LINEAR ACTUATOR AND LINEAR ACTUATOR ASSEMBLING METHOD
20220221034 · 2022-07-14
Inventors
Cpc classification
F16H2025/2481
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/2081
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/2031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A linear actuator assembling method includes a semi-finished product assembling step and a threaded shaft assembling step. The semi-finished product assembling step is to form a semi-finished product, and the semi-finished product includes a case, a main gear, and a main gear bearing. The main gear and the main gear bearing are surrounded and restricted by the case, and the main gear bearing is sleeved on the main gear. In the threaded shaft assembling step, a threaded shaft is reversely assembled, and one end of the threaded shaft is inserted into the main gear to allow the end of the threaded shaft to be restricted by the main gear.
Claims
1. A linear actuator assembling method, comprising: a semi-finished product assembling step to form a semi-finished product, wherein the semi-finished product comprises a case, a main gear, and a main gear bearing, the main gear and the main gear bearing are surrounded and restricted by the case, and the main gear bearing is sleeved on the main gear; and a threaded shaft assembling step, wherein a threaded shaft is reversely assembled, and one end of the threaded shaft is inserted into the main gear to allow the end of the threaded shaft to be restricted by the main gear.
2. The linear actuator assembling method of claim 1, wherein, in the threaded shaft assembling step, the end of the threaded shaft is allowed to expose from the main gear, a spacer is sleeved on the end of the threaded shaft, and then a punch riveting process is used to restrict the threaded shaft.
3. The linear actuator assembling method of claim 1, further comprising: an end cap assembling step, wherein an end cap is allowed to connect to the semi-finished product.
4. The linear actuator assembling method of claim 3, wherein, in the semi-finished product assembling step, a distance adjusting module is allowed to be engaged with the case and to be electrically connected to a driving module of the semi-finished product.
5. The linear actuator assembling method of claim 3, wherein the semi-finished product further comprises a reinforcing seat disposed within the case and sleeved on the main gear bearing, the reinforcing seat further comprises at least one installed hole corresponding to at least one opening of the main gear, in the semi-finished product assembling step, a fixture is used to pass the at least one installed hole and the at least one opening to restrict a rotation of the main gear, and then the threaded shaft is fastened therewith.
6. A linear actuator, comprising: a semi-finished product, comprising: a case defining an inner space; a driving module disposed within the inner space and comprising a motor; and a transmission module disposed within the inner space and comprising: a main gear driven by the motor; and a main gear bearing sleeved on the main gear; and a threaded shaft, wherein one end of the threaded shaft is inserted into and restricted by the main gear.
7. The linear actuator of claim 6, wherein the semi-finished product further comprises: a distance adjusting module detachably disposed at the case and comprising: a module housing; and a circuit board received in the module housing, wherein when the distance adjusting module is assembled with the case, the circuit board is electrically connected to the driving module.
8. The linear actuator of claim 7, wherein the case further comprises an engaging groove, the module housing further comprises an engaging tab, and when the engaging tab is engaged with the engaging groove, the distance adjusting module is secured at the case, and an inserting portion is inserted into a connecting portion of the driving module.
9. The linear actuator of claim 6, wherein the semi-finished product further comprises: a reinforcing seat disposed within the case and connected to the main gear, the reinforcing seat comprising: a reinforcing seat body; and at least one installed hole disposed on the reinforcing seat body; and an end cap detachably connected to the reinforcing seat and comprising: an end cap body; and at least one through hole corresponding to the at least one installed hole and configured for at least one fastening screw to screw therewith; wherein the at least one fastening screw passes the at least one through hole to screw with the at least one installed hole so as to allow the end cap to be secured at the reinforcing seat.
10. The linear actuator of claim 6, wherein the main gear comprises: an engaging hole having an inner thread configured for the threaded shaft to screw therewith.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] The disclosure can be more fully understood by reading the following detailed description of the embodiments, with reference made to the accompanying drawings as follows:
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
DETAILED DESCRIPTION
[0015] It will be understood that when an element (or mechanism or module) is referred to as being “disposed on”, “connected to” or “coupled to” another element, it can be directly disposed on, connected or coupled to another element, or it can be indirectly disposed on, connected or coupled to another element, that is, intervening elements may be present. In contrast, when an element is referred to as being “directly disposed on”, “directly connected to” or “directly coupled to” another element, there are no intervening elements present.
