway view of the bearing table of the present application
[0037] Figure 10 Cutaway view of the bearing table of the present application Figure 10
[0038] Cutaway view of the bearing table of the present application Figure 11
[0039] Cutaway view of the bearing table of the present application Figure 12
[0040] Reference signs: 100, bearing table; 101, positioning channel; 102, guiding table; 103, lower clamp; 104, outer ring; 105, anti-shake module; 107, U frame; 108, guiding channel; 109, elastic member one; 110, linkage arm; 111, linkage pad; 112, L bracket one; 113, L bracket two; 114, directional channel; 115, bidirectional screw; 116, linkage wheel; 117, restraint jaw; 118, restraint table; 119, L bracket three; 120, elastic member two; 106, temperature control module; 121, inner empty ring; 122, docking bracket one; 123, transmission cylinder; 124, fin; 125, flow guide channel; 126, docking channel; 127, docking bracket two; 128, embedded seat one; 129, flexible pad; 130, linkage rod; 131, transmission bracket; 132, transmission wheel; 133, semicircular seat; 134, rotating rod; 135, operation wheel; 136, restraint gap; 137, circular hoop; 138, embedded seat two; 139, transmission shaft; 140, operation cap; 141, corrugated air bag; 200, cushion block; 201, stud; 202, long slot; 300, upper clamp; 301, nut; 302, control cap; 303, storage cavity; 304, embedded table; 305, elastic member three; 306, inclined slot; 307, buffer slot; 308, storage cavity; 309, L seat. DETAILED DESCRIPTION
[0041] In order to make the above objectives, characteristics and advantages of the present application more apparent, a detailed description of the specific embodiments of the present application will be given below with reference to the accompanying drawings.
[0042] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. The present application, however, can be practiced in a variety of ways other than those specifically described, and the present application is not limited to the specific embodiments described below.
[0043] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor does it mean an embodiment that is separate from or mutually exclusive with other embodiments.
[0044] Thirdly, the present application is described in detail in conjunction with the schematic diagram. In the detailed description of the embodiments of the present application, the cross-sectional view of the device structure is partially enlarged without the general proportion for the convenience of description, and the schematic diagram is only an example, which should not limit the scope of protection of the present application. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in actual manufacture.
[0045] Embodiment 1, refer to Figure 1 and 2 A stable transformer includes a bearing table 100, a lower clamp 103, an outer ring 104, a cushion block 200 and an upper clamp 300. The lower clamp 103 is arranged below the outer ring 104, the cushion block 200 is arranged above the outer ring 104, the upper clamp 300 is arranged above the cushion block 200, and the bearing table 100 is arranged below the lower clamp 103. The bearing table 100 has a whole carrying effect. The corner of the bearing table 100 is reserved with a positioning channel 101, which can assemble the whole under the action of the positioning channel 101. The surface of the bearing table 100 is arranged with a guide table 102, which is located between the bearing table 100 and the lower clamp 103. The bearing table 100 is arranged with an anti-shake module 105, which is used to prevent the outer ring 104 from shaking. The outer ring 104 is arranged with a temperature control module 106, which can control the temperature of the outer ring 104.
