WO2023165331A1 - 螺母组件及电子膨胀阀 - Google Patents
螺母组件及电子膨胀阀 Download PDFInfo
- Publication number
- WO2023165331A1 WO2023165331A1 PCT/CN2023/076003 CN2023076003W WO2023165331A1 WO 2023165331 A1 WO2023165331 A1 WO 2023165331A1 CN 2023076003 W CN2023076003 W CN 2023076003W WO 2023165331 A1 WO2023165331 A1 WO 2023165331A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- limiting
- nut
- connecting plate
- groove
- valve
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16H—GEARING
- F16H25/00—Gearings comprising primarily only cams, cam-followers and screw-and-nut mechanisms
- F16H25/18—Gearings comprising primarily only cams, cam-followers and screw-and-nut mechanisms for conveying or interconverting oscillating or reciprocating motions
- F16H25/20—Screw mechanisms
- F16H25/24—Elements essential to such mechanisms, e.g. screws, nuts
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
- F16K1/00—Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces
- F16K1/02—Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with screw-spindle
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
- F16K1/00—Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces
- F16K1/32—Details
Definitions
- the present application relates to the technical field of electronic expansion valves, in particular, to a nut assembly and an electronic expansion valve.
- the connecting plate and the nut body are usually connected in a way of scarfing.
- the connecting plate needs to be placed, resulting in low production efficiency.
- the nut main body with connecting plate cannot be recycled for secondary use.
- the present application provides a nut assembly and an electronic expansion valve to improve the production efficiency and structural strength of the nut assembly in the prior art.
- the present application provides a nut assembly, including: a nut, the nut includes a nut body and a limiting plate connected to each other, and the radial dimension of the limiting plate is larger than the radial dimension of the nut main body.
- the limiting plate or the nut body has a first limiting structure
- the connecting plate has a second limiting structure
- the first limiting structure and the second limiting structure are limitedly fitted to limit the connection plate and the nut on the circumference. Relative position up.
- the first limiting structure includes a limiting boss arranged on the outer wall of the nut body
- the second limiting structure includes a limiting groove arranged on the inner wall of the connecting plate, and the limiting boss is located in the limiting groove.
- limiting bosses there are a plurality of limiting bosses, and the plurality of limiting bosses are arranged around the nut body, and there are a plurality of limiting grooves, and the plurality of limiting grooves and the plurality of limiting bosses are arranged in one-to-one correspondence.
- the nut body includes a nut section, a transition section and a connecting section connected in sequence, the radial dimension of the connecting section is larger than the radial dimension of the nut section, the nut section has an internal thread, the connecting section is connected to the limit plate, and the connecting plate can be It is sleeved on the connecting section in a detachable manner.
- an electronic expansion valve is provided.
- the electronic expansion valve includes a valve body assembly and the above nut assembly, and the nut assembly is located in the valve body assembly.
- valve body assembly includes a valve cover and a valve seat connected to each other, at least a part of the nut body is located in the cavity of the valve cover, the limiting plate is located in the cavity of the valve seat, and the outer side wall of the connecting plate is welded to the inner side wall of the valve seat.
- valve seat has an opening
- the connecting plate is arranged at the opening
- the distance between the side of the connecting plate away from the valve seat cavity and the plane where the opening is located is L, L ⁇ 0.02mm
- the thickness of the connecting plate is t, L ⁇ 0.4t.
- the connecting plate has a balance hole or a balance groove, and the cavity of the valve seat and the valve cover communicate through the balance hole or the balance groove.
- the electronic expansion valve also includes a guide sleeve and a valve needle assembly
- the nut has a positioning hole, and a stop surface is provided in the positioning hole, one end of the guide sleeve penetrates into the positioning hole, the end surface of the guide sleeve abuts against the stop surface, and the valve needle
- the assembly and the nut body are threaded, and the needle assembly passes through the guide sleeve.
- the inner wall of the valve seat has a positioning boss, and the positioning boss has a valve port, and the positioning boss penetrates the end of the guide sleeve away from the nut, and the positioning boss, the guide sleeve, the positioning hole and the valve needle assembly are coaxially arranged.
- a nut assembly including: a nut, the nut includes a nut body and a limiting plate connected to each other, the radial dimension of the limiting plate is larger than the radial dimension of the nut main body; the connecting plate, the connecting plate It is detachably sleeved on the nut main body, and the connecting plate and the limiting plate abut against each other.
- the nut body and the connection plate of the nut assembly are separately arranged, so that the connection plate is detachably socketed on the outer peripheral surface of the nut body and abuts against the limit plate, which avoids the need for the nut assembly in the prior art.
- connection plate needs to be placed in the insert injection molding, so that the nut body and the connection plate can be processed and formed independently and combined together, which improves the production efficiency and avoids the situation that the nut body with the connection plate cannot be recycled for secondary use , so that the nut body can be better used for secondary recycling. And set up like this, has avoided the nut set in the prior art Due to the process, there are many burrs at the connection position between the connecting plate and the nut body when the parts are inserted into the injection molding, resulting in damage to the nut assembly, which improves the reliability and stability of the nut assembly.
- Fig. 1 shows the structural representation of the nut assembly provided by the embodiment of the present application
- Fig. 2 shows a schematic structural view of the nut and the limit boss in the nut assembly of Fig. 1;
- Fig. 3 shows a schematic structural view of a connecting plate and a limiting groove of the nut assembly of Fig. 1;
- Fig. 4 shows a schematic structural diagram of an electronic expansion valve provided by another embodiment of the present application.
- Fig. 5 shows a cross-sectional view of the electronic expansion valve of Fig. 4;
- Figure 6 shows an enlarged view of the selected position in Figure 5;
- FIG. 7 shows a schematic structural view of another nut assembly provided by an embodiment of the present application.
- Fig. 8 shows a schematic structural view of another nut assembly provided by an embodiment of the present application.
- Fig. 9 shows a schematic diagram of part of the structure in Fig. 8.
- Figure 10 shows a schematic diagram of the rotor assembly in Figure 4.
- Fig. 11 shows a schematic diagram of part of the structure in Fig. 10;
- Figure 12 shows a schematic diagram of the guide piece in Figure 10
- Fig. 13 shows a schematic structural view of another nut assembly provided by an embodiment of the present application.
- Figure 14 shows a schematic diagram of the nut in Figure 13;
- Fig. 15 shows a schematic structural view of another nut assembly provided by an embodiment of the present application.
- Figure 16 shows another view of Figure 14
- Figure 17 shows a bottom view of Figure 16
- Figure 18 shows a schematic diagram of the connecting plate in Figure 13;
- Fig. 19 shows a schematic structural view of another nut assembly provided by an embodiment of the present application.
- Figure 20 shows a top view of the nut assembly of Figure 19
- Fig. 21 shows a schematic diagram of the included angle labeling of the nut of Fig. 20;
- Fig. 22 shows a schematic structural diagram of an electronic expansion valve provided by another embodiment of the present application.
- Figure 23 shows a cross-sectional view of the nut in Figure 22;
- Figure 24 shows a partial enlarged view 1 in Figure 22;
- Fig. 25 shows the partial enlarged view 2 in Fig. 22;
- FIG. 26 shows a schematic structural view of the rotor assembly in FIG. 22 .
- valve body assembly 41. Bonnet; 42. Valve seat; 421. Positioning boss; 422. Valve port; 040. Valve port piece; 042. Body; 0421. First shaft section; 0422. Second shaft section ;0423, the third axis section; 4221, the first step surface; 4222, the second step surface;
- the embodiment of the present application provides a nut assembly, including: a nut 10, the nut 10 includes a nut body 11 and a limiting plate 12 connected to each other, and the radial dimension of the limiting plate 12 is larger than The radial dimension of the nut main body 11 : the connecting plate 20 , the connecting plate 20 is detachably sleeved on the nut main body 11 , and the connecting plate 20 abuts against the limiting plate 12 .
- the nut body 11 and the connection plate 20 of the nut assembly are arranged separately, so that the connection plate 20 is detachably socketed on the outer peripheral surface of the nut body 11 and abuts against the limit plate 12, avoiding
- the connection plate needs to be put in, so that the nut body 11 and the connection plate 20 can be independently processed and formed and combined together, which improves the production efficiency, and at the same time avoids the connection plate with the connection plate.
- the fact that the nut body cannot be recycled for secondary use makes the nut better for secondary recycling.
- this arrangement avoids the situation that the nut assembly is damaged due to the fact that there are many burrs at the connection position of the connecting plate and the nut body due to technological reasons when the nut assembly is insert-molded, and the reliability and reliability of the nut assembly are improved. stability.
- the limiting plate 12 or the nut body 11 has a first limiting structure
- the connecting plate 20 has a second limiting structure
- the first limiting structure and the second limiting structure are limited in cooperation.
