Home · Exercise Library · Dumbbell Shoulder Press (standing, pair total) · Standards (Men, kg)

Dumbbell Shoulder Press (standing, pair total) Standards for Men (kg)

One-rep-max standards by bodyweight and training level — in kilograms, because most of our readers train in kg. Every number on this page traces to a named published source, and the model connecting them is stated in full below.

Quick answer: at 75 kg bodyweight, the intermediate line for men is around 53.5 kg for a single (0.71× bodyweight). Advanced is around 65 kg. The full table covers 55–145 kg.
Derived standard. No published table exists for this exact variant, so this page is set at 93% of the Overhead Press (Barbell, Standing) standard — the link between the two lifts is published measurement, not our guess (Saeterbakken, A.H). The Overhead Press (Barbell, Standing) standards page carries the parent table.
BodyweightBeginnerNoviceIntermediateAdvancedElite
55 kg22.5324148.559.5
60 kg25.5354453.565
65 kg27.5384956.570
70 kg2940.55260.574.5
75 kg304253.56579
80 kg324556.568.589
85 kg33.547.5597194.5
90 kg354960.57297.5
95 kg36506374.5102.5
100 kg37516576.5107
105 kg38.552.566.578109.5
110 kg39.553.567.579111.5
115 kg39.554.568.580112.5
120 kg39.5556980.5113
125 kg39.5567081.5114
130 kg40567082114.5
135 kg41567082.5115
140 kg41.5567083115.5
145 kg42567083.5116
145 kg+42587286121

By age — at 75 kg bodyweight

AgeBeginnerNoviceIntermediateAdvancedElite
18-39304253.56579
40-492636.546.556.569
50-5923.532.541.550.561.5
60-6917.52531.538.546.5

Age factors (40-49: ×0.872 · 50-59: ×0.777 · 60-69: ×0.591) are computed cell-by-cell from the published masters classification tables — see the sources and methods below.

All values = one-rep max in kg. Published anchor rows are interpolated along bodymass2/3 for in-between bodyweights and never extrapolated past the published range. Highlighted row: 75 kg reference. Model v1.0.0.

Sources for this page

  1. Kilgore, L. Weightlifting Performance Standards, ExRx.net (exrx.net/Testing/WeightLifting/StrengthStandards). Adult 1RM performance standards based on ~70 years of accumulated competitive weightlifting and powerlifting classification data; also the basis of the standards tables in Rippetoe & Kilgore, Practical Programming for Strength Training.
  2. Jaric, S. Muscle strength testing: use of normalisation for body size. Sports Medicine 2002;32(10):615-631. Recommends allometric normalisation of muscle force with exponent b = 0.67 (bodymass^2/3).
  3. Lietzke, M.H. Relation between weight-lifting totals and body weight. Science 1956;124(3220):486-487. World-record lifting totals scale with bodymass^0.67 (measured exponent 0.6748).
  4. Meltzer, D.E. Age dependence of Olympic weightlifting ability. Medicine & Science in Sports & Exercise 1994;26(8):1053-1067. Nonlinear age-related decline in trained lifters; supports masters adjustment magnitude.
  5. Saeterbakken, A.H., Fimland, M.S. Effects of body position and loading modality on muscle activity and strength in shoulder presses. Journal of Strength and Conditioning Research 2013;27(7):1824-1831. Standing dumbbell shoulder-press 1RM ~7% below standing barbell press.

Anchor rows = published Kilgore/ExRx military-press kg table x 0.93 (rounded to 0.5 kg), per saeterbakken_2013. Level multipliers are the published table values themselves - not re-fitted. Allometric coefficients (strength ~ bodymass^2/3; Jaric 2002, Lietzke 1956) are the site's transparent summary/interpolation layer over those anchors. Masters bands: published-table-derived age factors (see age_model). Treated as the standing dumbbell press. Values are the PAIR total; per-dumbbell = half.

Where these numbers come from

Every number on this page traces to a named, published source — and the model that connects them is stated in full. Nothing here is guessed, and nothing on this page is presented as a measured database of our own users.

The anchor tables. One-rep-max standards for the barbell lifts come from the adult performance standards published by Dr. Lon Kilgore on ExRx.net — the same classification tables behind Rippetoe & Kilgore's Practical Programming for Strength Training — built on roughly 70 years of accumulated competitive weightlifting and powerlifting classification data. Bodyweight-movement standards come from published fitness-test research: push-up norms from the Canadian Society for Exercise Physiology (2003), as reproduced in ACSM's Guidelines for Exercise Testing and Prescription; forearm-plank percentiles from Strand and colleagues (Journal of Human Kinetics, 2014 — 471 adults tested); 1-minute sit-to-stand reference values from Strassmann and colleagues (International Journal of Public Health, 2013 — 6,926 adults tested); and the single-leg heel-rise criterion from Lunsford & Perry (Physical Therapy, 1995 — 203 adults tested).