[0046] Refer to Figure 3 , 4And 5, the anti-shake module 105 includes a U frame 107, a linkage arm 110, a linkage pad 111 and an L bracket one 112, the U frame 107 is arranged on the back of the lower clamp 103, the U frame 107 is in telescopic motion and is connected to the guide table 102, the guide table 102 is provided with a guide channel 108, the back of the U frame 107 and the middle position of the upper surface of the bearing table 100 are provided with an elastic element one 109, both ends of the elastic element one 109 are fixedly connected with the U frame 107 and the surface of the bearing table 100, the linkage arm 110 is hinged to the edge position of the U frame 107, the linkage pad 111 is hinged to the other end of the linkage arm 110, the L bracket one 112 is in telescopic motion and is connected to the bearing table 100, the linkage pad 111 is in telescopic motion in the L bracket one 112, the edge position of the L bracket one 112 is provided with an L bracket two 113, the bearing table 100 is provided with a directional channel 114 on the upper surface, the L bracket two 113 is in telescopic motion in the directional channel 114, the bearing table 100 is hinged with a bidirectional screw 115, the L bracket two 113 is screwed to the outer periphery of the bidirectional screw 115, wherein the L bracket two 113 is provided with an internal screw hole, the end of the bidirectional screw 115 that is out of the bearing table 100 is provided with a linkage wheel 116, the linkage wheel 116 is provided with a constraint tooth 117, the bearing table 100 is provided with a constraint table 118 on the side, the constraint table 118 is in telescopic motion with an L bracket three 119, the L bracket three 119 is in embedded connection with the constraint tooth 117, wherein when the L bracket three 119 is embedded in the constraint tooth 117, the position of the linkage wheel 116 can be limited, the back of the L bracket three 119 is provided with an elastic element two 120 in the middle position of the constraint table 118.
[0047] When the outer ring 104 shakes, the lower clamp 103 shakes, the lower clamp 103 links the U frame 107 in the guide channel 108 to stretch and contract, at this time the elastic piece one 109 resists the stretching and contracting of the U frame 107, so as to alleviate the shaking of the outer ring 104; in the process of stretching and contracting of the U frame 107 in the guide channel 108, the linkage arm 110 is deflected at this time, so that the linkage pad 111 stretches and contracts in the L frame one 112 in a transverse manner, at this time the L frame one 112 and the bearing table 100 form two obstacles to the linkage pad 111 in the process of changing the position of the linkage pad 111, so as to alleviate the stretching and contracting effect of the U frame 107, thereby alleviating the shaking of the outer ring 104; before overall assembly, when the linkage pad 111 is placed inside the L frame one 112, pull the L frame three 119 at this time, the L frame three 119 is not connected with the constraint jaw 117, after the linkage pad 111 is placed, rotate the linkage wheel 116, under the action of the wire, the L frame two 113 can stretch and contract along the directional channel 114, the L frame two 113 links the L frame one 112 to approach the edge position of the linkage pad 111, at this time the effect of controlling the L frame one 112 to act on the linkage pad 111 can be controlled, thereby controlling the effect of alleviating the shaking, after the position of the linkage pad 111 is placed, the pull on the L frame three 119 is cancelled, under the characteristics of the elastic piece two 120, the L frame three 119 is embedded into the corresponding constraint jaw 117, at this time the linkage wheel 116 cannot be controlled, the positions of the L frame one 112 and the L frame two 113 are limited, so that the linkage pad 111 can control the position of the linkage pad 111 in the L frame one 112 to different degrees when the linkage pad 111 is placed in the L frame one 112, so as to cope with the shaking under different effects.