- the relative position of the connecting plate 20 and the nut in the circumferential direction is limited through the limited cooperation of the first limiting structure and the second limiting structure, so that the connecting plate 20 and the nut will not rotate relative to each other after the installation is completed. , to ensure the reliability of the nut assembly.
- the first limiting structure includes a limiting boss 31 arranged on the outer wall of the nut body 11, the second limiting structure includes a limiting groove 32 arranged on the inner wall of the connecting plate 20, and the limiting boss 31 is located in the limiting groove 32.
- the relative position of the connecting plate 20 and the nut in the circumferential direction is limited, so that the connecting plate 20 and the nut are in the Relative rotation will not occur after the installation is completed, ensuring the reliability of the nut assembly.
- adopting the limiting method of clamping the limiting boss 31 and the limiting groove 32 facilitates the processing of the limiting boss 31 and the limiting groove 32, and the limiting effect is good.
- the plurality of limiting bosses 31 are arranged around the nut body 11.
- the one-to-one correspondence with the plurality of limiting bosses 31 can also better determine the relative positions of the connecting plate 20 and the nut body 11 , preventing the connecting plate 20 and the nut body 11 from being arranged eccentrically.
- the nut body 11 includes a nut section 111, a transition section 112 and a connecting section 113 connected in sequence, the radial dimension of the connecting section 113 is greater than the radial dimension of the nut section 111, and the nut section 111 has an internal thread, and the connecting section 113 and The limiting plate 12 is connected, and the connecting plate 20 is detachably sleeved on the connecting section 113 .
- the connecting plate 20 is sleeved on the connecting section 113 and abuts against the limiting plate 12, the limiting boss 31 is arranged on the limiting plate 12 and the connecting section 113, and the limiting groove 32 is arranged on the connecting plate On the inner ring of 20, such arrangement facilitates the miniaturization of the nut assembly, and facilitates the limited fit of the limiting boss 31 and the limiting groove 32 at the same time.
- the electronic expansion valve includes a valve body assembly 40 and the aforementioned nut assembly, and the nut assembly is located in the valve body assembly 40 .
- the valve body assembly 40 includes a valve cover 41 and a valve seat 42 connected to each other, at least a part of the nut body 11 is located in the cavity of the valve cover 41, the limiting plate 12 is located in the cavity of the valve seat 42, and the connecting plate The outer side wall of 20 and the inner side wall of valve seat 42 are welded.
- both the nut section 111 and the transition section 112 of the nut body 11 are located in the cavity of the valve cover 41, the connecting section 113 of the nut body 11 is partially located in the cavity of the valve cover 41, and the other part is located in the cavity of the valve seat 42 Inside, the limiting plate 12 is located in the cavity of the valve seat 42 .
- the outer diameter of the connecting plate 20 is greater than the maximum outer diameter of the nut main body 11, and the outer side wall of the connecting plate 20 is welded to the inner side wall of the valve seat 42 to prevent the movement of the nut assembly in the cavity of the valve body assembly 40 and ensure the electronic expansion valve. reliability and stability.
- the valve seat 42 has an opening, and the connecting plate 20 is arranged at the opening.
- the distance between the side of the connecting plate 20 away from the cavity of the valve seat 42 and the plane where the opening is located is L, and L ⁇ 0.02mm , the thickness of the connecting plate 20 is t, and L ⁇ 0.4t.
- connecting plate 20 is positioned in the cavity of valve seat 42 through the opening, and another part is then positioned in the cavity of valve cover 41, limits the numerical range of L and t, ensures the connection of connecting plate 20 and valve seat 42
- an annular step can be formed, and a welding point is formed at the annular position where the connecting plate 20 and the valve seat 42 are connected, so as to avoid the situation that the step height formed between the connecting plate 20 and the valve seat 42 is too low to cause unreliable welding, and ensure that the connecting plate 20 Reliability of welding connection with valve seat 42.
- the connecting plate 20 has a balance hole or a balance groove 21 , and the cavity of the valve seat 42 and the cavity of the valve cover 41 communicate through the balance hole or the balance groove 21 .
- the opening of the valve seat 42 communicates with the cavity of the valve cover 41.
- the cavity of the valve seat 42 and the cavity of the valve cover 41 are separated by the nut assembly.
- a balance hole or a balance groove 21 is provided on the top to communicate with the cavity of the valve cover 41 and the cavity of the valve seat 42 to achieve pressure balance in the valve body assembly 40 and ensure the reliability of the electronic expansion valve.
- the electronic expansion valve also includes a guide sleeve 50 and a valve needle assembly 60
- the nut 10 has a positioning hole, and a stop surface is provided in the positioning hole, one end of the guide sleeve 50 penetrates into the positioning hole, and the end surface of the guide sleeve 50 and the stop surface
- the valve needle assembly 60 is threadedly connected with the nut body 11 , and the valve needle assembly 60 passes through the guide sleeve 50 .
- the valve needle assembly 60 is movably installed in the guide sleeve 50, the screw rod of the valve needle assembly 60 is threadedly connected with the internal thread of the nut body 11, the positioning hole of the nut is set through the whole nut, and there is a The stop surface, one end of the guide sleeve 50 abuts against the stop surface, and the outer side wall of the guide sleeve 50 and the inner side wall of the positioning hole are limit-fitted. In this way, through the cooperation of the stop surface and the guide sleeve 50, the locking of the nut is realized.
- the positioning function through the guide sleeve 50 to position and axially limit the nut assembly as a whole, can better ensure the coaxiality between the valve seat 42 and the nut assembly, and improve the internal leakage prevention performance of the electronic expansion valve.
- the inner wall of the valve seat 42 has a positioning boss 421, the positioning boss 421 has a valve port 422, the positioning boss 421 penetrates the end of the guide sleeve 50 away from the nut 10, the positioning boss 421, the guide sleeve 50, and the positioning hole It is arranged coaxially with the valve needle assembly 60.
- Such setting can ensure the coaxiality between the valve cover 41 and the valve seat 42 and ensure the reliability of the electronic expansion valve.
- the positioning boss 421 and the valve seat 42 are integrated, or the positioning boss 421 and the valve seat 42 are separate structures.
- the electronic expansion valve further includes a rotor assembly, which is disposed in the cavity of the valve cover 41 and is connected with the valve needle assembly, and cooperates with the stopper of the nut assembly.
- the installation process of the electronic expansion valve is as follows. First, install the connected valve needle assembly 60 and nut assembly together with the valve seat 42, that is, let the inner wall of the nut positioning hole and the outer wall of the guide sleeve 50 limit fit, and then connect the The plate 20 is sleeved on the connecting section 113, and a force is applied to the connecting plate 20 toward the limiting plate 12, so that the connecting plate 20 and the limiting plate 12 abut, and drive the entire nut assembly to move into the cavity of the valve seat 42 until The stop surface abuts against one end of the guide sleeve 50, at this time a step is formed between the connecting plate 20 and the side wall of the valve seat 42, and welding is performed at the connection position between the connecting plate 20 and the valve seat 42, and then the rotor assembly and the valve
- the nut 10 has an internal thread, and the outer peripheral surface of the nut 10 has a spiral guide groove 13; the nut assembly also includes a stop ring 70, and the stop ring 70 is sleeved in the spiral guide groove 13 to stop The retaining ring 70 can rotate along the spiral guide groove 13 .
- the spiral guide groove 13 By arranging the spiral guide groove 13, the complex problem of nut, stop ring and limit spring assembly in the prior art is avoided, and no limit spring needs to be installed, which simplifies the installation process and facilitates the realization of stop ring 70 and nut 10. Automated installation further improves the production efficiency of the nut assembly.
- the nut assembly also includes a third limiting structure, the third limiting structure is arranged on the outer peripheral surface of the nut body 11, the third limiting structure is located on the side of the spiral guide groove 13 away from the connecting plate 20, the third limiting structure Cooperate with stop ring 70 stops. Arranged in this way, the movement of the stop ring 70 on the spiral guide groove 13 can be limited, preventing the stop ring 70 from coming out of the spiral guide groove 13 when moving toward the side away from the connecting plate 20 in the spiral guide groove 13, The reliability of the movement of the stop ring 70 is guaranteed.
- the third limiting structure is a first limiting block 411, and the first limiting block 411 protrudes from the outer peripheral surface of the nut body 11.
- the first limiting block 411 and the stop ring 70 stop and cooperate.
- a limiting block 411 and the nut body 11 are integrally formed.