[0016] In addition, the terms first, second, third, etc. are used herein to describe various elements or components, these elements or components should not be limited by these terms. Consequently, a first element or component discussed below could be termed a second element or component.
[0017]
[0018] Hence, because the semi-finished product 100 can be manufactured in advance, the threaded shaft 200 that is suitable for the demands can then be chosen and assembled, and the assembling efficiency and convenience of the linear actuator 10 can be increased.
[0019]
[0020] As shown in
[0021] Precisely, the case 110 can further include an engaging groove 1101, the module housing 141 can further include an engaging tab 1141, and the shape of the engaging groove 1101 fits the shape of the engaging tab 1141. When the engaging tab 1141 is engaged with the engaging groove 1101, the distance adjusting module 140 is secured at the case 110, and the inserting portion 143 is inserted into the connecting portion 122 of the driving module 120 to complete the electric connection between the driving module 120 and the distance adjusting module 140. Finally, the module housing 141 can be secured at the case 110 by screws. If the user would like to remove the distance adjusting module 140, the screws can be unscrewed and the distance adjusting module 140 can be pulled out along the engaging groove 1101 to allow the inserting portion 143 to disengage from the connecting portion 122, thereby removing the distance adjusting module 140.
[0022]
[0023]
[0024] To be more specific, in the semi-finished product assembling step S2, a distance adjusting module 140 is allowed to be engaged with the case 110 and to be electrically connected to a driving module 120 of the semi-finished product 100, and therefore the distance adjusting module 140 is favorable for the user to quickly remove from or install into the case 110 for checking or changing purpose. In the threaded shaft assembling step S3, the end of the threaded shaft 200 is allowed to expose from the main gear 131, a spacer 170 is sleeved on the end of the threaded shaft 200, and then a punch riveting process is used to restrict the threaded shaft 200. In other embodiments, the threaded shaft can be restricted by the main gear via pins or key grooves to quickly assembled, and the present disclosure is not limited thereto. The other end of the threaded shaft 200 is configured to combine an elevating mechanism 300. The elevating mechanism 300 linked with the threaded shaft 200 can move linearly relative to the linear actuator 10. In other embodiments, the elevating mechanism can be modified to apply in other fields based on the demands, and the present disclosure is not limited thereto.
[0025] The semi-finished product 100 can further include a reinforcing seat 150 disposed within the case 110 and sleeved on the main gear bearing 132. The reinforcing seat 150 can further include at least one installed hole 152 corresponding to at least one opening 133 of the main gear 131. In the semi-finished product assembling step S2, a fixture (not shown) can be used to pass the at least one installed hole 152 and the at least one opening 133 to restrict a rotation of the main gear 131, and then the threaded shaft 200 is fastened therewith. Therefore, the installed hole 152 can be configured for the fixture to pass therethrough for restricting the main gear 131, and, in the later process, the installed hole 152 can be configured for an end cap 160 to fasten therewith. Moreover, the opening 133 on the main gear 131 is favorable for losing weight and decreasing cost, and the structure can have lots of functions.
[0026] Additionally, the linear actuator assembling method S1 can further include an end cap assembling step S4, and the end cap 160 is allowed to connect to the semi-finished product 100. Hence, the protection effect and the anti-dust effect can be achieved.
[0027] As described above, the present disclosure is to assemble the components other than the threaded shaft 200 into a semi-finished product 100, the threaded shaft 200 that is suitable for the demands can then be chosen and assembled by the user, and the assembling efficiency and convenience of the linear actuator 10 can be increased.
[0028] Although the present disclosure has been described in considerable detail with reference to certain embodiments thereof, other embodiments are possible. Therefore, the spirit and scope of the appended claims should not be limited to the description of the embodiments contained herein.
[0029] It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present disclosure without departing from the scope or spirit of the disclosure. In view of the foregoing, it is intended that the present disclosure covers modifications and variations of this disclosure provided they fall within the scope of the following claims.