Between the table rows. Published tables list a handful of bodyweight classes. For bodyweights in between, this page interpolates along an allometric curve — strength scales with bodymass to the two-thirds power, not linearly, which is why heavier lifters lift more in absolute terms but less per kilogram. That exponent is not ours: it was measured on world-record lifts by Lietzke (Science, 1956) and is the recommended body-size normalisation in the strength-testing literature (Jaric, Sports Medicine, 2002). We never extrapolate beyond the published range — tables are clamped at their published ends.

Age-group tables. The 40–49, 50–59 and 60–69 tables apply age factors of 0.87, 0.78 and 0.59 — computed cell-by-cell from Kilgore's own published masters tables, not chosen by us. The magnitude is consistent with the age-related performance decline documented in masters lifters by Meltzer (Medicine & Science in Sports & Exercise, 1994).

Derived pages. A few variants have no published table of their own. Where a peer-reviewed measurement links a variant to a parent lift, the standard is derived and the page says so at the top: the dumbbell bench press is set at 83% of the barbell bench standard, because dumbbell chest-press 1RM measured 17% below barbell in direct testing (Saeterbakken, van den Tillaar & Fimland, Journal of Sports Sciences, 2011); the standing dumbbell shoulder press is set at 93% of the barbell press (Saeterbakken & Fimland, Journal of Strength and Conditioning Research, 2013); the sumo deadlift uses the deadlift standard unchanged, because both stances are contested identically in powerlifting. If a movement has neither a published table nor a verified link to one, we do not publish standards for it — that page simply does not exist on this site.

Reps and holds. For bodyweight movements, levels map directly to the published category or percentile boundaries of the source test — for example, plank levels sit on the published 20th/40th/60th/80th percentiles, and push-up levels are the published CSEP category cut-offs. Where the published protocol differs from common gym practice, the page says so next to the table — for example, the women's push-up norms use the modified knee position, and the sit-to-stand test is performed from a standard-height chair.

What this is — and is not. These are model standards: published benchmarks connected by a stated, checkable model. They are a fair reference point for where your lift sits today, not a verdict on you and not a prediction. Strength varies with training history, sleep, technique and more — which is why the levels are wide bands, not single numbers.

Compiled by Maddy — NASM-CPT. He reviews the source list with every model update.

References

1. Kilgore, L. Weightlifting Performance Standards. ExRx.net (exrx.net/Testing/WeightLifting/StrengthStandards). Adult 1RM performance standards; companion tables to Rippetoe, M. & Kilgore, L., Practical Programming for Strength Training (Aasgaard). 2. Jaric, S. Muscle strength testing: use of normalisation for body size. Sports Medicine 2002;32(10):615–631. 3. Lietzke, M.H. Relation between weight-lifting totals and body weight. Science 1956;124(3220):486–487. 4. Meltzer, D.E. Age dependence of Olympic weightlifting ability. Medicine & Science in Sports & Exercise 1994;26(8):1053–1067. 5. Saeterbakken, A.H., van den Tillaar, R. & Fimland, M.S. A comparison of muscle activity and 1-RM strength of three chest-press exercises with different stability requirements. Journal of Sports Sciences 2011;29(5):533–538. 6. Saeterbakken, A.H. & Fimland, M.S. Effects of body position and loading modality on muscle activity and strength in shoulder presses. Journal of Strength and Conditioning Research 2013;27(7):1824–1831. 7. Escamilla, R.F. et al. A three-dimensional biomechanical analysis of sumo and conventional style deadlifts. Medicine & Science in Sports & Exercise 2000;32(7):1265–1275. 8. Canadian Society for Exercise Physiology. Canadian Physical Activity, Fitness & Lifestyle Approach, 2003 — push-up norms by age and sex, as reproduced in ACSM's Guidelines for Exercise Testing and Prescription. 9. Strand, S.L., Hjelm, J., Shoepe, T.C. & Fajardo, M.A. Norms for an isometric muscle endurance test. Journal of Human Kinetics 2014;40:93–102. 10. Strassmann, A. et al. Population-based reference values for the 1-min sit-to-stand test. International Journal of Public Health 2013;58(6):949–953. 11. Lunsford, B.R. & Perry, J. The standing heel-rise test for ankle plantar flexion: criterion for normal. Physical Therapy 1995;75(8):694–698.

Compare & explore

Dumbbell Shoulder Press (standing, pair total) — proper form & cues · Dumbbell Shoulder Press (standing, pair total) standards for women · Push-Ups standards for men · Plank (Forearm) Hold standards for men · Chair Squats (1-Minute Sit-to-Stand) standards for men · Bodyweight Squats (1-minute pace benchmark) standards for men · Full exercise library

Below the line for your bodyweight?

That is a programming problem, not a genetics problem. Maddy builds the plan around your exact body — starting with a 3-minute scan.

Start My Body Scan → 11 questions · 3 min · free · no card yet