- This setting facilitates the processing of the nut assembly, and the movement of the stop ring 70 on the spiral guide groove 13 is limited by the first limit block 411, preventing the stop ring 70 from moving away from the connecting plate 20 in the spiral guide groove 13
- the first limit block 411 prevents the stop ring 70 from moving away from the connecting plate 20 in the spiral guide groove 13
- it can also avoid the failure of the upper stop caused by the defective limit spring in the nut assembly in the prior art, so as to ensure that the nut main body 11 and the first limit block 411
- the reliability of the connection ensures the reliability of the movement of the stop ring 70 at the same time.
- the third limiting structure is a limiting ring 412.
- the limiting ring 412 includes an arc 4121 and a first folding hook 4122 and a second folding hook 4123 arranged at both ends of the arc 4121.
- the first folding hook 4122 is located at the arc.
- the side of the shaped part 4121 away from the stop ring 70, the second hook 4123 is located on the side of the arc part 4121 facing the stop ring 70, the arc part 4121 and the first hook 4122 are connected to the nut body 11, the second The folding hook 4123 and the stop ring 70 stop and cooperate.
- the stop ring 70 can be assembled on the nut main body 11 first, and then the stop ring 412 can be installed.
- This arrangement facilitates the automation of the stop ring 70 and the nut body 11 installation, further improving the production efficiency of the nut assembly.
- the situation that the stop ring 70 and the arc part 4121 of the stop ring 412 are directly stopped is avoided, and the arc part 4121 is prevented from being damaged by burrs at one end of the stop ring 70, so as to ensure the reliability of the stop ring 412.
- the outer peripheral surface of the nut main body 11 has a fitting groove 15, and the arc piece 4121 and/or the first hook 4122 are limitedly fitted with the fitting groove 15;
- the fitting groove 15 includes a first locking groove 151 and a second locking groove 152,
- the first engaging groove 151 is an arc-shaped groove, the first engaging groove 151 extends along the circumferential direction of the nut main body 11, the second engaging groove 152 extends along the axial direction of the nut main body 11, and the arc-shaped part 4121 engages with the first engaging groove 151. Then, the first folding hook 4122 is engaged with the second engaging slot 152 .
- the movement of the stop ring 412 in the axial direction of the nut body 11 is limited by the engagement of the arc-shaped piece 4121 and the first slot 151 , and the movement of the stop ring 412 along the axis of the nut body 11 is restricted by the engagement of the first hook 4122 and the second slot 152 . Clamping restricts the rotation of the limiting ring 412 in the circumferential direction of the nut body 11 to ensure the reliability of the connection of the limiting ring 412 .
- the third limit structure has a first stop surface 4124 that protrudes from the outer peripheral surface of the nut body 11, and the stop ring 70 and the first stop surface 4124 stop and cooperate;
- the fourth limit structure, the fourth limit structure Set on the nut main body 11, the fourth position-limiting structure has a second stop surface 431 protruding from the outer peripheral surface of the nut main body 11, and the stop ring 70 and the second stop surface 431 stop and cooperate; wherein, the spiral guide groove 13 is located at Between the third limiting structure and the fourth limiting structure.
- the stop position between the stop ring 70 and the first stop surface and the stop position between the stop ring 70 and the second stop surface are located in the spiral guide groove 13 or the extension of the spiral guide groove 13 The situation on the line prevents the stop ring 70 from producing powder and the like entering the spiral guide groove 13 after the stop hits and causes the stop ring 70 to be stuck, ensuring the reliability of the stop ring 70 moving.
- the third limiting structure and the fourth limiting structure respectively limit the stop ring 70 in two directions along the axis of the nut body 11 .
- Both the first stop surface 4124 and the second stop surface 431 are set to avoid the spiral guide groove 13 or the extension line of the spiral guide groove 13 .
- Arranged in this way it is ensured that the stop positions of the stop ring 70 and the first stop surface and the stop positions of the stop ring 70 and the second stop surface are not in the spiral guide groove 13 or on the extension line of the spiral guide groove 13, It prevents the stop ring 70 from being stuck due to powder and the like entering the spiral guide groove 13 after the stop hits, and ensures the reliability of the stop ring 70 to move.
- the retaining ring 70 includes a spiral member 71 and a third folding hook 72 and a fourth folding hook 73 respectively arranged at two ends of the spiral member 71, the spiral member 71 is located in the spiral guide groove 13, the third folding hook 72 and the third limit Position structure stop fit, the fourth folding hook 73 and the fourth limit structure stop fit.
- the stops at both ends of the stop ring in the prior art are changed into two-fold hook stops, which increases the stop area and can Ensure that no or less powder is generated during the impact of the stopper, ensuring the performance of the nut assembly.
- the third hook 72 extends away from the outer peripheral surface of the nut body 11, the fourth hook 73 is located on the side of the screw 71 facing the fourth limiting structure, and the fourth hook 73 is along the axis of the nut body 11. Extension; in this embodiment, the third folding hook 72 is arranged perpendicular to the axis of the nut body 11, and the fourth folding hook 73 is arranged obliquely, so that the stop position of the stop ring 70 protrudes from the spiral guide groove 13 and is conveniently set .
- the fourth limiting structure is the second limiting block 43
- the second stop surface 431 is located on the outer wall of the second limiting block 43
- the stopper ring 70 is matched with the outer wall of the second limiting block 43.
- one end of the nut body 11 has a guiding slope 115 for guiding when the limiting ring 412 is assembled.
- Such arrangement is convenient for guiding the installation of the stop ring 70 and the limit ring 412 on the nut body 11 , and facilitates automatic installation of the nut assembly.
- the nut assembly also includes a second limiting block 43 protruding from the outer peripheral surface of the nut body 11 , and the second limiting block 43 is located on the side of the spiral guide groove 13 facing the connecting plate 20 , the second limiting block 43 and the stop ring 70 stop fit, and the second limiting block 43 and the nut body 11 are integrally structured.
- This arrangement facilitates the processing of the nut assembly, and the movement of the stop ring 70 on the helical guide groove 13 is limited by the second limit block 43, preventing the stop ring 70 from moving toward the connecting plate 20 in the helical guide groove 13.
- the first limiting block 411 and the second limiting block 43 respectively limit the two directions of axial movement of the stop ring 70 to ensure the reliability of the nut assembly.
- the nut body 11 includes a nut segment 111, and the outer peripheral surface of the nut segment 111 has two opposite demoulding planes 114, the demoulding plane 114 is arranged along the axial direction of the nut segment 111, and the spiral guide groove 13 is arranged on the nut segment 111 on the outer peripheral surface between the two demoulding planes 114 .
- the demoulding plane 114 By setting the demoulding plane 114, the processing and demoulding of the nut main body 11 is facilitated, the automation of the production of the nut main body 11 is realized, and the production efficiency of the nut assembly is improved.
- the electronic expansion valve also includes a rotor assembly 90
- the rotor assembly 90 includes a rotor connecting plate 91, a guide plate 92 and a cylindrical magnetic rotor 93
- the rotor connecting plate 91 is located on the magnetic rotor 93
- the cavity of the magnetic rotor 93 is fixedly connected with the magnetic rotor 93.
- the guide piece 92 is located in the cavity of the magnetic rotor 93 and fixedly connected with the rotor connecting plate 91.
- the guide piece 92 and the stop ring 70 are limitedly fitted.
- the rotor connecting plate 91 and the magnetic rotor 93 rotate synchronously under the drive of the external coil, and drive the guide plate 92 fixedly connected to the rotor connecting plate 91 to rotate synchronously and move along the axis direction of the nut body 11.
- the guide piece 92 abuts against the stop ring 70 , and then drives the stop ring 70 to spirally move on the nut body 11 .
- there is a gap between the guide plate 92 and the inner wall of the cavity of the magnetic rotor 93 or there is no gap between the guide plate 92 and the inner wall of the cavity of the magnetic rotor 93 .
- the guide piece 92 and the magnetic rotor 93 there may be no gap between the guide piece 92 and the magnetic rotor 93, and the material of the guide piece at this time is different from that of the above-mentioned guide piece.
- This arrangement avoids the need for laser welding of the powder metallurgy rotor connecting plate and the guide plate in the prior art, which is prone to blackening and cracks after welding, and ensures the reliability of the rotor assembly 90 .
- the rotor connecting plate 91 has a press-fitting groove 94
- the guide piece 92 includes a press-fitting section 921 and a limiting section 922 connected to each other.
- the limiting section 922 extends along the axial direction of the nut 10 and is limitedly matched with the stop ring 70;
- the electronic expansion valve also includes a valve needle assembly 60, which is threadedly connected to the nut body 11, and the valve needle assembly 60 and The rotor assembly 90 is fixedly connected.
- the fixed connection between the rotor connecting plate 91 and the guide piece 92 is realized through the limited fit between the press-fitting section 921 and the press-fitting groove 94 , without welding connection, which reduces the processing cost.
- the press-fit section 921 is in interference fit with the press-fit groove 94
- the press-fit groove 94 is a rectangular groove.