[0048] Embodiment 2, refer to Figure 2 , 6, 7, 8 and 9, the temperature control module 106 comprises an inner hollow ring 121, a docking rack one 122 and a transmission cylinder 123, the inner hollow ring 121 is clamped on the surface of the outer ring 104, the docking rack one 122 is arranged at the middle position of the pair of inner hollow rings 121, the corrugated air bag 141 is arranged at the middle position of the lower clamp 103 and the guide table 102, the transmission cylinder 123 is docked on the corrugated air bag 141, the corrugated air bag 141 can be correspondingly arranged with a one-way valve, the edge position of the inner hollow ring 121 is provided with fins 124, the other edge of the inner hollow ring 121 is reserved as a flow guide channel 125, and the edge position of the inner hollow ring 121 close to the docking rack one 122 is reserved as a docking channel 126. The two extreme positions of the docking rack two 127 are fixedly connected to the docking rack one 122, the edge of the docking rack two 127 is reserved as a notch, the notch is movably provided with an embedded seat one 128, the two edges of the embedded seat one 128 are opposite slopes, one of which facilitates the wedge linkage of the embedded seat one 128 to the linkage rod 130, and the other makes the embedded seat one 128 more smooth when docking at the entrance of the docking channel 126. The middle position of the embedded seat one 128 and the notch is provided with a flexible pad 129, one edge of the docking rack two 127 extending into the docking rack one 122 is provided with a linkage rod 130, the other end of the linkage rod 130 is docked with a transmission rack 131, a pair of transmission racks 131 are arranged at the middle position, and the transmission wheel 132 is arranged at the center position of the transmission wheel 132. The transmission wheel 132 is movably provided with a rotating rod 134, one end of the rotating rod 134 extending into the transmission cylinder 123 is docked with an operation wheel 135, the periphery of the operation wheel 135 is milled with a constraint gap 136, the periphery of the transmission cylinder 123 is provided with a circular ring 137, the circular ring 137 movably has an embedded seat two 138, the embedded seat two 138 is embeddedly docked with the constraint gap 136, the transmission shaft 139 is screwed in the circular ring 137, the transmission shaft 139 is externally milled with a spiral tooth, the transmission shaft 139 is hinged with the embedded seat two 138, and one end of the transmission shaft 139 extending out of the circular ring 137 is fixedly connected with an operation cap 140.
[0049] The inner hollow ring 121 is hollow, and the temperature of the outer ring 104 during operation can be transmitted to the inner hollow ring 121, and the temperature is released by the position of the fin 124. Normal gas enters the transmission cylinder 123, reaches the docking rack one 122, and reaches the inner hollow ring 121 under the docking rack two 127 and the docking channel 126, and is finally guided out at the position of the guide channel 125. When the normal gas passes through the inner hollow ring 121, the temperature in the inner hollow ring 121 can be controlled, and the gas guided out from the position of the guide channel 125 can accelerate the gas flow around the outer ring 104, so that the temperature of the outer ring 104 can be optimally controlled. During the operation of the outer ring 104, the lower clamp 103 will move, and at this time the lower clamp 103 will press the corrugated air bag 141, and at this time the corrugated air bag 141 will block the lower clamp 103. The effect of further improving the damping effect of the outer ring 104; After the inner hollow ring 121 is connected to the outer ring 104, the docking rack one 122 and the inner hollow ring 121 are docked under the action of the docking rack two 127 and the docking channel 126. The first embedding seat 128 will be retracted under the shape characteristics, and after extending into the inner hollow ring 121, the first embedding seat 128 is blocked at the back position of the docking channel 126 under the action of the flexible pad 129. At this time, the inner hollow ring 121 and the docking rack one 122 can be docked and assembled. The operating cap 140 is twisted, and the hinged relationship between the transmission shaft 139 and the second embedding seat 138, and the telescopic movement relationship of the second embedding seat 138 in the circular ring 137 make the second embedding seat 138 can be separated from the constraint gap 136, and the operating wheel 135 is rotated, and the transmission wheel 132 linkage semicircular seat 133 pushes the transmission rack 131, and the linkage rod 130 directly acts on the first embedding seat 128. The first embedding seat 128 can be telescopic, and the docking rack two 127 can be separated from the docking channel 126 at this time. When the outer ring 104 shakes, the linkage lower clamp 103 moves together, the U-shaped frame 107 moves together with the lower clamp 103, and the elastic member one 109 slows down the U-shaped frame 107, so as to alleviate the shaking during the operation of the outer ring 104.
[0050] Example 3, refer to Figure 1 、 10As shown in Figs. 11 and 12, the cushion block 200 is connected to the upper clamp 300 through the stud 201, the end surface of the stud 201 extending out of the upper clamp 300 is provided with a nut 301, the upper portion of the nut 301 is hingedly connected with a control cap 302, a long slot 202 is milled on the stud 201, a receiving cavity 303 is reserved on the nut 301, a block 304 is telescopically movable in the receiving cavity 303, a resilient member 305 is arranged between the block 304 and the receiving cavity 303, a flat 307 is reserved on the block 304, a storage cavity 308 is milled on the inner surface of the receiving cavity 303, a slant 306 is milled on the opening of the storage cavity 308, and an L-shaped seat 309 is movably arranged in the storage cavity 308.
