Machine duty
Explain reversing frequency, acceleration, inertia, positional repeatability, shaft support and service interval. These inputs help the quotation reflect the actual machine rather than an industry label.
Automation systems use intersecting-axis drives where packaging is tight and motion may reverse frequently. The gear pair must be considered together with inertia, bearing support, commanded motion and maintenance access.

In automated equipment, the gear set rarely works alone. Motor, coupling, bearings, shafts and the downstream mechanism all influence how reversal and torque are seen at the teeth. A useful RFQ describes that motion profile instead of treating the gear as a static catalogue item.
If the gear is part of a servo-driven mechanism, explain whether the downstream process depends on repeatable angular position or simply on power transfer. That distinction changes which inspection results are useful to the buyer.

| Review area | What to provide | Why it matters |
|---|---|---|
| Motion / duty | Reversing frequency, acceleration, inertia, positional repeatability, shaft support and service interval | Separates steady power transmission from reversing, shock or position-sensitive duty. |
| Pasangan gear | Gear + pinion identity, ratio/tooth counts and hand | Prevents one component from being reviewed without its mating geometry. |
| Mounting | Shaft arrangement, bearing support, housing datums and target backlash | Connects the manufactured part to the position it will hold in the assembly. |
| Environment | Lubrication, temperature and contamination context | Supports practical material, finish and service review without inventing machine-level claims. |
| Inspection | Drawing tolerances, tooth finish and required records | Defines what the buyer will use to accept the ordered configuration. |
Backlash that is acceptable in a continuous conveyor can be noticeable in a mechanism that changes direction repeatedly. Do not assume a generic backlash value; use the machine requirement and the mounting geometry that can actually maintain it.
Ground or custom pairs are a natural starting point for motion-sensitive mechanisms, while a miter set can suit compact 1:1 direction changes when the ratio and axis relationship are fixed.
If a robotic axis or automated positioning cell still has open geometry or duty inputs, mark those items for review. An explicit unknown is safer than filling the drawing with an assumed standard value.


Kerja penggantian gear serong lingkaran bermula dengan memisahkan maklumat reka bentuk asal daripada haus servis. Gigi yang rosak, lubang yang herot atau corak sentuhan yang beralih boleh menggambarkan kegagalan tersebut, tetapi…
Lihat konfigurasi →
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Mengintegrasikan pinion serong lingkaran dengan aci mengurangkan sambungan berasingan, tetapi ia menjadikan jurnal galas, bahu, splin, ulir dan datum gigi sebagai sebahagian daripada satu masalah pembuatan.…
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Set gear miter lingkaran menggunakan kiraan gigi yang sama untuk menghantar gerakan antara aci yang bersilang tanpa mengubah nisbah kelajuan secara sengaja. Nisbah yang sama memudahkan satu bahagian pemilihan,…
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Gear serong lingkaran tanah memerlukan lebih daripada sekadar menambah operasi pengisaran pada gear biasa. Skema datum, geometri pra-pengisaran, rawatan haba, elaun pengisaran dan pemeriksaan akhir telah…
Lihat konfigurasi →
Set gear serong lingkaran tersuai dibina berdasarkan geometri khusus projek dan bukannya jadual stok awam. Takrifan berguna merangkumi kedua-dua ahli pasangan, paksi…
Lihat konfigurasi →When the robotic axis or automated positioning cell drawing controls material or heat treatment, include the exact requirement. If those choices remain open, describe the duty and leave material/process selection for review.
Photos of the robotic axis or automated positioning cell help establish orientation and condition, but they do not define tooth geometry or mounting datums. Add the mating member, drawing data and measurements taken from controlled assembly references.
For the robotic axis or automated positioning cell, send the assembly information that controls shaft relationship, mounting datums and interfaces. Unrelated machine details can be omitted when they have no effect on gear selection or inspection.
For the robotic axis or automated positioning cell, separate prototype/sample quantity from expected repeat demand. This keeps tooling, inspection and production planning tied to the real purchasing stage.
Lebih jelas hubungan pasangan dan datum pemasangan ditakrifkan, lebih cepat konfigurasi dapat disemak.
MOQ adalah fleksibel mengikut jenis produk, laluan pembuatan dan jumlah nilai pesanan. Projek baharu yang sesuai boleh meminta 1–5 sampel barang pada harga sampel. Model campuran boleh digabungkan apabila jumlah pesanan mencapai kira-kira USD 1,500. Pesanan 1–2 barang boleh disemak, walaupun kos seunit biasanya lebih tinggi.
Tempoh perancangan biasa ialah 10–25 hari bekerja untuk bahagian standard, 20–45 hari bekerja untuk komponen tersuai dan 45–120 hari bekerja untuk peralatan atau pemasangan jenis projek. EXW, FOB, CIF dan DAP biasanya disokong; FCA, CFR, CPT, CIP dan DDP boleh dibincangkan untuk penghantaran.