- the balance channel 030 communicates the areas on both sides of the connection plate 20 .
- the communication between the areas on both sides of the connecting plate 20 is realized through the balance channel 030, thereby achieving pressure balance in the areas on both sides of the connecting plate 20.
- the plate and the nut separate the cavity areas on both sides of the mating plate, resulting in unbalanced pressure in the cavity areas on both sides of the mating plate, ensuring the reliability and stability of the nut assembly after it is installed in the valve body assembly.
- the first limiting structure is located on the nut body 11, the first limiting structure has a first groove 031, the limiting plate 12 has a second groove 032, and the first groove 031 and the second groove 032 form a balance channel 030;
- the first groove 031 is arranged on the first limiting structure
- the second groove 032 is arranged on the limiting plate 12, which facilitates the processing of the first limiting structure and the limiting plate 12
- the overall size of the first limiting structure and the limiting plate 12 is reduced to ensure the miniaturization of the nut assembly and improve the production efficiency of the nut assembly.
- the first limiting structure has a first groove 031
- the second limiting structure has a third groove
- the first groove 031 and the third groove form a balance channel 030
- the first groove 031 is arranged on the first limiting structure
- the third groove is arranged on the second limiting structure, which facilitates the processing of the first limiting structure and the second limiting structure, and reduces the first
- the overall size of the limiting structure and the second limiting structure ensures the miniaturization of the nut assembly and improves the production efficiency of the nut assembly.
- the third groove should be set away from the limit plate 12 to ensure that the connected first groove 031 and the third groove can connect the areas on both sides of the connecting plate 20 to ensure the reliability of the balance channel 030 .
- the outer wall of the nut body 11 has a cutout surface 013
- the balance channel 030 is located between the cutout surface 013 and the inner wall of the connecting plate 20 .
- the position of the cut surface 013 can be the position of the mold line when the nut body 11 is molded.
- the nut body 11 includes a nut section 111, a transition section 112, and a connecting section 113 that are sequentially connected.
- the maximum radial dimension of the limiting plate 12 is larger than the maximum radial dimension of the connecting section 113.
- Plane 0131, second plane 0132, third plane 0133 and fourth plane 0134, the first plane 0131 is located at the nut section 111, the second plane 0132 is located at the transition section 112, the third plane 0133 is located at the connecting section 113, and the fourth plane 0134 is located at The limiting plate 12 ; wherein, the third plane 0133 and the fourth plane 0134 are coplanar, and the balance channel 030 is located between the third plane 0133 and the inner wall of the connecting plate 20 .
- the first plane 0131, the second plane 0132, the third plane 0133 and the fourth plane 0134 are sequentially connected, so that the first plane 0131, the second plane 0132, the third plane 0133 and the fourth plane 0134 can be Cutting and forming facilitates the cutting and processing of the nut body 11 and improves the processing and production efficiency of the nut body 11 .
- the third plane 0133 and the fourth plane 0134 are coplanar to prevent the balance channel 030 located between the third plane 0133 and the connecting plate 20 from being blocked by the fourth plane 0134 and ensure the reliability of the communication of the balance channel 030 .
- the connecting plate 20 and the nut 10 are interference fit in the circumferential direction, and the connecting plate 20 and the nut 10 are clearance fit in the radial direction.
- the connecting plate 20 on the nut 10 can move radially of the nut 10 but cannot rotate along the circumferential direction of the nut 10, avoiding the nut assembly in the related art during the process of loading the valve body assembly due to the 20 and the valve body assembly are also closely matched, resulting in over-positioning of the nut 10 in the radial direction, which cannot ensure the coaxiality between the nut assembly and the valve body assembly, and improves the coaxiality of the nut assembly and the valve body assembly, reducing The processing accuracy and processing cost of the nut assembly are reduced, the difficulty of assembling the nut assembly is reduced, and the production efficiency of the nut assembly is improved.
- the nut main body 11 is provided with a first limiting structure
- the connecting plate 20 includes a connecting ring 021 and a second limiting structure arranged on the connecting ring 021, wherein the connecting ring 021 is sleeved on the nut main body 11, and the connecting ring 021 and The nut body 11 is loosely fitted, the first limiting structure and the second limiting structure are in clearance fit in the radial direction of the connecting ring 021 , and the first limiting structure and the second limiting structure are interference fit in the circumferential direction of the connecting ring 021 .
- the limited fit between the connecting plate 20 and the nut 10 is realized through the limited fit between the first limit structure and the second limit structure, and the first limit structure is directly arranged on the nut 10.
- the second limiting structure is directly arranged on the connecting plate 20, which facilitates processing and reduces the overall size of the first limiting structure and the second limiting structure, ensuring miniaturization of the nut assembly.
- the first limiting structure includes a limiting boss 31 arranged on the outer wall of the nut body 11, the second limiting structure includes a limiting groove 32 arranged on the inner wall of the connecting plate 20, and the limiting boss 31 is located in the limiting groove 32.
- the limit fit between the first limit structure and the second limit structure is mainly designed as a limit fit between the limit bump and the limit groove, which is simple in structure, easy to process, and reliable in cooperation. .
- the limiting boss 31 has two first limiting surfaces 311 and a first mating surface 312 between the two first limiting surfaces 311, and the limiting groove 32 has two second limiting surfaces 321 and is located between the two first limiting surfaces 311.
- the second matching surface 322 between the second limiting surfaces 321; wherein, the first matching surface 312 and the second matching surface 322 are clearance fit, and the two first limiting surfaces 311 and the two second limiting surfaces 321 are one by one Corresponding limit fit.
- the connecting plate 20 can move slightly along the radial direction of the nut body 11, through the two first limiting surfaces 311 and the two
- the second limiting surface 321 is one-to-one correspondingly limited and fitted, so that the rotation of the connecting plate 20 along the circumferential direction of the nut body 11 is restricted, avoiding the situation that the connecting plate 20 is over-positioned, and facilitating the positioning of the limiting boss and the limiting groove.
- Advanced processing and molding, simple structure and reliable cooperation Specifically, the two first limiting surfaces 311 and the two second limiting surfaces 321 are in one-to-one interference fit.
- the two first limiting surfaces 311 and the two second limiting surfaces 321 are arranged in parallel, the distance between the two first limiting surfaces 311 is L1, and the distance between the two second limiting surfaces 321 The distance is L2, L1-L2 ⁇ 0.03mm; set in this way, so that the width of the limiting groove sleeved on the outer peripheral surface of the nut main body 11 is smaller than the width of the limiting protrusion on the nut main body 11, ensuring that the first limiting surface 311 The reliability of the interference fit between the second limiting surface 321 and the second limiting surface 321.
- the interference between the limit protrusion and the limit groove is not enough to limit the rotation of the connecting plate 20 along the circumferential direction of the nut body 11, ensuring the limit The reliability of the interference fit between the protrusion and the limit groove.
- first mating surface 312 and the second mating surface 322 are coaxial arcuate surfaces, the diameter of the first mating surface 312 is d3, the diameter of the second mating surface 322 is d4, and d4-d3 ⁇ 0.1mm; Set so that the depth of the limiting groove sleeved on the outer peripheral surface of the nut main body 11 is greater than the length of the limiting protrusion on the nut main body 11, ensuring the reliability of clearance fit between the first mating surface 312 and the second mating surface 322 .
- d4-d3 ⁇ 0.1mm the gap between the limit projection and the limit groove is not enough to enable the connecting plate 20 to move radially along the nut body 11, ensuring that the limit projection and the Reliability of clearance fit between limit slots.
- the maximum diameter of the nut body 11 is d1, the inner diameter of the connecting ring 021 is d2, and d2-d1 ⁇ 0.1mm; this setting makes the maximum radial dimension of the nut body 11 larger than the inner diameter of the connecting ring 021, ensuring that the connecting ring 021 along the nut body 11 Reliability of radial movement.
- d2-d1 ⁇ 0.1mm the inner wall of the connecting ring 021 and the outer wall of the nut body 11 are avoided.
- the tight fitting of the side walls results in the fact that the connecting plate 20 cannot move radially along the nut body 11 , ensuring the reliability of clearance fit between the connecting plate 20 and the nut 10 .
- the size of the limiting boss 31 is greater than the thickness of the connecting plate 20 . Such setting can ensure the limiting effect of the limiting boss on the connecting plate 20 .
- a fool-proof structure is provided between the nut 10 and the connection plate 20 , and the fool-proof structure is used to limit the installation position of the connection plate 20 on the nut 10 .
- connection plate 20 and the nut 10 are arranged separately, which avoids the need to put the connection plate into the nut assembly in the prior art when performing insert injection molding, improves production efficiency, and avoids the need for connection with a connection plate.