[0051] The upper clamp 300 is connected to the stud 201, and then the nut 301 is screwed to the outside of the stud 201, in this process, the control cap 302 is operated by rotating, the L-shaped seat 309 is embedded in the flat 307, at this time, the nut 301 is tightened to lock the position of the stud 201, after the position is properly adjusted, the block 304 is positioned corresponding to the long slot 202, the control cap 302 is rotated to reset, at this time, the L-shaped seat 309 is separated from the flat 307, at this time, the block 304 is embedded in the long slot 202 under the action of the resilient member 305, at this time, the nut 301 can be constrained, and under the characteristics of the slant 306, normal rotation force generated by shaking cannot be greater than the force of the resilient member 305, so that the stability of the outer ring 104 after being connected and assembled can be ensured, and the loosening effect is achieved, and the lower clamp 103 can be arranged with the same mechanism as the upper clamp 300.
[0052] It should be understood that, in the development of any actual implementation, numerous implementation-specific decisions can be made. Such development efforts might be complex and time-consuming, but would nevertheless be a routine undertaking for those of ordinary skill in the art having the benefit of this disclosure, without undue experimentation.
[0053] It should be noted that the above examples are only used to illustrate the technical solutions of the present application but not limit the present application, and although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the present application, and all of them should be covered in the scope of the claims of the present application.
Claims
1. A stable transformer, characterized by: Including bearing platform (100), lower clamp (103), outer ring (104), cushion block (200) and upper clamp (300); The lower clamp (103) is arranged below the outer ring (104), the cushion block (200) is arranged above the outer ring (104), the upper clamp (300) is arranged above the cushion block (200), the bearing platform (100) is arranged below the lower clamp (103), the corner of the bearing platform (100) is reserved with a positioning channel (101), the surface of the bearing platform (100) is arranged with a guide platform (102), the guide platform (102) is located in the middle position of the bearing platform (100) and the lower clamp (103), the bearing platform (100) is arranged with an anti-shake module (105), and the outer ring (104) is arranged with a temperature control module (106); The anti-shake module (105) comprises a U frame (107), a linkage arm (110), a linkage pad (111) and an L bracket one (112), the U frame (107) is arranged at the back of the lower clamp (103), the U frame (107) is connected to the guide platform (102) in an extension mode, the guide platform (102) is reserved with a guide channel (108), the back of the U frame (107) and the upper surface of the bearing platform (100) are arranged with an elastic element one (109) in the middle position, and the two ends of the elastic element one (109) are fixedly connected with the U frame (107) and the surface of the bearing platform (100); The temperature control module (106) comprises an inner hollow ring (121), a butt joint bracket one (122) and a transmission cylinder (123), the inner hollow ring (121) is clamped on the surface of the outer ring (104), the butt joint bracket one (122) is arranged at the middle position of the pair of inner hollow rings (121), the lower clamp (103) and the guide platform (102) are arranged with a corrugated air bag (141) in the middle position, the transmission cylinder (123) is connected to the corrugated air bag (141), the edge side position of the inner hollow ring (121) is arranged with a fin (124), and the other edge of the inner hollow ring (121) is reserved with a flow guide channel (125); The cushion block (200) is connected to the upper clamp (300) in a penetrating mode through a stud (201), one end of the stud (201) extending out of the upper clamp (300) is arranged with a nut (301), the upper position of the nut (301) is hinged with a control cap (302), and the stud (201) is milled with a long slot (202).