- the situation that the nuts of the plate cannot be recycled for secondary use makes the nuts better for secondary recycling.
- this setting avoids the situation that the nut assembly is damaged due to the fact that there are many burrs at the connection position of the connecting plate and the nut when the nut assembly is insert-molded in the prior art due to technological reasons, and the structural strength of the nut assembly is improved.
- the connecting plate 20 and the nut 10 can have the only correct assembly position. If the position is wrong, the assembly cannot be completed, which avoids the situation that the connecting plate 20 is installed in reverse during the process of fitting the nut 10, and ensures the nut. Assembly quality of components.
- the foolproof structure includes a first limiting portion 831 and a second limiting portion 832 arranged on the nut body 11 , a third limiting portion 833 and a fourth limiting portion 834 arranged on the connecting plate 20 , and A limiting part 831 and the third limiting part 833 limit fit, and the second limiting part 832 and the fourth limiting part 834 limit fit; wherein, the connecting plate 20 has a burr surface 201, and the fool-proof structure limits the burr surface 201 away from the limiting plate 12.
- the connecting plate 20 is detachably sleeved on the nut body 11 and abuts against the limiting plate 12, and the burr surface 201 of the connecting plate 20 passes through the first limiting portion 831, the third limiting portion 833 and The limit fit between the second limiter 832 and the fourth limiter 834 deviates from the limiter plate 12, avoiding the inability of the operator in the prior art to accurately judge whether the burr surface of the linker is located in the process of installing the linker. Which side will cause the burr surface of the connecting plate to contact the limit plate after the installation is completed, so as to ensure the assembly quality of the nut assembly.
- the first limiting portion 831 includes a first limiting projection
- the second limiting portion 832 includes a second limiting projection
- the third limiting portion 833 includes a first limiting groove
- the fourth limiting portion 834 includes The second limiting groove
- the first limiting protrusion is snapped into the first limiting groove
- the second limiting protrusion is snapped into the second limiting groove, wherein the dimensions of the first limiting protrusion and the second limiting protrusion are Not equal; in the circumferential direction of the nut 10, the size of the first limiting protrusion is greater than the size of the second limiting protrusion, and the first limiting groove and the second limiting groove have an angle A in the circumferential direction of the connecting plate 20 , 0° ⁇ A ⁇ 180°.
- the first limit projection, the first limit groove, the second limit projection, and the second limit groove can still be limited and fit, but the burr surface 201 faces the limit plate 12
- the reliability of the assembly of the connecting plate 20 is ensured, and the assembly quality of the nut assembly is ensured.
- the fool-proof structure further includes a fifth limiting portion 35 disposed on the nut 10 and a sixth limiting portion 36 disposed on the connecting plate 20, wherein the second limiting portion 832 is located between the first limiting portion 831 and the connecting plate 20.
- the fourth limiting part 834 is located between the third limiting part 833 and the sixth limiting part 36 , and the fifth limiting part 35 and the sixth limiting part 36 cooperate.
- the nut assembly ensures the reliability of the assembly of the connecting plate 20 and the nut 10 and the assembly quality of the nut assembly through the limited fit of different positions between the three sets of limiting parts.
- the first limiting portion 831, the second limiting portion 832, and the fifth limiting portion 35 are arranged at intervals along the circumferential direction of the nut 10, and the third limiting portion 833, the fourth limiting portion 834, and the sixth limiting portion
- the portions 36 are arranged at intervals along the axial direction of the connecting plate 20 .
- the fifth limiting portion 35 includes a third limiting projection
- the sixth limiting portion 36 includes a third limiting groove
- the third limiting projection snaps into the third limiting groove, wherein the first limiting Both the size of the portion 831 and the fifth limiting portion 35 are larger than the size of the second limiting portion 832 .
- the limit fit between the two limit parts is mainly designed as a limit fit between the limit protrusion and the limit groove, which has a simple structure, is easy to process, and is reliable in cooperation.
- the sizes of the first limiting portion 831 and the fifth limiting portion 35 are larger than the size of the second limiting portion 832, and correspondingly, the sizes of the third limiting portion 833 and the sixth limiting portion 36 are larger than the fourth limiting portion
- the part 834 is set in this way, so that when the size of the first or third limiting protrusion is equal to that of the second limiting protrusion, the burr surface 201 faces the limiting plate 12 after the connecting plate 20 is turned around the radial direction.
- the connecting plate 20 can be wound around After radial flipping, the burr surface 201 faces the limit plate 12, but the first limit projection, the first limit groove, the second limit projection, the second limit groove and the third limit projection, the third limit.
- the size and positional relationship between the limiting protrusion and the third limiting protrusion are limited to ensure the reliability of the assembly of the connecting plate 20 and the assembly quality of the nut assembly.
- the second limiting portion 832 and the first limiting portion 831 have an included angle B in the circumferential direction of the connecting plate 20
- the included angle between part 831 and the fifth limiting part 35 is 90°, turn over the connecting plate 20 so that the burr surface 201 faces downward, and then rotate the connecting plate 20 axially by a certain angle, so that the first limiting part 831 and the sixth limiting part 36 limit fit, the second limit part 832 and the fourth limit part 834 limit fit, the third limit part 833 and the fifth limit part 35 limit fit, so that the connecting plate 20 If it can still be installed, the reliability of the assembly of the connecting plate 20 is ensured, and the assembly quality of the nut assembly is ensured.
- the connecting plate 20 and the nut 10 in the electronic expansion valve are clearance fit in the radial direction;
- the valve body assembly 40 includes a valve seat 42, the outer wall of the connecting plate 20 and the valve seat 42 is fixedly connected, and the connecting plate 20 and the valve seat 42 are matched in the axial clearance of the nut 10;
- the electronic expansion valve also includes a guide sleeve 50, which is fixedly arranged on the valve seat 42, the guide sleeve 50 is inserted into the nut 10, and the guide sleeve 50 and the nut 10 abut in the axial direction and have an interference fit in the radial direction.
- the coaxiality of the guide sleeve 50 and the nut 10 is ensured, further, the nut 10 and the guide sleeve 50
- the coaxiality is determined, there should be enough adjustment clearance between the connecting plate 20 and the nut 10 and between the connecting plate 20 and the valve seat 42 to prevent the over-positioning of the connecting plate 20 during the installation process from causing the nut 10 and the guide sleeve
- the coaxiality between 50 will affect the coaxiality of the nut assembly.
- the connecting plate 20 and the nut 10 have clearance fit in the radial direction, and when the nut assembly is installed, when the guide sleeve 50 and the nut 10 abut, there is a clearance between the connecting plate 20 and the valve seat 42 in the axial direction of the nut 10 , to avoid the situation in the related art that when the guide sleeve and the nut abut, the connecting plate and the valve seat also abut in the axial direction of the nut, resulting in the over-positioning of the nut, and also avoid the situation that the connecting plate and the valve seat are in the axial direction of the nut.
- the nut 10 has a positioning hole 1101, the positioning hole 1101 has a stop surface 1102, one end of the guide sleeve 50 penetrates the positioning hole 1101, the end surface of the guide sleeve 50 abuts against the stop surface 1102, the outer wall of the guide sleeve 50 and the positioning
- the inner wall of the hole 1101 is an interference fit; or the guide sleeve 50 has a positioning hole 1101, the positioning hole 1101 has a stop surface 1102, one end of the nut 10 penetrates the positioning hole 1101, the end surface of the nut 10 abuts against the stop surface 1102, and the nut
- the outer wall of 10 and the inner wall of the positioning hole 1101 are interference fit.
- the nut 10 has a positioning hole 1101 , and one end of the guide sleeve 50 penetrates into the positioning hole 1101 .
- the electronic expansion valve further includes a positioning boss 421 arranged in the valve seat 42.
- the positioning boss 421 and the end of the guide sleeve 50 away from the nut 10 are plugged together.
- the positioning boss 421 and the guide sleeve 50 are axially abutment and interference fit in the radial direction. Arranged in this way, the coaxiality between the positioning boss 421 and the guide sleeve 50 is ensured through the limited fit between the positioning boss 421 and the guide sleeve 50, thereby ensuring the alignment between the valve seat 42, the guide sleeve 50 and the nut assembly. Coaxiality ensures the performance of the electronic expansion valve.
- the positioning boss 421 and the valve seat 42 are integrated; or, the electronic expansion valve includes a valve port 040, and the valve port 040 includes a positioning boss 421 and a body 042 connected to the positioning boss 421, and the valve port 040 It also has a valve port that runs through the body 042 and the positioning boss 421, the body 042 is fixedly connected to the valve seat 42, the positioning boss 421 penetrates the end of the guide sleeve 50 away from the nut 10, and the positioning boss 421 and the guide sleeve 50 are in an interference fit. The guide sleeve 50 abuts against the body 042 .
- the positioning boss 421 and the valve seat 42 are separate structures, and the installation position of the guide sleeve 50 is positioned and installed through the valve port 040 to ensure the coaxiality of the guide sleeve 50 and the valve seat 42.
- the axis of the valve seat 42 is set through the center of the valve port.
- the body 042 includes a first shaft segment 0421, a second shaft segment 0422 and a third shaft segment 0423 connected in sequence, and the outer diameters of the first shaft segment 0421, the second shaft segment 0422 and the third shaft segment 0423 are successively reduced , the first shaft section 0421 is connected to the positioning boss 421; the valve seat 42 has a first fitting hole and a second fitting hole communicating with each other, and the diameter of the first fitting hole is larger than the diameter of the second fitting hole; wherein, the first shaft section 0421 penetrates into the first fitting hole, the second shaft section 0422 passes through the second fitting hole, and the third shaft section 0423 is located outside the valve seat 42 .
- This arrangement ensures the reliability of the connection between the body 042 and the valve seat 42 , ensures the coaxiality of the main body 042 and the valve seat 42 , and further ensures the coaxiality of the guide sleeve 50 and the valve seat 42 .
- the inner wall of the valve seat 42 has a first stepped surface 4221 parallel to the axis of the nut 10 and a second stepped surface 4222 perpendicular to the axis of the nut 10.
- the first stepped surface 4221 and the second stepped surface 4222 form a stepped structure, and the connecting plate 20
- the outer wall is connected to the first stepped surface 4221 , and the connecting plate 20 is in clearance fit with the second stepped surface 4222 .
- the connecting plate 20 is positioned and installed through the step structure, which facilitates processing and assembly positioning.
- a part of the connecting plate 20 is located inside the stepped structure, and another part of the connecting plate 20 is located outside the stepped structure, and the connecting plate 20 and the valve seat 42 are welded.
- the first stepped surface 4221 is connected to the end surface of the valve seat 42, and the welding position between the connecting plate 20 and the valve seat 42 is a plane where the connecting plate 20 is not in contact with the first stepped surface 4221 (that is, the connecting plate 20 is not in contact with the first stepped surface 4221 ).
- a welding allowance is reserved for the welding of the connecting plate 20 and the valve seat 42 , so as to ensure the reliability of the welding of the connecting plate 20 and the valve seat 42 . Further, the connecting plate 20 and the valve seat 42 are welded, and the connection is stable and reliable.
- the valve body assembly 40 also includes a valve cover 41
- the electronic expansion valve also includes a rotor assembly 90
- the valve cover 41 is connected to the valve seat 42
- the rotor assembly 90 is arranged in the valve cover 41
- the rotor assembly 90 includes a magnetic rotor 93 and is arranged on the magnetic rotor 93
- the rotating connector includes a rotor connecting plate 91 and a guide piece 92 connected to each other, the rotor connecting plate 91 and the magnetic rotor 93 are fixedly connected, and the guide piece 92 extends along the axial direction of the nut 10
- the nut assembly also It includes a stop ring 70 rotatably arranged on the nut 10 , and the side wall of the guide plate 92 is in limited fit with the stop ring 70 .
- the rotor connecting plate 91 and the magnetic rotor 93 rotate synchronously under the drive of the external coil.
- the guide piece 92 abuts against the stop ring, thereby driving the stop ring Screw movement on the nut 10 .
- This arrangement avoids the need for laser welding of the powder metallurgy rotor connecting plate and the guide plate in the prior art, which is prone to blackening and cracks after welding, and ensures the reliability of the rotor assembly 90 .
- the rotating connector is an integral structure, or the rotor connecting plate 91 and the guide piece 92 are two separate structures; the guide piece 92 and the inner wall of the magnetic rotor 93 are in clearance fit, or the guide piece 92 and the inner wall of the magnetic rotor 93 are bonded .
- the rotating connecting part in this embodiment has an integrated structure, which facilitates the processing of the rotating connecting part and improves the production efficiency of the rotor assembly. Meanwhile, in this embodiment, there is no gap between the guide piece 92 and the magnetic rotor 93 , and the material of the guide piece 92 at this time is different from the material of the guide piece 92 when there is a gap between the two.
- the rotor assembly 90 also includes a limiting member 95
- the rotor connecting plate 91 has a press fitting groove 94
- the limiting member 95 is arranged in the pressing fitting groove 94
- a part of the nut 10 is located in the magnetic rotor 93