2. The stable transformer of claim 1, wherein: The linkage arm (110) is hinged to the edge position of the U frame (107), the linkage pad (111) is hinged to the other end of the linkage arm (110), the L bracket one (112) is connected to the bearing platform (100) in a transverse extension mode, the linkage pad (111) moves in the L bracket one (112) in an extension mode, and the edge position of the L bracket one (112) is arranged with an L bracket two (113).
3. The stable transformer of claim 2, wherein: The upper surface of the bearing table (100) is reserved with a directional channel (114), the L-shaped frame two (113) is telescopic in the directional channel (114), the bearing table (100) is hinged with a bidirectional screw rod (115), the L-shaped frame two (113) is screwed to the outer periphery of the bidirectional screw rod (115), the end of the bidirectional screw rod (115) extending out of the bearing table (100) is provided with a linkage wheel (116), and the linkage wheel (116) is reserved with a constraint jaw (117).
4. The stable transformer of claim 1, wherein: The side of the bearing table (100) is provided with a constraint table (118), the L-shaped frame three (119) is telescopic in the constraint table (118), the L-shaped frame three (119) is embeddedly connected with the constraint jaw (117), and the back of the L-shaped frame three (119) is provided with an elastic element two (120) at the middle position of the inner side of the constraint table (118).
5. The stable transformer of claim 1, wherein: The inner hollow ring (121) is reserved with an interlocking channel (126) near one side of the interlocking frame one (122), the two extreme positions of the interlocking frame one (122) are fixedly connected with an interlocking frame two (127), the side of the interlocking frame two (127) is reserved with a notch, the notch is telescopic with an embedded seat one (128), the two sides of the embedded seat one (128) are opposite slopes, the embedded seat one (128) is provided with a flexible pad (129) at the middle position of the notch, and the interlocking frame two (127) is provided with a linkage rod (130) at one side of the interlocking frame one (122).
6. The stable transformer of claim 5, wherein: The end of the linkage rod (130) is connected with a transmission frame (131), a pair of transmission frames (131) are provided with a transmission wheel (132) at the middle position, the periphery of the transmission wheel (132) is provided with a semicircular seat (133), the center position of the transmission wheel (132) is provided with a rotating rod (134), one end of the rotating rod (134) extending into the transmission cylinder (123) is connected with an operation wheel (135), and the periphery of the operation wheel (135) is milled with a constraint gap (136).
7. The stable transformer of claim 1, wherein: The periphery of the transmission cylinder (123) is provided with a circular hoop (137), the circular hoop (137) is telescopic with an embedded seat two (138), the embedded seat two (138) is embeddedly connected with the constraint gap (136), the transmission shaft (139) is hinged in the circular hoop (137), the transmission shaft (139) is connected with the embedded seat two (138), and the end of the transmission shaft (139) extending out of the circular hoop (137) is fixedly connected with an operation cap (140).
8. The stable transformer of claim 1, wherein: The upper surface of the bearing table (100) is reserved with a directional channel (114), the L-shaped frame two (113) is telescopic in the directional channel (114), the bearing table (100) is hinged with a bidirectional screw rod (115), the L-shaped frame two (113) is screwed to the outer periphery of the bidirectional screw rod (115), the end of the bidirectional screw rod (115) extending out of the bearing table (100) is provided with a linkage wheel (116), and the linkage wheel (116) is reserved with a constraint jaw (117).
9. The stable transformer of claim 8, wherein: The inner side of the receiving cavity (303) is milled with a storage cavity (308), the L-shaped seat (309) is movably arranged in the storage cavity (308), and the L-shaped seat (309) is connected with the control cap (302).
10. The stable transformer of claim 8, wherein: The embedding base (304) is reserved with a buffer opening (307), and the buffer opening (307) is milled with an inclined opening (306) towards the opening of the storage cavity (308).
Citation Information
Patent Citations
Dry transformer
CN205282226U
Exchange transmission electric locomotive transformer
CN208478069U