- the electronic expansion valve also includes The valve needle assembly 60 , the screw of the valve needle assembly 60 is welded to the limiter 95 , and the screw is threaded to the nut 10 .
- the valve needle assembly 60 and the rotor connecting plate 91 are fixedly connected together through the limiting member 95, which reduces the processing cost.
- each part of the rotor assembly 90 is set separately and the rotating connector is set as an integrated structure, which avoids the powder metallurgy rotor installed by the insert in the prior art.
- the component is welded with the valve needle component, it is prone to heat, cracking, demagnetization and other adverse phenomena, which further ensures the reliability of the rotor component 90 .
- the stopper 95 and the press-fit groove 94 are interference fit or the stopper 95 and the press-fit groove 94 are integrally injection molded, the press-fit groove 94 is a rectangular groove, and the stopper 95 and the valve needle assembly 60 are screw-welded connect.
- the material of the rotor connecting plate 91 is Pps.
- the Pps rotor connecting plate has better heat insulation performance and can prevent the magnetic rotor 93 from cracking when the limiting member 95 and the screw of the valve needle assembly 60 are welded.
- the thickness of the connecting plate 20 is t2, t1 ⁇ 0.3t2. This setting avoids the situation that if t1 is too large, the outer wall of the connecting plate 20 cannot be connected with the valve body assembly, and ensures the reliability of the connection between the nut assembly and the valve body assembly while ensuring the positioning reliability of the nut assembly.
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
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- Electrically Driven Valve-Operating Means (AREA)
- Connection Of Plates (AREA)
Abstract
Description
Claims (43)
- 一种螺母组件,其特征在于,包括:螺母(10),所述螺母(10)包括相互连接的螺母主体(11)和限位板(12),所述限位板(12)的径向尺寸大于所述螺母主体(11)的径向尺寸;连接板(20),所述连接板(20)可拆卸地套设在所述螺母主体(11)上,所述连接板(20)和所述限位板(12)抵接。
- 根据权利要求1所述的螺母组件,其特征在于,所述限位板(12)或所述螺母主体(11)上具有第一限位结构,所述连接板(20)上具有第二限位结构,所述第一限位结构和所述第二限位结构限位配合,以限定所述连接板(20)和所述螺母(10)在周向上的相对位置。
- 根据权利要求2所述的螺母组件,其特征在于,所述第一限位结构包括设置在所述螺母主体(11)外壁的限位凸台(31),所述第二限位结构包括设置在所述连接板(20)内壁的限位槽(32),所述限位凸台(31)位于所述限位槽(32)内。
- 根据权利要求3所述的螺母组件,其特征在于,所述限位凸台(31)为多个,多个所述限位凸台(31)围绕所述螺母主体(11)设置,所述限位槽(32)为多个,多个所述限位槽(32)和多个所述限位凸台(31)一一对应设置。
- 根据权利要求1所述的螺母组件,其特征在于,所述螺母主体(11)包括依次连接的螺母段(111)、过渡段(112)和连接段(113),所述连接段(113)的径向尺寸大于所述螺母段(111)的径向尺寸,所述螺母段(111)内具有内螺纹,所述连接段(113)和所述限位板(12)连接,所述连接板(20)可拆卸地套设在所述连接段(113)上。
- 根据权利要求1所述的螺母组件,其特征在于,所述螺母(10)具有内螺纹,所述螺母(10)的外周面上具有螺旋导槽(13);所述螺母组件还包括止挡圈(70),所述止挡圈(70)套设在所述螺旋导槽(13)内,所述止挡圈(70)可沿所述螺旋导槽(13)转动。
- 根据权利要求6所述的螺母组件,其特征在于,所述螺母组件还包括第三限位结构,所述第三限位结构设置在所述螺母主体(11)的外周面上,所述第三限位结构位于所述螺旋导槽(13)背离所述连接板(20)的一侧,所述第三限位结构和所述止挡圈(70)止挡配合。
- 根据权利要求7所述的螺母组件,其特征在于,所述第三限位结构为第一限位块(411),所述第一限位块(411)凸出设置在所述螺母主体(11)的外周面上,所述第一限位块(411)和所述止挡圈(70)止挡配合,所述第一限位块(411)和所述螺母主体(11)为一体结构。
- 根据权利要求7所述的螺母组件,其特征在于,所述第三限位结构为限位圈(412),所述限位圈(412)包括弧形件(4121)和设置在所述弧形件(4121)两端的第一折钩(4122)、第二折钩(4123),所述第一折钩(4122)位于所述弧形件(4121)背离所述止挡圈(70) 的一侧,所述第二折钩(4123)位于所述弧形件(4121)朝向所述止挡圈(70)的一侧,所述弧形件(4121)和所述第一折钩(4122)均和所述螺母主体(11)连接,所述第二折钩(4123)和所述止挡圈(70)止挡配合。
- 根据权利要求9所述的螺母组件,其特征在于,所述螺母主体(11)的外周面具有配合槽(15),所述弧形件(4121)和/或所述第一折钩(4122)与所述配合槽(15)限位配合;所述配合槽(15)包括第一卡槽(151)和第二卡槽(152),所述第一卡槽(151)为弧形槽,所述第一卡槽(151)沿所述螺母主体(11)的周向延伸设置,所述第二卡槽(152)沿所述螺母主体(11)的轴向延伸,所述弧形件(4121)和所述第一卡槽(151)卡接,所述第一折钩(4122)和所述第二卡槽(152)卡接。
- 根据权利要求6所述的螺母组件,其特征在于,所述螺母组件还包括第二限位块(43),所述第二限位块(43)凸出设置在所述螺母主体(11)的外周面上,所述第二限位块(43)位于所述螺旋导槽(13)朝向所述连接板(20)的一侧,所述第二限位块(43)和所述止挡圈(70)止挡配合,所述第二限位块(43)和所述螺母主体(11)为一体结构。
- 根据权利要求7所述的螺母组件,其特征在于,所述第三限位结构具有凸出所述螺母主体(11)外周面的第一止挡面(4124),所述止挡圈(70)和所述第一止挡面(4124)止挡配合;第四限位结构,所述第四限位结构设置在所述螺母主体(11)上,所述第四限位结构具有凸出所述螺母主体(11)外周面的第二止挡面(431),所述止挡圈(70)和所述第二止挡面(431)止挡配合;其中,所述螺旋导槽(13)位于所述第三限位结构和所述第四限位结构之间。
- 根据权利要求12所述的螺母组件,其特征在于,所述止挡圈(70)包括螺旋件(71)和分别设置在所述螺旋件(71)两端的第三折钩(72)、第四折钩(73),所述螺旋件(71)位于所述螺旋导槽(13)内,所述第三折钩(72)和所述第三限位结构止挡配合,所述第四折钩(73)和所述第四限位结构止挡配合。
- 根据权利要求13所述的螺母组件,其特征在于,所述第三折钩(72)朝远离所述螺母主体(11)外周面的方向延伸,所述第四折钩(73)位于所述螺旋件(71)朝向所述第四限位结构的一侧,所述第四折钩(73)沿所述螺母主体(11)的轴线方向延伸;所述第四限位结构为第二限位块(43),所述第二止挡面(431)位于所述第二限位块(43)的外侧壁上,所述止挡圈(70)和所述第二限位块(43)的外侧壁止挡配合。
- 根据权利要求1所述的螺母组件,其特征在于,所述连接板(20)和所述螺母(10)之间具有平衡通道(030),所述平衡通道(030)将所述连接板(20)两侧的区域连通。
- 根据权利要求2所述的螺母组件,其特征在于,所述第一限位结构位于所述螺母主体(11),所述第一限位结构具有第一凹槽(031), 所述限位板(12)具有第二凹槽(032),所述第一凹槽(031)和所述第二凹槽(032)形成平衡通道(030);或,所述第一限位结构具有第一凹槽(031),所述第二限位结构具有第三凹槽,所述第一凹槽(031)和所述第三凹槽形成平衡通道(030)。
- 根据权利要求15所述的螺母组件,其特征在于,所述螺母主体(11)的外壁具有切除面(013),所述平衡通道(030)位于所述切除面(013)和所述连接板(20)的内壁之间。
- 根据权利要求17所述的螺母组件,其特征在于,所述螺母主体(11)包括依次连接的螺母段(111)、过渡段(112)、连接段(113),所述限位板(12)的最大径向尺寸大于所述连接段(113)的最大径向尺寸,所述切除面(013)包括依次连接的第三平面(0133)和第四平面(0134),所述第三平面(0133)位于所述连接段(113),所述第四平面(0134)位于所述限位板(12);其中,所述第三平面(0133)和所述第四平面(0134)共面设置,所述平衡通道(030)位于所述第三平面(0133)和所述连接板(20)的内壁之间。
- 根据权利要求1所述的螺母组件,其特征在于,所述连接板(20)和所述螺母(10)在周向上过盈配合,所述连接板(20)和所述螺母(10)在径向上间隙配合。
- 根据权利要求19所述的螺母组件,其特征在于,所述螺母主体(11)上设置有第一限位结构,所述连接板(20)包括连接环(021)和设置在所述连接环(021)上的第二限位结构,其中,所述连接环(021)套设在所述螺母主体(11)上,所述连接环(021)和所述螺母主体(11)间隙配合,所述第一限位结构和所述第二限位结构在所述连接环(021)的径向间隙配合,所述第一限位结构和所述第二限位结构在所述连接环(021)的周向过盈配合。
- 根据权利要求20所述的螺母组件,其特征在于,所述第一限位结构包括设置在所述螺母主体(11)外壁的限位凸台(31),所述第二限位结构包括设置在所述连接板(20)内壁的限位槽(32),所述限位凸台(31)位于所述限位槽(32)内。
- 根据权利要求21所述的螺母组件,其特征在于,所述限位凸台(31)具有两个第一限位面(311)和位于两个所述第一限位面(311)之间的第一配合面(312),所述限位槽(32)具有两个第二限位面(321)和位于两个所述第二限位面(321)之间的第二配合面(322);其中,所述第一配合面(312)和所述第二配合面(322)间隙配合,两个所述第一限位面(311)和两个所述第二限位面(321)一一对应地限位配合。
- 根据权利要求22所述的螺母组件,其特征在于,两个所述第一限位面(311)、两个所述第二限位面(321)均平行设置,两个所述第一限位面(311)之间的距离为L1,两个所述第二限位面(321)之间的距离为L2,L1-L2≥0.03mm;所述第一配合面(312)和所述第二配合面(322)为同轴设置的弧形面,所述第一 配合面(312)的直径d3,所述第二配合面(322)的直径为d4,d4-d3≥0.1mm;所述螺母主体(11)的最大直径为d1,所述连接环(021)的内径为d2,d2-d1≥0.1mm;在所述螺母(10)的轴向上,所述限位凸台(31)的尺寸大于所述连接板(20)的厚度。
- 根据权利要求1所述的螺母组件,其特征在于,所述螺母(10)和所述连接板(20)之间设置有防呆结构,所述防呆结构用于限定所述连接板(20)在所述螺母(10)上的安装位置。
- 根据权利要求24所述的螺母组件,其特征在于,所述防呆结构包括设置在所述螺母主体(11)上的第一限位部(831)、第二限位部(832)以及设置在所述连接板(20)上的第三限位部(833)、第四限位部(834),所述第一限位部(831)和所述第三限位部(833)限位配合,所述第二限位部(832)和所述第四限位部(834)限位配合;其中,所述连接板(20)具有毛刺面(201),所述防呆结构限定所述毛刺面(201)背离所述限位板(12)。
- 根据权利要求25所述的螺母组件,其特征在于,所述第一限位部(831)包括第一限位凸块,所述第二限位部(832)包括第二限位凸块,所述第三限位部(833)包括第一限位槽,所述第四限位部(834)包括第二限位槽,所述第一限位凸块卡入所述第一限位槽,所述第二限位凸块卡入所述第二限位槽,其中,所述第一限位凸块和所述第二限位凸块尺寸不相等;在所述螺母(10)的周向上,所述第一限位凸块的尺寸大于所述第二限位凸块的尺寸,所述第一限位槽和所述第二限位槽在所述连接板(20)的周向上具有夹角A,0°<A<180°。
- 根据权利要求25所述的螺母组件,其特征在于,所述防呆结构还包括设置在所述螺母(10)上的第五限位部(35)和设置在所述连接板(20)上的第六限位部(36),其中,所述第二限位部(832)位于所述第一限位部(831)和所述第五限位部(35)之间,所述第四限位部(834)位于所述第三限位部(833)和所述第六限位部(36)之间,所述第五限位部(35)和所述第六限位部(36)配合。
- 根据权利要求27所述的螺母组件,其特征在于,所述第五限位部(35)包括第三限位凸块,所述第六限位部(36)包括第三限位槽,所述第三限位凸块卡入所述第三限位槽,其中,所述第一限位部(831)和所述第五限位部(35)的尺寸均大于所述第二限位部(832)的尺寸;在所述螺母(10)的周向上,所述第一限位部(831)的径向尺寸小于所述第五限位部(35)的尺寸;所述第二限位部(832)和所述第一限位部(831)在所述连接板(20)的周向上具有夹角B,所述第二限位部(832)和所述第五限位部(35)在所述连接板(20)的周向上具有夹角C,其中,B=C=90°;所述第二限位部(832)和所述第一限位部(831)在所述连接板(20)的周向上具 有夹角B,所述第二限位部(832)和所述第五限位部(35)在所述连接板(20)的周向上具有夹角C,其中,0°<B<90°,B+C=180°。
- 一种电子膨胀阀,其特征在于,所述电子膨胀阀包括阀体组件(40)和权利要求1所述的螺母组件,所述螺母组件位于所述阀体组件(40)内,所述阀体组件(40)包括相互连接的阀盖(41)和阀座(42),所述螺母主体(11)的至少一部分位于所述阀盖(41)的腔体内,所述限位板(12)位于所述阀座(42)的腔体内,所述连接板(20)的外侧壁和所述阀座(42)的内侧壁焊接。
- 根据权利要求29所述的电子膨胀阀,其特征在于,所述阀座(42)具有开口,所述连接板(20)设置在所述开口处,所述连接板(20)背离所述阀座(42)腔体的一侧和所述开口所在平面之间的距离为L,L≥0.02mm,所述连接板(20)的厚度为t,L<0.4t。
- 根据权利要求29所述的电子膨胀阀,其特征在于,所述连接板(20)具有平衡孔或平衡槽(21),所述阀座(42)的腔体和所述阀盖(41)的腔体通过所述平衡孔或所述平衡槽(21)连通。
- 根据权利要求29所述的电子膨胀阀,其特征在于,所述电子膨胀阀还包括导向套(50)和阀针组件(60),所述螺母(10)具有定位孔,所述定位孔内具有止挡面,所述导向套(50)的一端穿入所述定位孔,所述导向套(50)的端面和所述止挡面抵接,所述阀针组件(60)和所述螺母主体(11)螺纹连接,且所述阀针组件(60)穿过所述导向套(50)。
- 根据权利要求32所述的电子膨胀阀,其特征在于,所述阀座(42)的内壁具有定位凸台(421),所述定位凸台(421)内具有阀口(422),所述定位凸台(421)穿入所述导向套(50)远离所述螺母(10)的一端,所述定位凸台(421)、所述导向套(50)、所述定位孔和所述阀针组件(60)同轴设置。
- 根据权利要求32所述的电子膨胀阀,其特征在于,所述螺母(10)的外周面上具有螺旋导槽(13);所述螺母组件还包括止挡圈(70),所述止挡圈(70)套设在所述螺旋导槽(13)内,所述电子膨胀阀还包括转子组件(90),所述转子组件(90)包括转子连接板(91)、导动片(92)和筒状的磁转子(93),所述转子连接板(91)位于所述磁转子(93)的腔体内并和所述磁转子(93)固定连接,所述导动片(92)位于所述磁转子(93)的腔体内并和所述转子连接板(91)固定连接,所述导动片(92)和所述止挡圈(70)限位配合。
- 根据权利要求34所述的电子膨胀阀,其特征在于,所述转子连接板(91)具有压装槽(94),所述导动片(92)包括相互连接的压装段(921)和限位段(922),所述压装段(921)和所述限位段(922)相互垂直,所述压装段(921)位于所述压装槽(94)内,所述限位段(922)沿所述螺母(10)的轴向延伸并和所述止挡圈(70)限位配合;所述电子膨胀阀还包括阀针组件(60),所述阀针组件(60)和所述螺母主体(11)螺纹连接,所述阀针组件(60)和所述转子组件(90)固定连接。
- 根据权利要求29所述的电子膨胀阀,其特征在于,所述连接板(20)和所述螺母(10)在径向上间隙配合;所述连接板(20)和所述阀座(42)在所述螺母(10)的轴向间隙配合;所述电子膨胀阀还包括导向套(50),所述导向套(50)固定设置在所述阀座(42)的腔体内,所述导向套(50)和所述螺母(10)插接,所述导向套(50)和所述螺母(10)在轴向上抵接且在径向上过盈配合。
- 根据权利要求36所述的电子膨胀阀,其特征在于,所述螺母(10)具有定位孔(1101),所述定位孔(1101)内具有止挡面(1102),所述导向套(50)的一端穿入所述定位孔(1101),所述导向套(50)的端面和所述止挡面(1102)抵接,所述导向套(50)的外壁和所述定位孔(1101)的内壁过盈配合;或所述导向套(50)具有定位孔(1101),所述定位孔(1101)内具有止挡面(1102),所述螺母(10)的一端穿入所述定位孔(1101),所述螺母(10)的端面和所述止挡面(1102)抵接,所述螺母(10)的外壁和所述定位孔(1101)的内壁过盈配合。
- 根据权利要求36所述的电子膨胀阀,其特征在于,所述电子膨胀阀还包括设置在所述阀座(42)内的定位凸台(421),所述定位凸台(421)和所述导向套(50)远离所述螺母(10)的一端插接,所述定位凸台(421)和所述导向套(50)在轴向上抵接且在径向上过盈配合。
- 根据权利要求38所述的电子膨胀阀,其特征在于,所述定位凸台(421)和所述阀座(42)为一体结构;或,所述电子膨胀阀包括阀口件(040),所述阀口件(040)包括所述定位凸台(421)以及和所述定位凸台(421)连接的本体(042),所述阀口件(040)还具有贯穿所述本体(042)和所述定位凸台(421)的阀口,所述本体(042)和所述阀座(42)固定连接,所述定位凸台(421)穿入所述导向套(50)远离所述螺母(10)的一端,所述定位凸台(421)和所述导向套(50)过盈配合,所述导向套(50)和所述本体(042)抵接。
- 根据权利要求39所述的电子膨胀阀,其特征在于,所述本体(042)包括依次连接的第一轴段(0421)、第二轴段(0422)和第三轴段(0423),所述第一轴段(0421)、所述第二轴段(0422)和所述第三轴段(0423)的外径依次减小,所述第一轴段(0421)和所述定位凸台(421)连接;所述阀座(42)具有相互连通的第一配合孔和第二配合孔,所述第一配合孔的直径大于所述第二配合孔的直径;其中,所述第一轴段(0421)穿入所述第一配合孔内,所述第二轴段(0422)穿过所述第二配合孔,所述第三轴段(0423)位于所述阀座(42)外。
- 根据权利要求36所述的电子膨胀阀,其特征在于,所述阀座(42)的内侧壁具有平行于所述螺母(10)轴线的第一阶梯面(4221)和垂直于所述螺母(10)轴线的第二阶梯面(4222),所述第一阶梯面(4221)和所述第二阶梯面(4222)形成台阶结构,所述连接板(20)的外侧壁和所述第一阶梯面(4221)连接,所述连接板(20)和所述第二阶梯 面(4222)间隙配合;所述连接板(20)的一部分位于所述台阶结构内,所述连接板(20)的另一部分位于所述台阶结构外,所述连接板(20)和所述阀座(42)焊接。
- 根据权利要求41所述的电子膨胀阀,其特征在于,所述阀体组件(40)还包括阀盖(41),所述电子膨胀阀还包括转子组件(90),所述阀盖(41)和所述阀座(42)连接,所述转子组件(90)设置在所述阀盖(41)内,所述转子组件(90)包括磁转子(93)和设置在所述磁转子(93)内的转动连接件,所述转动连接件包括相互连接的转子连接板(91)和导动片(92),所述转子连接板(91)和所述磁转子(93)固定连接,所述导动片(92)沿所述螺母(10)的轴向延伸;所述螺母组件还包括可转动地设置在所述螺母(10)上的止挡圈(70),所述导动片(92)的侧壁和所述止挡圈(70)限位配合;所述转动连接件为一体结构,或所述转子连接板(91)、所述导动片(92)为两个单独的结构;所述导动片(92)和所述磁转子(93)的内壁间隙配合,或所述导动片(92)和所述磁转子(93)的内壁贴合。
- 根据权利要求41所述的电子膨胀阀,其特征在于,所述连接板(20)和所述第二阶梯面(4222)之间具有间隙t1,t1≥0.2mm;所述连接板(20)的厚度为t2,t1≤0.3t2。
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| CN119223600A (zh) * | 2024-09-30 | 2024-12-31 | 贵州航天控制技术有限公司 | 一种夹紧机构、检测工装及检测装置 |
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Also Published As
| Publication number | Publication date |
|---|---|
| JP2024530099A (ja) | 2024-08-16 |
| KR20240033295A (ko) | 2024-03-12 |
| JP7823083B2 (ja) | 2026-03-03 |
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